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045625
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LABORATORY
WASTE DISPOSAL
MANUAL
MANUFACTURING CHEMISTS ASSOCIATION
1825 CONNECTICUT AVENUE, N. W.
WASHINGTON, D. C. 20009
The information and recommendations contained in this Laboratory Waste Disposal Manual have been compiled from sources believed to be reliable and to represent the best opinion on the subject as of 1969. However, no warranty, guarantee, or representation is made by the Manufacturing Chemists Association as to the correctness or sufficiency of any infor mation or recommendation herein, and the Association assumes no responsibility in connection therewith; nor can it be assumed that all necessary hazard warnings and precautionary measures are contained in this manual, or that other or additional information or measures may not be required or desirable because of particular or exceptional conditions or circumstances, or because of applicable federal, state, or local law.
Copyright 1969 by Manufacturing Chemists' Association, Inc. Library of Congress Catalog Card No. 72-87285 Printed in the USA
FIRST PRINTING, JUNE t969--3,000
CMA 045627
TABLE OF CONTENTS
Section I. INTRODUCTION____________________________ 4
section II. HOW TO USE THE MANUAL ____
5
^section III. CHART HEADINGS DEFINED _______________ 6
Election IV. ABBREVIATIONS ___
8
^^ection V. REFERENCE CHARTS (alphabetical listing of
chemical substances)_______ ____
9
Section VI. WASTE DISPOSAL PROCEDURES__ ____ 121
No. la Organic Acid Halides _______________________ 123
No. 1b Inorganic Halides _____
124
No. 2 Aldehydes ______________________
125
No. 3 Alkali and Alkaline Earth Metals, Metal Alkyls,
and Alkoxides _____
126
No. 4a Chlorohydrins and Nitroparaffins 127
No. 4b Organic Halogen and Related
Compounds ____
128,129
No. 4c Substituted Organic Acids ____ ______ __ ____ 130
No. 5 Aromatic Amines ___________________________ 131
No. 6 Aromatic Halogenated Amines and Nitro
Compounds 132,133
No. 7a Aliphatic Amines ______ ______ ____ __________ 134
No. 7b Organic Phosphates and Related Compounds 135
No. 8 Azides and Azo Compounds 136
No. 9 Carbon Disulfide ___
137
No. 10 Caustic Alkali and Ammonia_________
138
No. 11 Inorganic Salts_____ ________________________ 139
No. 12a Oxidizing Agents__ ____________
140
No. 12b Reducing Substances_______
141
No. 13 Mercaptans and Organic Sulfides_______ 142
No. 14 Cyanides and Nitriles ~__
143,144
No. 15 Ethers ___
145
No. 16 Hydrazines ________
146
No. 17 Hydrides .__________________________
147
Waste Disposal Procedures (continued)
No. 18 Hydrocarbons, Alcohols, Ketones
and Esters__________________ ______ 148,149
No. 19 Inorganic Amides and Derivatives____ _____ 150
No. 20 Organic Amides__________________ _________ 151
No. 21 Inter-Nonmetallic Compounds..............
152
No. 22a Peroxides, Inorganic_________________ _____ 153
No. 22b Peroxides, Organic________________________ 154
No. 23 Sulfides, Inorganic_________
155
No. 24a Acids, Organic
(Limited to C, H and O Compositions).... 156
No. 24b Acids, Inorganic___________________________ 157
No. 25 Carbides __
158
No. 26 Wastes to be dumped into land-fill or
released to the air____________________ _ 159
No. 27a Recovery - Scrap Metals
160
No. 27b Recovery - Mercury _______________ ___ ____ . 161
No. 27c Recovery - Phosphorous (Yellow andRed) .... 162
No. 27d Recovery - Arsenic, Antimony, Bismuth.._ 163
No. 27e Recovery-Selenium and Tellurium ..... ......... 164
No. 27f Recovery - Lead and Cadmium Compounds ... 165
No. 27g Recovery - Beryllium Compounds ____
166
No. 27h Recovery - Strontium and Barium Compounds 167
No. 27i Recovery - Vanadium Compounds 168
No. 27j Recovery - Carbon Tetrachloride, Carbon
Tetrabromide and Phosgene 169
No. 27k Recovery - Miscellaneous_________ ___ ______ 170
No. 28 Deep Burial 171
No. 29 Direct Burning .... ..........................
172
SECTION VII. DISPOSAL MATERIALS--MINIMUM
REQUIREMENTS ....... ____............
173
SECTION VIII. BIBLIOGRAPHY ..... ...................................... 175
PAGE 3
CMA 045628
SECTION I. Introduction
This manual is published as a service of the Safety and Fire Protection Committee of the Manufacturing Chemists Association. Its purpose is to assist laboratory personnel in developing an awareness of chemical hazards and in fulfilling their responsibilities to dispose of chemical wastes without personal injury, without hazardous adul teration of drains, and without excessive contamination of ground, air or water.
Some 1200 chemicals are specifically listed in the manual. Therefore, because of the vast number not in cluded, this publication should be considered preliminary in nature. However, categorization of disposal procedures by chemical classes (See VI) offers a means by which information can be obtained on the disposal of chemicals not specifically listed.
In addition to the normal fire and explosion hazards of flammable liquids and their vapors and the expected hazards of toxic materials, certain other hazards must be anticipated in waste disposal handling. Some materials are corrosive to drainage piping. Some react violently with water or with other chemicals. And others, though possibly relatively nonhazardous in themselves, adversely affect sewage disposal systems.
Chemicals poured down the drain should be non-toxic or in concentrations below the threshold limit. The con centrations which may be transferred to the drain in any given location are controlled by water pollution standards. Copies of such standards can be obtained from the water pollution control agency in the state or interstate region.
PAGE 4
In this manual recommendations for treatment of hazard ous chemical wastes, prior to disposal, are presented in basic outline. Detail is neither possible nor desirable, but all recommendations are directed towards the elimination or adequate reduction of the hazard potential. Some organic wastes can be converted to the non-toxic naturallyoccurring forms. For example, a high valence chromium compound (chromate) can be reduced to a harmless trivalent hydroxide. Certain other inorganic elements and their compounds are highly toxic in any soluble form. Therefore, it is recommended that these be recovered for re-use. Contaminated mercury is an example of this class of material. Recovered material can be shipped to the supplier for reprocessing.
Toxic cyanides can be converted to less toxic cyanates or into complex iron cyanides. Very active chemicals, such as SnCI4 can be made less active by mixing with inert materials such as sand, kaolin or vermiculite, and then converted to less harmful forms which can be safely discharged to the drain.
Certain materials can be safely destroyed by burning. The burning process for slow-burning compounds may be speeded up by dissolving in flammable solvents. Some incinerators are equipped to reduce carbon and carbon monoxide by means of afterburners, and to remove by products such as S02 and NO with scrubbers.
The manual stresses safe procedures for on-site waste disposal from small laboratories, especially those in small communities not possessing sophisticated equipment.
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i ' ' ji 1
CMA 045629
SECTION II.------------------------------------------------------------------------------How to Use the Manual
To obtain information on the hazards of a specific chemical substance and recommendations for its disposal as a laboratory waste, proceed as follows:
(a) Find the chemical substance in the alphabetical listing in Section V. (If the substance is not listed, refer to the chemical class listings under Section VI in the TABLE OF CONTENTS. The substance will fall into one of these categories and the associated disposal procedure can be used.)
(b) Note the information given in Section V on the health, fire and reac tivity hazards of the substance. Note other pertinent physical prop erties and consult the recommended references for more detailed information.
(c) A waste disposal procedure number is given in Section V. Refer to this procedure in Section VI and proceed accordingly.
NOTE: For emergency handling of spills and as a matter of good operational policy it is recommended that disposal equipment and materials be readily available and that all who may have to use them know where they are stored. Section VII lists essential equipment and materials and suggests minimum quantities required.
CMA 045630
SECTION III.
CHART HEADINGS DEFINED
Substance/Formula Substances are listed alphabetically by "common" names. Substances which are crossreferenced (e.g. Acetal, see 1,1-Diethoxyethane) are not included in the sequence numbering.
Waste Disposal Procedure (See VI) The number con tained in this column indicates the recommended waste disposal procedure as correspondingly numbered in Section VI.
TLV (ACGIH) PPM (mg/M3) This column lists Threshold Limit Values as recommended by the American Confer ence of Governmental Industrial Hygienists. TLV's are given in parts of vapor or gas per million parts of air by volume at 25 C. and 760 mm. Hg pressure or (in paren theses) in milligrams of particulate per cubic meter of air.
A threshold limit value refers to air-borne concentrations of substances and represents conditions under which it is believed that nearly all workers may be repeatedly exposed, day after day, without adverse effect. The ACGIH advises that threshold limits should be used as guides in the control of health hazards and should not be regarded as fine lines between safe and dangerous
concentrations. For further information contact ACGIH at 1014 Broadway, Cincinnati, Ohio 45202.
N.F.P.A. The three columns, Health, Fire and Reactivity refer, in most cases, to a numerical system for the Identi fication of the Fire Hazards of Materials (NFPA No. 704M) developed by the National Fire Protection Asso ciation. The numbers given in these columns can be found in NFPA No. 49 Hazardous Chemicals Data and NFPA No. 325M, Properties of Flammable Liquids, Gases, Solids. In a few cases another source is indicated, e.g., a numeral followed by a subscript S refers to Dangerous Properties of Industrial Materials by N. Irving Sax.
Sp. Gr. (Specific Gravity). Specific gravity is expressed in grams per milliliter, or density relative to water.
Vap. Dens. (Vapor density). Vapor density is the relative density of a vapor or gas compared with air expressed as 1.0.
FI. Pt. (Flash Point). The flash point of a liquid is the tem perature at which it gives off vapor sufficient to form an
PAGE 6
CMA 045631
CHART HEADINGS DEFINED--Continued
ignitible mixture with the air near the surface of the liquid. The flash point figures in the chart represent closed cup tests except where the open cup flash point is designated by the initials "oc" following the figure.
ignit- Temp. (Ignition Temperature). The ignition tempera ture of a substance, whether solid, liquid, or gaseous, is the minimum temperature required to initiate or cause self-sustained combustion independent of the source of heat.
Flam. Limits % (Flammable or Explosive Limits in air). In the case of gases or vapors from flammable mixtures with air or oxygen, there is a minimum concentration of vapor in air or oxygen below which propagation of flame does not occur on contact with a source of ignition, and also a maximum concentration above which propagation of flame does not occur. The concentrations (expressed in % by volume) between which propagation can occur are known as the lower and upper flammable (or explo sive) limits.
B.P- (Boiling Point). The boiling point of a liquid is the temperature of the liquid at which its vapor pressure equals the atmospheric pressure.
M.P. (Melting Point), Expressed as C and (F).
Sol. in H^O g/IOOg (Solubility of the substance in grams when dissolved in 100 grams water at room tempera ture).
The statement "insol." is used for zero solubility, e.g. cuprous cyanide and calcium carbide.
"si. sol." means less than 5 grams soluble in 100 grams water, e.g., bromine and benzoic acid. "sol" means 5 to 50 grams soluble in 100 grams water, e.g., ethylene and barium nitrate. "v. sol." means over 50 grams soluble in 100 grams water, e.g., potassium carbonate and ethyl fluoride. "so" means soluble in all proportions, e.g., sulfuric acid and acetone.
Superscripts indicate the centigrade temperature at which the amount stated (in grams) is soluble in 100 grams of water. For example, .52ir' indicates that .52 grams of this substance will dissolve in 100 grams of water at 15C.
Misc. Ref. See bibliography (Section VIII).
CMA 045632
SECTION IV.
Abbreviations
Note: The "Misc. Ref." columns in the charts (see Section V) list sources of information. For explanations of these abbreviations and names of publications, see Section VIII.
Other abbreviations used in charts
ace. -- acetone
ale. -- ethyl alcohol
atm. -- atmospheres of pressure
bz. -- benzene
CCI4
-- carbon tetrachloride
CAR
-- carcinogenic--Only chemicals listed in 1968 as carcinogenic by the Department of Health of the State of Pennsylvania are marked CAR.
chi. -- chloroform
CS2 -- carbon disulfide
dec. -- decomposes
exp. -- explodes
h -- hot
insol. -- insoluble
iso. -- isomeric
m. -- meta
MeOH -- methyl alcohol Misc. Ref. -- Miscellaneous References
mm -- millimeters of mercury n -- normal
o -- ortho
org, sol. -- organic solvents
Dr -- para
sec -- secondary
subl.
-- sublimes
sol. si. sol. tert.
-- soluble -- slightly soluble -- tertiary
v. sol.
CO
-- very soluble "" soluble in all proportions
< -- less than
> -- greater than a m-- alpha
p -- beta y -- gamma
PAGE 8
CMA 045633
SECTION V.
REFERENCE CHARTS
Alphabetical Index of Chemical Substances
substance/formula ^j^^Aean*phttwn Ci2Hl0
Waste Dis posal Pro cedure
(See VI)
TLV (ACGIH)
PPM
(mo/M3)
N. F. P. A. Health Fire React.
18 -
Acetal see 1,1 Diethoxyethene
Sp. Gr.
1.02
Vap. Dens. (Air=1 >
FI. At. C <F|
Ignit. Temp,
C
(FI
Flam. Limits
%
B.P. C lF)
- 278 (532)
M.P. cC lF)
96 (205)
Sol. in HjO
9/IOOg
Insol,
Other Solvents
bz. chi.
Misc, Raf.
2 Acetaldehyde ` CH3CHO
3 Acetic Acid ' CH3COOH
4 Acetic Anhydrida (CH3C0)2O
5, Acetone CH3COCH3
6 Acetone Cyanohydrin ' |CH3>2CtOH)CN
7. Acetonitrile CH3CN
Acetyl Acetone, see 2,4-Pentanedione
g. Acetyl Bromide CH3COBr
9. Acetyl Chloride CH3COCI
10. Acetylene c2h2
Acetylene Dichloride, ^MCe 1,2 - Dichjoroethylene
2 200 2
4
2
.78
1.52
-38
185
4-57
21 -124
ce ale., bz. BDH, MCA
(--36)
(365)
(69) (-19D
24a 10 2
2
1
1.05
2.1
43 (109)
426 (800)
4-16
118 (244)
17 (61)
00
org. solv.
MCA, AIA,
NSC, NTTC. BDH,
24a
52
2
1
1.08
3.5
54 (129)
380 (716)
3-10
140 (284)
-73 (-99)
a
ale., chi.
MCA,SDH
18 1000
3 0 .79 2.0 -18 538 3-13 56 -94
MCA, AIA,
(0) (1000)
(133) (-1371
00
ale., bz.
NSC, BDH,
NTTC
14
10 4
1
2
.93 2.9
74 688
(165) (1270)
82 (180)
-19 (--2.2)
v.sol
org. solv.
BDH, MC8, MCA
14 40 3 3 3 .79 1.4
6 524
80 -41
BDH,
(43) (975)
4-16
(176)
(-42)
00
ale., chi.
MCB, MCA
la 5 3 3 2
la 5 3 3 2
IS (.1) 1
43
1,6 1.1 2.7
.91 .9
- 77 -96
(170) 1-141)
dec. bz., chi.
BDH, MCB
4 390 (40) (734)
51 (124)
-112 (-170)
dec.
ace., bz. chf,
BOH,MCB
335 (635)
3-82
-83 (-118)
sub!.
s|. sol. ace., bz,
MGB, NSC
PAGE 11
CMA 045635
SUBSTANCE/FORMULA
k Acetylene Tetrabromide, 1 see Tetrabromoethane
Acetylene Tetrachloride, see Tetrachloroethane
Acetylene Trichloride, see Trichloroethylene
11. Acetyl Peroxide {CM3C01202
Acid Chromate Solution, see Cleaning Solution
12 Acridine C13H9N
13 Acrolein CH2=CHCH0
14. Acrolein Dimer (CH2=CHCHO)2
IB Acrylic Acid CH2bCHC00H
16 Acrylonitrile ch2=chcn
17 Adipic Acid COOH (CH2)4C00H
Waste Dis posal
Pro cedure (See VI}
TLV (ACGIH)
PPM
Img/M'3}
N. F. P. A,
Health Fire
r
React. 1
Sp. G,
Vap. Dens. (Air=1)
FI, Pt. 6C (F)
i^ ;
'1 '
ill;
1!1
1! 1!
1
i
i 22b |
1
2
4 i 1,2
4.07
i1 !!
1S
Ignit. Temp.
*C
(F)
Flam, Limits
%
8.P.
C (F)
63 exp (145)
1
M.P. C <F)
Sol. m H2O
g/IOOg
Other [
Solvents
Misc, Ret
30 (86) si. sol.
1
CCI4, ale. j MCB
I
5 1 *s _______ 1I_______
2 .1
3
3
2 3\ 2
24a -
3
j
2!
1
14 20
4|
3j
24a Is ! 's
- 1 1.005 |
3 .84
1.9
-26
278
(-15)
(532)
1 1.1
i 48
; (118)
2 1.05
2.5
52oc! 429
(126) | (804)
_____ _L_____ ^
2 .81
1.8
Ooc 481
(32) (898)
1.4 191 422
(376)
(792)
345 (653)
110 (230)
si. SOI.
ale., bz., CS2
53 -87 3-31 (127) (-125) v sol
ale
151 (304)
142 (288)
12 (54)
<w ale.
3-17
77 (171)
-83 sol. (-117)
ale.
267 (513)
153 (307)
si. sol.
ale.
MCA. BDH, AIA,NSC
BDH MCA. BDH, AIA. MCB, NTTC AIA
18. Adipomtrile CN(CH2)4CN
14
3S 2S
.97
93
(199)
295 (563)
2.3 (36) si. sol. ale,, chi.
Aerozine 50, see Hydrazine
"AGE 12
CMA 045636
SUBSTANCE/FORMULA
,9. Aldrin Ci2Hsc|6
20. Alizarin Oyts C14H8O4
21 Allene CH2'C"CH2
2?, Ally! Acetate CH3CQ2CH2CHCH2
23. Allyl Alcohol ch2=chcnzoh
24 Allyl Amine ch2chch2nh2
25 Allyl Bromide CH2CHCH2Br
26. Allyl Chloride CH2CHCH2CI
27 Allyl Chloroformate CH20HCH2CO2Cl
Allylene, see propyne
28. Allyl Glycidyl Ether C6h10C>2
29. Allyl Iodide CH2CHCH2I
Waste Dis* posai Pro* cedure
(See VI)
TCV (ACGIHI
PPM
Img/M3)
N. F, P. A. Health Fire React.
Igmt.
Vap.
FI. Ft. Temp. Flam,
B.P,
Sp. Dens. C
C
Limits
C
Gr. (Ar=1) (F>
|F)
%
(F)
M.P. C (F)
Sol. in HjO
g/100g
Other Solvents
Misc. Ref.
4b (.25)
3
18 "s 18
18 % 18 2 3
7a 3 4b 3
4b 1
3
4b .1
3
10 -
*St
31 31 31 31 31
66 (150)
104 (219)
insol
ale., bz,, ace.
1.8
.93 .85 2.0 .76 2.0 1.4 4.2
2loc, 374 (70) (705)
21 378 (70) (713)
3*18
-29 (-20)
374 (705)
2*22
-1 295 (30) (563) 4-7
.94 2.6
-32
(-26)
392 (738)
3-11
1.1 4.2
31
(88)
430 (806)
289 (562)
sl. sol.
bz., CS2/ ale.
-34 -136 (-30) (-213)
_
103 (217)
1 sl sol. ! ale.
MGB SDH
97 -129 (207) (-200)
" | ale.
SDH, MCA
58 (136)
^ \ a(c,,chl.
MCB
70 -119 tnsol (158) (-182)
ale., chi. CS2, CCI4 BDH, MCB
45 (113)
-136 insol. (-213)
ale., ace., bz.
BDH, AIA, MCB. MCA
110 (230)
MCB
16 10
%
4b 2
3s 2s
.97 1.8
57 (135)
5.8S
154 (309)
-100 sol. (-148)
ace.
102 (216)
-99 insol. (-1461
ale., chi.
MCB
PAGE 13
CMA 045637
SUBSTANCE/FORMULA
' 30. Ally1 Propyl Disulfide C3H5S2C3H7
31. Alum KA!(S04>2 12H20
32. Aluminum A)
Waste Dis posal Pro
cedure (See VI)
TLV (ACGIH)
PPM
Imfl/M3)
N. F. P. A. Health Fire React
13 2 % 2S
11 Is
27e 0 1 1
33. Aluminum Alkyls RALX
3
34. Aluminum Borohydride Al (8H4)3
17
3S
35- Aluminum Bromide Al Br3
1b
36. Aluminum Carbide AI4C3
37. Aluminum Chloride AICI3
25 1b
30 2
38. Aluminum Ethoxide (C2H5)3AI03
3
Aluminum Lithium Hydride, see Lithium Aluminum Hydride
39. Aluminum Nitrate AI|NO3)3.9H20
11
2S 2S
40. 2-Amino-Diphenylene Oxide C12H9NO
6
CAR
Ignit.
Vep.
FI. Pt. Temp. Flam.
S.P.
Sp. Dens. C
*C
Limits
c
Or. |Air=1) (F>
(F)
%
(F)
M.P. "C <F)
Sol. in H2O
g/IOOg
Other Solvents
Mise. Ref.
MCB
1.7 2.7 -
.8 <0 32l
2.4 2.4
200 (392)
92.5 (198)
11.420
2056 (3733)
660 (1220)
insol.
NTTC Al A
45 (113)
-65 (-85)
Al A, NSC
263 (505)
98 dec. (208)
ale., ace., CS2
BDH, MCB
dec. 1400 dec. (2552)
183 (361)
194
(381) at 5 atm
69.915
ale., CCI4
205 (401)
134 dec. (273)
si. sol.
MCA, BDH, NSC,
150dec.
70
(302)
(158)
63.725
CS2 ale., ace
94 (201)
PAGE 14
CMA 045638
substance/formula
^^^H*Amtnoathanol, Ethanolamine
41, Aminoethyltthanol Amina ' NH2(CH2)2NH(CH2J2OH
42- 2-AminOpyridin* CgHgNj
42. Ammonia, Anhydrous NH3
44 Ammonia, AQUA IMH4OH
45 Ammonium Dichromite (NH4)2Cr207
4$. Ammonium Fluoride nh4f
Ammonium Hydroxide, see Ammonia, Aqua
47, Ammonium Nitrate NH4NO3
48, Ammonium Perchorate NH4CIO4
49, Ammonium Persulfate (NH4)2S20g
50. Ammonium Sulfamate NH4OSO2NH2
Waste Dis
posal Pro
cedure (See VI)
TLV (ACGIH)
PPM (mg/M3)
N. F, P. A. Health Fire React.
Ignit
Vap.
FI. Ft. Tamp. Flam.
B.P.
Sp. Dens. C
*C
Limits
"c
Gr. (Air=1) (F)
(F)
%
<F)
M.P. "C <F>
Sol. in HjO
g/lOOg
Other Solvents
Misc. Ref.
7a 5 .5 10 50 10 50 12e ui 11
2
1
0
1.03
3.65
129
368
(265)
(695)
244 (471)
v, sot. ale,
NTTC
%
3 1 0 .77 .59
2S *S
2.2
204 (399)
58 (136)
651 (1204)
16-25
-33
--78
(-28) (-108)
16-25
-72 (-98)
sol. org.solv.
89.9 org. solv, sol.
MCA, NSC, AIA, NTTC, MGB
MCA, BDH,
3s 2S
iSOdec
15
(356)
31
ale.
MCA
% 1.0
-
subl.
100
ate.
11 2 1 3 1.7
12a 2 1 4 1.9
12a is 2s 19 (15) is 's
19
exp.
210dec. 169
(410)
(336)
118
ale., ace., MeOH
NSC,NTTC
-
dec.
10.70
aca
MCB
- 120dec. 58.2 dec.
(248)
h2o'
160dec. 125
(320)
(257)
16610
PAGE 15
CMA 045639
SUBSTANCE/FORMULA
^r51. Ammonium Sulfide (NH4)2S
Waste Dis
posal Pro cedure
(See VI)
TLV (ACGlHl
PPM
(mg/M^)
N. F. P. A. Health Fire React.
23 2S
52. Ammonium Thiocyanate NH4CNS
11
'St
53. Ammonium Vanadate NH4VO3
27i
54. n-Amyl Acetate CH3COO(CH2)4CH3
18 100 1 3 0
55. i$o-Amyl Acetate
18
200
1
3
0
CH3COO{CH2)2CH(CH3)2
56. sec-Amyl Acetate CH3C02CH2CHCH3C2H5
18 125 1
3
0
57. n-Amyl Alcohol CH3(CH2}4OH
18 100 1
3
0
58 iso-Amyl Alcohol (CH3}2CH(CH2>20H
59. Amyl Alcohol CH3CH2C{CH3)OHCH3
18 100 1 1 2
!118 100
3
0 0
60. Amylamine CgH-|iNH2
7a
33
0
61. Amyl Bromide CgHiiBr
4b
13
0
62. Amylene CgH-IQ
1_____________________________________1
18
i4
0
Ignit.
Vap.
FI. Pt, Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Airsl) (F)
<*F)
%
lFI
M.P. C tFI
Sol. in h2
g/IOOg
1
1
Other Solvents
Misc. Ref
dec. v. sol. ale., dec
BDH
h2o1Q0
1.3
I70dec. 150
128 ale., ace
(338)
(302)
2.3
200dec.
,5215 dec.
(392)
HjO100
88 4.5
25
379 1-7.5 148
-79 sl. sol. ale.
(77) (714)
(298) (-110)
BDH,NSC
.88 4.5
23 380 1-7.5Q 142 (73) (715) @212 F (288)
ale. BOH,NSC
.86 4.5
32 (89)
1-7.5
121 (250)
ale NSC
.82 3.0
33
300
1-10
137
-79
insol.
ale.
(91) (572)
(279) (-110)
BDH,NSC
81 3.0
43 347 '-9o 132
(109)
(657) @212 F (270)
aic. BDH
.81 3.03
19
437
1-9 102
-12
sl. sol. ale.
(66) (819)
(216)
(10)
BDH
.8 3,0
7oc. (45)
103 (217)
-55 (-67)
QQ ale.
1.22
32 (90)
-54 (130)
-95 (-139)
insol.
ale
.66 2.4
--2 273 1.5-9 30 -165 insol. ale.
(28) (523)
(86) (-265)
BDH
PAGE 16
CMA 045640
substance/formula
Ether ^^Bci()H220
64 iso-Amyl formats ' hcooCshh
65, Amyl Mercaptan CH3(CH2>4sh
66 iso-Amyl Nitrate C5HHNO3
67. Amyl Nitrite CH3(CH2UN02
68, Aniline C6H5-NH2
69. o-Art>saWehyde C8h82
70 o-Amsidine CH3OC6H4NH2
71 p-Anisdine ch3oc6h4nh2
72. Amsole C6h5OCH3
73. Anthracene C6H4(CH)2CeH4
74. 2'Anthramine C14H11N
Waste D* posal Pro* cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
15 2 0
Sp. Gr.
.74
Vap. Dens. <Aip=1)
FI. Ft. C <F)
5,46
57 (135)
Ignit.
Temp. C lF)
Flam. Limits
%
171 (340)
8.P. C <F>
190 (374)
j!
M.P. C tF)
H2O g/100g
Other 1 Solvents 1 Misc. Ref
-70 (-94)
msol.
ale.
IS 1 3 0 .89 4.0 26 (79)
131 -74 si. sol. (267) (-10D
ale
BDH
13 20 2 3 0 .84 1.1NFPA 18 (65)
4a 1 2 2 .99 52 (125)
127 (261)
-76 (-105)
insol.
152-7 (306-15)
si sol
ale, |
t--
ale. BDH
4a 1 2S 2 .85
10 209
104
si. sol
ale.
BDH
(50) (408)
(220)
55
3
2
0 1.02
3.22
70oc
770
184 -6
sol.
alc.r bz
NTTC,
(158)
(1418)
1.3
(3631
(21)
MCA. BDH
2
2 1 0 1.12
118
|244)oc
250 (482)
2.5 insol. (36)
ale
5 (.5)
2S
224 (435)
si. sol
ale.
BDH
5 (.5)
2S
243 (469)
si. sol.
ale.
BDH
15
1
2
0
.995
3.72
52oc.
-
154 -37 insol.
ale.
(126)
(3091 (-35)
18
2S
1.25
6.15$
121
540
340 217 insol.
bz
(250) (1004)
.6- (644) (423)
5 car
236 (457)
insoi.
ale.
PAGE 17
CMA, 045641
SUBSTANCE/FORMULA
" 75. Antraquinone C6H4(CO)2C6H4
Waste
Dis posal
Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N, F. P. A. Health Fire React.
18 's TS
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
c
Gr. (Air=1) (F)
<F)
%
<F)
M.P.
C (yF)
Sol. in H2O
g/IOOg
Other Solvents
1.44
7.16s
185 (365)
380 (716)
286 (547)
insol.
ale. <sl. sol.)
Misc. Ref
76. Antimony Sb
27a (.5)
2s 6.68
1380 (2516)
630 (1166)
insol.
77 Antimony Hydride, see Stibine
77 Antimony Pentachloride SbCIs
27d (.5)
3S
2.34
140 28 dec.
(284)
(37)
CHCI3
BDH
78. Antimony Pentasuifide Sb2S5
27d (.5)
3
1
1
75dec. insol. (167)
79 Antimony Trichloride SbCl3
27d (.5)
3s
3,14
223 (433)
73 (163)
6020
ale., bz., ace., chi.
BOH,MCA
80. Antimony Trioxide Sb203
81. Argon Ar
27d (.5) 26
3S
5.2 1.8
- 1550 656 si. sol. (2822) (1213)
-186 -189 (-303) (-308)
4
MGB
82. Arsenic A$4
27d (.51
3S 2S
5.7
615subl insol. (1139)
NSC
83 (7-Arsenic Acid H3As04y3H20
27d (.5)
3s
~2
160dec 35.5
(320)
(95.7)
16.7
ale.
BDH
84. Arsenic Trichloride ASCI3
27d (.5)
3s
2.16
6.25s
63 (145)
-9 (15.8)
dec.
ale.
BDH,NSC
85. Arsenic Trioxide As;03
27d (.5)
i_____________________
3AGE 18
3s
3.74
193subl 1.22 (379)
ale.
BDH, MCA, NSC
CMA 045642
SUBSTANCE/FORMULA
Waste Dis
posal Pro cedure (Sea VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Haalth Fire React.
Ignit,
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dans, C
C
Limits
C
Gr. (Air=1) (F)
<F)
%
tF)
M.P. C lF)
Sol. in
HjO g/lOOg
Other Solvents
Misc. Ret
Arylem, Savin
87. AphH
gg, Auramine [|CH3)2NC6H4]C:NHCI
~2T p-Lv
5
0
0 1.1
204+ (400)
485 (905)
>371 >700
267 si. sol. (513)
ale., chi
NTTC
gg, Azindina (CH2)2nh
gO. 2,2'-Azonaphthalene Cioh7N:NC10h7
91. Axoxybenzene C6HS(NON)C6H5
5 .5
3
3
3
.83 1.5
-11
322 3.6*46
56
-72 oe org. solv,
(121 (612)
(133)
I--98)
2Q8solv, insol.
hot bz.
3 (408)
8 !S 1.16
87 (189)
36 insol. (97)
ale.
92. Barium 0a
93. Barium Chlorate Ba(CI03>2-H20
27h (.5)
2S
2S
3.5
12a 1,5) 1st St 'St
1140
725
(2084) (1337)
120 (248)
dec. 27 40
ale. ace , ale.
94. Barium Chloride BeCl2
27h (.5)
2S
os
2.8
1560
925
(2840) (1697)
37,526
95. Barium Hydroxide 8a(0H)2'8H20
96. Barium Nitrate Ba(NC>3)2
27h (.5) 27h (.5)
2S 1
0
3.18 1 3.2
780 78 (1436) 1172)
6.6'5 ale.
- 592dec. 8.720 (1098)
97. Barium Peroxide
27h (.5)
1
0
1 4.98
-------------------------------------------
800 (1472)
450 (342)
sl. sol.
PAGE 19
i
j
CMA 045643
SUBSTANCE/FORMULA
^ 98. Batteries, Dry Celb
99. Batnrlts. Wat Call]
100. Banzai Chloride c6h5chci2
101. Benzaldehyde C5H5CH0
102. 1,2-Benzanthracene Ci8H14
103. Benzene c6h6
Benzene Monochloride, see Chlorobenzene
104. Benzene Sulfonic Acid c6h5so3h
105. Benzene Sulfonyl Chloride CgHgSC^CI
106. Benzidine (C6H4)2(NH2)2
107. Benzoic Acid C6H5COOH
108 Benzonitrile C6H5CN
2,3'Benzophenanthrene, . see 1.2-Benzanthracene
PAGE 20
Waste
Dis posal
Pro* cedure (See VI)
TLV
(ACGIH) PPM
(mg/M3)
N, F. P. A. Health Fire React,
26
27a
4b
2 220
18 car
18 25 2
3
0
Ignit.
Vap.
FI. Pt. Temp, Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Air=1) (F>
<F)
%
(F)
M.P. "C (F)
Sol. in H2O
g/IOOg
Other Solvents
Mise. Ret.
1.26
1.04
3.7
.88 2.8
64 (147)
192 (378)
-11 562 (12) (1044)
1.4-8
NSC
205 (401)
-- 16 (3.2)
insol.
ale.
BDH
178 (352)
-56 (-69)
si. sol.
ale.
BDH
435 (815)
162 (324)
insol.
bz.
80 (176)
5.4 si. sol. ale., ace. (41)
Al A, BDH, NTTC, MCA
4c
1.
5 car 24a 14
%
3$ Is is 3S -
-
525dac. sol.
ale.
BDH
(977)
-
-
-
252
14.5
insol.
hot ale.
BDH
(485)
(58)
1.25
402 (756)
128 (262)
si. sol.
ale.
1.32
"Zs
121 574 (250) (1065)
249 (480)
122 (252)
si. sol. ale,, bz.
1.01
exp.
-13
al. sol. ale.
BDH
(376)
(8.6)
CMA 045644
SUBSTANCE/FORMULA
^^^^Bepzoqutnone, Quinone
109 eamOtricMorida ' C6H6CCl3
no Benzotrrfluoride C6H5Cf3
111 Benzoyl Chloride c6h5coci
H2 Benzoyl Peroxide ' (C6HsC0)202
3,4-Benzophenanthrene see 1,2-Benzanthracene
113, Benzvl Acetate CH3CO2CH2C6H5
114. Benzyl Alcohol C6H5CH2OH
115, Benzyl Amine C6H5CH2NH2
116. Benzyl Benzoate C6H6C02CH2C6H5
117. Benzyl Bromide C6H5CH2Br
118. Benzyl Chloride c6H5c h2ci
Waste Dis posal Pro cedure
(See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P,
Sp. Dens. C
C
Limits
C
Gr. (Air=1) <FI
(F)
%
(F)
M,P.
C (F>
Sol. tn H2O
9/IOOg
Other Solvents
Misc. Ret
4b 2S 4b 4 3
la 3 2
22b (5)
1
4
1.38
6.8S
0
1.19
5,04
12
(54)
1
1.22
4.88
72
(162)
4 1.33
80 (176)
214 (417)
-5 insol. (23)
ale., bz.
101 (214)
-29 (-20)
insol.
ale.
197 (387)
-.5 (31)
dec.
bz,, CS2
ex. 106 $[. sol. bz.. ace. (223)
SDH
BDH
BDH
BDH, MCA. NFPA
18
1
1
0
1.06
5.is
102
461
214 -51.5 si. sol. ale.
(216)
(862)
(4171
(-61)
18
2
1
0
1,04
3.7S
101
436
206
-15.3
4
ale., ace.,
(213)
(817)
(403)
(4)
chi.
S%
,98 63 (145)
185 (365)
m ale.
BDH
18
1 1 0 1,11 2.3s 148 481
323 21 insol. ale., ace.,
(298)
(898)
(614)
(70)
bz., chi.
4b 3S
1.44
5.8s
198 (388)
-4
insol.
ale.
(25)
BDH
4b
2
2
1
1,10
4.36
67
585
1.1-
179
-39
insol. ale., chi.
BDH, MCA
(153) (1085)
(354)
(-38)
PAGE 21
CMA 045645
SUBSTANCE/FORMULA
119. Benzyl Chloroformate CICO2CH2C6H5
120. 8enzyl Cyanide C6H5CH2CN
Waste Dis
posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
4b 2S
14 3s
Ignit,
Vap.
FI. Ft. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Air=1) <F)
(F)
%
(F)
M.P. C (F)
Sol. m HjO
g/lOOg
Other Solvents
Misc. Ret
103 (217)
dec.
dec., ale.
0DH
1.02
234 (453)
-24 (-31)
insol.
ale.
SDH
Benzal Chloride see Benzylidene Chloride
121. Benzyl Mercaptan C6H5CH2SH
13 1
122. Beryllium Be
123. Beryllium Salts
-Mb' ^CL,
(.002)
28g (.002)
124. Biphenyl <C6H5>2
125. N-4-Biphenylacetohydroxamic Acid
18 5
.2
126. 2'Biphenylemine C6H5C6H4NH2
5
2S 41 St 21
2
1,06
*-3s
70 (158)
194 (381)
insol.
ale., CS2
1 1.86
2970 (5378)
1278 (2332)
insol.
AIA, NSC
AIA. BDH
0
1.2
6.3s 113 540 6-5*80 256
70
insol.
ale.
(235) 11004) @232 F (493) (158)
171 (340)
0
1.16
5.8
452 (846)
299 49 (570) (120)
insol. ale., bz.
Biphenyl, 4,4'Diamino, see Benzidine
127. Bismuth Chloride BICI3
128. Borax, Anhydrous N32B407
129. Boric Acid H3BO3
PAGE 22
fill
3S -
4,75
-
- 441 230 dec. ale., ace. (826) (446)
11 2S 3s - 1.72
-
1575
741
1.06
(2867) (1366)
AIA
25b (15)
2S
- 2.46 -
-
1860
169
6.330 ale., MeOH AIA
(3380) (336)
CMA 045646
substance/formula ^^10h170H
Waite Oiv posal
Pro cedure (See VI)
TLV (ACGIHI
PPM
<mo/M3)
N. F. P. A. Health Fire React.
18 2 2 0
131. Boron B
26 2S 2S
<32 Boron Fluorida-Ethyl Ethar Complex
C4HlO0F3<)
21 1 3s. 2St Ost
Boron Hydrid, see Di-,Penta-, or Deca-Boranes
Vap.
FI. Pt.
Sp. Dent. C
Gr. (Ain=1) TF>
1.01
5-31 s
66
i (15T)
l9ht Temp.
C
( F)
Flam, Limits
%
B.F.
C (F)
M.P. C <F)
Sol. in g/IOOg
Other Solvents
212subl insol. (413)
ale., ac,
Mtsc. Ret
3.33
2550 2300 (4622) (4172)
insol.
AIA
1.1 64oc. (147)
-110 -128 (-166) (--198)
so).
Al A
133. Boron Oxide B2O3
24b 15
2S
134 Boron Tribromide BBr3
21
2s
135 Boron Trichloride ' BCI3
21
2S
136. Boron Trifluoride bf3
21 1 3 0 1
137. Boron Trifluoride Complexes with Acetic Acid end Mentanol
21
%
2.46
2.65
1.35
4.03s
2.99
I860 13380)
460 (860)
sol.
92 (196)
-45 (-49)
dec.
-
12.5
-107 dec.
(54) (-161)
-99 (-146)
-127 (-197)
106
AIA
a)c., CCI4 AIA
ale. AIA BOH, MGB
ale AIA, MGB
AtA, BDM
138. Bromic Acid HBr03
139. Bromine B<2
140. Bromine Pentafluoride BrFs
12e
12* .1
4
21 3
3S
(MGB)
2St 3.19
0 1 3.1 5.5 -
4Rb
2.48
6.05S
lOOdec V. sol. (212)
BDH
-
59 (138)
-7 (19)
4.20
ale., CS^ chi.
AIA, BDH. NTTC,
MCA, NSC
40 -61 (104) (-78)
dec,
MGB
PAGE 23
CMA 045647
SUBSTANCE/FORMULA
| M41. Bromine Trrfluoride
BrF3
142. Bromo-Acetic Acid CH3BrC00H
143. Bromobenzene C6H5Br
1-Bromobutene, see Butyl Bromide
144. Bromochloromethane CH2BrCI
145. Bromoethene CH3CH2Br
146. Bromoethylena CH2CHBr
147 Bromoform CHBr3
Bromomethane, see Methyl Bromide
Bromopentane, see Amyl Bromide
Bromopropane, e Propyl Bromide
3-Bromopropene, see Ally 1 Bromide
Waste Dis
posal Pro
cedure (See VI)
TLV IACGIHI
PPM (mg/M3)
N. F. P, A. Health Fire React.
Z1 1 %
4Rft
Sp. Gr.
2.84
Vap. Dens, (Air=1)
FI. Ft. C
(F)
Igmt. Temp.
c (F)
Flam. 1 mits
%
B.P. C <F)
- 127 (261)
M.F. C <F|
Sol. in
H2O g/IOOg
Other Solvents
Misc. Ret
8.8 (48)
dec.
MGB
4c 2St
1.93
208 (406)
49 (120)
00 ale.
BOH
4b
2 2 0 1.52 5.4 51 566
155 -31
msol, ale., bz.,
BDH
1124) (1051)
(311) (-24)
chi., CCI4
26 200
1.99
4.46s
4b 200 2
3
0
1.46
3.76
4b 500 2S (MGS)
26 .5 2s
% -
1.49 - 2.89
69 (156)
-88 insol. (-126)
org. sot.
511 (952)
6.7-11.3
38
(100)
-119 si. so). (-182)
ale.
-
15.8
-138 insol.
ale.
(60) (-216)
150 (302)
-6 (21)
si. sol.
ale., bz., chi.
BDH BDH
PAGE 24
CMA 045648
SUBSTANCi/FORMULA
3.0romopyn, se Prooargyl Bromide
14g Q-Bromotolune CH3C6H4Br
149 Bromotrifluoromethana ` CBrF3
150. Bronze Alloy
151. Brucine C23H26N204
152- 1,3-Butadiene CH2=ICH)2s*CH2
153. n-Butane C4H10
154. 190`Butane CH(CH3)3
n-8utanol see n-Butyl Alcohol
Butanone, see Methyl Ethyl Ketone
155. 1-Butene CH3CH2CH=CH2
156. 2-Butene CH3CH'CHCH3
2-Butoxyethanol, see Butyl Cellosolve
Waite Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A, Health Fire React.
Jgnit.
Vap.
PI. Pt. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Airs=1) (F)
(F>
%
(F)
M.P. C <F>
Sol. in H2O
ftfIDOg
Other Solvents
Misc. Ret.
4b 2 2
26
1000
-
27a 6 (.03)
0 3s
18
1000
2
0 4
18 1 4
18 1 4
0
1.42
5.9
79
(174)
181 (358)
-27 (-17)
insol.
ale., bz.
-59 (-74)
-168 (--270)
si. sol.
chi.
1
- 178 si.(. ale., chi. (352)
2
1.88
1.97
<-7
429
2-11.5 -4.7
-109
insol.
org. sof.
MCA
(NFPA) (<20) (804)
(23) (-164)
0
,60
2.04
-60
405 1.9-8.5 -.5
-138 v. sol. ale., chi.
NTTC
(-76)
(761)
(31) (-216)
0 .56 2.01
462 (864)
1.8-8.4 --12 (10.4)
-160 (-256)
sol.
ale.
18
1 40
1.9
384 1.6-9.3 -6.1
insol.
ale.
(723)
(21)
18
1 40
1.9
- 324 1.8-9.7 1.1
- insoi. ale.
(615)
(34)
CMA 045649
SUBSTANCE/FORMULA
|
157. n-Butyl Acetate CH3COOC4H9
158. iso-Butyl Acetate CH3COOCH2CH<CH3)CH3
159. sec-Butyl Acetate CH3COOCH(CH3)CH2CH3
160. tert'Butyl Acetate CH3COOC(CH3)3
161. n-Butyl Alcohol CH3CH2CH2CH2OH
162. iso'Butyl Alcohol CH3CH{CH3)CH2OH
163. sec-Sutyl Alcohol CH3CH2CH(OM)CH3
164. tert-Butyf Alcohol (CH3)3COH
165. Butylamine C4H9NH2
166. tert-Butylamine (CH3)3CNH2
167- iao-Butylamine (CH3)2CHCH2NH2
168. n-Butyl Bromida CH3(CH2)3Br
1
PAGE 26
Waste Dis
posal Pro-
cedure (See VII
TLV (ACG1H)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
18 150 1
30
18 150 1
30
18
200
1
3
0
18 200
18 100 1 3 0
18
100
1
30
18 50 1 3 0
18 100 1 3 0
7a 5 3 3 0
7a 5 3 4 0
7a 3 3 0 4b 2 3 0
Ignit
Vap.
F|. Ft. Temp, Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Airsl) (FI
(F)
%
(F)
M.P.
C <F)
Sol. in H2O
g/IOOg
Other Solvents
Mtsc. Rat.
.38 4.0
27 399 1.4-7.6 125
-76 si. sol. ale.
(81) (750)
(257) (-105)
SDH
.87 4.0
18 423 1.3-7.5 117
(64) (793)
(243)
-99 si. sol. (146)
ale.
BDH
.86 4.0
31
(88)oc
1,7- 112 (234)
insol. ale.
.87
95
insol.
ale.
MCA
(203)
.81 2.55
29 365 1.4-11 118
-89 sol.
ale.
(84) (689)
(244) 1-128)
.81
2.55
28
427
1.7-10.9 107
-- 108
10'5
ale.
(82) (800) @212 F (225) (-162)
.81 2.55
24 406 1.7-9J3 99.5 -115 12.5 ale.
(75) (763) @212 F (211) (-175)
.78 2.55 10 478 2.4-6 83 25 ale.
(50) (892)
(181)
(77)
BDH,MCA
BDH
BDH, MCA BDH, MCA
.76 2.5
-12 312 1,7-9.8
78
-50
00
ale.
(10) (594)
(172)
(-58)
BDH
.70 2.5
1-7-8$
45
@212 F (113)
-67 (-89)
ale. BDH
.73 2.5
-9 378 (16) (712)
66 -86 ale. (151) (-123)
BDH
1.28
4.7
18 (64)
265 (509)
2-6.6 0
101
@212 F (214)
-112 (-170)
.06
ale.
8DH
CMA 045650
SUBSTANCE/FORMULA
Callosolvii C4H9OCH2CN2OH
Waste Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
ImgW3)
N. F. P. A. Health Fire React.
18 50
2S 2S
i-tn n-Butyl Chloride CH3(CH2)3CI
4b
23
0
171 tert-Butyl Chloride
4b
23
0
(CH3)3CCI
172. tert*8utyl Chromate CgHigCr04
12a (.1)
3S
Butyl Ether, see Dibutyl Ether
173. n-Butyl Formate HCOOC4H9
18 2 3 0
174. iso-Butyt Formate HCOOCH2CH(CH3|2
18
-
175. n-Butyl Glycioyl Ether C4H9-0*CH2-CH^O-CH2
15 50
176. Butyl Hydroperoxide (CH3)3CQOH
22b
1 44
177. n-Butyllithium in Hydrocarbon solvents 177a,b,c, CH3(CH2)3Li
3
177a. In Heptane
3 500
-
177b. In Hexane
3 500
`
Ignit.
Vap.
FI. Pt. Tdmp. Flam.
B.P.
Sp. Dens. C Gr. (Airsl) (F)
C I'F)
Limits %
C (F>
M.P. C (FI
Other Solvents
.91 4.1g
61
(142)
1.1-12.7 171 (3401
-40 (-40)
00
ale.
.88 3,2
7
471 1.9-10.1 78
-123 .07
(45) (880)
(172) (-189)
ale.
.85 3.2 <21 (<70)
51 (124)
-27 (-17)
si. sol. ale.
Misc. Ret.
BDH BDH
.91 3.5
18 322 1.7-8
(64) (612)
.89 <21 (< 70)
.91 -
.86 21S solvent
27 (80)
107 --90 (225) (-130)
98 -95 (208) (-139)
164 (327)
dec.
6 (43)
si. sol. ale. 1.122 ale.
sol. ale., chi.
BDH MCA
.68
-4
223 1.2-6.7
98
-
(25) (433)
(209)
.69
-22
234 1.2-7.5
69
(-7)
(453)
(156)
org. sotv. MCA org. solv. MCA
PAGE 27
CMA 045651
SUBSTANCE/FORMULA ^^7c. In Pentane
178. Butyl Mercaptan CH3(CH2)3SH
Waste Dis posal Pro
cedure (See VI)
TLV (ACGIH)
PPM (mg/M3)
N. F. P. A. Health Fire React.
3 1000
13 10 2 3 0
IgniL
Vap.
n. Pt. Temp.
Sp. Dens. c
C
Gr. (Airs^l) ("FI
<F>
a |il
U.
8.P. c (F)
M.P. C (F)
Sol. in H7O
g/IOOg
Other Solvents
Misc. Ref
.70
-40
309 1.5-7.8
36
(-40) (588)
(97)
org,$olv. MCA
.84 3.1
2
(36)
98 (208)
-116 si. sol. (-117)
ale.
179. Butyl Methacrylate CH2C(CH3)COOC4H9
18
2
2
0 .89 4,8
52
(126)oc
163 (325)
insol. ale.
NTTC
180. Iiobutyl Methyl Ketone CH3C0C4H9
18 100 2 3 0
3.5
17 460 1.2-8
126 -57
(63) (860)
(259) (-71)
181. tert'Butyl Peracetate CH3C03C(CH3)3
22b 25
2
3
1 .93
27 (80)
182. tert-Butyl Perbenzoate C6H5C03C(CH3)3
22b
1 3 4 1.0
107 (225)
113dec. (235)
183. Butyl Peroxypivalate
(in 75% sol. of Mineral Spirits) (CH3)3C02C0C(CH3)3
22b
034
>68 (>166)
-19 (-2)
ale. BDH
Butyl Peroxytrimethyl Acetate, see Butyl Peroxypiualate
184. di-Butyl Phosphate (C4H90)2P0(0H)
185. tri-Butyl Phosphate (C4H9O3PO
186. p-tert-Butyl Toluene CH3C6H4C4H9
187. Butyl Vinyl Ether C4H9OCH-CH2
7b 1 7b 18 10 15
% 2S 23
.97 .85 2 .77 3-S --9
(16)oc
ale., ace.
289dec. <-ao .6 (552) (<-112)
ale., ace.
193 (379)
-52 (-62)
insol.
ace., bz., chi.
94
(201)
-92 (-134)
insol.
org. sol.
PAGE 28
CMA 045652
SUBSTANCE/FORMULA
Bigs. 1-Butyne W chcch2ch3
,89 n~ButyfiM*hy6e CH3CH2CN2CHO
140 iso*Butyreldehyde (CH3)2CHCHO
<91 n-Butyric Acid CH3(CH2)2COOH
192 iso-Butyric Acid (CH3)2CHCOOH
193. n-8utyrie Anhydride [CH3(CH2)2CO)20
194 T-Butyrolactone CH2CH2CH2COO
105. n-Butyronitriie CH3(CH2)3CN
196. Butyryl Chloride C3H7COCI
197. Cadmium Cd
198. Cadmium Chlorida CdC|2
199. Cadmium Oxide CdO
Waste Dis posal Procedura (See V))
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
IB 2S
ignit
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dans. C
C
Limits
C
Gr. (Air=1) (F)
(Fl
%
(F)
M.P. "C (SF|
Sol. in H2O
g/IOOg
Other Solvents
.67 8.1 -127 insol. ale. (46) (-197)
Misc. Ref,
2
2 3 1 .82 2.5 -6.7 230 2.5- 76 -89 4 ale.
BDH, MCA
(20) (4461
(169)
(-146)
2
23
.79
2.5
-40
254 1.6-10.6 64
-66 4
ale.
BDH, MCA
(-40) (490)
(147)
(-87)
24a
2 2 0 .96 3.0 66 452 2-10 164 -7,9 00 ale.
BDH
(151)
(846)
(327)
(17,5)
24a
'S 2S
.95 3.0 62 502
154
-47
2020
ale., ch|.
BDH
(144)
(935)
(309)
(-53)
24a 3 2 1 .97 5.4 88 307 198 -73 dec. dec., ale.
(190)
(585)
(388)
(-99)
18
2s
1.05
3.0s
98
(209)
206 (403)
-44 (-47)
00
ale.
14 5
.8 26 (79)
117 (243)
-112 si. sol. (-170)
ale., bz.
BDH
la
1.03
3.7S
<21
107 -89 dec, ale.
BOH
70)
(225) (-128)
27a (.02)
3g
2s
8.6
767 (1413)
321 (610)
insol.
27f (.2)
%
4,0
960 (1054)
568 (760)
14020 si. sol., aic.
27f (.1)
3s
8.2
*
1559
900 insol.
(2838) (1652)
PAGE 29
CMA 045653
SUBSTANCE/FORMULA
do. Calcium W Ca
Waste Dis
posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
3 (51
1
1
2
201. Calcium Arsenate Ca{As04>2
202. Calcium Carbide CaC2
27d 0) 25
% 14
2
203. Calcium Carbonate CaC03
26
204. Calcium Chlorate Ca(Cl03)'2H20
12a 2S 2S
205. Calcium Chloride CaCl2
206. Calcium Cyanide Ca(CN)2
207. Calcium Hydride CaH2
11
14 10
2
00
17 3S
208. Calcium Hydroxide Ca(OH)2
209. Calcium Hypochlorite Ca(CIOJ2
210. Calcium Oxide CaO
26 Zs 12a 2
26 (5)
0
2
211. Camphor Cl0H16
18 (2) 2 2 0
fc_____________________________________
FAGE 30
Ignit.
Vap.
FI. Pt. Temp, Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Air=1) (F)
(F)
%
(F|
M.P. C (F)
Sol. in HtO
g/lOOg
Other Solvents
Misc. Ref.
1.5
1240
842 dec.
si. sol.,
SDH
(1548) (2264)
ale.
3.6 1.45 .01325 (34.5)
2.2
2300
447 dec.
BDH,MCA
(4172) (837)
2.7 899 825 si sol. (1650) (1517)
2.71 2.15
100 (212)
178^
ale., ace.
AIA
<1600 772 K2912) (1422)
7520
ale., ace.
NTTC
350dec. dec. (662)
BDH, MCA, MCB
1.8
816 dec.
dec., ale.
BDH
(1501)
2.5 dec. 580 .180 (1076)
2.35
lOOdec. dec. (212)
3.25
-
2850 (5162)
2580 (4676)
.1310
BDH
.99 5.24
66
466 .6-3.5
209
175 si. sol. ace., ale.,
(151)
(871)
(408)
(347)
bz,, chi.
CMA 045654
SUBSTANCE/FORMULA
Caproic Acid C5H11COOH
Capryl Alcohol, see 2-Octanol
213 Capryieldhehyde CH3(CH2)6CHO
Caprylic Acid, see Octanoic Acid
Caprylic Alcohol, see 1-Octanol
214. Carbazole CqHANHCqH4
Carbitol, see Diethylene Glycol Monoethyl Ether
Carbolic Acid, see Phenol
215. Carbon, Black C
216. Carbon Disulfide CS2
217, Carbon Monoxide CO
Carbon Oxysulfide, see Carbonyl Sulfide
Waste Dis posal Pro
cedure <Sm VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
-36a"
210
Ignit.
Vap.
FI. Pt. Temp. Flam,
B.P.
Sp. Dens. C
C
Limits
6C
Gr. (Air=1) (F)
(F)
%
(F)
M.P. C (FI
Sot. in H^O
g/IOOg
Other Solvents
.93
4.0S
102
(2l5)oc
205 (401)
-5.4 (22)
1.120 etc.
Mijc. Ref
2
22
0 .8
4.5 52
-
168
(125)
(335)
org. solv.
6 's >s
MO
- - 355 245 Insol. alc,,
(6711
(473)
hot bz.
26 (3.5) is is
~2 -
- * -4200 -- 3680 insol. (-7592) (-6656)
9 20
2
3
0
1.26
2.6
-30
100 1-44
46
-112
.2
ale., ch|.
AIA, BDH,
(-22)
(212)
(115)
(-169)
MCA, NSC
18 50
2
4
0
1 .97 -
609 12.5-74 -192
-207 .004 ale., b2.
(1128)
(-314) (-341)
PAGE 31
CMA 045655
substance/formula
)
218. Carbon Tetrabromide CBr4
219. Carbon Tetrachloride CC14
220. Carbon Tetrafluoride cf4
Carbonyl Chloride see Phosgene
221. Carbonyl Fluoride COF2
222. Carbonyl Sulfide COS
Carvene, see Dipentene
223, Caustic Potash KOH
224. Caustic Soda NaOH
22S. Celloeofve CH2OHCH2OC2H5
226. Cellosolve Acetate CH3COOCH2CH2OC2H5
227. Cellulose Nitrate Ci2Hi7{0N02)307
Waste Dis posal Pro-
cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
27j 3st Ost
27j 10
0s S
Z7i -
2S
-
Ignit.
v*p.
FI. Pt. Temp. Flam.
B.P.
Sp. Dent C
C
Limits
C
Gr. !Air=1) iF)
(F)
%
m
M.P. C (F|
Sol. in
H20 9/1009
Other Solvents
Misc. Ref.
3.4
1.58
5.3s none
3.42
- 190 90 insol. sic., eh|. (374) (194)
none
77 (171)
-23 , Insol, (-9.4)
ale., &z., chi.
AIA, BOH, MCA. NTTC, NSC
- -127 -184 si. sol. (-197) (-299)
-
21
1
2S 3S -
1.14
-
13
-
3
4
1
1.07
2.1
-
-83
-114 dec.
(-117) (-173)
dec., ale. MGB
-
12*29
-50
-138 so14
ale.
(-58) (-216)
MGB
10
3 0 1 2.04
none
10 (2) 3 0 1 2.13 - none
none
1320 (2408)
360 (680)
10715
ale.
none
1390 (2534)
315 (599)
42
ale.
BDH, MCA
BDH, NTTC. MCA
18 200 2S 2S -
.93 3.10
94
(202)
- 1.7-15.6 135 (275)
-
OO ace., ale., BDH chi.
18 100 2S 2s -
.97 -.7S
55
(131)
382 (720)
1,2-12.7 156 (313)
-62 v, sol. (-80)
org.solv.
28 2 3 3 1.66
13 (55)
insol.
ace,, MeOH
PAGE 32
CMA 045656
substance/formula
Lower Nitrates of ^^^Jllulose and Camphor
oo cMoral 2 CCI3CHO
730 Chtortt Hydraw 2 CC!3CH(OH)2
731, Chlordane ClOH6Cl8
732, Chloric Acid HCI03'7H20
233. Chlorinl Cl2
234 Chlorine Dioxide ` CI02
235. Chlorine Trrfluorfde ' CIF3
236 Chforoecetaldehyde CH3C1CH0
237. Chloroacetamide CH2CICONH2
238. Chloroacetic Acid CH2CICOOH
239. Chloroecetonitrite ch2cicn
Waste Dis
posal Pro
cedure (See VII
TLV (ACGIHI
PPM
(mfl/M3)
N. F. F, A. Health Fire React,
28 2S
Ignit
Vap.
FI. Pt. Temp. Flam.
B.P,
Sp. Dens, C
C
Limits
*C
Gr. (Air=1) (eF)
(F>
%
tQF)
--*
M.P. C (F>
Sol. m H2O
S/IOOg
Other Solvents
-
Mjsc. Ref.
2-
24b 1.5)
12a
12a 1
12a .1 21 .1
21
^r<U>
4C
-
14
%
- 1,51 5.1s none
-
98 -58 V, sol. hot a/c.
(208) (-72)
2S Is - 1,64
- - - 96 52 47417 ale., ch|.,
(205) (126)
cs2
3s -
- ''"1.6
56 (133)
- 175 (347)
% 3S
3s 1.28
-
40dec. (104)
--20 v. sol. ("4)
BDH
3
0
1
2.48
2-99s
3s 3S
3.09
2-3s
3s
%
3St 1.77
3.1S
100 (212)
-34 (--29)
-101 (-150)
1.4
AlA, MCA, MGB, NSC
9.9 -59 dec. (50) (-74)
expl. with
compounds of carbon.
12 -83 dec. (54) (-117)
MCA, MGB, NASA
% 2S
1.19
2-3S
88 (190)
85 (185)
-16 13.2)
225 (437)
120 (248)
1024
ale.
2S 2s 3s
1.40
3,3s
-
1.19
189 63 (372) (146)
v. sol.
ale., D2., chl,,CS2
BDH
' 123 (253)
PAGE 33
CMA 045657
SUBSTANCE/FORMULA
240. Chloracetophenone C6H5CQCH2CI
241 Chloroacetyl Chloride ch2cicoci
242 m-Chloroamline C6H4NH2CI
243 o-Chloroamlme CGH4NH2CI
244. p-Chloroamltne C6H4NH2CI
Chlorobenzaldehyde, see Benzoyl Chloride
245 Chlorobenzene C6H5C!
246. o-Chlorobenzoyl Chloride CIC6H4COCI
247. Chlorobromomethane CH2CIBr
Chlorobutadiene, see Chloroprene
248 p-Chloro-m-crasol C6H3CH3OHCI
249. Chlorodiethylalummum CI-AI-{C2H5)2
Waste Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F, P. A. Health Fire React.
4b 05 3S
Ignit.
Vap FI, Pt. Temp. Flam. B.P.
Sp
Dens.
C
C
Limits
C
Gr. (Air--1) (FI
<F)
%
(F)
M.P. C (R
Sol. in HjO
g/IOOg
Other Solvents
1 19
5.2S
247 (477)
59 (138)
insol
dee., ale., bz., CS2
Misc. Ret
la 3S
1.42
108 (226)
-23 (-9)
dec
dee , ale.
BDH
5 3S
1 22
299 (444)
-10 (14)
msol,
Org, SOlv,
BDH
5 3S
1 21
209 (408)
-14 (6 8)
msol
org solv
BDH
5 3S
1.43
231 (448)
70 sol (hot) org. solv. (158)
BDH
4b 75 2
3
0
1.11
3.9
29 638 1.3-7,1 132 -56 msol. ale., bz . AIA,
(84) (1180)
(270) (-69)
chi., CS2 BDH,NTTC
1 iv
2S 2S
225 (437)
-10 dec (14)
dec. ale
26 200
2S
1.93
4.5S
68 (154)
-88 (-126)
insol.
org. solv.
4b 3S 3 3$t 3St St
<-1 30)
235 (455)
66 (151)
si, sol. ale.
208 (406)
-50 (-58)
BDH
CMA 045658
substance/formula
^ 1 ,Chloro-1,1 -Difluoroethane W C23ctF2
gt l-ChlorO'Z.^Qimtrobenzenv ' C6H3CIIN02)2
52. Cblorodiphenyls Ci2HxC*v
1.Chioro-2,3*Epoxypropane< $t>e fipiehlorohydrin
Waste Dis
posal Pro cedure (See VI)
tlv
(ACGIH) PPM
lmg/MJ)
N. F. P. A. Health Fire React.
26 H os
Igmt.
Vap.
FI. Ft. Temp. Flam.
B.P,
5p. Dens, C
C
Limits
C
Gr. (Airsl) (F)
(F)
%
(F)
1.12
632 9-14.8 (1170)
-9.2 (15)
M.P. C (F)
So), in H2O
9/IOOg
Other Solvents
Misc. Ref.
6
31
4 1.50
194 432 2-22 316 43 insol. bz., CS2 BDH
(381)
(810)
(599) (109)
4b 1.05)
%
~1.4
176-80
(394-50) oc
340-75 (644-707)
Chloroethane, see Ethyl Chloride
Cbloroethanol, see Ethylene Chlorohydrln
53 Chloroform CHCI3
-27 3r(f
50
3
0
1.49
-'S
none
none
61 (142)
--64 (-83)
si. sol,
ale., bz.
Al A BOH. NTTC, MCA
Chloromethane, see Methyl Chloride
54. Chloromethyl Ether CICH2OCH3
5S. 2-Chloro-2-Methyl Propene CICH2-C{CH3)CH2
56. Chloronaphthalena Cioh7ci
15 4b 4b
%
1.07
.93
1.14
5.6
132 558
(270) (1036)
59 (1381
-103 dec. (-153)
ale.
71 (160)
256 (493)
-20 insol.
(-4)
ale.
CS2, chi., ale., bz.
BDH
PAGE 35
CMA 045659
SUBSTANCE/FORMULA
257. Chloronaphthylamme c10h8cin
258. Chloronitroanilines NO2CIC6H3NH2
259. Chloronitrobenzenes C6H4CINO2
260. 1-Chloro*1*Nitropropane C2H5CHCINO2
261. Chloropentaftuoroethane c2cif5
262. m-Chlorophenol C6H4CIOH
263. o-Chlorophenoi C6H4CIOH
264. p-Chiorophenol C6H4CIOH
265. o-Chlorophenyl Diphenyl Phosphate CIC6H40<C6H50)2PO
266. Chloropicrin CCI3N02
267. Chloroprene CH2CHCCICH2
Chloropropane, see n-Propyl Chloride
PAGE 36
Wait* Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM (mg/M3)
N. F. P, A. Health Fire React.
6 car.
Igmt,
Vap.
FI. Ft. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Airs=1) <F)
<F)
%
(F)
M.P. C ("Ft
Sol. in H2O
fl/IOOg
Other Solvents
60 (140)
ale.
Misc. Ref.
6 3s
108-16 (226-41)
ale., ace.
SDH
6 in 4a 20
3St ''st 1 St 1.37
127 (261)
3S 2
3
1.21
4,3
62
(144)
242 (468)
32-46
insol.
(90-115)
ate., bz.
142 (288)
si. sol. ale.
80H
26 1000
0 0 1.26
6
3S 2S
1.24
-39 (-38)
--106 (-159)
insol.
ale.
214 (417)
32.5 sol.(hot) ale., bz. 00.5)
BDH
6
2s 1.24
85
(185)
6
3S 2S
1.24
121
1250)
7b 1s
215 (419)
175 7 v. sol. bz.
(347)
(45)
220 (428)
43 (109)
sol.
ale., bz.
240*55 <0 (464-91) 32)
BDH BDH
4a 1 4b 25
40 3S
1
1.66
S.7S
.95 3.0
-20 (-4)
4-20
712 (234)
-64 (-83)
$1. sol. ale., bz.
59 (138)
si. sol. org. sol.
BDH
CMA 045560
substance/formula
^^Hbhloro-Proptoniy Chloride ^PICHjCHsCOCI
269 Chlorosulfonic Acid ` H0SO2CI
970 Chlorotrifluoroethylene ` FCCI=CF2
271. Chromates ICrOn") and Dichromates (Cr207*l
272. Chromc Salts (soluble) Cr+-H-
273. Chromum Cr
274. Chromium Trioxide Cr03
275. Chromous Salts (soluble) Cr^
276. Chromyl Chloride Cr02Cl2
277. Cinnamaldehyde C6H5CH^CHCHO
278. Citraconic Anhydride C5H403
Citrene, see Dipentene
279- Citric Acid ^^(OH)(COOH)3
Waste Dis posal Pro* cedure (See VI)
TLV (ACG1H)
PPM
(mg/M3)
N. F. P, A. Health Fire React.
1>
Ignit,
Vap.
FI, Pt. Temp. Flam.
B.P,
Sp. Dans, C
C
Limits
*C
Gr. <Air=1) <F)
(FI
%
(F)
1.33
143 (289)
M.P. C l*F)
Sol. in H2O
g/IOOg
Other Solvents
si. sol. ale., chi.
Misc. Ref. SDH
lb 10
3
0
2
1.79
4.0S none
none
152 (306)
-80 dec. (-112)
dec. ale.
BDH, MCA, NSC
26 20 3 4 2 1.31
3,4-39 -28 -158 (-18) (-252)
12a l.i;
11 (.5)
sol.
26 (1) 12a (.11 12b (.5)
S 2S 10 3S
7.2 1 2.70
2480 (4496)
1800 (3434)
insol
dec. 196 62 (385)
sol.
ale.
8DH, MCA
12a 3S 2 24a
1,19 1.06 1.25
49 (120)
116 -96 (241) (-141)
dec.
org. sol,
BDH
253 (487)
--7.5 (18)
si, sol. ale., chi.
213 7--8 (416) (45-6)
dec.
ate.
24a
'S 'S
1.54
- - dec. 153 v. sol. ale. (307)
PAGE 37
SUBSTANCE/FORMULA
280. Cleaning Solution
281. Cobalt Co
282. Cobaltous Nitrate Co{N03)2'6H20
283. Collodion
284. Copper Cu
285. Copper Nitrate Cu<N03)2-6H20
286. Crag 974 C5H10N2S2
287. m-Cresol CH3C6H4OH
288. o-Crasol CH3C6H4OH
289. p-Cresol CH3C6H4OH
290. Creosote 1 Mixed Phenols)
Cresylic Acid, see o-Cresol
Waite Dis posal Procedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F, P. A. Health Fire React.
12a
Ignit.
Vap.
Ft. Ft. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. |Air=1) I'F)
(F)
%
)F)
M.P. C (F)
Sol. m HtO
g/lOOg
Othar Solvents
Misc. R*f
27a (.5) 11
2S 1
0
8.9 1 1.87
2900 (52521
1495 (2723)
insol.
55dec. 134 (131)
ale., ace.
28 1 4 0
<-18 0I
-We-
id
n
2S 1
0
8.9 1 2.07
2595 (4703)
1083 (1981)
Insol,
198dec. 26 244
(388)
(79)
ale
13 1.15)
2S
18 s 2
1
5.6s
- 106 (223)
0
1.03
3.7S
86 559 1.06-1.35 203
12 sol.
org, sol.
GDH, MCA
(187) (1038) @302 F
(397)
(54)
18
5
2
2
0
1.05
3.7S
81 599 1.35-
191
31 sol (hot) org. sol.
BOH, MCA
(178) (1110)
(376)
(88)
18
5
2
1
0
1.04
3-7s
86 559 1.06-1.4 202
35 sol. (hot) org, sol.
BDH, MCA
(187) (1038) @302F (396)
(95)
18
2 2 0 1.07
74-82
336
200-50
(165-80) (637)
(392-482)
NTTC
PAGE 38
CMA 045662
substance/foamula
Al CrOtonaldshyds W ' ch3chchcho
292, Croton
iQ3 Crotononitrile CH3CH=CHCN
904 Crotonyl Chloride ' CH3CH-CHCH2CI
295, Crude Oil (Petroleum)
296. Cumene C6risCH(CH3)2
297 Cumene Hydroperoxide ' C6HgCICH3>200H
298. Cuprous Chloride ` CuCI
299. Cuprous Cyanide CuCN
300- Cyenamide h2ncn
301, Cyanides CN`
302. Cyanoacetamlde CNCH2CONH2
Waste Dtv posai Pro*
cedure /See V/)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
2 2 3St 3St ZSt
Igmt.
Vap.
FI. Ft. Temp. Flam.
B.F.
Sp. Dens. C
C
Limits
"C
Gr. (Air=1) (F)
(F)
%
(F>
M.P. C lF)
Sol. in H2O
g/IOOg
Other Solvents
.87 2-OS
7 207 2 1*15.5 104 -76 v. sol. ale., bz.
(45) (405)
(219) (-105)
Misc. Ref BDH
18 !S
14
-83 2.3 <100
122 -52
l<212)
1252)
1-62)
la 1st
1.09
124 (255)
dec.
18
=S 2S
,78-.79
<27
80)
<-46 --501
MTTC
18 50
0
2
0
.86 4.1
44 424 .9*6.5
152 -96 insol. ale., bz. BDH
(111)
(795)
(306) (-141)
22b 1 2 4 1.05 79 (174)
153 (307)
NFPA
11 3S
4.14
1490 (2714)
422 (792)
si. sol.
14 3S
2.92
dec.
473 (883)
insol,
14 14 (SI
2S is
1.07 1.45S 141 (286)
3s 2S -
140 (284)
@19mm.
42 (108)
v. sol. die., bz. -
AIA. 8DH
14 3S 2S
dec.
118 (244)
15
si. sol. ale.
PAGE 39
CMA 045663
SUBSTANCE/FORMULA
303. Cyanogen (CN)2
304. Cyanogen Chloride CNCI
305. Cycloheptanone ceH12co
306. Cyclohexane C6h12
307. Cyclohexanol C5HTQCHOH
308 Cyclohexanone c6h10co
309, Cyclohexane C6Hiq
310. Cyctohexylamine c6Hhnh2
311. Cyclohexylbenzene C6HllC6H5
312. Cyclonite-RDX C3H6N6O6
313. Cycfopentadiene C5H6
314. Cyciopentane CgHlo
PAGE 40
Waste Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
14 10 4 4 2
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dens. C
c
Limits
C
Gr. (Air=1) (F)
(F)
%
(F)
M.P. C (F>
Sol. in H2O
g/IOOg
Other Solvents
Misc. Ref.
.95 1 8NFPA
6-32
-21 (-5.8)
-34 (-29)
45020 ale
MGB
14 .5
3s
1.2 1 %
13 -6.5 si. sol. ale. (55) (20)
Je ff
2S
.96
178 (352)
insol
ale.
18 300
3St
St .77 2.91
--20
260 1.3-8.4
80 4.1 insol ale., ace., BDH, MCA
(-4)
(5001
(176)
(39)
bz.
18 50 1
2
0
.96 3.45
68 300
(154)
(572)
161 25 3.6 CS3, bz.
(322)
(77)
18 50 1
2 0 .99 3.4 44 420 1,1-8.1 156 -- 16 si. sol. ale.
(111)
(788)
(313) (3.2)
BDH
18 300 1
3 0 .81 2.8 --6 (21)
83 (181)
-104 insol. (-1651
ale., ace., bz.
BDH
7a 22 2 3 0 .87 3.4 32 293 (90) (560)
135 (275)
-18 (-.4)
sol.
org. sol
BDH
18
2 1 0 .95
99 104
238 7.5 insol. ale.
(210) OC (220)
(460)
(45)
4a
2S 2S
1.8
202 (396)
ace.
18 75
2S .80
42 -97 (108) (-143)
insol.
ale., bz.
18
1
3
0
.75 2.42
-7
20)
49 -94 insol. (120) (-137)
aic,
CMA 045664
SUBSTANCE/FORMULA
cydopentanorts ^ ' C4H8C0
31 g Cyclopropane
C3h6
-117 p-cymene 3 CH3C6H4CH(CH3)Z
2]g Decaborane BiflHia
719. Decahydronaphthalene
c 1 oH 1 s
320. iso-Decaldehyde CgHigCHO
Deoalin, see Decahydronaphthalene
321, n-Decane CH3(CH2}sCH3
322. m-Decyl Alcohol CH3(CH2)3CH2OH
Dematon, see Systox
323, Deuterium 2
324. Discetona Alcohol CH3COCH2C(OH)(CH3)2
Oiaminoethan, see Ethylene Diamine
Waste Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
18
N. F. P. A.
Health Fire React.
230
18 400
40
218 7 0
17 .05 3 2
18 2St St Ost
2
Ignit
Vap.
FI. Pt. Temp. Flam.
Sp. Dens. C
C Limits
Gr. (Air=1) <F)
(F)
%
.95 2,3
26 (79)
B,P. "C (F)
131 (268)
M.P.
C <F)
Sol. m H2O
g/IOOg
Other Solvents
-58 (-72)
insol.
ale., MeQH
Misc, Ref.
,72 1.45
498 2,4-10.4 -33 -127
(928)
(-27) (-197)
si. sol.
ale.
.86
4.62
47
436
.7-5.6
177
-68
msoi.
ale,, chi.
SDH
(117)
(817)
(351) (-90)
.94 80 149
(176)
(300)
213 (415)
100 (212)
si. sol.
ale., oz., CS2
AIA, NFPA. NSC
.87
4.76
57
250
.7-4.9
186
-45 insol. ale,, chi.
BDH
(135)
(482)
(367) (-49)
.8 5.4
85
(186)
197 (387)
18
0
2
0
,73
4.90
46
208
.8-5.4
174
-30 insot. ale.
(115)
(406)
(345) (-22)
18
2S
.83 5.3
82oc
229
7
insol.
ale., ace.,
(180)
(444)
(45)
bz., chi.
2?j 0 4 0 .18
5-75
-250 -255 (-418) 1-427)
si. sol.
@>121mm
18 50 1 2 0
4.0 64
603 1.8-6.9 168 -50
00
(147) 11117)
(334) (-58)
atc.
SDH
PAGE 41
CMA 045665
SUBSTANCE/FORMULA |
Diatomaceou* Earth, see Silica
Waste Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
Ignit.
V1.
F|, Ft, Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
0r- (Air^l) (F)
TF>
%
(^1
M.P. c (F1
Sol. in H9O
g/IOOg
Other Solvents
325. Diazomethane ch2n2
8 .2 3s
1.45
lOOexp, (212)
-23
-145 dec.
(-9.4) (-229)
hot ale.
326. 1,2,5,6-Dibenzacridina C21H15N
5
327. 1,2,7,8-Dibenzacridine C21H15N
328 1,2,5,6-Qibenzanthracene C22H14
5 18
268 (514)
insol.
ace., bz., CS2
329. 1,2,5.6-Dibenzcarbazole C20H17N
5
330. 3,4,5,6-Dibenzcarbazole C2oH,7M
5
331. 1,2,5,6-Dibenzofluorene C21HI8
332. 1,2.3,4-Dibenzophenanthrene C22h18
Dibanzopyrrola, see Carbazole
18 18
280 (S36) @ .3mm
174 (345)
bz.
333. 3,4,8,9'Dtbenzpyrene C24h17
18
334. Dibenzylamme HN(CH2C6H5)2
i______________________________________
5
PAGE 42
3S
1.03
300dec. -26 l.
(572)
(-15)
ale.
Mtsc. Ref,
CMA 045666
SUBSTANCE/FORMULA
^^W?iboran ^^^B2h6
Waste Dis posal Pro cedure (See VO
tlv
(ACGIH) PPM
(mg/M3)
N. F, P. A. Health Fire Reect.
17 .1 3 4 3
DibrOtT', see Dtmethyl-1,2* Oibromo-2,2'Dichloroethvlphos
Ignit
Vp.
FI. Pt. Temp. Flam.
B.P.
Sp. Dens. C
*C
Limits
C
Gr. (Ami) (F>
(F|
%
(F)
M.P. "C Tf)
Sol. in
MjO gVIOOg
Other Solvents
Misc. Ref.
.46 .96NFPA -90 (-130)
145 (293)
.9-98
-93
-165 dec.
(-135) (-265)
dec., ale.
Al A, MCA. NSC
336. 2. 6-Dibromo-N-Chlorop-Benio-Qumanimine C6H2Br2CINO
1,2-Dibromoethane see Ethylene Dibromide
6 .1
85 (185)
insol.
737 1,2,-Dibromotetrafluoromethane 26 100MGB (Freon-114B2) C2Br2F4
st
2.72
24.5 (76)
-142 (-224)
338. Dibutylamme (C4H9^NH
7b
32
0 .50 4.46 52
(126)oc
1*9 (318)
-51 sol. (-60)
ale.
339. Dibutyldichlorotfn |C4Hg)2 SnCl2
4b
3s 's
1.36
10.5S
355
(671)
135 (275) @ 10mm
43 (109)
dec.
ale., bz.
340 Di-m-Butvl Ether ' [CH3<CH2>3]2
15
23
0
.77 4.5
25 194 1.5-7.6 141
-98 insol. ale.
BDH
(77) (381)
(286) (-144)
341. Dibutyl Oxalate (C4H9^2c24
342 Dibutyl Peroxide ' (CH3)3COOClCH3)3
18 22b 1000
3$ 1 23
0
1.01
7.0g
104
(220)
4
.79 5.0s
18
(65)
246 (475)
111 (232)
-30 insol. (--22)
ale.
-40 insol. (-40)
ace.
NFPA
343 Dibutyl Phosphite (C4HgO)2POH
7b 1
32
0
.97 6.7S
49
(120)
115 (239) @ 10mm
CMA 045667
SUBSTANCE/FORMULA
H}44 Dibutyl Phthalate
w C6H4{COO)2(C4H9)2
345. DibutyJ Tin Dileurafe (CH3<CH2)10COO)2 Sn(C4Hg)2
Waste Dis
posal Pro
cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
n. e. p. a. Health Fire React.
18 (5)
0
1
0
18 1S
346. Dichloroacetic Acid CHCljCOOH
4c
%
347. Dichloroacetyl Chloride CHCI2COCI
la
321
343. 2,5'Dichloroaniline CI2C6H3NH2
349 o-Oichlorobenzane C6H4CI2
6 3 10 6 50 2 2 0
350. 3,3'-OichlorobenXldme CIMH2CeH3C6H3NH2CI
6 car
35 T. 1,4-Dichlorobutane CH2CI(CH2)3CI
4b 2 2 0
352. 1 ,3*Dichloro-2`Butene CH2C!CHCC!CH3
4b
2 30
353. DiChiorodifliioromathane CC!2F2
26 1000
-
354. 1,3*Dlchloro*5,5*Dimethylhydantoin C5HgCI2N202
6 (.2)
%
355. 1,1-Dichloroethana CH3CHCI2
4b 100
2
3
0
Igmt.
Vap.
FI. Pt. Temp, Flam.
B.P.
Sp. Dens. C
QC
Limits
C
Gr. (Air=l) (F)
(F)
%
(F)
M P.
C (F)
Sol. in <
|
H2O
Other
g/lOOg ' Solvents ]
Misc. Ref
1.04
9.65
157 (315)
403 (757)
340 (644)
-35 (-31)
insol
bz,, ace., ale
1.05
2i.8S
235 (455)
27
insol,
ace., bz.
(81)
1.56
4.45s
192 (378)
9.7 150)
ale.
BDH
1.53 1.30
5.1 66 (151)
5.6s
166 (331)
5.07
66 (151)
648 (1198)
2-9
107 (225)
251 ! 50 1484) 1122)
180 (356)
-18 (-.4)
dec
1 z , ale.
BDH
' si sol. , ale,, bz
insol
ale.
BDH
AIA, BDH, NTTC, MCA
8.7S
dec. 132 insol bz,, ace.,
(270)
ale.
1.1 4.4 52 (126)
162 (324}
-39 (-38)
msoi.
chi
4.3 27 (81)
123 (253)
insol. org, sol
1.30 4.2MGB
-29 -158 (--20) (-252)
sol.
ale.
1.5 6.8$
132 (270)
1 .IS
3.4s
-6 458 5.6-11.4 +57
-97
.70
(21) (856)
(+135) (-143)
ale.
BDH
3AGE 44
CMA 045668
substance/formula
,2-0ichl<aro8thane. Ethylene Dichloride
Waste Dis posal Pro cedure fSee VI)
TLV (ACGIH)
PPM
Img/M3)
N. F. P. A, Health Fire React.
ignit.
Vap.
F|, Pt. Temp. Flam.
8.P.
Sp. Dans. C
C
Limits
C
Gr. (Air=1) (aF)
(aF)
%
(F)
M.P, C <F)
Sol. in HjO
a/100g
Other Solvents
Mtsc. Ref.
1 (i -Dichloroethylftne, see Vinylidene Chloride
rg i 2-Dich|<?roethylen* ' CICH=CHCI
4b 200
2
3
2 1.3 3.3 2-4
(36-9)
9.7-12.8 48-60 -80 (118-40) (-112)
s). so).
aJc,
AJ A, BDH, MCB
,,e7 2 Z'-Dichloroethyl Ether J (C|C2H4)20
758 Dichloromethane ' CH2Cl2
-vf-o Dichloromonotluoromethane CH CI2F
760 1 1-Dichloro-1-Nitroethane ' H3C(N02)CCl2
36) 2 4-DicMorophenol C6H3OHCI2
IS 15 2
26 500
2
26 1000
4* 10 3S G
2 0
2
0
1.22
4.9
55 369
1131)
(696)
178 (352)
-24 (-11)
insol.'
org. sol.
AIA, BDH MCB
0
1.34
2.93
1.48
3.8S
662 15.5-66 (12241 in 02
40 (104)
-97 (-143)
220 ale.
652 (1026)
9 -135 insol. ale (48) (-211)
BDH, NTTC, AIA, MCA
3
1.42 4.97
76
(168)
0 ^ 1.38
5.%
114
(237)
124 (255)
210 (410)
.520
45 (113)
$1. sol
ale , bz., chi.
BDH
362 Dichlorophenyiphosphine ` C6H5PCl2
363 1,2-Dichloropropane H2CCICHCICH3
364 1,3*D ichlpropropene c3h4ci2
jb
7\>
%
1.3 6.2S
225 (437)
dec. bz., CS2
4b 75
2
3
0
1.16
3.9
16
557 3.4-14.5 97
-100 si. sol. ale.
(61) (1035)
(207) (-148)
AIA, NTTC
4b
% 2S
1.23
3S
35
(95)
104 (219)
insol. chi.
365 Dichlorotetrafluoraathane CCI2P-CF3
26 1000
1S
st
1.44
3.6 -94 (38) (-137)
insol.
ate.
PAGE 45
CMA 045669
substance/formula
1 W 366. Picyeiohexylamme
(CeHuhNH
Waste Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
7a
N, F. P. A.
Health Fire React. 2$
Ignit
Vap.
FI. Pt. Temp. Flam.
So. Dens. C
C Limits
Gr. (Airs=1) (F>
(F)
%
.93
6.3S
99qc
(210)
B.P. C |F)
256 (493)
M.P. C (F>
-.1 (32)
Sol. in HjO
&/100g
Other Solvents
.1628
ale., bz.
367. Dicydopentadiane C10H12
18
1
3
1
.93
4.55S
35
(95)
170 (338)
33 (91)
ale.
368. Dieidrin c12h10c,6
4b (.25)
1.75 13.2S
-
175 (347)
insol.
ace., bz.
369. Diethanolamine {HOCH2CM2)2NH
7a
1
0
1.09
3.6
152
662
<306)oc (1224)
270 28 v. sol.
(518)
(82)
ale.
370. 1,1-Oiethoxyethane CH3CH(OC2H5)2
371. Diethyladipate C2H500C(CH2)4C00C2H5
15 18
2
3
0
.83 4.08 -20
230 1.7-10.4
102 -100 2120
ale.
(-5)
(446)
(216) (--148)
1.01
240-5
--21 .4330
ale.
(464-73) (-5.8)
372. Diethylaluminum Chloride (C2H5)3AICI
4b
333
Ignites in air
208 (406)
-50 (-58)
373. Diethylamine (C2Hg)2NH
7a 25 3
3
0
.71 2.5
<-26 312 1.8-10.1
56
-48 v. sol.
ale.
(<--15) (594)
(133) (-54)
374. 2-Diethyl-Amino*Ethanol (C2H5)2NCH2CH20H
375. N, N-Oiethylaniline C6H5N|C2H5)2
376. Diethyleerbonata ic2hs)2co3
7a
70 3
2
0
.88 4.03
60
(140)oc
5
3
2
0
.94 5.15
85 332
(185) (630)
18 25 =s 3
.98 4.07
25 (77)
-
163 (325)
216 (421)
O0
-38 (-36)
,412
126 (259)
-43 (--45)
insoi.
ace., ale., bz. ale.
ale.
377. Diethylena Glycol CH20HCH2OCH2CH20H
18
0
1.12
3.66s
124
229 2-
(255) (444)
245 1473)
-8 I+1B)
sol.
ale.
Misc. Ref
NTTC BDH
NFPA BDHr MCA BDH, NTTC BDH BDH
PAGE 46
f
CMA 045670
SUBSTANCE/FORMULA
Piethylene GlycolMonoethyl Ether C2H50(CH2)20(CH2>20H
179. Diethylenetriamin* |NH2C2H4)2NH
Diethyl Ether, see Ethyl Ether
380 Diethyl Ethyl Phosphonate (C2H5)2PO,OC2H5)
381 Diethyl Ketone (C2H5(2CO
382. Diethyl Malonate CH2(C02C2H5)2
383 o-Diethyl Phthalete (C6H4)(COOC2H5)2
384 p-Diethyl Phthalete (C6H4l(CQOC2H5)2
385. Diethyl Sulfate {C2H50)2S02
386. Diethyl Zine Zn(C2H5)2
387. Diglycidyl Ether ((CH2*CHCH2>0]20
Diglycol, see Diethylene Glycol
Waste Dis
posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N, F. P. A. Health Fire React.
Sp. Gr.
15
11
0 1.11
-1.23
Vap. Dens. (Air=1)
FI, Pt. C <F)
4.6s
96 1206)
Ignit. Temp.
C <F|
Flam. Limits
%
204 (400)
1.2-
B.P, C (F>
202 (396)
M.P. C (F)
Sot. m HjO
g/IOOg
Other Solvents
-10 (--14)
QQ org. sol.
Misc. Ref
7a
31
0
.95
3.6S
102
399
207 -39
W ale.
NTTC, MCA
(216)oc (750)
(405)
(-38)
7b
18 18 18 18 4b 5 3 (5) 15 .5
41
13 01 01 01 31 03 %
0
1.03
5.7S
105
(221)
83 (181) @11 mm
sl. sol. ale.
0
82 2.96 t3
452
(55)oc (846)
101 (214)
-42 (-44)
4,720
ale.
0
1.06
5.5g
93
(200)oc
199 -50 2.120 ale.
(390)
(-58)
0 1.23
117 (2431
302 (576)
--40 (-40)
insol.
ale., bz.
0
1.23
7.7S
163
(325)
296 (565)
-5 insoi. ale,, bz. 123)
1
1.18
5.3s
104
436
- 208
-25 insol. ale.
(219)
(817)
(406)
(-13)
BDH
3 1.18
Ignites in air
124 (255)
28 dec. (82)
dec,, ale.
- 1.25
-
260 (500)
PAGE 47
CMA 045671
SUBSTANCE/FORMULA
1,2*Oihydroxyanthraquinone, see Alizarin Dyes
Waste Dis posal Pro cedure (See Vt)
TLV (ACGIH)
PPM
(mg/M3)
N, F. P. A. Health Fire React.
Igmt.
Vap-
FI. Pt. Temp. Flam.
B.P,
Sp. Dens. c
*C
Limits
C
Gr. (Air^l) (F)
(F)
%
(eF>
M.P.
C <F)
Sol. in H2O
g/IOOg
Other Solvents
Misc. Ref
388. 3,4'Dihydro-2H`Pyrn c5h8o
18
3
389. Diisobutyl Ketone [(CH3)2CHCH2]2CO
18 50
1
2
390. Diisopropyl Amine [{CH3)2CH}2NH
7a 5 3 3
391. Diisopropyl Ether (CH3)2CHOCH(CH3)2
15 500
2
3
392, Diisopropyl Fluorophosphate C6H14FPO3
7b
%
0
.92
2.9S
-18
(0)
86 (187)
sol. ale.
0
.81 4,9
60
(140)
,8*6.2 @212F
168 (334)
insol
ale.
0 ,72 3.5 -1 (30)oc
-84
83 (181)
-61 (-78)
si, so!.
1
.72
3.5S
-28
443 1,4'7.9
69
-86 si. sol. [ ale.
(-18)
(829)
(155) (-123)
~1.1
5.2s
46 (115) @5mm
-82 (-116)
BDH
393. Diisopropylperoxydicarbonate (CH3)2HOC>OC-OC>0-CH (CH3>2
00
394. 3P3'-Dimathoxybenzidine (NH2{OCH3)C6H3]2
22b 5
395. Oimethoxyethane (ch3o)2c2h4
15
396. Dimathoxymethane (CH30)2CH2
15
1000
0 car 2
4
2 3
4
`
8.5$
206 (403)
0 .85 3-1S 40 (104)
2 .86 2.63s -18 237 (Q)oc (459)
12exp. (53)
NFPA
137 (279)
insol.
bz , ace , ale.
65 -113 sol. (149) (-171)
ale , chi.
BDH
46 -105
ale.
(115) (-157)
33
397. Dimethoxypropane (CH30)2C3H6
15
- 2S.
.85 3.6s -7 (19)
-
95 (203)
398. N,N'Drmethyi Acetamide CH3CON(CH3)2
20 10 2s Is
.94 3.0s 77
354 1.8-13.8 165
-20
(171)
(669)
(329)
(-4)
00 ale., bz.
PAGE 48
CMA 045672
SUBSTANCE/FORMULA
OimdthyUmilW C2H7N jOO oimathylam<noazobenzBn#-2^ Naphthalan* C78H19N3
Waste
Dis posal Pro cedure (See VI)
TLV (ACGJH)
PPM
(mg/M3)
N, Fa P. A. Health Fire React.
7a 10
3
4
0
8 Car.
401 2->im*thVlan'r,of:^'n " Ci5H15N
6
car.
d02 N N-Oimethylaniline ' C6H5N(CH3)2
55 32 0
03 2 3-Dimethyla*obenzene ' (CH3)2C6H3N2C6H5
8 - car.
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dens. C
6C
Limits
C
Gr. (Air=1) (F>
(F)
%
(F)
M.P, C (F|
Sol, m
H2O g/IOOg
Other Solvents
Misc. Rel
.68
1.65 <-18
430 2,8-14,4 7,4
-92 v. sol. ale.
nfpa
(0) (806)
(45) (-134)
BDH, MCA, MG8
1.08
174 (345)
hot bz
.95 4.17 63
371
(145)
(700)
193 (379)
-
2.5 si. so). ale,, bz (36)
AlA, 8DH
404. 9,10''Dimethyl-1,2* Benzanthracene (CHjI^CigHiQ
G
Dimethylbenzylhydroperoxide, sea Cumene Hydroperoxide
car.
122 (252)
insol.
CS2, bz,
405 N,N-Dimethyl-4-Biphenylamine ` (CH3)2(CgH4J2NH
6
car.
406 2,2-Dimethy! Butane (CH3)3CCH2CH3
407. Dimethyl Carbonate OCIOCH3)2
408. 1,2-Dinwthyl Chrytene (CH3)2Cl8^10
409. DimethyM,2-Dibromo-2,2pichloroethyf Phosphate (CH2Br)2C2H3Cl2P04
IB 1 3 18 3 18 car. 7b (3)
0 .65 3,00 --48 425 1.2-7.0 50 -98 insol. ale.
1--54) (797)
(122) (-144)
1
1.1 3.1
19
(66)oc
- 90 .5 insol. ale.
(194)
(32)
BDH
- 448 250 insol. si. sol., bz. (838) (482)
^200
392)
PAGE 49
SUBSTANCE/FORMULA
1 Dimethyl Ether, " see Methyl Ether
Waste Dis posal Pro* cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
410. Dimvthyiformsmitfe (CH3)2NCHO
20 10
20
411. Dimethyl Fumarete (CHCOOCH3)2
18
2,6-Dimethyl-4-Heptanone, see Diisobutyl Ketone
1,1 -Dimethylhydrezine, see Unsymmetrical DimethylHydrazine
412. 1,4-Dimethylnaphthalene Cl0H6(CH3]2
18
Dimethyl nitrosoamine, see N-Nitrosodimethylamine
413. Dimethyl Phthalate C6H4ICO2CH3I2
414. 2,2-Dimethyl Propane <CH3)4C
18 IS)
0
1
0
18 1000 MGB
40
415. Dimethyl Sulfate <CH3)2SC>4
4b 1
42 0
416. Dimethyl Sulfide |CH3)2S
13 4 4 0
417. Dimethyl Sulfoxide ICH3)2SO
4b 1 1 0
Ignit
b-STl
> <
FI. Ft. Tamp, Flam.
B.P. M.P. Sol. in
Sp.
C
C
Limita
C
C
H?0
Other
Gr. PF) (F) % (F) <F) g/IOOg Solvents Misc. Ref.
.94 2,51
58
445 2.2-15.2
153
-61
oc ale., bz.
BDH
(136)
(833)
(307) (-78)
192 (378)
102 (216)
ch|.
1,02
-
262 (504)
-18 (0)
insol.
ale.
1.19
6.7g
146 556 (295) (1032)
- 288 (550)
insoi. ale., bz.
.61
2.48
<-7
450 1.4-7.5
9.5
(<20)
(842)
(49)
--18 (0)
insol.
ale.
1,33
4.35
83 (181)
-
189dec. -31 sol.
(372)
(-24)
ale., bz.
A|A, BDH, NTTC, MCA
.8 2.INFRA <-18 206 2.2-19.7
37
-83 insol. ale.,
0> (403)
(99) (-117)
MeOH
1.01
95
- 2.6-28,5 189
18 sol.
ale., ace.
(203)oc
(372)
(65)
PAGE 50
CMA 045674
SUBSTANCE/FORMULA
430. Dipentene CiOH16
Dipentene Dioxide, see p-Mentha-1,8-Diene
Waste
Dis posal Pro
cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F, P. A. Health Fire React.
18
2S 2
0
431. Dipentene Monoxide Cl0H140
432. Diphenylamme <C6H5)2^H
18 1 5 310
433. Diphenylmethane (CgH5)2CH2
434. Diphenyisuifide (C6Hg)2S
18 1 1 0 13
435. Dipropytene Glycol Methyl Ether CH30C3H60C3H60H
15 100
2S
436. m-Dodecane Cl 2^26
437. Dodecyl Sodium Sulfate Ci2H25NaS04
18 4b
0 \
is
2
0
438. Elon (H0C6H4NHCH3)2H2S04
439. Endrtn c12h8oci6
6
6 (.1)
3
1
0
440. Epichiorohydrin c3h5cio
4b 5 3 3 2
Ignit,
Vap.
FI. Pt. Temp, Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Air=1) <F)
lF)
%
(F|
M.P, C ("FI
Sol. in HjO
g/IOOg
Other Solvents
Muc. Ref.
.85 4.66 45
237 7-6,10
178 -97 insol. ale.
(113)
(458) @302F 1362) (-143)
BDH
.93
4.45s
67
(152)
1.16
5.8s
153 (307)
634 (1173)
1.01 5.8S
130
436
(266)
(907)
1.12
.95 5.1s
85
(185)oc
75 5.96
74
(165)
204 (399)
,6-
-
-
1.18
27 (80)
3.29
41 (106)oc
75 (167)
<--6 (21)
302 (576)
53 (127)
insol.
ale., bz., CS2
266 (511)
26 insol. (79)
ale., chi.
296 (565)
<-40 insol. K--40)
bz.. CS2
189 (372)
216 (421)
-12 (10)
insol.
ale., ace., CS2
260dec 425 ale. (500)
200 (392)
117 -48 <5 ale., bz. (243) (-54)
BDH, MCA
PAGE 52
CMA 045676
SUSSTANCE/FORMULA
^TTepn ^H^Ci4Hl405NPS
Watte Dis posal Pro
cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N, F. P. A, Health Fire React,
4a (.5)
3S
2 1,2-Epoxy-3-Phenoxypropane ` H2COCHCH2OC6H5
15
to
Ignit
Vap,
FI. Ft. Temp, Flam,
Sp. Dens, C
C Limits
Gr. (A.r=1) lFI
(F)
%
1.27
B.P. C (F)
M.P.
C <F)
Sol. m
H2O g/lOOg
1
Other i Solvents
Misc. Ret
36 m$ol. (97)
ale., bz
1.11 4.4s
245 (473)
3.5 (38)
i43 1,2'Epoxv-Propao* h3c-choch2
15 100
2
4
2
.83 2.0
-37
(-35)
2.1-21.5
34 -104 v, sol. ale. (93) (-155)
BDH
444. Epoxy Resin System*
445. Erbium Er
26 27k
2s 9,05
2900 (5252)
1497 (2727)
insol.
A|A,NSC
446. Ethane C2h6
Ethanediol, see Ethylene Glycol
18
4
0
.57 1.04
- 515 3-12.5 --89 -183 insol. | ale.
(959)
(-128) (-297)
i
!
447. Ethanethiol C2H5SH^
13 10
2
4
0
.84
2.14
<27
299 2,8-18
37
-144 1.5
ale.
81) (570)
(99) (-227)
BDH
Ethanoic Acid, see Acetic Acid
44fi. Ethanol CH3CH2OH
449. Ethanolamine nhjchjch^oh
18 1000
0
3
0 .79 1.59 12 423 3,3-19 79 -- 114 W ace.
(54) (7931
(174) (-173)
7# 3
2
2
0
1.02
2.11
85
(185)
170 (338)
11 (52)
oe ale.
BOH,NTTC, MCA
NTTC.MCB
450- Ethoxy Acetylene C2H5OCCH
16
.79 <-7 lOOexp. !<19) (212)
50 (122)
insol. ale.
2-Ethoxy Ethanol, see Cellosolve
PAGE 53
CMA 045677
SUBSTANCE/FORMULA
2-Ethoxy Ethylecetate, see Cellosolve Acetate
Waste Di* posai Pro cedure (See VI)
TLV (ACGIH)
PPM
(rog/M3)
N, F. P. A. Health Fire React.
451. 4-Ethoxy-2-Nitro-Aniiine C2H5OC6H3NO2NH2
452. Ethyl Acetanilide CH3CON(C2H5)(C6H5)
6 20
020
453. Ethyl Acetate CH3COOC2H5
18 400
1
30
454. Ethyl Acetoacetate CH3COCH2COOC2H5
18
220
455. Ethyl Acrylate CH2CHCOOC2H5
18 25
2
3
2
Ethyl Alcohol, see Ethanol
Ethyl Aldehyde, see Acetaldehyde
456. Ethylamine C2H5NH2
7a 10 3 4 0
457. Ethyl sec-Amyl Ketone CH3CH2CHCH3CH2COCH2CH3
18
25
458. N-Ethyl Aniline c2h5nh(c6h5i
5 320
459. Ethyl Benzene C6H5C2H5
18 100
2
3
0
Ignit.
Vap.
FI. Ft. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Air=1) (F)
(F)
%
(F)
M.P. C <F)
Sol. in HjO
g/IOOg
Other Solvents
Mtsc. Ref.
113 (235)
chi.
.94 5.62
52
(1261
258 (496)
54 (129)
insol.
ale.
.90 3.04s -4.4 427 2.18-9 77
--84 7.520 ale.
(24) (800)
(171) (-119)
1.03
4.48
84 (183)oc
181 <-80 1317 (358) K-112)
ale., bz.
.92 3.5
16 273 1,8(60) (524)
100 <-72 sol. (212) K-98)
aic.
BDH, NTTC, MCA. SDS
BDH
BDH, NTTC, MCA
.80
1.56 <-18
384 3.5-14
17
-81
00 ale.
(0) (723)
(63) (-114)
.85 57 (135)oc
161 (322)
Insol. ale.
,96
4.18
85
(185)oc
205 (401)
-64 (-83)
insol.
ale.
,9
3.7 15
432 1-6.7
136
-95
.01'5 ale.
(59) (810)
(277) (-139)
BDH, NTTC, MGB
BDH BDH
PAGE 54
CMA 045678
substance/formula
^^Kthyl Benzoete ^K6H5COOC2H5
Ethyl Bromide Bromoethane
tBi Ethyl BromoiCniti CH2BrC02C2H5
462 Ethyl Butyl Ketone C2H5COC4H9
463. Ethyl Butyrate C3H7CO2C2H5
464. Ethyl Chloride CH3CH2CI
465 Ethyl Chloroacetats ' CICH2COOC2H5
466 Ethyl Chloroformett CIC02C2H6
467 Ethyl Crotonate 'CH3CHCHCO2C2H5
468. Ethyl Cyenoeeetete CNCH2CO2C2H6
Ethyl Cyanide, see Propionitrile
469. Ethylene H2C=CH2
Watte Dis posal
Pro* cedure (See Vi)
TLV IACGIH)
PPM
(mp/M3)
N. F. P. A. Health Fire React.
18 1 2 0
Ignit
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dans. C
C
Limits
C .
Gr. (Air=l) (FI
(F)
%
(F|
-3o 0o^S
Sol. in HjO
8/IOO9
Other Solvents
1.15
5.17s
96 (205)
213 (416)
-35 insol. (-31)
ale.
Mix. Ret.
4b 18 50
3S 12
18 2 3
4b 1000
2
4
4b 2 2
4b 3s 3 18 2 3
14 3s 1
1.51 5.8S
48 (118)
159 (318)
<-20 (<--4}
insol.
ale.
0
.82 3.93
46
(115)oc
148 (298)
-37 (-35)
insol.
ale.
0 .88 4.0 26 463 (79) (865)
121 -97 (250) (-143)
.6826 ale-
BOH
0
.92 2.2
-50
519 3.6-15.4
12 -139 .450
ale.
NFPA (-58)
(966)
(54) (-218)
BOH, MCA
0 1.26 4.3
66
(150)
144 (291)
-27 (-17)
insol.
ale.
BDH
1
1.36 3.74
16
(61)
95 -81 (203) (-114)
dec.
bz., dec. ale.
BDH
0
.92 3.93
2
(36)
- 143-7
45 insol. ale.
(289-96) (113)
0
1.06 3.9S
110
(230)
206 (403)
-23 (-9.4)
225
ale.
BDH
18 5500 1 4 2 .001 1.0
450 (842)
3.1-32
--104 -169 260 (-155) (-272)
si. sol., ale.
PAGE 55
CMA 045679
SUBSTANCE/FORMULA
470. Ethylene Chlorohydrin CH2OHCH2CI
471. Ethylene Diamine NH2CH2CH2NH2
472. Ethylene Dibromide BrCH2CH2Br
473. Ethylene Dichloride CICH2CH2CI
474. Ethylenedinitriie Tetracettc Acid Dipotenium Salt (EDTA) K2C10O9N2H19
47S. Ethylene Glycol CH2OHCH2OH
Waste Dis
posal Pro cedure (See VII
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
4a 5 3 2 0
Ignit.
Vap.
FI. Ft, Temp. Flam.
B,P.
Sp. Dens. C
C
Limits
C
Gr. (Ain^l) lF)
(F)
%
<F>
M.P.
C (F)
Sol. in H2O
g/IOOg
Other Solvents
1.21 2.78
60
425 4.9-15,9 128
-69
(140)oc (797)
(262) (-92)
ale.
Misc. Ref,
Al A, BDH, MCB
7a 10
3
2
0
.90 2.07
43
1110)
117 8.5 v. sol. ale.
(243)
(47)
BDH NTTC
4b 25 4b 50 4c
3s 23
2,18
6.48S
131 (268)
9.3 (48)
si. sol, ale.
0
1.26
3.4s
13
413 6.2-15.9
83
-36
si. sol. ale.
(55) (775)
(182) (-32)
--
BDH
BDH, Al A, NTTC, MCA
CED
18 ,2
1
1
0 1.11 3.14s 111 413 3.2-
198 -13
so
ale., ace.
BDH, NTTC
(232)
(775)
(388)
(8.6)
Ethylene Glycol Monobutyl Ether, see Butyl Cellosolve
Ethylene Glycol Monoethyl Ether, see Cellosolve
Ethylene Glycol Monomethyl Ether, see Methyl Cellosolve
Ethylenimine, see Azirjdlne
476, Ethylene Nitrate C2H4(0N02)2
477. Ethylene Oxide (CH2)20
4a .2 15 50
% 2S - 1.49 5.25s -
114exp. -20
(237)
(-4)
insol. ale.
2
4
3
.87 1.49
<-18 429 3-100 11
-111
sol.
ale., bz.
AIA, MCA
NFPA
o> (804)
(51) (-168)
PAGE 56
CMA 045680
1
SUBSTANCE/FQRMULA
^^Apthyl Ether ^^R2H5oc2H5
Ethyl Ethynyl Ether, see Ethoxyacetylene
mg. Ethyl Fluoride CH3CH2F
abO Ethyl Fluoroacetate FCH2COOC3Hg
481. Ethyl Formate HCOOC2H5
482 2*Ethyl Hefcanol ' C4H9CH(C2H5)CH2OH
483. Ethyl lodida C2H5I
484 Ethyl Lactate ' CH3CN0HC02C2H5
Ethyl Malonete, see Diethyl Malonate
Ethyl Mercaptan, see Ethanethiol
485. N-Ethylmorpholine C6Hi3NO
486. Ethyl Nitrite Q2H5ONO
Waste Dis* pottl Pro
cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N, F, P. A. Health Fire React.
15 400
2
4
1
Ignit.
Vap.
FI. Ft. Temp. Flam.
B.P.
Sp. Dens. C
C Limits c
Gc. (Air=1) (F>
tP)
%
lFl
M.P.
c
lF)
Sol. in
H2O g/lQOg
Other Solvents
Misc. Ret.
.71
2.55
--45
180 1.85-48
34
-123 7.62 bz.
NFPA (-49)
(356)
(94) (-189)
AIA BDH, MCA
4b 4b Ifi 100 18 4b 18
*5 -^t 23 22 2S 2S 22
.82 1.665
-38 (-36)
-143 19814 elc. (--225)
3-7$
116 (241)
0
.95
2,55
-20
455 2.7-13.5
54
-79 1118
ale.
(-4)
(851)
(129) (-110)
0 .83 4.49
84
(184)
1.95
5.4g
180-5 <-76 insol. (356-65) (-105)
ale.
72 (162)
-105 420 (-157)
ale.
0
1.04
4.07
46
400 1.5-30
154
(115)
(752) @212SF (309)
00 ale.
BDH BDH BDH BDH
5 20
2
3
0
.92 4.00
32
(90)oc
138 (280)
4a 5
2
4
4
30 2.59 -35
90 4.1-50
17
(-30) (194)
(63)
ee ale.
dec.
ale.
PAGE 57
CMA 045681
SUBSTANCE/FORMULA
Waste Dis posal Pro
cedure (See VI)
TLV (ACGIH)
PPM
Img/M3)
N. F. P. A. Health Fire React.
487. N-Ethyl-N-Nitroso-N-Butylamina C6H4N2
488. N-Ethyl-N-Nitrosovinylamine C4H8N2O
7a 7a
car. car.
489. Ethyl Oxalate (COOC2H5)2
18
3S 2
0
Ignit.
Vap.
FI. Pt. Temp. Flam.
8.P.
Sp. Dens. C
c
Limits
C
Gr. (Air=?1) (F>
lF)
%
<F)
M.P, c <F)
Sol. in HtO
g/IOOg
Other Solvents
1.08
5.04
76 (168)
186 (367)
-41 (-42)
si. sol.
ale.
Misc, Ret
490 p-Ethyl Phenol CH3CH2C6H4OH
18
1 0 1.0
104 (219)
219 (426)
45 (113)
si. sol.
ale., bz,r CSj
491. 2*Ethyl*3*Propyl Acrolein CH3{CH2)2CHC(C2H5)CHO
2
2 2 1 .85 4.35 68 (155)
163 <100 insol. (325) K2121
ale.
492. Ethyl Silicate <c2HS)4Si4
493. Ethyl Vinyl Ether CH2CHOC2H5
18 100
2
2
0 .93 7.22 52
(125)
HOsubl. dec. (230)
si. sol., bz. BDH
15 2 4 2 .75 2.46 <-46 202 1.7-28 36 -115 si, sol. ale.
(<-501 (395)
(97) (-175)
494. Excelsior
29
495. Fatty Acids
24a
NTTC
496. Ferbam Fe[CH3)2NCS2)3
497. Ferric Chloride (60%) FeCl3
13 (15) 1b
2S ]s
2.80
- dec.
306dec. 740 (583)
ale., MbOH
498. Ferrosilicon Fe + Si
26
2S 5,4
-
-
insol.
NSC
499 Ferrous Ammonium Sulfate FeN2HgS208'6H20
11
1.86
100-10 26.920 dec.
(212-30)
PAGE 58
CMA 045682
SUBSTANCE/FORMULA
Ferrous Chloride ^MFeCl2
Waste Dis posal Pro* cedure (See VI)
11
cm Ferrous Sulfate &U ' FeS04-H20
11
502 Ferrovanadium Dust ' FeV
cn3 N-2-Fluorenylacetamide C15H13N0
2G 6
504. Fluorine F2
505 FJuoroacettc Acid ` CH2FCOOH
12a 4c
505. Fluoro-Boric Acid HBF4
507- 4-Fluoro-4*Biphenylamine Ci2Ht0NF
Fluoroethane, see Ethyl Fluoride
24b 6
508. Fluoroethylene C2H3F
4b
Fluorohydric Acid, see Hydrofluoric Acid
509. 2'-Fluoro-4-Phenylactanilide C14H1 2nof
6
1 t o h; 1
N. F, P. A. Health Fite React.
Is
!S (i) %
car.
2s
,1 4 0
3
2S
% car.
2St car.
'St
Sp. Gr.
3.16
Van.
Dens. (Airsl)
FI. Ft. C (F)
Ignit. Tamp.
C (F)
Flam. Limits
%
B.P. C <F)
1026 (1879)
M.P.
'C (FI
Sol. m HtO
g/lOOg
Other Solvents
670 64.410 ale. (1238)
2.97
-
sl. sol,
Misc. Ref.
1.1 >-'s
-
192 insol.
ale.
(378)
-188 -218 dec. (-307) (-360)
165 (329)
33 so! h (91)
I30dec, (266)
00
ale. ale.
AlA, MCA, MGB, NASA
BDH
- 2.6-21.7 -51
-160 insol. ale., bi.
(-60) (-256)
CMA 045683
SUBSTANCE/FORMULA
510. 2'*F|uoro-4'*Phenylacetanilide Cl4H12N(^F
Waste Dis
posal Pro
cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
6 car.
Ignit.
Vap,
FI. Ft. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
6C
Gr. <Air=1) <F)
(F)
%
lF)
M.P. "C (F>
Sol. in H2O
g/lOOg
Other Solvents
Misc. Ret
511. 4"'-Fluoro-4'-Phenylacetanilide Ci4H12NOF
512 Fluoro-Silicic Acid h2sif6
6 24b
car. %
-
dec. sol.
SDH
513. Fluorotnchloromethane CCI3F
514. Formaldehyde HCHO
515. Formalin (39% Formaldehyde Methanol Free)
516. Formalin (37% Formaldehyde15% Methanol)
517 Formamide HCONH2
26 1000
1.49
24 -Ill insol. ale. (75) (-168)
2 5 2 4 0 .82 1.08
430 7,0*73 (806)
-19
--92 sol.
1-3) (-134)
ale.
2 5 2 2 0 .82
85 (185)
101 (214)
25
2
50 (122)
101 (214)
20
2S 2S - 1.13
155
(310)
21 Idee. 2.6
(412)
(36)
00 ale.
BDH, NTTC, MCA, NSC
Form-Oimathyiarnide, see Dlmethylformamide
518. Formic Acid HCOOH
519. Fumartc Acid HOOCCH-CHCOOH
24a 5 24a
3
2
0
1.22
1.59
69
601 18-57
101
8.2
oa ale.
(156) 11114)
(213)
(47)
Is is
1.64
290subl. sl. sol. (554)
ale.
BDH
520. Furan C4H4O
18 10 1 4 1 .94 2.35 <0 32)
32 -86 insol. (90) (-123)
ale.
PAGE 60
CMA 045684
SUBSTANCE/FORMULA
furfural ^^C4H3OCHO
c22 Furfuryl Alcohol C4H3OCH2OH
523, Gadolinium ' Gd
r?4 Gallic Acid C6H2(0h>3C00h
525. Gallium Ga
526 Garments, Contaminated
527, Gasoline C5H12 t0 C9H2^
528- Germane Ge H4
5^9- Germanium Ge
530. Germanium Dioxide Ge02
531. Germanium Hydride Ge2H6
532 Germanium Tetrachloride GeCl4
Waste Dis posal Pro-
eedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P, A. Health Fire React,
25 1 2 1
78 50
1
2
1
Sp. Gr. 1.16
1.13
Vap, Dens. (Air=1)
FI. Ft. C
lF)
Ignit. Temp.
C lF)
Flam, Limits
%
B.P. c (F)
3 31 60 316 2,1-
(140)
(600)
162 (324)
3,37
75 491 1.8-16 3 (167)oc (916)
171 (340)
M,P. C (F)
-37 (-35)
-31 (-24)
Sol. in HzO
9/IOOg
9113
Cw
1 i Other I Solvents 1 Mise Ret ale | BDH NTTC
1
1------------------------ale CED
27k
79
-3000 1312
insol.
(- 5432) (2394)
24a 1.69
253dec. (487)
1 13 ale . ace.
27k TS
5.90
2403
30 msol.
(43571
(86)
29 IS -500
1
'
3 0 S 3 0-4.0 -43 280-456 1.4-7.6 38-204
(-45) (536-853:
(100-400)
NTTC
26
3S 3S
3.43
27k
2S 2S
5.35
!
27k 2S
6.24
-90 (-130)
-165 (-265)
2700
958
(4892) (1756)
insol.
noo (2012)
insol.
AIA AIA
17
6.74
1.5S
29 -109 dec.
AIA
(84) (-164)
1b 5
3s
1.88
86 (187)
-50 (-57)
dec.
ale.
AIA
CMA 045685
SUBSTANCE/FORMULA
533. Glutaraldehyde OCH(CH2)3CHO
534. Glutaric Anhydride C5H603
53$. Glycerol CH2OHCHOHCH2OH
536. Glycido! C3H6O2
537 Glycolic Acid HOCH2COOH
538. Glyoxal OCHCHO
539. Grain Fumigants {Agricultural Insecticides)
54Q. Greases
541. Guaiacoi HOC6H4OCH3
542. Hafnium Hf
543. Helium He
544 Heptachlor C10H5CI7
Waste Disposal
Pro cedure (See VI)
TLV (ACGIH)
PPM (mg/M3)
N. F. P. A. Health Fire React.
2
Igmt.
Vap.
FI. Ft. Temp, Flam.
B.P.
Sp. Dens. C
C
Limits
c
Gr. (Air=1) (F)
(F)
%
lFI
M.P.
C lF)
Sol. in H2O
g/IOOg
Other Solvents
.72 3.4s
I88dec. (370)
ale.
Misc. Ref.
24a 303 (577)
18 1 1 15 50 %
0
1.26
3.17S
160
393
(320)
(739)
1.12
2.15s
29Gdec. (554)
18 (64)
160dec. (320)
ao
ale , CS2
MTTC
QO ale., b*.
24a 2S
dec.
79
(174)
sol.
ale.
2
2S 'S
1.14
50 (122)
15 v. sol. ale. (59)
BDH
7h 122-140 (50-60) oc
18
15
2S 2S
1.13
82
(180)
205) (401)
28 1.715 ale. (82)
NTTC NTTC
27k (.5)
13.31
20 5400 2150 insol.
(68)
(9752) (3902)
26 'S
.13
-269 -272 (-452) (-458)
@26atm.
.9
4b (.5)
3S
1.58
95 (203)
insol.
aic.
PAGE 62
CMA 045686
SUBSTANCE/FORMULA
Heptane CH3(CH2)5ch3
2-Heptanone. Methyl Amyl Ketone
3>Heptenona,, see Ethyl Butyl Ketone
K4S. n-Heptylamine c7h16nh3
647 Hwuchlorobenim cgcie
HexacMorocyelohexane, see Lindane
548, Hchloroth,r CI3CCCI3
549, Hexachloronaphthalene ClOH2cl6
550 Hexafluoroethene G2F6
55I Hexamethy/sne Tetrtmine <CH2)6N4
552. Hmn CH3{CH2l4CH3
553. 1,6-Hexanediemine NH2(CH2)6nh2
Watte Dis
posal Pro
cedure (Sae VI)
TLV (ACGIH)
PPM
Img/M^)
N. F, P. A, Health Fire React.
is 500
30
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P.
$p. Dens, C
C
Limits
C
Gr. (Ar=1) (F)
(F)
%
(F)
M.P. C <F|
Sol. in
H2O g/IQOg
Other Solvents
Misc. Ref.
.68 3,45 -4
223 i .2-6.7
98
-91 insol. ale.
(25) (433)
(208) (-132)
BDH
7a
2
2
0
.77 4,0
54
158 -23 si. so). ale.
(129)oc
(316) (-7.6)
4b 's
1.57
9.8S
242 (468)
-
322 (612)
230 (446)
insol.
b2.
26 4b (.2) 26
2S 3s
7a 18 500
2S 1
7a 2S
Ost s 30 Is
2.09
186 (367)
insol.
ale.
1.59
-
1.33
-
.66 237
-79
-94
(-110) (-137)
insol.
$1. sol., ale.
250 (482)
- - 280subJ, v. sol. ale., ace. (536)
-22 (-7)
261 (502)
1,1-7.5
68 (154)
-96 (-141)
insol.
ale.
SDH,NTTC
204 (399)
42 1108)
v, sol.
ale., bz.
PAGE 63
CMA 045687
SUBSTANCE/FORMULA
Hexanedioic Acid, see Adipic Acid
Waste Dis posal Pro
cedure (See VI)
TLV (ACGIH)
PPM
|mg/M3)
N. F. P. A. Health Fire React,
Ignit.
Vap.
FI. Ft. Temp. Flam.
B.P.
Sp. Dens. c
*C
Limits
c
Gr. lAr=1) ("FI
(F)
%
(FI
M.P. C (F)
Sol. m HjO
0/1 OOg
Other Solvents
Misc. Ret.
Hexanoic Acid, see Caproic Acid
554, m-Hexanol CH3<CH2)4CH20H
2-Hexanona, see Methyl Butyl Ketone
555, 1-Hexene H2C=CH(CH2)3CH3
556. 2-Hexene CH3CH=CHCH2CH2CH3
IS
1
2
0
.81 3.52
60 293
158
-45 si. sol. ale,, bz.
BDH
(140)
(559)
(316)
(-49)
18 500 18
1 1
3
0 .7
2.97
<-7
20)
3 0 .68 2.92S <-7 20)
1.2-6.9
63
(145)
-139 insol. (-218)
ale.
69 (156)
-146 insol. (-231)
ale.
Hexone, see iso-Butyl Methyl Ketone
557. sec-Hexyl Acetate
18 50
1
2
0 .86 4.97 45
(CH3)2CHCH2CH2CH200CCH3
(113)
141 (286)
--64 insol. (-83)
ale.
Hexyl Alcohol, see m-Hexanol
558. Hexyl Amina c6h13nh2
559. Holmium Ho
560. Hydracrylic Acid-0-Lactone C3H4O2
7i 2 3
27k 24a car.
st 2
0 .76 3,49 29 (84)oc
8-80
1.15
2.5
74 (165)
129 (264)
-19 si. sol. (-2,2)
ale.
2600
1461 in$oi.
(4712) (2662)
2.9-
155
-33 dec.
chi.
(311)
(-27)
PAGE 64
CMA 045688
SUBSTANCE/FORMULA
Hydrazine HjNNHj
Waste Dis posal Pro cedure (See VI)
tlv
(ACGIH) PPM
(mg/M3)
N. F. P. A, Health Fire React.
16 1
333
562 Hydrazaie AchJ ' HN3
81 %
563 Hydrazine Saltt and Solutions
16
1
% 2S
564. Hydnodic Acid HI
24b 5MGB
%
565 Hydrobromic Acid HBr
566 Hydrochloric Acid HCI
567 Hydrocyanic Acid HCN
568. Hydrofluoric Acid HF
569. Hydrogen H2
Hydrogen Bromide, see Hydrobromic Acid
24b 3 24b 5 14 10 24b 3 .2?
% 30 44 40 04
0 2 0
Igmt
Vap.
FI. Pt. Temp. Flam,
B.F.
Sp. Dens, C
C
Limits
C
Gr. (Air=1) (F>
tFI
%
(F)
1 01
UNFPA 38 (100)
Varies with
Surface
4.7-100
113 (236)
(74-
5186F)
1.09
exp.
37 (99)
M.P. C (F)
Sol. in
H2O g/IOOg
Other Solvents
1.4 v. sol. ale. (34)
-80
Op aic.
(-112)
Misc. Ref.
Al A, SDH, MCA, MCB. NASA
- 0OH, MCA
5.66 3.50
-35 (-31)
@4 atm
-51 42,5<> (-60)
-67 -87 221 (-89) (-125)
ale. ale.
1.19
1-3S
none
-85 (--121)
-115 830 (-175)
ale., bz.
.69 .93NFPA
-18
538 6-41
(0) (1000)
26
-14
QC ale.
(79) (6.8)
1.0 71s
none
20 -83 (68) (-117)
90
.09 .069
585 4-75 (1085)
-253 -259 2.10 (--423) (--434)
ale.
BDH
BDH, MGS
Al A, BDH, NTTC MCA, MG0 BDH, MCA
AIA, BDH, MCA.SDS, MGB. NSC MCA, NASA
Hydrogen Chloride, see Hydrochloric Acid
Hydrogen Cyanide, see Hydrocyanic Acid
PAGE 65
CMA 045689
SUBSTANCE/FORMULA
Hydrogen Fluoride, see Hydrofluoric Add
West* Dll' potel Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N, F. P, A. Health Fire React.
Ignit
Vap.
FI. Pt. Temp. Flam.
B.P,
Sp, Dana. C
C
Limits
C
Gr. (Air=l) (F>
(Ft
%
(F)
M.P. C (F)
Sol, in H2O
g/100g
Other Solvents
Mix. Ref.
Hydrogen Iodide, eee Hydrlodic Acid
570. Hydrogen Peroxide H202 (90%)
22a 1
2
0
3 1.39
-
140 (284)
00 ale.
MCA
571. Hydrogen Peroxide (27-52%)
572. Hydrogen Selenide H25e
573. Hydrogen Sulfide H2S
22a 1 2 0 1 1.39
27* .05 23 10
3S 3s
2,00
2.8S
3 4 0 1.19 1.2NFPA
*
107 -11 Ob ale.
SDH, MCA
1225)
(12)
for 35%
-42 (--44}
-64 (-83)
3774
cs2
260 4,3-46 (500)
-60
-83
(-76) (-117)
437
ale., CS2
AIA, MCA, MGB. NSC
574. p-Hydroquinone C6H4(OH)2
18 (2)
2S
Is
-
1.33
3.85
165
(329)
- 285 171 sol. ale.
(545)
(340)
575. Hydroqulnone Monomethyl Ether CH3QCQH4OH
576. Hydroxydimethylersine Oxide ICH3)2AsOOH
15 7b
2S Is 3s
1.55 -
131 (268)
421 (790)
- 246 54 sol. (475) (129)
ale,, bz.
-
--
200 v. sol. ale.
(392)
577. Hydroxylemine NH2OH
7a
1
3
3 1.20
- I29exp.
(264)
56 (133)
34 sol. (93)
ale., MeOH
578. Hydroxylemine Hydrochloride nh2oh.hci
7a
2S 3s
1.67
-
-
dec. 153 83*7 ale., MeOH (307)
Hypo, see Sodium Thiosulfate
PAGE 66
CMA 045690
SUBSTANCE/FORMULA
Waste Dis posal
Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
Ignit,
Vap,
FI. Pt. Temp. Flam.
B.P.
$0. Dens. C
C
Limits
C
Gr. <Air=1l (F)
(F)
%
(FJ
M.P.
C <F)
Sot. m
H2O g/IOOg
Other Solvents
Mise. Ref
^ Diethanolamine
579, 5-lndinol C9H10O
58O. In
cgt, industrial Gas (Liquefied Hydrocarbon Gas)
18 27 k 18
3S 2S
255 (491)
55 (131)
*1. SO). ale.
7.3
-
2000
165 insol.
(3632) (311)
-108 (-162)
NTTC
582. Iodic Acid HIO3
24b
3s 2$
4.63
--
HOdec. 28B'8 ale. (230)
583. Iodine '2
584 Iodine Chloride tci
585 Iodine Pentefluoride IF5
588 Iodine Trichloride ICI3
12a .1 21 21 3 21
3S 3S 2S 3s 3$ 's
- 4.93 3.18
3S 3.75 3.12
-
- 184 113 .0320 ale., bz., BDH, NSC
(363) (235)
cs2
97 14-27 dec. (207) (57-81)
ale.
BDH
98 (208)
9.6 dec. (49)
MGB
77dec. 101
(171)
(214)
dec.
@16 atm.
ale., bz,
BDH
587. lodoecetic Acid C2H3102
4c !st
dec. 82 sol. (180)
ale.
lodoethene, see Ethyl Iodide
todomettone, see Methyl iodide
CMA 045691
SUBSTANCE/FORMULA
3-lodopropenc, see Allyl Iodide
588. Isoprene CH2C(CH3)CHCH2
Isothiocyanic Acid, see Methyl Isothiocyanate
589a Jet Fuel JP-1
589b Jet Fuel JP-4
589c Jet Fuel JP-5
589d Jet Fuel JP-6
590. Kerosene
591. Ketene ch2co
592. Laetonitrile CH3CH|OH)CN
593. Lamps, Fluorescent
594. Lanthanum La
Waste Dis posal Pro cedure (See VI)
TLV IACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fir* React.
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. |Ain=l) (6F)
("FI
%
(F)
M.P. C (F>
Sol. in HjO
g/IQOg
Other Solvents
Misc. Ret,
18
2
4
1
68 2.35 -54
220
34
-147 insol
ale
(-65)
(428)
(93) (-233)
18 18 18 18 18 18 .5 14 26 27k
020
35-63
228
(95-145) (442)
<-46 (<--501
NTTC
1 30
-23-1 (-10-30)
242 (468)
<-46 {<--50)
NTTC
020
35-63
246
(95-145) (475)
<-46 --50)
NTTC
.8 <i
38 224 .6-3.7 121 <-46
(100) (435)
(250) --50)
NTTC
0
2
0
.81
4.5S
38-66
229 .7-5
170-300 <-46
(100-150) (444)
(338-572) (<--50)
NTTC
3s 1.45S
-56 -151 (-69) (-240)
dec.
dec., ale.
% 3S
.99 3.45s
77
(171)
182dec. -40
(360)
(-40)
Op
cs2
is 3S
6.15
3470
920
(6278) (1688)
dec.
PAGE 68
CMA 045692
substance/formula
ftks. Lacquer Oiluent
596. U*
no? Laurie Acid 0 CH3lCH2)ioCOOH
598 UurOyl Peroxide (ChH23CO)22
599. Lead Pb
600. Lead Acetate Pb(C2 ^02)2-2 H20
601, Lead Arsenate PbHAs04
g02. Lead Carbonate {PbC03)2 Pb(OH)2
603. Lead Nitrate Pb(N03)2
604. Lead Oxide PbO
605. Lead Thiocyanate Pb(SCN)3
606. Ligroin
Waste Dis posal Pro* cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A.
Health Fire
React.
18 3 0
Ignit.
V#p.
FI. Pt. Temp. Flam.
B.P.
Sp. Deni. 6C
C
Limits
C
Cr. (Air=*1) (F)
(FI
%
(F)
M.P.
6C lF>
Sol. in
Other Solvents
.7
-11 232-88 1.2-6
88-107
(12) (450-550
(190-225
Mik. Ref,
26 24# 22b
2S 'S
.87
02 3
299 (570)
48 (118)
insol.
ale., bz.
49 (120)
insol.
NTTC NFPA
27a 1.2) 27f -
3$ 2$ 3$
11.3 3.25
1744 (3171)
327 (621)
insol.
75 (167)
4420
27cJ (.15)
3$
7,80
720dec. insol. (1328)
27f 3S - 61.4 27f 1 0 1 4.53
400dec. insol. (752)
470dec. 38 (878)
ale.
27f (.15) H H
~9.5
888 insol. (1630)
BDH, MCA
27f 1 i 1 3.82
190dec. Insol. (374)
18 <22 72)
BDH
PAGE 69
CMA 045693
SUBSTANCE/FORMULA
Umonant, am Dipentene sea p-Moutha-1,8-Diene
607. lindane CeHgCle
608. liquefied Petroleum Gas (LPG)
609. Lithium Li
610. Lithium Aluminum Hydride UAIH4
611. Lithium Borohydride L1BH4
612. Lithium Carbonate L12CO3
613. Lithium Hydride LIH
614. Lutecium Lu
615. 2,6-Lutidine (CH3)2C5H3N
616. Magnesium Mg
617. Magnesium Chlorate Mg(CI03)2.6H20
Waste Dispossi Pro
cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
Ignil
Vsp.
FI. Ft. Temp. Flam,
B.P.
Sp. Dens. C
C
Limits
"C
Gr. (Air=1) (F)
(F)
%
l"F)
M.P. C (F)
Sol. in H2O
g/IOOg
Other Solvents
Misc. Ref,
4b (.5)
3$
1.87
-
288 (550)
113 insol. (235)
ace., bz.
18 1000
3S
<-46 K--50)
-
NTTC
3 1 1 2 .53
- 1337
179 dec.
(2437)
(354)
AIA, BDH,NSC
17 3 1 2 32
125dec. dec. (257)
BDH, NSC
17 2S - .66
284 (543)
279 dec. 1534)
BDH,NSC
11 2.11 17 (.025) 1 4 2 .82
27k
2S
9.84
-
May Ignite Spontan eously
1310dec 723 $1. sol. (2390) (1333)
- 680 dec. (1256)
3327
1652
(6020) (3006)
BDH
7a
-
.92 3.7S 38-46
-
144 --6.6
si. sol,, ale. BDH
(100-15)
(291)
(20)
27a 0 1 2 1.74
-
1107
651 dec.100
(2025) (1204)
12a *
2S 3S -
1.80
*
120dec. 35
12910 ale.
(248)
(95)
AIA
PAGE 70
CMA 045694
substance/formula
Btgig Magnesium Chloride
VigCi?
ci9 Magnesium Nitrate Mg<N03)2'2H2^0
620 Magnesium Oxide MgO
621 Magnesium Perchlorate MglCI04)2
622 Malathion CiOH196PS2
623 Malaic Acid HOOC(CHI2COOH
624 Maleic Anhydride (C0CHI20
625- Manganese Mn
626 Manganese Sulfate MnS04
627 p-Mentha-1, 8-Diene Ciqh16
Mercaptoacetic Acid, see Thioglyeohc Acid
628 2`Mercaptoethanol HSCH2CH2OH
Waste Dis posal
Pro cedure
(See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P, A. Health Fire React.
11 2S
SpGr.
2 32
Vap. Dens. (Air=1)
FI. Pt. C (F)
Igmt. Temp,
C
lF)
Flam,
Limits %
B.P. C ("FI
M.P. C (FI
Sol. in H2O
g/IOOg
1412
708 5420
(2574) (1306)
i
Other Solvents
Mim:, Ret.
ale
11 1 0
26 (15)
2S
1 2 03 3 65
330dec (626)
129 (264)
sol
3600 --2600 si sol (6512) (4712)
ate, --T---------------
12a 1 0 1 2 2
7b (15)
3S
24a 2S Is
1 23 1.59 4 0S
25ldee (484)
SO2 5
ate
j
156
(313) Q? 7mm
29 (37)
135dec, (275)
si sol
ale., bz
1 v sol. | ale . ace
124a m
3
0
9
3.4s
102
477 1,4-7 1
202
53 dec
ace
(216) (890)
(396) (127)
AIA, MCA
27a (5) 7S 2S
7 20
2030
1260
(3686) (23001
dec
11 2S
3 25
850dec (1562)
700 (1292)
526
ale
18 1
2
0
3.84
7 4S
45
237 .7-6.1 170
<60 insol
(113) (458)
(338) (<140)
13
22
1 14
2 69
74qc
(165)
157 (315)
sol ale
PAGE 71
CMA 045695
I
SUBSTANCe/FORMULA
629 Mercuric Chloride M9CI2
630 Mercury Hg
631 Mercury Compounds (Organic!
632 Mercury Fulminate HgC2N202
633 Mesityl Oxide CgHioO
634 a-Methacrylie Acid CH2C(CH3>COOH
Waste Dis posal Pro
cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Ftr* React.
27b 3S
Sp. Gr.
5 44
Vap.
Dens. (Air=1)
FI. Ft. C ("FI
Ignit. Temp.
C (F)
Flam.
Limits %
B.P.
C (F)
304 (579)
M.P. C (F)
277 (531)
Sol. in H2O
g/lOOg
69=0
Other Solvents
ale
27b 01
3S
13 6
357 (674)
-39 (-38)
msol
27b ( 01)
3S
27b 18 25 24a
3S 3S
4 42
330
86 35
31 344 (88) (652)
3 2 2 1,02
77oc (171)
exp si 501, ' ale
108 (226)
-59 (-74)
sol
158 (316)
16 sol (61)
ale ale
63B Methane ch4
636 Methanesulfonic Acid CH4O3S
18 4c
1 4 0 42 6 1 48
537 (999)
5-15
-161
-183 si sol,
(-258) (-297)
167 (333)
20 v. sol (68)
b? ale,
Methanethioi, see Methyl Mercaptan
637 MethoxychlOr (DMDT) (CH30C6H4)2CHCC(3
4b (15)
12S
94
insol
org.sol
(201)
2-Methoxyphenol, see Guaiaco!
4-Methoxy Phenol, see Hydroqumone Monomethyl
Ether
Misc, Hef.
AIA, BDH, NSC BDH NSC BDH
PAGE 72
CMA 045696
CMA 045697
SUBSTANCE/FORMULA
Waste Dll' poial Pro cedure (See Vl)
TLV (ACGIH)
PPM
<mg/M3|
N. F, P. A.
Health Fire
React.
644 10-Methyl-1, 2-Benzanthracan# ClSHnCH3
18
Car
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp, Dens. C
C
Limits
C
Gr. (Air=1> (F)
l6F)
%
lF)
M,P,
C (F)
Sol. in HjO
g/IOOg
! j
Other Solvents
Misc. Ret
141 (286)
insol
die ace , CSj
645 Methyl Benzoate
18
0
2
0
1 09
4 69
83
CGH5CQ2CH3
1181)
200 (392)
-13 18 6)
inSOl
ale . MfOH
646 frMethylbenzyl Alcohol C6H5CH(CH3)QH
18
1
1
0
1 02
421s
96
(205)
'203 (397)
21 170)
647 Methyl Bromide CH30r
4b 20
3
1
0
1 73
3.27
537 (999)
10-16
4 (401
-95 (-139)
si sol.
ale CS2
AIA, BDH MCA MGB
648 2-MethyM-Butene C5H1Q
18
4
0
66 2 4
<-7
(<--20)
39 (102)
-134 (-209)
649 2-Methyl-2-Butene CSH10
650 3-Methyl-1-Butene CgHlO
651 N-Methylbutylarmne CH3(CH2)3NHCH3
18
3
0
67 2 4
<-7
(< 20)
18 1000
2S
4
0
67
2,42
<--7
K20)
7a
74 3.0
13oc
(55)
38 (100)
-123 ( 189)
1 6-7 7
20 (68)
-68 (-90)
insol
ale
_______
msol
ale
91 (196)
652. Methyl Butyl Ketone CH3OC(CH2)3CH3
18 100 2
3
0
81
3.45
35oc
533
1 2-fi
126
-57
(95)
(9911
(259)
(-711
ale
653. Methyl Butyrate CH3COOC3H7
18
2S 3
0
90 3.53
14
(57)
102 (216)
<-97
si sol
K -143)
ale
654 Methyl Ceilosolve H3C-0'CH2-CH20H
18
25 2S
2S
.97 2 62
46
288 2,3-24 5 125
-87
<x> bz
(115)
(551)
(257) (-125)
BDH
655 Methyl Ceilosolve Acetate CH3C00CH2CH20CH3
18
25 3S
2S
1.01
4 07S
49
394 1.5-12 3 145
-70
sol
(120)
(740)
(293)
(-94)
PAGE 74
CMA 045698
SUBSTANCE/FOflMULA
Hg Methyl Chloride
W CH3C1
Methyl Chloroform, see 1,1, 1-Tnchloroethane
Waste Dis posal Procedure {See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
4b 100 2 4 0
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P,
Sp. Dens. C
C
Limits
C
Gr. {Ain=1) (F)
<F)
%
(eF)
M.P Sol, irt
C
H2O
Other
(FI g/l00g Solvents
1 4 1 SNFPA
632 10,7-17 4 -24
-98
(1170)
(-11) (-144)
!>Ol
ale
Misc. Ref MCA, MGB
5? Methyl Chloroformate CICOOCH3
658 3-Methyl Cholanthrene C21H16
Methyl Cyamda, see Acetonitrile
4b 18
3S car
1 24 1 28
3 26s
12 504 (54) (940)
71 (160)
280 (536) @80mm
180 (356)
dec ale , bz
|
BDH
659. Methyl Cyclohexane C0HhCH3
18
ggO (j-Methyl Cyelohexanol ` CH3C6H10OH
18
661 2-Methyl Cyclohexanone CH3C5H9CO
18
062 4-Methyl Cyclohexene C6H9CH3
18
663 3-Methyl-4*DimethylemmoazoBenzene C15H17N3
8
664 Methylene-Bi-Phenyhsocyanate OCNC6H4CH2C6H4NCO
6
Methylene Chloride, see Dichloromethane
500 7$ 100 3S 100
car 02
3 2 2 3
0
77 3,39
-4 285
1.2-
100 -126
insol ale
(25) (645)
(212) (-195)
0 92 343
296 (565)
165 (329)
-20 (--4)
si sol
ale
0
92 3.86
59
(138)
165 (329)
insol
ale.
0
80 3.34
-- loc
(30)
103 (217)
-116 (-177)
insol
ale
1.19
194-9 (381-90 @ 5mm
37 (99)
8DH BDH BDH
PAGE 75
CMA 045699
SUBSTANCE/FORMULA
Methylene Chlorobromide, see Bromochloromethane
Methylene Di-p-Phenylene Isocyanate, see Methylene Biphenyl Isocyanate
665 Methyl Ether CH3OCH3
Waste Dis posal Pro* cedure (See VI)
TLV (ACGIH)
PPM
N. F. P. A, Health Fire React.
15
%4
0
Ignit
vp.
FI. Pt. Temp. Flam,
B.P.
Sp. Dens. C Dr. |Air=1) l-F)
C
Limits
c
laF) % |F)
!
M.P. *C (F)
Sol. m H2O
g/lOOg
Other Solvents
Misc, Ref
66 1.56 -41 350 34-18 -24 -139 sol
(-42) (662)
(-11) (-218)
ale,
MCA
666 Methyl Ethyl Ether CH3OC2H5
15 400
2
4
1
73 2 07 -37 190 2-10,1
11
(-35) (374)
(52)
sol. ale.
667, Methyl Ethyl Ketone CH3COCH2CH3
IS 200
1
30
81 2 5S
-7 515 (201 (960)
2-10
80 -87 (175) (-124)
V sol
die bz
AIA BDH, NTTC. MCA
668 Methyl Ethyl Ketone Peroxide CH3CO2C2H5
22b
224
52-93 1125-200)
1 lOexp, sol (230)
ale
infra
669 Methyl Ethyinitrosocarbamaie C4H8N2O3
4a
Car
670 Methyl Formate HCOOCH3
18 100
2
4
-
0
,99 21NFPA -19 456 5,9-20
32 -100
V, sol
ale.
(-2) (853)
(90) (-148)
BDH
671 2-Methyl Furan c5h6o
18 2S 3
92 zss
-30
(--22)
63 -89 (145) (-128)
msol
ale
5-Methyl-3>Heptanone, see Ethyl Amyl Ketone
672 Methyl Hydrazine CH3NHNH2
673. Methyl Iodide CH3I
16 2 4b 5 3S
9 2.28
1 6 <27 {<80)
4.89$
87 <-80 sol (189) K-112)
ale.
43 (109)
-67 $1 sol. (-89)
ale
MCA BDH
PAGE 76
CMA 045700
1
SUBSTANCE/FORMULA
^^74 Methyl Isobutyl Ketone CH3COCH2CH(CH3)2
Waste Otsposal
Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
18 100
2
3
0
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P.
sp. Oens, C
c
Limits
C
Gr. (Air=1) lF)
("FI
%
(FI
M.P.
C (F)
Sol. in HjO
g/IOOg
Other Solvents
80 3,5S
23 460 1 4-7.5 117 -85 si sol. ale,, b2
(73) (860)
(243) (-121)
Miie. Ref. MCA
675 Methyl Isobutyrate (CH3I2CHCQ2CH3
18
86 3.5s
13oc 482 (55) (900)
92 4198)
-84 1-119)
si. sol
ale
676 Methyl Isocyanate CH3N=-C=0
077 Methyl Isothiocyanate CH3NCS
18 ,02 9 3S
97 1 67
44 (111)
119 (246)
36 si, sol (97)
ale
2 M Ethyllactomtnle. see Acetone Cyanohydrin
073 Methyl Mercaptan CH3SH
13 10 2 4 0 ,87 1 66 <-18 0)
3 9-21.8
76 (451
-123 si sol. (-1891
ale
MGB
079, Methyl Methacrylate CH2C(CH3)COOCH3
680 1-Methylnaphthalene C10H7CH3
18 100
2
3
2
94 3.6
10
421 2 M2.5 100
-50
si. sol
ate
(50) (790)
(212) (-58)
18 2 2 0 1.03
528 (982)
240-3 -22 (464-9) (-7,6)
msof
ale,
BDH, MCA
081 l-Methyl-2'Naphthylamme CH3C10H6NH2
682 N-Mathyl-N-Nitrosoacetarmde C3H6N202
5 6
Car Car
51 (124)
org. sols/
683 N-Methyl-N-N>trosoallylamine C4HgN20
6
Car
584 N-Methyl-N-Nitrosoanilin# CeH5NINO)CH3
G
Car
1,13
255dec. (491)
15 (59)
insol,
ale.
PAGE 77
CMA 045701
SUBSTANCE/FORMULA
685 N-Methyl-N-Nitrosobenzyla* mine C3H10N2Q
Waste DiS* posal Pro cedure
(See VI)
TLV (ACGIM)
PPM
(mg/M3)
N. F. P, A. Health Fire React.
G car
686 1-Methyl* 1'Nitrosourea H2NCQN<NO)CH3
6
car
Ignit.
Vap.
FI. Pt. Temp, Flam.
B.P,
Sp. Dens. C
C
Limits
C
Gr. |Air=1) (F)
("FI
% <F>
M.P. C (F>
Sol. m HzO
g/lOOg
1 |
Other Solvents
Misc. Ref
123dec (253)
insol
ak bz
687 N'Methyi'N'Nitrosovmyla' mine C3H5N2Q
688 Methyl Parathion (Xylene solution) c10Hi0no5ps
2-Methyl-2-Propanethiol, see t-Butyl Mercaptan
6 car.
7b 1 11
4
3
3-
46 (115)
689 Methyl-n* Propyl Ketone CH3CO(CH2)2CH3
690, 1-Methylpyrrole CH3C4H4N
691 Methyl Salicylate HOC6H4COOCH3
692. a-Methyl Styrene C8H7CH3
693 m.'P'Methyl Styrene CH2CHC6H4CH3
IS 200
2
3
0
81 30
7
505 1 6-8 2 102
-78
si sol ) ale
(46) (941)
(216) (-108)
BDH
6
3
91 2.8
16
115 insol i hIl
___ L___(61) (239)
18 1
0
1.18
E24S 101
454
(214) (850)
223 (433)
-8.3 (18)
Sl sol
ale
IS 100
1
2
1
92
4 08g
54
574 1 9*6 1 167-70 -23
msol
ak
(129) (1065)
(333*8) ("9.4)
18 100
2
2
0 .89 4 08 57 494 9 170 -83
(134) (921)
(338) 1-1171
NTTC
Methyl Sulfate, see Dimethyl Sulfate
Methyl Sulfide, see Dimethyl Sulfide
PAGE 78
CMA 045702
substance/formula
Methyl Sulfoxide, see Qimeihyl Sulfoxide
Wane Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
Ignit.
vap.
FI. Pt. Tamp. Flam.
B.P,
$p, Dans. aC Gr. (Airsi) lF)
C
Limits
C
(F) % (F)
M.P. C lF)
Sol. m H?o
g/IOOg
Other Solvents
Misc. Ref
694 N-Methyl*N-2,4,6*Tetrenitro- 6 (1.5) 2S 3S aniline C7H5N5O8
695 Methyl-p-Toluene$ulfonate CH3C6H4S03CH3
18
cos Methyl Vinyl Ether ' h?C=CH-0-CH3
g97 Mixed Acids (HNO3+H2SO4)
15 24b
242 4
1.57
1 23 6 45S
77 2 0
-51 (-60)
None
187exp 130 (369) (266)
msol.
si. sol
27
insol
bz , ale
(81)
8 -122 (46) (-188)
si sol
Qrq Sotv
None Vanes Vanes
MCA
698 Molybdenum Mo
699. Molybdenum Compounds (insoluble)
27a 2S
26 (15)
*S
10 2
5660
2622
(10040) (4751)
i i
,
700. Molybdenum Compounds (Soluble)
11 (5) 'S
701 Monochloroamine NH2CI
19
-66 (-87)
sol
ek
Monochlorobenzene, see Chlorobenzene
702 Monomethylamme CH3NH2
703. Morpholine C4H9NO
7a 10
3
4
0
1 1NFPA -10 (14)
430 4 9-20 8 -6-3
(806)
(21)
-94 (-137)
v sol.
ale
BDH, MCA. MGB
5 20 2
3
0
.99 3.00
38oc 310
(100) (590)
128 (262)
-4,9 (23)
CjO org, solv.
PAGE 79
CMA 045703
SUBSTANCE/FORMULA
Motor Fuel Antiknock Com pounds, see Tetraethyl Lead
Waste Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P, A, Health Fire React.
Muriatic Acid, see Hydrochloric Acid
Mylone, see Crag 974
Ignit.
Vap.
FI. Pt. Temp, Flam.
8.P.
Sp. Dens. *C
C
Limits
C
Gr. (Air=1) (F)
(F)
%
(SF)
M.P,
C <F)
Sol. in
H2O g/IOOg
Other Solvents
Misc. Ref,
704 Naphtha (Coal Tar)
18 200 2 2 0 87
42 (107)
277 (531)
149*216 (300-421)
NTTC
Naphtha (Petroleum), see Petroleum Ether
|
705 Naphtha, Varnish Makers and 18 500 1 Painters, 50Flash
3 0 <1 4 1 10 232 9-6 7 116-43 j
(50) (450)
(241-89)
7Q6 Naphtha, Varnish Makers and Painters, High Flash
18 500 1
3
0
<1 4 3
29 232
1-6 139-77
(85) (450)
(282-351)
707 Naphtha. Varnish Makers and Painters, Regular
18 500 1
3 0 <1
-2 232 (28) (450)
.9-6 100-60 (212*320)
708, Naphthalene CioHe
18 10 2
2
0
1 15
4.42
79
526
.9-5.9
210
80
msol,
CS2
MCA
(174) (979)
(410) (176)
ale., bz-
Naphthalene Ethylene, see Acenaphthene
709 1-Naphthol CtoHyQH
710. 2-Naphtho! C10H7OH
18 18
2S 2S is
1.10
1,22 4 97S 153 (307)
288 (550)
96 (205)
295 (563)
123 (253)
msol,
ale , bz
msol.
ale., bz
PAGE 80
CMA 045704
CMA 045705
SUBSTANCE/FORMULA
Waste Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
722a Nitrate'Nitrite Salt Baths (53% KNO3/40%NaNO2,7%N3N03)
11
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Or. (Air=1) (F)
(F)
%
(F)
M.P.
C (aF)
Sol. in HzO
g/100g
Other Solvents
Mise. Ref
140 (285)
NSC
722b Nitrate-Nitrite Salt Baths (50%KNQ3,5Q%NaNO2>
11
220 (428)
NSC
Nitrating Acid, see Mixed Acids
723 Nitric Acid HNO3
724 Nitric Oxide NO
24b 2
25 >/
20 3S
1 1 50 3S 1 34 1 04S
86 (187)
-42 <-44|
dec ale
-153 -164 (-243) ( 263)
7 3
ale
A1A BOH. NTTC MCA
AIA, MGB
2,2',2"-Nitrilotriethanol, see Triethanolamine
1
725 3-Nitroacetophanone NO2C6H4COCH3
726 m-Nitroamlme NO2C6H4NH2
727. o> Nitroanilme NO2C6H4NH2
6 6 6
3st 'St 'St 1.18 3St 'st 'St 1 44
168oc 521 (335) (970)
202 (396)
81 <1781
V 501 | die
306 (583)
114 (237)
si sol
ale . bz MeOH
284 (5431
71 (160)
Sl sol
hIc , bz
BOH 8Dh
728 p-Nitroamhne NO2C6H4NH2
61
3
1 44
199 (390)
336 (637)
146 (295)
m$o!
die , MeOH BDH,MCA
729 Nitrobenzene C6H5NO2
730 o-Nitrobiphenyl C6H5C5H4N02
61
32
0 1 20 4.24 88 482 1 8- 211
5 si. $ol ale., bz
AIA
(190)
(900) @2QQF (412)
(41)
BDH, MCA
6 Car
2
0
1,44
6.9S
143
180
(290) (356)
330 (626)
35 insol, (95)
ale
PAGE 82
CMA 045706
substance/formula
Nitrochlorobenzene. see chloromtrobenzene
731 Nitroethene CH3CH2NO2
732 2-Nitrofluorene C13H9N02
733, Nitrogen N2
734 Nitrogen Dioxide NO2
735 Nitrogen Fertilizer Solutions
Nitrogen Tetroxide, see Nitrogen Dioxide
736, Nitrogen Trifluoride ' NF3
737 Nitrogen Trioxide NO3
738 Nitromethane CH3NO2
739 a-Nitronaphthaiene ' C10H7NO2
740, m-Nitrophenol NO2C6H4OH
Waste Difr posal
Pro cedure (See VI)
TLV (ACGIH)
PPM Img/M3)
N, F. P. A, Health Fire React.
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P,
sp. Dens. C
C
Limits
C
Or. (Air=:1) (F)
(FI
%
(F)
1
M.P.
C (F)
Sol. in HjO
9/100g
Other Solvents j
1 j
Misc. Ref
4a 100 1
3
6 Car
26
-&WT
5
26
0s 3s 0
3
1 05
2,58
28
415 3 4- 114 -90 $01. ale.
(82) (779)
(237) (-130)
AIA, BDH
160 (320)
insol.
hot bz
1,25
-196 -210
2 3 j si sol ale MCA
(-321) (-346)
1 1.49 1.59S
! 1__________ 1__________ :__________
20 i 11 (66) ! (12)
! ..
dec 1 chl.,CS2
1 - : <-73
' l-ioo)
At A, MCA, MGB. NASA
NTTC
12a 10
3s 3s
1.59
-129 -209 (--200) (-344)
si. $Ol
26 5
3S
1.45
35 -102 (38) (-152)
eth MG8
4a 100
1
3
4
1.14
211S
35
418 7.3-
101
-28
sol. ale.
(95) (785)
(214) (-18)
AIA
6
1
1
0
1.14
5.96s 164
(327)
304 (579)
60 (140)
insol
ale , CS2
6 3S
1.28
194
(381) @70mm
97 (207)
$1. Sol.
ale
BDH
PAGE 83
CMA 045707
SUBSTANCE/FORMULA
741 o-Nitropheno< NQ2C6H4OH
742 p-Nitrophenol NO2C6H4OH
743 1 Nitropropane CH3CH2CH2NO2
744 2 Nitropropane CH3(N02lCHCH3
745 4'Nitroqutnoline-N-Oxide NO2C9H6NO
746 N-Nitrosodiethylamine C4H10N20
747 N-Nitrosodimetbylamme C2HQN2O
748 N-Nitroso-N'Methylamline C6H5N(NO)CH3
749 4-Nitrosomorphohne C4H9N2O3
750 1-Nitrosopiperazme C4H9N2O
751 N-Nitrosopipendme C5H10N2O
752 Nitrosyl Chloride NOCI
Waste |
Dis- TLV
posal i(ACGIH)
Pro
PPM
cedure (mg/M3) (See VI)
N, F, P. A, Health Fire React.
6 3S
Sp, Gr.
1 48
Vap. Dens. (Air=1)
FI. Pt. C (F)
Ignit. Temp.
*C (F)
Flam. Limits
%
B.P. C (F)
215 (419)
M,P,
C <F)
Sol. in H2O g/IOOfl
Other Solvents
45 (113)
si. sol.
ale
6 3S
1 48
279 (534)
113 (235)
si. sol.
ale
4a 25
1
2
3
99
3.06
49oc 421
2 6--
131 -108 si. sol. aic
(120)
(789)
(268) (-162)
4a 25
1
2
3 j 99
3.06
39oc 428
2.6-
120
-93 si sol
1103)
(802)
(248) (-135)
6 153 (307)
7a
Misc. Ref BDH SDH
7a car 6 6
1 01 1 13
152 (306)
sol
255dec (491)
15 (59)
insot
ale. ale.
6
6 12a 3S
1.06 3.0 2.3s
217 1423)
-5.8 (21)
-64 (-83)
sol dec.
MGB
PAGE 84
CMA 045708
CMA 045709
SUBSTANCE/FORMULA
765. Oil, Cocoanut 766a Oil, Fuel? 1 766b Oil, Fuel ?2 766c Oil, Fuel -4 766d Oil, Fuel -5 766e, Oil, Fuel "6 767. Oil, Lubricating 768 Oil, Mineral Oil Mist 769. Oil, Olive 770 Oil, Peanut 771 Oil. Soybean
Oil of Vitroil, see Sulfuric Acid PAGE 86
Waste
Dis TLV
posal (ACGIH)
Pro
PPM
cedure (mg/M3) (See VI)
N. F P. A. Health Fire React.
Ignit.
Vap.
FI, Pt. Temp, Flam.
B.P.
Sp, Dens. C
6C
Limits
C
Or, (Air=1) (F>
pp)
%
(F)
M P, C <F)
Sol. in H2O
g/IOOg
Othei
j
Solvents
Misc. Ret
18 0 1 0 9 216 (420)
23 (72)
i
18
0 2 0 <i
3Soc
229
7-5
<-46
[ NTTC
(100)
(444)
(<-50)
____________ l________
18
0 2 0 <i
38oc
257
(100)
(494)
<-46 (<- 50)
1 NTTC 1 ;
18
0 2 0 <i
54oc
263
(130)
(505)
18 0 2 0 <i 54oc (130)
i <-46 i j K-50) j ! <-46 j
(<-50>
(` NTTC 1 _____________1______________
NTTC
18
0 2 0 <1
71oc
407
(160)
(765)
<-46 1 (<-501 !
NTTC
18 0 1 0
>149oc 260-371 (>300) (500-700](
360 <-46 (680) (< 50)
.
NTTC
18 (5) 0
10
.81
193oc (380)
360 (680)
18
0 1 0 .9
225 343
(437)
(650)
18
0 1 0 .9
282 445
(540)
(833)
18
0 10 9
282 445
(540)
(833)
6 (21)
___ ____ - ^ i
3i (37)
^.................. __ s
22 (72)
CMA 045710
CMA 045711
SUBSTANCE/FORMULA
781 Paint
782 Paraffin
783 Paraformaldehyde (HCHQ) x
784 Paraldehyde (CH3CHCM3
785 Parathion C10H14NO5PS
786 Pentaborane b5h9
787 Pentachloroethane CHCl2CC(3
788 Pentachloronaphthalene C10H3CI5
789. Pentachlorophenol c6ci5oh
790 3JpPentane CH3(CH2)3CH3
791 iso-Pentane (CH3)2CHCH2CH3
792 1. 5-PentanediOl CsHiq(OH)2
Waste Dis posal Pro
cedure {See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A, Health Fire React,
26 3S 3s
Igmt.
Vap.
FI. Pt. Temp. Flam.
B.P,
Sp. Dens. C
C
Limits
C
Gr. (Air=1) (F)
(F)
%
(F)
M.P. c <F)
HjO g/IQQg
Other Solvents j Mi$c. R*t,
<27 80)
-36 (-32)
NTTC
18 S TS
199 (390)
245 (4731
>370 42-60 0698) (108-40)
2 5 2St 2St =St
70 (158)
300 (572)
120-170 (248-338)
1
2
3
1 j .99
4 55
36oc 238
1 3-
128
12 v, so) j aJc,
496) (460)
(262)
(54)
BDH,MCA BDH
7b U)
4
1
0 1 26
375
61
insol.
ale , ace
! (707)
(43)
17 ,005
3
4
3 .66 2 2 30
(86)
4b
3S 2S
1 67 7.0S
.4- 58 -47 dec. (136) (-53)
162 (324)
-29 1-20)
mSOl
ale.
AIA, MCA, NASA' NSC
BDH
4b ( 5)
3S
4b (.5)
3S
18 1000
4
18 1000
4
18
1.98
310 (590)
190 (374)
sl. sol
ale
0
63 2.48 -49 309 1 4-8
36 -130
V. sol.
ale
(-56) (588)
(97) (-202)
0
62 2.48 -51
420 1 4-7.6
28 -161
msol
ale
(-60) (788)
(82) (-258)
0 99 3 59S 129oc (264)
260 (500)
-16 (3 2)
sot.
ale.
AIA. BDH BDH BDH
PAGE 88
i
CMA 045712
SUBSTANCE/FORMULA
7Q3 2 4-Pentenedione
' CH3C(0)CH2C(0)CH3
n-peptanol. see n-Amyl Alcohol
704 2'PerttanoJ C5HiiOH
2-Pentanne, see Methyl n-Propyl Ketone
3-Pentanone, see Diethyl Ketone
Pentene, see Amylene
Waste Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mq/NI3)
N, F, P, A Health Fire React.
18 2 2 0
Ignit.
Vap,
F|. Pt. Temp, Flam.
B.P.
Sp. Dens. C
c
Uimits
C
Gr. (Air=1) (F)
(F>
%
(F)
M.P. C (F)
Sol. in HjO
g/IOOg
Other Solvents
98 345 41oc 1106)
136*40 -23 (277*84) (-9.4)
v. sol.
ale
Misc, R#t. SDH
18 100
tst 2St Ost
.81
39 (1031
347 (6571
1,2-9.0
119 (246)
, v, sol.
etc.
n-Pentyl Acetate, see n-Amyl Acetate
Mc-Pentyl Acetate, see sec-Amyl Acetate
Pentyl Alcohol, see n-Amyl Alcohol
Pentyl Amine, see n-Amylamne
iso-Pentyl Nitrite, see Amyl Nitrite
795, Peracetic Acid (60% Acetic Acid Solution) CH3COOOH
12a
23 4 1 23
41 1 lOexp. (105) (230)
105 (221)
-30 (-22)
v. sol.
aic.
NFPA
CMA 045713
SUBSTANCE/FORMULA
796 Perchloric Acid Solution HCIO4-2H20
seePerchloroethylene,
Tetrachloroethylene
Waste Dis posal Pro
cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P, A. Health Fire React,
12a 3 0 3
Ignit.
Vap.
PL Pt. Temp. Flam.
B.P.
Sp, Dens. eC
C
Limits
C
Gr. (Air=1) (F)
(F)
%
lF)
1.70
203 1397)
!
M.P, Sol. in ,
C
H2O
Other
(F) g/lOOg Solvents
Misc. Ref
________________
(0)-18 v sol ale,
MCAAlA, BDH NbC
|
797 Perchloromethyl Mercaptan CISCCI3
798, Parchloryl Fluoride CIO3F
13 21
,1
3
799 Petroleum Ethers
18 500
3S
1 70
6.4S
149 (300)
2S 2S 3s 1 1,43
I
-47 1 -146 (-53) j (--231)
<-73 :1 4 0
6
2.50
-57
288
1-6 30-60 1
(-70) (550)
186-140) 1 K-1011
:
MCA
BDH
800, Phenanthrene {CsH4CH)2
18
's
1 18
6.14S
340 ! 101 (644) (214)
insol
ale , CS3
801, 2-Phenanthreneacetamide C16H13NO
20
car
16 13802, 3-Phenanthreneacetamide
c h no
20
car,
1 (
803. Phenol C6H5OH
18
6
3
2
0 1 5-1.07 3.24 79 715
181
40 sol
ale , CS2 BDH,
(175) (1319)
(358) (104)
NTTC, MCA
804, Phenyl Acetate CH3CO2C6H5
1 018
2
1.09 4 7
80
(176)
196 si sol ale.
(385)
Phenyl Acetonitrile, see Benzyl Cyanide
805. l-Phenylazo-2-Naphthol Cl6Hl2N2Q
8
car.
102-4 (216-19)
PAGE 90
CMA 045714
SUBSTANCE/FORMULA
phenylcyelohexane, see Cyclohexylbenzene
06r p-Phenylenediamme 2 6 4 2H NlC H )NH
7oq phenylethanolamme 6 5 2C H NHCH CH2OH
8on Phenyl Ether 6 5 6 5C H OC H
qqq Phenyl Ether Biphenyl
Mixture
1 2 3Phenyl Glycidyl Ether, see , - Epoxy- -Phenoxy propane
810 Phenylhydraaine 6 2C HsNHNH
311 Phsnyl Isocyanate 6 5C H NCO
012 Phenyl'B'Naphthylamine 7 6h5Cioh ^hc
013 o-Phenyl Phenol 6 5 6 4C H C H OH
14B Pho'nB ^ 3 3 0CH (CH )C=CHCI ICH-
3 3C(CH >CH 015 iso-Phorone
C9H14O
Waste Dis posal Pro cedure (See VI)
TLV IACGIH)
PPM
<mg/MJ>
N. F. P. A,
Health Fire
React.
Ignite
Vap.
FL Pt. Temp, Flam.
B.P.
5p. Dans. C
C
Limits
C
1Gr. (Air= ) (F)
(F)
%
(F)
M.P.
6C (F)
2Sol, <n HO g/IOOg
i
Other Solvents
Misc. Ret,
5 1(. )
2S
52
15 1
15 1
(311562)
0 1 09
(315025)
1 09 5.86s (9260o5e) (1614965)
1 06
(215254)0C (1611300)
.
(526173) (218404) sol
ale
(528455) (9355) 4,620 ale
(245986)
(8271)
i insol j ale , bz,
(425974) j
--
16 5 3
2 0 1.09 3?S (18992) (314745)
24(436d9ec) , (2608) sol.
ale , bz
BDH
18
11
(316259) (--3202) dec,
dec., ale.
5 1,20 (470502) (212086) *nsol hot ale,
18
2S 1
0 1 21
124 (255)
(258467) (15375)
insoi
ale , ace, bz.
18 25 2 2 0 .88 4.8 (18855)
(319877)
8282( )
sl. sol
ale.
18 25 2 1 0 .93 4.77S (926005c) (486624) 8-3.8 (241159) (-186) si. sol
SDH
PAGE 91
CMA 045715
SUBSTANCE/FORMULA
816. Phoidrin C7H136P
Waste Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
7b (.1)
3S
igmt.
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Air=2l) (F)
(F)
%
(F)
M.P. C (F)
Sol. m H-zQ
g/lOOg
Other Solvents
1.23
79oc (175)
107
(225) @1 mm
Misc, Ref
S17 Phosphine ph3
7b ,3
3S 3s
79 1 15MGH
40-60
>1
-87 -133 (-125) (-20?)
si. sol.
818 Phosgene C0CI2
27] 1 3S
1 39
3S
8 -128 (46) (-198)
dec.
dec . ale
MCA MCB, MGB
819 Phosgene Solutions in Benzene
18 1 3S
<22 72)
BDH
820 Phosphoric Acid H3PQ4
821 Phosphoric Anhydride p20S
24b (.1)
2S
24b
2S
1 69 2.38
260 (500)
42 (108)
v sol. ale
300 subl (5721
dec.
dec., ale
BHD. NTTC BDH.MCA
822. Phosphorous (White & Yellow) P4
823. Phosphorous (Red) P4
824, Phosphorous Oxychloride POC13
27c { 1) 27c ( 1)
3 0
3 1
21 3S
1 1.82 4 42S
1
2,34
4.77s
1.69
5.30s
(30) 86
260 (500)
280 (535)
44 (111)
sl sol
bz. CS2
280 590 (1094)
v, sol
@43atm
ale.
107 (225)
1.2 (34)
dec.
dec., ale.
BDH. MCA. NSC BDH
BDH. MCA
Phosphorous Pentoxide, see Phosphoric Anhydride
825 Phosphorous Pentschloride PCI5
21
(1) % 2S
4.65
162 subl (324)
dec.
CS2
BDH
PAGE 92
CMA 045716
substance/formula
Phosphor011* Pentasfulfide P7S5
g27 phosphorous Sesquisulfide P4S3
g2S Phosphorous Tribromrde ' PBr3
g29 phosphorous Trichloride PCI3
030 phthalic Anhydride ` C6H4lC0)20
831 fi-PicOhne CH3C5H4N
832 4-Picolme CH3C5H4N
833 P'cric Acid <N02)3C6H20H
834 Pimelic Acid HQ0C1CH2)5CQ0H
835 Pindone (Pival) C14H14O3
836 fl-Pinene Ciqh16
837, Piperidine CsHiqNH
Waste Dis posal
Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N, F, P, A. Health Fire React.
Ignit.
Vap.
FI. Ft. Temp, Flam.
e,p.
Sp. Dens. C
C
Limits
c
Gr. (Air^l) !F>
lF)
(F)
M.P, C (F)
Sol. in H2O
g/IOOg
Other Solvents
Misc. Ref.
21 m
3
2 2.03
142 (287)
514 (957)
276 (529)
insol. si. sol CS2 MCA
21 2
2.03
100 (212)
407 (765)
173 (343)
m$ol.
bz. CS2
21 0-5
3s
2 35
173 (343)
-40 (--40)
dec.
dec., ale
BDH
21
5 30
2 1.59 -75s
75 (167)
-112 (-169)
dec.
bz, CS2
BOH. MCA
24a 2 2 1
0
1,53 S.10S 151
584 1,7-104 284
131 si. sol. ale
(304) (1083)
(544)
(268)
Al A. MCA
5
22
0
,95 3.2
39oc 538
129
-70
v. sol
ale
BDH
(102) (1000)
(264)
(-94)
5
22
0
96 3,21
57
(134)
143 (289)
4w (39)
ale.
BDH
6 ( 1) 25a
24
4
1 76 7 9s 150
300
(302) (572)
1 33
>300exp (>572)
122
sol.
272
(522) @100mm
106 (223)
si. sol
ale. ale.
BDH
18 (.1)
109 (228)
18
13
0
.86 4.7
33
I9D
156 (313)
-55 (--67)
si. sol.
ale.
6
23
3
.86 3.0
16
(61)
106 (223)
-7 00 (19)
ale , bz.
PAGE 93
CMA 045717
SUBSTANCE/FORMULA 838. Piperylene
Waste Div posal Pro cedure (See Vl)
TLV (ACGIH)
PPM
(mg/M3)
N. F, P, A. Health Fire React,
18
Igmt.
Vap.
FI. Pt. Temp, Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Air=1) (F)
(F)
%
(F)
1
M.P, C (F)
Sol. in H2O
g/IOOg
Other Solvents
Misc, Ref
] 68 42
(108)
Rival, sea Rind one
339 Platinum Pt
840. Polytetrafluoroethylene (F2C'CF2)n
841 Polyvinyl Acetate Emulsion
27a ( 0021 4b 18
is
21.5 1.5
842 Potassium K
843 Potassium Acetate CH3COOK
844 Potassium Borohydnde K8H4
845. Potassium Carbonate K2CO3
846. Potassium Chlorate KCIO3
847. Potassium Cyanide KCN
848 Potassium Dichromate K2Cr207
3 11 17 11 12a 14 5 12a
31 'S 2S
2 86 1,57 1 18 2 43
0 2 2 32
2 0 0 1.52
3S 2S
2 68
3827
1774
(6920) (3225)
msol
-76 -143 (-105) (-225)
-36 (-32)
msol j
i !
NTTC
774 (1425)
64 (147)
dec ; dec , hIc
BHD
292 25320l ale , MeOH
(558)
i
_________ 1-------------------
5O0dec 1932)
1920 si sol . ale.
BDH
dec. 891 1122 (1636)
4QOdec. 368
(752)
(694)
7.120 ale
AIA.BDH
635 (1175)
50 si. sol , ale BDH
<500dec 398 (<3321 (748)
4.9
PAGE 94
CMA 045718
SUSSTANCE/FORMULA
Et^9 Potassium Ferrocyamde W K4Fe(CN>6 3H20
850 Potassium Fluoride KF
qc{ Potassium Hydrogen Piflyoride KHFj
Potassium Hydroxide, see Caustic Potash
852 Potassium Nitrate KNO3
853, Potassmm Perchlorate KCIO4
554, Potassium Permanganate KMn04
855, Potassium Persulfate K2S2O8
356 Potassium Peroxide <202
g57 Potassium Sulfide K2S
858, Praseodymium Pr
859 Propane CH3CH2CH3
Waste Dis posal
Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
11
11 3s 11
Igmt.
Vp.
FI. Pt. Temp. Flam.
0.P.
Sp. Dens. 6C
c
Limits
c
Gr. (Airsll 1F)
(F)
%
|F)
M.P Sol in
C
H2O
Other i
(6F) g/IOOg Solvents ! Misc. Ret,
1
1 85 2 48
.
dec,
70 27,812 ace
(158)
1505
380
(2741) (1616)
v, sol
j l
2 37
225dec (437)
!
4121 | i
i
6DH
11 1
12a 1
12a 0
12a 1
22a 3
23 2
27k
18 1000
1
0 2 2 11
<AOOdec ! 334 l<752) J (6331
13 J
0 2 2,52
610 (1130)
75 si sol , ale
0 1 2.70
<240dec 464)
6.42 dec , ale, sol., MeOH
0 1 2,48
<1 OOdec 212)
1 750
02 1 0 1 81
dec. 490 (914)
dust explosive
840 (1544)
sol
ale
2S 6.64
3127
935
456611 (1715)
dec
4
0
,58
1.56
-249
468 2.2-9.5
-45 -187
sol
ale , bz.
NTTC
(-1561 (874)
(-49) (-305)
CMA 0457X9
I
SUBSTANCE/FOHMULA
860. 1, 2 - Propanediamine CH3CH(NH2)CH2NH2
861 1,2- Propanediol CH3CHOHCH2OH
Waste Div posal
Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
7a
N, F. P. A,
Health Fire React.
-- 23
0
18 0 1 0
Ignit
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Cr. <Air=1> ("FI
(F)
%
PF)
M.P. C (F)
Sol. in HjO
g/100g
Other Solvents
86 2,56
24oc
(75)
117 (243)
-37 (-35)
V. sol
chi.
1 04
2 62s
99
(210)
415 2 6-12 5 189
(780)
(372)
w ale
n-Propanol, see n-Propyl Aicohol
862 Propargyl Alcohol HCSCCHjOH
18
3S 2S
j .96
1.93s
36 (97)
115 (239)
-17 (1 4)
sol
ale.
863 Propargyl Bromide HC^CCHjBr
4b
3S 3S
1.56
6.87S
18
(65)
90 (194)
-61 (-78)
Propene, see Propylene
364 iso-Propenyl Acetate CH3COOCICH3)CH2
^-Propiolactone, see Hydracrylic Acid-/3-Lactone
18
23
,91 3.45 16 (60)
93 -93 (199) (-135)
866. Propionaldehyda C2H5CHO
866 Propionic Acid CH3CH2COOH
867 Propiomtrile CH3CH2CN
868. Propionyl Chloride CH3CH2COCI
2 24a 14
la
2 3 1 .81 1.8 -9-7oc 207 3.7-16 1 48 -81 sol ale
nfpa
(15-19) (405)
(120) (-114)
2
2
0
99 2.56
54
513
(130)
(955)
141 (286)
-22 (-8)
00
ale.
3S 2S
.77 1.9S
97 -99 (207) 1-134)
v. sol. ale.
3
3
1
1 06
3-2
12
(54)
80 -94 (176) (-137)
dec
ale.
Misc. Ref NTTC
BDH BHD SDH
PAGE 96
CMA 045720
SUBSTANCE/FORMULA
9 ,,ea iw-Propyl Acetate 8 CH3COOCH(CH3)2
s70 n-Propyl Acetate 8 CH3COOCH2CH2CH3
fl71 n-Propv1 Alcohol ' CH3CH2CH20H
072 iso-Propyl Alcohol CH3CHOHCH3
073 Propylamine CH3CH2CH2NH2
074, iso'Propylamine (CH3)2CHNH2
875 Propyl Benzene C3H7C6H5
i$o-Propyl Benzene, see Cumene
g76. iso-Propyt Benzoate C6H5COOCH(CH3)2
877, Propyl Bromide CH3CH2CH2Br
878 Propyl Chloride CH3CH2CH2CI
n-Propyl Cyanide, see Butyrorntrile
Waste Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
N. F. P. A. Health Fire React.
18 250
1
30
18 200
30
18 200
30
18 400
30
7a 5 3 3 0
7a 5 3 4 0
18 3 0
IgniL
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. |Air=1) (F)
(F)
%
(F)
M.P.
C (F)
Sol. in HjO
g/IOOg
Other Solvents
.87 3.52
4
460 1.8-7.8
93
-73
sol.
(40) (860)
(199)
(-99)
ale.
.89 3.5S
14 450 2-8 (58) (842)
102 -95 (216) (-139)
si. sol. ale.
78 2.07
25
371 2.5-13.5
97 -127
v $Oi
ale., b2.
(77) (700)
(207) (-197)
.79 2.07
12
399 2.3-12 7
82
-89
06
(53) (750)
(180) (-128)
ale.
,72 20
-37
318 2.0-10.4 49 -83 sol. ale
(-35)
(604)
(120) (-116)
.69
2.03
-37oc 402 2.3-10.4
32 -101
QO
(-35)
(756)
(90) (-150)
ale
.86 4 14
30 (86)
159 -100 (318) (-148)
insol.
ale , bz.
Misc. Ret. BDH BDH BDH BDH. MCA BDH BDH, NTTC, MCA
18
11
1.01
5.67S
99
(210)
218 (424)
-26 (-15)
into!.
ale
4b
%%
1.35
71 (-110 (160) (-166)
si. sol.
ale.
BDH
4b
2 3 0 .89 2.71 -18
2.6-10.5
47 -123 si. sol. ale.
BDH
(0) (117) (-189)
CMA 045721
SUBSTANCE/FORMULA
879 Propylene c3Hfi
880. Propylene Carbonate C3H6CO3
Waste Dis* poial Pro* cedure
(See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
18 4000
1
4
1
18 1 1 0
Propylene Dichloride, see 1,2-Dichloropropane
881 Propylene Disulfate 4b car C3H13S2O8
Propylene Glycol, see 1, 2-Propanediol
882 Propylene (mine C3H6NH
7a 2
2S 2S
Propylene Oxide, see 1, 2-EpoxyPropane
883. iso-Propyl Ether [(CH3)2CH!20
884 m-Propyl Formate C3H7OOCH
15 500 18
23 2 *3
1
888 iso-propyl formate <CH3)2CHOOCH
18
2 30
886. iso-propyl glycidyl ether
15 50 3S
H3C0CH2CH2-0-HC(CH3i2
887. propyl nitrate CH3CH2CH2NO3
4a 25
2
3
3
Ignit.
Vap.
FI. Pt. Temp, Flam.
B.P.
Sp. Dans. 6C
C
Limits
C
Gr. (Air=1) (F>
(F)
%
(F)
M.P, C (F)
Sol. in HjO
g/IOOg
Othw Solvents
.51 1 4NFPA -108
497
(-162) (927)
2-11.1
-48 (-54)
-185 (-301)
v sol
HtL
1,21 135oc (275)
242 (468)
-49 (-56)
V. sol
b2
Misc. Ret MCA
2.0S
1
63 1145)
--
1
72 .91 .97 92 1.06
3.5
-28
443 1.4-21
69
-86
si. sol
ale.
(-18) (830)
(155) (-123)
3.03
-3 465 (27) (851)
81 -93 (178) (-135)
si sol.
ale.
3.0 -6 485 (22) (905)
68 (154)
s(. sol. ale.
4,15s
137 (279)
20
177
2-100
111
(68) (350)
(232)
si. sol.
ale
MCA
CMA 045722
substance/formula
A no-propyl loluPnii B see cymene
aS8, PrOpyne hc=cch3
aQQ Propyne-allene mixture ` (MAPP)
090, pyrethrum
891. Pyridine C5H5N
892 Pyrogallic acid C6H3(OH)3
893, Pyrrolidine C4H9N
094 Pyruvic acid CH3COCOOH
Quicklime, see Calcium oxide
895. Quinaldme CH3C6H3NCHCHCH
896. Quinoline C6H4NCHCHCH
897 8-qumohnol HOC6H3NCHCHCH
we Dis
posal Pro cedure (See VI)
TtV (ACGIH)
PPM
(mg/M3)
N. F. P. A. Health Fire React.
Ignit.
Vap,
FI. Ft. Tamp. Flam.
B.P.
Sp. Deni. C
C
Limits
C
Gr. (Air=1) lF)
(F|
%
lF)
1
M.P. C <F|
Sol. in H2O
g/IOOg
Other Solvents
Misc, Ret.
IS 1000
2
4
18 1000
26 (5)
55 24a
7a 24a
23 3S 23
2
1,78
1.38
1.7 -23 -105 (-9) ('157)
die.
forms expl. with Cu & Ag
'i
1| 11 | j1
0
.99 2.7
20 482 1.8-12 4 115 -42
W ! ale
| BDH,
168) (900)
(240) (-43)
j
| NSC
1.45
1
85 2.45
3
(37)
309 (588) ----- -----1
89 (192)
133 (271)
-63 (-81)
v. sol. (30
ale ale
| i
1,23
165 (329)
14 00 (57)
ale.
8DH
5 1.51 247 -2 si. sol. ale.
(477)
(28)
5
2 1 0 1.09 4 45
480
238 -20 sol.
ale , CS2
BDH
(896)
(460)
(-4)
5
267
-76
m$ol.
ale.
(513) (-105)
PAGE 99
CMA 045723
SUBSTANCE/FORMULA
898 Quinone OC6H4O
Waste Dis posal Procedure (See VI)
TLV (ACGIH!
PPM
(mg/M3)
N, F. P. A, Health Fire React.
18 1 3S
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Air=1) <F)
("Ft
%
lF)
M.P. C ("Ft
Sol. in
H2O g/IOOg
Other Solvents
1 32
293 (560)
116subl (241)
si. SOI.
ale.
Misc. Ref,
Rad fuming nitric acid, see nitric acid, anhydrous
899 Refrigerant gases
26
900 Resins
26
901 Resorcinol CeM4(OH)2
902 Rhodium Rh
903. Ronnel C8H8C!303PS
904, Rotenone C23H22O6
18 27k (.1)
7b (15) 18 (5) 2S
2S
<38 (<1001
] 1
1,27 12.4
1.27
37% 127 (261)
608 1 4(1126) @392F
281 (538)
110 (230)
sol.
ale
'
3707
1985
(6705) (3605)
msol,
41 (106)
210-20 (410-28)
163 (325)
org solv insol. org, solv
NTTC
-i
905. Rubber (tubing, etc.)
26
906 Rubidium Rb
907, Ruthenium Ru
908. Salicylaldehyde HQC6H4CHO
27k 2S
1.53
Ignites
700
in air (1292)
38 (102)
dec.
dec. ale.
27k 2S 12.30
4150
2450
(7502) (4442)
msol
2
2 0 1.15
78
197 -10 5I. sol ale.
(172)
(387)
(14)
CMA 045724
CMA 045725
substance/formula
920 Silica (quartz) $iC>2
921 Silica (amorphous) SiC>2
922. Silica gel H2S1O3
Silicic acid, see silica gel
923 Silicon tetrachloride S1CI4
924 Silicon tetrafluoride SiF4
925. Silver Ag
926 Silver Nitrate AgNC>3
927. Sodium Na
928. Sodium acetate NeOOCCH3
929 Sodium amide NaNH2
930. Sodium azide NaN3
PAGE 102
Waste Oiv posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N, F. P. A. Health Fire React.
26 250
2S
(%Si02+5)
26 706/cc =s
26 Is
Vap.
FI. Pt.
Sp. Dens. C
Gr. (Air=l) (F)
2.64
Ignit. Temp.
C
(F)
Flam,
Limits %
B.P.
C (F)
2230 (4046)
MP C (F)
Sol. in ! HjO ]
g/IOOg |
Other Solvents
~1
1610 (2930)
msol [
;
Misc. Ref.
2.19
2230 (4046)
150dec (302)
msol j
1 msol |
;
--%a /i-
21
3S 3S
27a ( 01) Is
27k (.01) 1
' 0
1,48 9.7 remy 4.67 10.5 1 4 35
3
31 2
.97
11 0s
1.53
19 3S 2S
8 3$
2,85
58 (136)
|
-70 1 dec, 1 dec ale j BDH
(-94) j
j
-65
-90
dec. ale, ! MGB
(-85) (-130)
>1810mrTt@1318mrni
'
2212 (4014)
961 (1762)
msol.
444dec. (831)
212 (414)
>115 (239) spontaneous
ignition in dry air
892 (1638)
607 (1125)
98 (208)
324 (615)
1220 dec 119
eth, dec ale si, sol. ale
BDH, MCA, NSC
400 (752)
210 (410)
dec.
BDH
dac.
4217 si. sol. ale.
BDH
CMA 045726
SUBSTANCE/FOHMULA
931 Sodium benzoate NaOOCCgHs
932 Sodium bicarbonate N3HC03
933 Sodium bisulfate ` NaHS04
934 Sodium bisulfite NaHS03
935, Sodium borohydride Na6H4
936, Sodium carbonate Na2C03
937 Sodium chlorate NaCl03
933, Sodium chloride NaCI
939, Sodium chlorite NaCI02
940. Sodium chromate Na2Cr04
94), Sodium cyanide NaCN
942 Sodium dichromate Na2Ct207
Waste Dis
posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
N. F. P, A. Health Fire React,
11 S
Ignit.
Vap,
FI. Ft. Temp. Flam.
B.P.
Sp. Dens. 6C
C
Limits
C
Gr. <Air=1) (F)
(F)
%
l'F|
M.P. C (F)
Soi. in HjO
g/IOOg
Other Solvents
6620 si. sol, afc
Mtsc. Ret.
11 12a 2S 12b
2.16 2 44 1 48
270 (518)
6.9 si, sol. ale
>3l5dec, 2926 (599)
si sol ale
dec v, sol si sol ale.
17 2S 2S 11 2S 12a 1 0 2
11 s 12a 1 1 2
12a 3S
14 (5) 2
0
0
12a 3S
1.07 2.53 2.49 2 17
none
none
>400 l>752)
5525
ale., MeOH
A!A, BDH
dec. 851 (1564)
7 1 $> sol. ale.
300dec, 248 (572) (478)
79
ale
BDH,MCA
1413
801
(2575) (1474)
36 $1. sol. ale.
175dec. (347)
39'7
792 (1458)
sol,
MCA
1496
560
(2725) (1040)
48'
Si. sol. ale.
BDH, MCA
120 (248)
sol.
MCA
PAGE 103
CMA 045727
SUBSTANCE/FORMULA
943. Sodium ethoxide NaOC2H5-2C2H50H
944. Sodium fluoride MaF
945 Sodium fluoroacetate CH2FCOONa
Waste Dis posal Pro cedure (See vi)
TLV (ACGIH!
PPM
(mg/M3)
N, F. P A. Health Fire React.
3 3S 3S
Igmt.
Vap.
FI. Pt. Temp, Flam.
B.P.
Sp. Dens. C
C
Limits
4C
Gr. (Airs=1) (aF)
iF)
%
("FI
dec.
M.P, C (F)
Sol. in H2O
g/IOOg
200 (392)
dec
Other ' Solvents |
1 ale. j
Misc, Ret. BDH
11 3s 4b (05) 3s
| 2 56
1700 (3092)
9S0-97
< 17961827)
4.218
200 (392)
11125
sl. sol. ale.
946. Sodium formate NdOOCH
947 Sodium hydride NaH
948 Sodium hydrogen difluoride NaF-HF
11 17 U
3S )
3S
Is
1 2S 1
'
'192
: -92
I-
2.08
'j'
253 (487)
9720
$1 sol ale.
Explodes with w ater
j . j 800dec. dec. 1 j (1472)
NSC
!
BDH
Sodium hydroxide, see caustic soda
949 Sodium hypochlorite NaOCI
950. Sodium iodide Nel
12a 11
1 j =S
!
3.67
dec. BDH
1304 (2379)
651 (1204)
18425
ale., ace.
951. Sodium methoxide NaOCH3-2CH3OH
3
dec. dec. MeOH
BDH
952. Sodium nitrate NaNQ3
11 1 0 2 2.26
380dec. (716)
307 (585)
9225
ale.. MeOH
953. Sodium nitrite NaNQ2
12b 3S =S
2.17
538exp. (1000)
320dec. 271 (608) (520)
8119
si. sol. ale.
PAGE 104
CMA 045728
SUBSTANCE/FORMULA
54 Sodium pentachlorophenate C6Cl50Na
Waste Dtv posal Pro* cedure
(See VI)
TLV (acgih;
PPM
(mg/M3)
N. F P. A. Health Fire React.
4b ( 5)
Ignit.
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. <Air=1) (F)
<F)
%
(F)
M.P, C (F)
Sol. in H2O
g/IOOg
Other Solvents
955 Sodium perchlorate NaCl04
56, Sodium peroxide Na202
2.02
482dec. (900)
46Qdec, (860)
957 Sodium o-phosphate N32HPQ4-7H20
$58 Sodium-potassium alloys NaK
1.68 48 10440 (118)
Ignite m air
g59, Sodium propionate NaQQCC2H5
96O Sodium silicate (water glass) Na20.xSi02
Sodium sulfide Na2S
g62. Sodium sulfite N32S03
23 12h
2 ! 1 jo 2S
NTTC
1180 121561
1510
sl. sol. ale.
12
963 Sodium tetraborate Na2B4C>7
964 Sodium thiocyanate NaSCN
965 Sodium thiosulfate Na2S203
11 11 12b
3S 3S
2.37 1.67
157dec. 741 (2867) (1366)
1.06
287 (549)
13921
ale., ace.
48 U18)
50
CMA 045729
SUBSTANCE/FORMULA
966- Stannic Chloride SnCl4
967. Stearic acid c17h3ScOh
968. Stibine SbH3
969. 4-stilbenamine Ci4Hi4
970. Stoddard solvent
971. Strontium Sr
972. Strontium carbonate SrCC>3
973. Strontium nitrate Sr(N03)2
974. Strontium peroxide Sr02
975, Strychnine c21h22n22
976. Styrene (CeHsCHCH2)n
977. Styrene monomer C5H5CHCH2
PAGE 106
Waste
Dis posal
TLV (ACGfH)
Pro* PPM
cedure (mg/M3) (See VI)
-------------- 1
n 12)
N. Health
3s
F. P. Fire Is
A. React.
24a 1 1 ! 0 i
27d 1 3s 2S
ignit.
Vap.
FI, Pt. Temp. Flam.
B.P.
Sp. Dens. C
aC
Limits
C
Or. (Air^l) (F)
(F)
%
(F)
M,P.
C (F)
Sol. m H2O
g/IOOg
Other J Solvents 1 Misc. Ref,
2.23
714 (237)
-33 (-27)
sol
eth.
BDH
.95 9.8S 196
395
(385) (743)
358-83
69
(676-721) (156)
insol
CS2
NTTC
5.30
-17 -88 (1.4) (-126)
.40
cs2
5 car.
1 90 I (194)
18 500
2S
10
38-43 227-60
8-5 1 220-300 1
(100*10) (441-500)
l(428-572lj
'(
27h 2S 2S . 2.6 '
1384
752
(2523) (1386)
dec. i 1
ale.
27h 3.7 27h 1 0 1 2.99
1340 (2444)
1497 (2727)
@69 atm
si sol
645 570 (1193) (1058)
711 s
si. sol. ale
27h 1 0
5
(.15)
3s
18 31 2
3
1 4,56
215dec. Si sol (419)
aic.
1,36 909 3.6
270 (518) @5mm
268 (514)
$1 sol.
chi.
31
490 1.1-6.1
146 -33
(88) (914)
(295) (-27)
insol.
ale., CS2
Al A, BDH, NTT
18 100 2
3
2
.905 1.1NFPA
31
490 1.1-6.1
145 -31
insol.
ale , CS2
BDH.MTTi
(88) (914)
(293) (-23)
MCA
CMA 045730
SUBSTANCE/FORMULA
Succinic Acid COOH(CH2)2COOH
q^9 Su,n'c Anhydride y C4H4O3
aito Succinomtriie 9& NCCH2CH2CN
qg1 Sulfamide S02<NH2)2
932 Sulfur Sg
983. Sulfur Decafluoride S2F10
gg4 Sulfur Dichloride SCI2
9g5 Sulfur Dioxide SO2
QQj?>}eKafiuaride
987 Sulfuric Acid H2SO4
gg8 Sulfur Monochfonde S2CI2
ggg, Sulfur Trioxide so3
WastB J
ij- | TLV
puMil jfACGlHI Pro* PPM cedure (mg/M3) (s VI)
N. F. P. A, Health Fire React.
Igmt.
Vap.
FI. Ft. Temp, Flam.
B.P
sp. Dens, C
C
Limits
C
Gt. (Air=1) lcF)
lF)
%
(F)
M.P. "C ("FI
Sol. in H2O
g/IOOg
Qthei Solvents | Misc. Ret
24a 24a 14 19 26 21 025
2S 's
1,57 `
2S 's
1 10 j
3S Is --
98 ! 2 76 i
132 (270!
!
1 61
-!
-i
I.1!
2
0 1 2 07 i
j 207 232
!i
(405) 1450) ]
r------------
j3s 2 08
'
235dec (455)
261 (502!
266 (511)
185 (365)
120 (248)
58 (136)
si sol
ale MeQH | 1
msol.
ale
j j
jv sot
ale , b/ |
250dec. (482)
92 (198)
n1 j 444 | 119 1 (8321 j 1246)
sol ale ]
insol j CS2
NTTC, MCA,NSC
29 -92 (84) (-134)
21 1 3S 2S
1.62 | 3 6s
'
59dee
-78
(138) (-108)
bz BDH, MCA
12b
53
0
0 1 4 23s
-10 (14)
-76 (-105)
230
ale
AlA, MCA
21 1000
1 67 6,2S
--64sub( si. sol (-83)
ale.
Z4b (11 3
0
21 1 2
1,84 1 69
2SS
None
None
338 (640)
10 w (50)
dec , ale
118 (245)
234 (453)
136 (277)
-80 (-112)
dec
bz. CS2
A[A
BDH.NTTC. MCA
BDH. MCA
24b 3S
2.75
45 (113)
17 dec. (63)
MCA
CMA 045731
?
SUBSTANCE/FORMULA
990 Sulfuryl Chloride SO2CI2
991 Sulfuryl Fluoride SOjF;
992 Systox (C2H50>2PS0C2H4SC2H5
993 Tall Oil (Liquid Rosin)
994 Tallow
995. Tannic Acid C76H526
996 Tantalum Ta
997 Tar, Liquid
TEDP, see Tetraethyl Dithionopyrophosphate
998 Tellurium Te
999 Tellurium Hexafluoride TeFg
TEPP, see Tetraethyl Pyrophosphate
Waste Dis posal Pro cedure (See VI)
TLV iacgih;
PPM
(mg/M3)
N, F, P, A. Health Fire React.
21 %
Sp. Gr.
1 67
Vap. Dens. (Air=1)
FI. Ft. C lF)
Ignit.
Temp. C (F)
Flam. Limits
%
B.P, C (F)
69 (156)
M.P. C lF)
Sol. in H7O
g/100fl
Other Solvents
-54 (-65)
dec.
bi
21 5 %
3 72
-55 -137 (-67) (-215)
109
ale
7b ( 1)
3S
134 (273)
18 182 (360)
18 24a 27a (5)
0 2S
1 0 .895 'S
16.7
265 (509)
199oc. 527 (390) (980)
32 (90)
210dec. sol. (410)
ale , ace
5425
2997
(9797) (5300)
insol,
26 3s 2S
>93 (>2001
49 (120)
27e (.1) 27# .02 2S
2S
6 26 1 18
1390 (2534)
452 (846)
insol.
35 -36 dec. (95) (-33)
Misc. Ret, BDH
NTTC NTTC
NTTC
PAGE 108
0*S732
SUBST-ANCE/FOBMULA
HhoO Terbium Tb
Waste Div posal
Pro cedure (See VU
TLV (ACGlH)
PPM
(mg/M3)
N. F, P. A. Health Fire React.
27k 2S
Sp. Gr.
8 77
vap. Dens.
(Airs=H
FI. Pt. C (F)
Igmt Temp.
C
(6F>
Flam, Limits
%
B,P.
C (F)
M.P.
C (F)
So), in H2O
g/IOOg
Other Solvents
2800
1356
(5072) (2473)
insol.
Misc, Ref.
1001 m-Terphenyf ClBHl4
18 t
0 1 16
135oc (275)
365 (689)
87 (189)
insol,
ale,, bz,
1002 o-Terphenyl CiSH14
1003 p-Tsrpbenyl Cl8H14
18 1 IS )
1 0 1 14
IS 1
'
| 1 Z* !
163oc (325)
-
332 (630)
57 (135)
insol
bz , MeOH
405 (761)
213 (415)
1004 Tetrabromoethane BrjCHCH Br2
26 1
30
1 2 97
239dec (374)
-1 insol (30)
ale
SDH
1005 lr2,4,5*Tetragbloroben*ene C6H2CI4
4b
1 0 1.86
155 (311)
243 (469)
139 (282)
insol
bz , CSj
1006 1,2.2.2-TetrachlocO'1,1-
26 500 =s
Difluoro Ethane F2CCI CCI3
1 64
7.03S
92 (198)
41 (106)
insol
ale.
1007 1,1,2,2-Tetrachloro-l ,2. Difluoro Ethane C(2FCCFCl2
26
500
1 64
7.0%
93 (199)
25 insol (77)
ale
1008 1,1.2,2 Tetrachloroethane CI2HCCHCI2
4b 5
%
1.59
5.8S
None
146 (295)
-43 5). sol (-45)
ale
AlA. BDH, MCA
1009 Tetrachloroethylene CJ2C=CCJ2
1010 Tetrachioronephthalene C10H8CI4
4b 100 6 (2)
3s 2S
1 62
5.8S
None
121 (250)
-24 1-11)
insol
182 (360)
ale , bz.
AlA, BDH, NTTC. MCA
1011. Tetradecane C14H30
18
!St st .76 6% 100 202 .5--
254
6 insol
ale
(212) (396)
(489)
(43)
PAGE 109
CMA 045733
SUBSTANCE/FORMULA
1012 Tetraethyidithionopyrophosphete (C2H50I4P20S2
Tetraethylenepentamine 1UIJ H2N(CH2CH2NH)3
CH2CH2NH2
1014 Tetraethyl Lead Pb(C2H5l4
1015 Tetraethyl Pyrophosphate IC2H50I4P203
1016 Tetrahydrofuren C^HgO
3,4,7,7a*Tetrahydro-4,7Methanomdene, see Dicyclopentadiene
Waste
Dis TLV posal (ACGIH) Pro PPM cedure (mg/M3} (See VI)
N. F. P. A. Health Fire React.
7b (2) %
Sp. Gr.
1.19
7a 2 1 0 ,99
4b
( 075)
3
2
3 1.66
7b
I 05)
%
18 200
7
3
1 1.20
1 j 89 1
Vap. Dens.
(Air=1)
Fl. Pt. C (F)
Igmt. Temp.
C (F)
Flam,
Limits %
B.P.
C (F)
M.P, C <F)
Sol. in HjO
g/IOOg
Other Solvents
138 (280)
insol
ale.
163oc (325)
333 (631)
8 6 93 (206)
I70exp (338)
-137 (-215)
insol,
ale , bz.
155 (311)
'00
!
--
1 * ale , ace i
2.5 -- 14
321 2-11 8
65
--65 v so)
org,, sol
(6) (610)
(151)
(-85) !
1017 Tetrahydronaphthalene c10Hi2
18
20
97 4.55 71
384 .8-5 207 -30 msol, ale
(160)
(723) @302 F (405)
(-22)
1018 Terralin, see Tetrahydronaphthalene
N,N.I\r.N'-TetramethYl`3,3'* Oimethoxybenzdine C18H24Q2W2
N,N,N',N'-Tetramethylethy1020 lenediamine (CH3>2NCH
CHN(CH3)2
1021. Tetramethyl Lead Pb(CH3)4
6 car.
6
4b
( 075)
3
2S 78
3
3 1.99 6.5
38
(100)
121 (250)
110 (230)
sol
-28 msol (-18)
ale., bz.
1022. Tetramethyl Silane Si(CH3)4
3S .65
27 eth, (81)
Misc. Ref. MCA BDH
CMA 045734
SUBSTANCE/FORMULA
Tetramethyl Succmonitrile W NCCICH3)2C(CH3)3CN
Waste Dis posal Pro cedure (See VI)
14
TL V (ACGIH)
PPM (mg/M3)
1 5|
1
N. F. P.
Health Fire
| 3g ,
i
A
React. 1
-
|
Sp. Gr.
1 30
Vap. Dens. (Air=i1)
F|. Pt. C (F)
Ignit. Temp.
C (F)
Flam. Limits
%
B.P. C (F)
M.P Sol. m
C
h2o
Other
(F) g/IOOg Solvents
igOsubl (374)
1 si sol si sol , Jl(,,
M*sc. Ret.
niA Tetramethylthmram Disulfide 1UZ llh.ram) iH2NCSCH3)4$2
Tetramtromethane 102 CtNQ2>4
13 4a
(5) 1
2s j % %j -
13 1.64 j
70 (158)
:
1---------- ,------- ------- --------------------;------------------------ -
126 !
13 I msol
ale
(259) [ (55) j
!
Tetryl. see N-Methyl-N-2, 4,6-Tetranitroamlme
1026 ThaUmm Tl
1027 Thallium, soluble compounds
i1 !!1ii
27k ! | 1) | 3S
27k 1,1) ! 3S ^ -
; ,-
j 11,9
|-
_________ _________
T !;
:i
. | 1460 : ! (2660) '
; 304 | (579)
, msol i
I
-
!
, :
1028 Thallous Sulfate H2SO4
1029 Thioacetemide CH3CSNH2
1030 2 2'-Thiodiethanol (CH2CH2QH)2S
1031, Thioglycolhc Acid HSCH2'COOH
1032 Thionyl Chloride SOClo
1033, Thionyl Fluoride sqf2
27k ' j 3s | !
13 j -
2s : -
:-
6 77
t
-1
![ _________ 1_________ 1_________ _________ _________
--
dec.
632 11170)
1 20 1 49 1
115 (239)
v sol ! ale !
1 1 I !
13 13 20 21 1
1 % %
0 : 1 18 j 4 2S
160oc.
(320)
i1
1.35
1 64
28 u oo (82) (12)
105 (221) @11mm
17 00 (1)
76 -105 (169) (-157)
dec
ale ale bz.
BDH BDH
21
2 93
-44 -110 dec.
bz , ace,
(-47) (*166)
SUBSTANCE/FORMULA
1034 Thiophene C4H4S
1035. Thiourea NH2CSNH2
Thirem, see Tetramethyl Thiuram Disulfide
1036, Thorium Th
1037. Thorium Nitrate Th<N03)4
1038 Tin Sn
1039. Tin, Inorganic compounds
1040 Tin, Organic compounds
1041. Titanium Ti
1042. Titanium Dioxide (rutile) T1O2
1043. Titanium Tetrachloride T1CI4
1044 Toluene C6H5CH3
Wane
Dis* TLV
posal (ACGIH)
Pro
PPM
cedure (mg/M3) (See VI)
N. F. P, A. Health Fire React.
13 2S %
Sp. Gr.
1.06
Vap. Dens. (Air=1)
FI. Pt. C
(F)
Iqnit. Temp.
icF)
Flam. Limits
%
2.9 -1 (30)
B.P. (F|
84 (183)
M.P.
C (F)
Sol. m
H2O g/IOOg
Other Solvents
-38 (-36)
org., sol.
13 'S
1.41
dec.
181 sol.
ale.
(358)
Misc, Ref. BDH
27k
2S | -
, 117
1(
1
27k
1 I0
1j
'
27a (21
11 (2) r--
26 Ml
| 0S | 1$ 1 -
| I 5.75
. . . 1_ _ _ _ _ _ _ _ 1_ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _ _
variable, j oxides | toxic
%
!
---------------1------------------ 1 -
4500 (8100)
1827 (3321)
insol
500dec. 1 v sol. (932)
ale
2260 (4100)
232 insol (450)
most soluble
AIA
27a (15) 26 (15)
li> 5 18 200
S
30 23
4.5 4.26
700-800
(13921472)
3262 (5432)
1800 msol (3146)
~27QQ (4890)
1840 msol. (3344)
AIA
1 1 73
136 (277)
-30 sol. (-22)
ale.
8DH. NSC
0
87 3,1
5 (40)
536 1 4-6 7 (997
111 (231)
-95 (-139)
msol.
ale., b2, CS2
AIA
BDH,NTTC MCA
PAGE 112
CMA 045736
Is
" J______
substance/formula
Totuene-2,4-diisocyanate CH3C6H3(NCO)2
a-Toluenethiol, se Benzyl Mercaptan
Waste Dis posal Procedure (See V0
TLV (ACGIH1
PPM
(mg/M3)
6 02
N. F. P A.
Health Fire React,
I2 1 2 1 _________ 1_________
Sp. Gr.
12
Vap. Dens,
(Air=1)
FI. Pt. (F)
Ignit. Temp,
C (F)
132 (27Q)oc
.9-9 5
B.P. C lF)
251 (484)
M.P,
C (F)
Sol. in HjO
g/IQQg
Other Solvents
Misc, Ret,
20 j AIA, MCA (68) 1
.nJK 1.o-Tolyllo-2-Nphthol 10 Cl7Hl4N20
Tolylene Diisocyanate, see Toluene-2,4-0iisocyanate
o-Tolyl Phosphate, see Trttolyi Phosphate
1047 m-Toluidme CH3-C6H4-NH2
1048 o-Toluldine CH3'C6h4'nh2
1049 p*Toluidine CH3-C6H4-NH2
8
5 5 5
car,
5 32 5 32 5 32
i
j
'
0i
!1
.99 ; 3.9c 1 se ! 1 (187)
0 1.004 j 3.7S 85 085)
I
0
1 046
3%
87
(189)
482 (900)
482 (9001
482 (900)
1 1
1
I
203 -31 (398) (-24)
! I
si, sol, ; ale
200 (392)
-16 (3)
si. sol. ale.
200 44 (392) (111)
si sol. ale
BDH, MCA BDH, MCA BDH, MCA
Toxaphene, see Chlorinated Camphene
1050. Tremolite CasMgsSigOj^Hj
26 '77/cc
1051 Triamylamine iC5Hn)3N
7a 25
2
1
0
.8
7.8S
102
(215)
232 (450)
ale., ace
Tribromomethane, see Bromoform
PAGE 113
CMft. 045737
SUBSTANCE/FORMULA
1052 Tri-n-Butyl Amine (C4Hg)3N
1053. Tributylchlorotin Ci2H27SnCI
1054. Tributyl Phosphate (C4HgO)3 PO
1055. Trichloroacetic Acid C CI3COOH
T richloroacetaldehyde, see Chloral
1056 Trichloroacetorutnle CCI3CN
Waste Dis
posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M-5)
N. F, P. A. Health Fire React.
7a 5NFPA
2
2
0
Ignit.
Vap.
FI, Pt. Temp. Flam.
B.P.
Sp, Dens. C
C
Limits
C
Gr. (Air=1) (F)
(F)
%
(F)
M.P.
C (F)
Sol. in H2O
g/IOOg
Other !
Solvents
Miac. Ret.
.8 6.3S 86 (187)
216 (421)
-70 (-94)
si. sol.
ale.
BDH
4b 1.13
174 30
(345)
(86)
7b (5)
4c
1
j
2
1j
0
,97 9.2S
146
(295)
3S 1 63
292 <-80 (558) K--112)
sol.
ale., b2., "2
198 j 58 (388) ] (136)
_________ ________ ^
V sol.
ale.
BDH
14 1 44
85 -44
(185)
(-47)
1057 Trichloroacetyl Chloride
concoct
1
3S
1.63
118 (244)
dec.
dec., ale.
1058. 1,2,4-Tnchlorobeniene CeH3Ci3
1059. 1,1,1-Tnchloroethane CH3CCI3
1060. Trichloroethylene CICHCCI2
T richlorofluoromethane, see Fluorotrichloromethane
4b
2
1
0
1.45
6,3g
99
(210)
214 (417)
17
insol.
si sol., ale.
(63)
26 350
2S
4b 100 3S 'S
1,34 1.46
4-6S 4.54
none
32 (90)
74 (165)
-38 (-36)
msol.
ale.
410 12,5-90 (770)
87 (188)
-88 (--126)
si. sol.
ale.
AIA, NTTC, MCA
AIA. BDH, NTTC. MCA. NSC
Trichioromethanethiol, see Perchloromethyl Mercaptan
CMA 045738
SUBSTANCE/FORMULA
Im6l Trichloronaphthalena V ' C10HSCl3
Waste Dis
posal Pro
cedure (See V)>
TLV (ACGIHI
PPM
(mg/M3)
N. F. P. A, Health Fire React.
4b (5) 2S
Ignit.
Vap.
FI, Pt. Temp. Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Air=1) (F>
(FI
%
(F>
|
M,P, C
Sol. m
H2O g/IOOg
Other | Solvents j Misc. Ret.
133 (271)
a)c.h
Tnchloronitromathane, see Chloropicnn
1062- 2,4,5-Trchlorophenoxy Acetic Acid CI3C2H2OCH2COOH
4c 10
!
157 (315)
1063 1,2,3-Triehloropropane C3H5CI3
4b 50
3
2
0 1.39 5.0 82
304 3,2-12.6 156 -15 st sol. ale.
(180}oc (579)
(313)
(5)
1064 1^1,2'Tnchloeo-1,2,2-TrifJuoro Ethane CI2FCC Cl F2
26
Tncresyl Phosphate, see Tritolyl Phosphate
1000
Is 1,56
680 (1256)
48 (118)
-36 (-33)
insol.
ale., bz.
1065, Tridecanol CH3(CH2)nCH20H
1066. Triethyl Aluminum <C2HSI3AI
1067. Triethyl Amine (C2H5I3N
1068. Triethanolamine (CH2OHCH2)3N
1069. Triethylene Glycol Triethy (CH20CH2CH20H)2
1070, Triethylene-Tetramme H2NCH2(CH2NHCH2l2CH2 nh2
18 3 7s 7a 18 7a
.82
3S
__ ______ _________ 1
25 2
3
0
,84 .73
!st *st 'St 1,13 1 1 0 1.13
3 1 0 .98
6.9 121 (250)
274 31 msol. ale.
(525)
(S8)
<-S3 <-53 --63) IC-63)
194 (381)
-53 exp.h^O (-63)
3.48 <-7 (<-20)oc
1.2-8,0
89 (192)
-115 (-175)
sol.
ale.
179 (355)
360 (680)
20 0O (68)
ale.
S.17S 177
371 .9-9.2
276
-4 Qo ale.
(350)
(700)
(529)
(25)
135 (275)
338 1640)
267 (513)
12 sol. (54)
ale.
AIA BOH
BDH
PAGE 115
CMA 045739
SUBSTANCE/FORMULA
1071 Triethyl o-Formate IC2H50)3CH
1072. Trifluoroacetic Acid cf3cooh
1073. Trifluoromethana chf3
1074. Triisobutyl Aluminum (C4H9)3AI
Waste Dis posal Procedure (S#a VI?
TLV IACGIH)
PPM
(mg/M3)
N, F. P. A. Health Fire React.
18 % 2S
4c 3S
-4b 2S
3 %%
Ignit.
Vap.
FI. Pt, Temp. Flam.
8.P.
Sp. Dens. "C
C
Limits
C
Gr. (Air=1) ("FI
(F)
%
<F)
.89 5.1s
30
<86)
146 (295)
M.P. C (F)
Sol. in H20 g/IOOg
Other Solvents
dec ale.
1.54
72 (162)
-15 sol. (5)
1.52
-84 (-119)
-163 (-261)
$1. sol.
ale.
,79 <0 <4 (<32) 39)
114 (237)
4 (39)
Misc. Ret. BOH BDH
A) A
1075. Trimathyl Amine ICH3)3N
7a 10
3
4
0
1076. 5,9,10-Tnmethyl-l,2-Benzan thracene (CH3)3C-]gH-|3
18
car
20NFPA -13- -8 (8-18)
190 (374)
2-11.6
*
4
-117 v sol
ale., bz.
(39) 1-179)
BDH. MCA. MGB
1077. 6,9,1O-Trimethyl-1 ,2-Benzanthraeana (CH3}3CfgHf3
107$. Trimathyl Borat B(OCH3)3
18 18
car
2
3
1
92 3.6
<27
(< 80)
67 (153)
-29 (-20)
dec.
MeOH
3,5,5`Trimethyl*2-Cyclohexenon, see iso-Phorone
1079. 2,2,4-Tnmethyl Pentane (CH3)3C CH2 CH(CH3)2
1080. 2,4,4-Trimethyl-2*Pentene (CH3)2C=CHC(CH3)3
1081 1,3,5-Trinitrobenzene C6H3(N02>3
18 18
6
2S 3 3
24
0 .69 3.9 0 .72 3.9 4 1.69
-12 (10)
418 (784)
1 1-6.0
99
(210)
-107 insol. (-161)
si. sot., ale.
2 112 -107 insol. (35) (234) (-161)
exp. 121 si. sol. ace., bz. (250)
BDH
CMA 045740
I
SUBSTANCE/FORMULA
Trinitropheno), see Picric Acid
1082- 2,4,6-Tnmtrotoluane CH3C6H2(N02i3
1083. 1,3,5-Trioxf OCH2OCH2OCH2
1084 Triphenyl Phosphate (CgHsOhPO
1085- Triphenyl Phosphine IC6H5)3P
1086 Tripropylamme (C3H7>3 N
1087- Trisodium Phosphate Na3P04't2H20
Triton, see Trinitrotoluene
1088* Tritolyl Phosphate (CH3C6H4)3P04
1089- Turpentine ClOH16
1090. Unsymmetrieal Dimethyl Hydrazine (CH3)2NNH2
1091 Urenium U
Waste Dis posal
Procadura (See VI)
TLV (ACGIH1
PPM
(mg/M3)
N. F. P. A, Health Fire React.
Ignit.
Vap,
FI. Pt. Temp. Flam.
B.P.
Sp, Dans, C
C
Limits
C
Gr, (Air=1) <F)
(F)
%
(F)
M.P.
C (F)
Sol. in H2O
g/IOOg
Othai Solvents
Misc. Ret.
6 11.5)
2
4
4 1.65
exp.
240exp 81 (464) 1 (178)
insol.
ace., bz.
18 7b (3) 7b 7a
2 2 0 1.17 2 1 0 1.21
% 2S
1.19
45 (113)oc
414 (777)
3.6-29
115 (239)
62 1144)
220 1428)
180 (356)oc
245 (4731 @11mm
-------
<360 (680)
49 (120)
80 (176)
v. Sol.
ale., bz. cs2
1 m$ol. j ale.. b2
insol. | ate., bz. I
2
2
0
.75 4.9
41
(106)oc
156 (313)
-94 (--137)
sl. sol.
ale.
11 2S
1.62
74dec. si. sol. (165)
7b 2
18 100
1
16 .5 3
27k (.051
3S
1 3 3
0
1.17 12.7S
225
385
(437)
(7251
410 (770)
11 (52)
AIA, BDH
0
.87 4.6s 35-39 253 .8-
153-75
(95-102) (487)
(307-47)
AIA
1
.79 1.94
-15 249
2-95
63
-58
v. sol. ale., MeOH MCA
(^5) (480)
(145) (-72)
19.05
3818
1130 msol.
(6905) (2066)
AIA
PAGE 117
SUBSTANCE/FORMULA
Waste Dis posal Pro cedure (See VI)
TLV (ACGIH)
PPM
(mg/M3)
^^^2, Uranium, Insoluble Compounds 27k
25
N. F, Pr A. Health Fire React.
3s
Igmt.
Vap.
FI. Pt. Temp, Flam.
B.P.
Sp. Dens. C
C
Limits
C
Gr. (Airxsl) lF)
(FJ
%
(F)
M.P. C (F)
Sol. in H9O
g/lOOg
Other Solvents
insol.
1093. Uranium, Soluble Compounds
27k (.05)
3s
1094. Uranium, Nitrate U02(N03)2`6H20
27k (.05)
1
0
1 2.81
118 (244)
59 (138)
sol. W
ale., ace.
Misc, Ref.
1095. Urea H2NCQNH2
1096. Valeraldehyde CH3CH2CH2CH2CHO
26
2.
0S
1.32
.81 3.0
12
(54)
dec. 133 v. sol. ale.
102 (217)
-92 (-134)
si. sol.
ale.
NTTC NTTC
1097. Valeric Acid C4H9COOH
24a 'S
.94 3.5
96
(205)oc
186 (367)
-36 sol. (-31)
ale.
1098. Vanadium Dichloride VCI2
27i
3S
3.23
dec. ale.
1099. Vanadium Oxytrichloride VOCI3
27i
3S
1 .S3
127 (261)
-77 (-107)
dec.
ale.
1100. Vanadium Pentoxide V25
1101, Varnish
27i (.1) 18
2S 3.36 30
176-24*
1750dec, 690 (3182) (1274)
si. sol.
NTTC
1102. Vinyl Acetate CH3COOCHCH2
Vinyl Bromide,, see Bromoethyiene
Vinyl Butyl Ether, see Butyl Vinyl Ether
18
2
3
2
,94 3.0
-8
427 2.6-13.4 73
-100 insol. org, sol.
NTTC. MCA
(18) (800)
(163)
(-148)
CMA 045742
CMA. 045743
SECTION VI.
WASTE DISPOSAL
PAGE 121
CMA 045744
SUBSTANCE/FORMULA
1112. Xylidine C6H3(CH3)2NH2
1113 Yttrium Y
1114. Zinc Zn
1115. Zinc Acetate Zn(C2H302)2
1116. Zinc Chlorate Zn{Cl03)2'4H20
1117. Zinc Chloride Zn Cl2
1118. Zinc Oxide ZnO
1119. Zirconium Zr
1120. Zirconium Compounds
1121. Zirconium Hafnium Powder
Waste Dis posal Pro cedure
(See VI)
TLV (ACGIH)
PPM
(ma/M3)
N. F. P. A. Health Fire React.
553 1 0
tgnit
Vap.
FI. Pt. Temp. Flam.
B.P.
Sp. Dens, C
C
Limits
C
Gr. (Air=1) (F)
<F)
%
(*F)
M,P, C (F)
Sol. in H2O
9/100g
Other Solvents
.99
4.2S
97
(206)
224 (435)
<-15 5)
si sol
ale
Mi$c. Ref. SDH
26 i.D
2S 4,34
2927
1500
(5300) (2732)
si. dec.
27a (15)
0
1
1 7,14
905 (1661)
419 (787)
insol.
11 12a 11 ID
s
20 2St
1.84 2 2.15 2St 2.91
200dec. 302 (392)
ale.
60dec. 26220 (140)
ale., ace.
732 (1350)
283 (541)
43225
ale.
AIA
26 (5)
3S
5.47
1975 (3587)
sol.
26 (5) 1 4 1 6.5
260 (500)
3578
1850
(5252) (3362)
inSOl.
AIA, NSC
11 (5) 26 (5)
Is 14
1
20 (68)
insol.
MCA,NSC
PAGE 120
CMA 045745
_DISPOSAL PROCEDURE ORGANIC ACID HALIDES
Rubber gloves, self-contained breathing apparatus (or work in an effective fume hood with full face shield), laboratory coat.
Cover with a mixture of soda ash and slaked lime (50-50). Mix thoroughly. Spray gently with 6M-NI-UOH,* Slowly scoop the slurry into large beaker or bucket of water. Neutralize** and slowly pour into drain with large excess of water. Wash site with soap solution containing soda ash.
Package lots:
(CHOICE OF PROCEDURES)
1 Slowly sift or pour into a large evaporating dish containing a layer of soda ash and lime. Spray with 6M-NH4OH as above. Mix thoroughly and add slowly to a large bucket of water. Neutralize and pour slowly down the drain with a large excess of water. Repeat this procedure until all has been disposed.
2 Dissolve the chloride in a flam
mable solvent. Spray into an inciner ator with afterburner and scrubber.
Examples:
Acetyl bromide Acetyl chloride Benzoyl chloride Butyryl chloride Chrotonyl chloride Chloroacetyl chloride 3-chloropropionyl chloride o-chlorobenzoyl chloride Oxalyl chloride Propionyl chloride
* See Section VII,
** If excess of 6M-NH.OH has been used, neutralize with 6M-HCI {use litmus paper indicator). If acidic, neutralize with 6M-NH4OH,
CMA 045746
lb
INORGANIC HALIDES
Wear.-
Rubber gloves, self-contained breath ing apparatus (or work in fume hood), laboratory coat. For the more active compounds work from behind a body shield.
Spills:
Cover with a 50-50 dry mixture of kaolin and soda ash. Mix thoroughly. Spray with 6M-NH4OH. When the smoke of NH^CI has subsided, scoop the slurry into a large beaker or plastic bucket of ice water. Neutralize* the solution and run the suspension down the drain with a large excess of water.
Package lots:
Sift or pour onto a dry well-mixed layer of 50-50 kaolin and soda ash in a large evaporating dish. After mixing thor oughly spray with 6M-NH4OH while stir ring. Cover with a layer of crushed ice and stir. Continue spraying with 6M-NH4OH. When the smoke of NH4CI has partly subsided add iced water and stir. Dump this slurry into a large con tainer. Repeat until all has been treated. Neutralize* and slowly siphon the suspension into the drain with ex cess running water.
Examples:
Aluminum bromide, anhydrous Aluminum chloride, anhydrous Ferric chloride, hexahydrate Germanium tetrachloride Silicon tetrachloride Tin tetrachloride Titanium tetrachloride
* See la for procedure.
CMA 045747
DISPOSAL PROCEDURE
Rubber gloves, self-contained breathing apparatus, laboratory coat.
Eliminate all sources of ignition and flammables. Small--Absorb on paper towel. Evapo rate in fume hood and burn the paper. Large--Cover with sodium bisulfite (NaHSO;i). Add small amount of water and mix. Scoop into large beaker. After one hour wash down the drain with a large excess of water. Wash site with soap solution.
Package lots.-
(CHOICE OF PROCEDURES)
1 Absorb on vermiculite. Burn in an open pit or open incinerator.
2 Dissolve in a flammable solvent
(such as acetone or benzene). Spray into the fire-box of an incinerator equipped with an afterburner.
Examples:
Acetaldehyde Acrolein Acrolein dimer Benzaldehyde Butyraldehyde Caprylaldehyde Chloral Chloralhydrate Chloroacetaldehyde Cinnamaldehyde Crotonaldehyde 2-ethyl-3-propylacrolein Formaldehyde Formalin (MeOH free) Formalin (15% MeOH) Furfuraldehyde Glutaraldehyde Glyoxal Paraldehyde Paraformaldehyde Propionaldehyde Salicylaldehyde Valeraldehyde
ldehydes t
DISPOSAL PROCEDURE 2--PAGE 125
CMA 045748
DISPOSAL PROCEDURE---------------------------------------
ALKALI AND ALKALINE EARTH METALS, METAL ALKYLS, AND ALKOXIDES
Wear-.
Leather gloves, large face shield, labo ratory coat. (Class D fire extinguisher should be available)
SpH/S :
Small--Cover with dry soda ash. Mix and add slowly to butyl alcohol. After 24 hours dilute, neutralize* and add to drain with large excess of water.
Package lots:
OR Large spills--Mix with dry soda ash. Scoop into a dry bucket. In a remote area spread onto a large iron pan. Cover with scrap wood, paper and ignite with an excelsior train.
OR--Burn in an open pit incinerator,
OR--Direct "dry" steam onto the waste, spread on an iron pan. Beware of splatter.
Examples:
Alkoxides Aluminum alkyls Aluminum ethoxide n-butyl lithium Calcium Diethyl zinc Lithium Potassium Sodium Sodium ethoxide Sodium methoxide Sodium-potassium alloys Triethyl aluminum Triisobutyl aluminum
* Neutralize with 6M-HCI. PAGE 126--DISPOSAL PROCEDURE 3
ALKALI AND ALKALINE EARTH METALS, METAL ALKYLS, AND ALKOXIDES
CMA 045749
.DISPOSAL PROCEDURE CHLOROHYDRINS, NITROPARAFFINS
Neoprene gloves, plastic laboratory coat, self-contained breathing appara tus. Provide good ventilation.
Eliminate all sources of ignition. On skin--Wash immediately with soap solution. Rinse thoroughly. On clothing--Remove clothing immedi ately and place in a fume hood. Wash clothing before wearing again. Shoes are difficult to decontaminate and may have to be discarded and burned. On bench and floor--Cover with soda ash. Mix and spray with water. Scoop into a bucket of water. Let stand two hours. Neutralize* and wash into sewer with large excess of water. Wash site with soap solution.
' Neutralize with 6M-HCI.
Package lots:
(CHOICE OF PROCEDURES)
1 Pour or sift over soda ash. Mix and wash slowly into large tank. Neu tralize and pass to sewer with excess water.
2 Absorb on vermiculite. Mix and
shovel into paper boxes. Drop into incinerator with afterburner and scrubber.
OROHYDRINS, NITROPARAFFINS
Examples
iso-amyl nitrate iso amyl nitrite 1-chloro-l-nitropropane Chloropicrin Cyclonite 1,1-dichloro-l-nitroethane EPN Ethylene chlorohydrin Ethylene nitrate Ethyl nitrate Methyl ethyl nitrocarbamate Nitroethane Nitromethane Nitropropane Propyl nitrate Tetranitromethane
DISPOSAL PROCEDURE 4a--PAGE 127
CMA 045750
ORGANIC HALOGEN AND RELATED COMPOUNDS
Wear:
Rubber gloves, self-contained breath ing apparatus, laboratory coat.
Spills :
Eliminate all sources of ignition. Ab sorb on paper towels. Place on an iron pan in a hood. Allow to evaporate. Burn the paper. Wash site with soap solution.
Package lots:
(CHOICE OF PROCEDURES)
1 Pour onto a sand-soda ash mix ture (90-10). (If a fluoride is present, add slaked lime to the mixture.) Mix and shovel into paper boxes. Place in an open incinerator. Cover with scrap wood and paper. Ignite with an excel sior train; stay on upwind side. Or dump into a closed incinerator with afterburner.
2 Dissolve in a flammable solvent.
Spray into the fire box of an inciner ator equipped with afterburner and scrubber (alkali).
Examples
Aldrin Allyl bromide Allyl chloride Allyl chloroformate Allyl iodide Amyl bromide Benzal chloride Benzotrichloride Benzotrifluoride Benzyl bromide Benzyl chloride Benzyl chloroformate Bromobenzene Bromoethane Bromoethylene o-bromotoluene n-butyl bromide m-butyl chlorate t-butyl chloride Chlordane Chloroacetophenone Chlorobenzene Chlorocresols Chlorodiphenyl 3-chloro-2-methyl propene Chloronaphthalene
PAGE 128--DISPOSAL PROCEDURE 4b
ORGANIC HALOGEN AND RELATED COMPOUNDS
CMA 045751
examples--Continued
Ithloroprene Chlorotrifluoroethylene Dibuty! dichlorotin j 4-dichlorobutane j'3-dichloro-2-butene j l-dichloroethane 1 2-dichloroethylene ^2-dichloropropane ^ 3-dichloropropene Dieldrin Diethyl aluminum chloride Diethyl sulfate Dimethyl sulfate Dimethyl sulfoxide Dodecyl sodium sulfate Epichlorohydrin Ethyl bromoacetate Ethyl chloride Ethyl chloroacetate
Ethyl chloroformate Ethylene dibromide Ethylene dichloride Ethyl fluoride Ethyl fluoroacetate Ethyl iodide Fluoroethylene Heptachlor Hexachlorobenzene Hexachloronaphthalene Lindane Methoxychlor Methyl bromide Methyl chloride Methyl chloroformate Methyl iodide Octachloronaphthalene Octafluoro-2-butene Octafluoropropane
4b
Pentachloroethane Pentachloronaphthalene Propargyl bromide Propyl bromide Propyl chloride Propylene disulfate Sodium Pentachlorophenate 1,2, 4, 5-tetrachlorobenzene Tetrachloroethane Tetrachloroethylene Tetraethyl lead Tetramethyl lead Tributyl chlorotin 1,2,4-trichlorobenzene Trichloroethylene Trichloronaphthalene 1,2,3-trichloropropane Vinyl chloride Vinylidene chloride
pGANIC HALOGEN AND RELATED COMPOUNDS
DISPOSAL PROCEDURE 4b--PAGE 129
CMA 045752
DISPOSAL PROCEDURE----------------------------------SUBSTITUTED ORGANIC ACIDS
Rubber gloves, self-contained breathing apparatus or all-purpose canister respirator, laboratory coat.
Eliminate all sources of ignition. Turn on the fume hood if acid is volatile. Spray the atmosphere with 6M-NHjOH. Cover the spill on bench and floor with soda ash and slaked lime. Mix and scoop into a large beaker of water. When reaction is complete, neutralize* and pour down the drain, with a large excess of water. Wash site with soap solution.
(CHOICE OF PROCEDURES) f m pour 0nto a mixture of soda ash
and slaked lime (50-50). Mix and scoop into a bucket. Dump into a 55-gal. drum and fill with water. After 24 hours neutralize and slowly pour into drain with large excess of water.
2 Pour onto vermiculite in an open
incinerator. Cover with scrap wood and paper. Pour waste alcohol over all and jgnite with an excelsior train. Stay on upwincj side.
3 Dissolve in a flammable solvent
such as waste alcohol. Spray into an incinerator with an afterburner and scrubber.
Benzene sulfonic acid Bromoacetic acid Chloroacetic acid Dichloroacetic acid EDTA Fluoroacetic acid lodoacetic acid Trichloroacetic acid 2,4, 5-trichlorophenoxy acetic acid Trifluoroacetic acid
* Neutralize the 6M*NHiOH with 6M-CI. PAGE 130--DISPOSAL PROCEDURE 4c
SUBSTITUTED ORGANIC ACIDS
CMA 045753
DISPOSAL PROCEDURE aromatic AMINES
Butyl rubber gloves, plastic laboratory coat, self-contained breathing appara tus.
On skin and clothing--Wash skin with strong soap solution immediately. Rinse thoroughly. Contaminated cloth ing should be removed, dried, and washed with strong soap solution--or destroyed. It may be necessary to de stroy shoes by burning. Small spills--Absorb liquids on paper towels. Brush solids onto paper. Place in an iron pan and allow evaporation in the fume hood. Add crumpled paper and burn. Wash site with strong soap solution.
Large spills--Cover large spills with sand and soda ash mixture (90-10). Mix and shovel into a cardboard box. Pack with much excess crumpled paper. Burn in an open pit or in an incinerator with afterburners and scrubber.
Package lots:
(CHOICE OF PROCEDURES)
1 Pour or sift onto a thick layer of sand and soda ash mixture (90-10). Mix and shovel into a heavy paper box with much paper packing. Burn in incinerator. Fire may be augmented by adding excelsior and scrap wood. Stay on upwind side.
2 Waste may be dissolved in flam
mable solvent (alcohols, benzene, etc.) and sprayed into fire box of an inciner ator with afterburner and scrubber.
Examples:
Acridine 2-aminodiphenylene
oxide
2-aminopyridine Aniline
Anisidines 2-anthramine Auramine Aziridine
Benzidine*
Benzyl amine
N-4-biphenyl acetohydroxamic acid
2-biphenyl amine
1, 2, 5, 6dibenzacridine
1, 2, 7, 8dibenzacridine
1, 2, 5, 6dibenzcarbazole
3, 4, 5, 6dibenzcarbazole
Dibenzyl amine
N, N-diethyl aniline 3,3'-dimethoxy
benzidine* N, N-dimethyl aniline Diphenyl amine
N-ethyl aniline Ethyl morpholine 1-methyl-
2-naphthylamine Morpholine 1- naphthylamine 2- naphthylamine* Nicotine p-phenylenediamine Phenylethanolamine Phenyl-
2-napththylamine Pyridine
Quinaldine Quinoline 4-stilbenamine Strychnine
Toluidines Xylidines
* Carcinogenic
CMA 045754
JL DISPOSAL PROCEDURE
AROMATIC HALOGENATED AMINES and NITRO COMPOUNDS
Wear:
Butyl rubber gloves, protective labora tory coat, self-contained breathing apparatus, protective shoes.
Spills :
On skin--Wash with strong soap solu tion immediately. Rinse well. Contaminated gloves, clothing, shoes-- Remove and clean at once or destroy by burning. Small spills on tables or floor--Absorb liquid spills on paper towels; sweep solid spills onto paper. Put on an iron pan in the fume hood and allow to evaporate. Burn the paper in the ab sence of other flammables. Wash the site thoroughly with strong soap solu tion. Large spills--Absorb liquid spill on sand or mix sand with a solid spill. Package this in a paper carton and
burn in an open pit. Use fuel such as crumpled paper and wood splinters. Wash site thoroughly as above.
Package lots:
(CHOICE OF PROCEDURES)
1 Pour or sift onto sand-soda ash mixture (90-10). Mix and package in heavy paper cartons with plenty of paper packing to serve as fuel. Burn in an incinerator. Fire may be aug mented with scrap wood.
2 The packages of # 1 may be burned
more effectively in an incinerator with afterburner and scrubber (alkaline).
3 The waste may be mixed with a
flammable solvent (alcohol, benzene, etc.) and sprayed into the fire cham ber of an incinerator with afterburners and scrubber.
Examples
Azoxybenzene Brucine Carbazole 1- chloro-2, 4-dinitrobenzene Chloro-2-naphthylamine Chloro-nitroanilines Chloro-nitrobenzene Chlorophenols 2,6-dibromo-N-chloro-p-benzoquinoneimine 2.5- dichloroaniline Dichlorobenzene 3, 3'-dichlorobenzidine* 1, 3-dichloro 5,5-dirnethylhydantoin 2,4-dichlorophenol 2- dimethylaminefluorene 9,10-dimethyl-l, 2-benzanthrene N, N-dimethyl-4-biphenylamine Dinitroaniline m-dinitrobenzene** o-dinitrobenzene** p-di nitrobenzene** 4.6- dinitro cresol 2, 7-dinitrofluorene 2, 4-dinitrophenol*
* Carcinogenic, ** Explosive. Other mtro compounds may also b
unstable.
PAGE 132--DISPOSAL PROCEDURE 6
AROMATIC HALOGENATED AMINES and NITRO COMPOUNDS
CMA 045755
EXAMPLES--Continued
. 4-dinitrosopiperazine
I 4-dinitrotoluene**
Elon Endrin 4-ethoxy-2-n 1 troan 1 line
Hj.2-f|uorenylacetamide 4.f|goro4-biphenylamine 2-fluoro-4-phenylacetan i I ide 4-fluoro-4'-pheny lacetani I ide Methylene bis-phenylisocyanate N-methyl'N-nitrosoacetamide N-methyI-N-n itrosoaI lylamine IM-methyl-N-nitrosoaniline N-methyl-N-nitrosobenzylamine
DISPOSAL PROCEDURE
1-methyl-l-nitrosourea N*methyl-N-nitrosovinylamine 1- methyl pyrole N-methyl-N-2,4,6-tetranitroaniline 3- nitroacetophenone m, 0-, p-nitroanilines Nitrobenzene Nitrobiphenyl 2- nitrofluorene n-nitronaphthalene Nitrophenols 4- nitroquinoline-N-oxide N-nitroso-N-methylaniline 4-nitrosomorphoiine
1- nitrosopiperazine N-nitrosopiperidine m-r o-, p-nitrotoluenes 2- phenonthreneacetamide Picric acid** N, N, N', N'-tetramethyl-3,
3'-dimethoxybenzidine N, N, N'f N'-tetramethylenediamine Toluene-2,4-di isocyanate Trinitrobenzene** Trinitrotoluene**
** Explosive. Other mtro compounds may also be unstable.
CMA 045756
7a
ALIPHATIC AMINES
Wear.-
Butyl rubber gloves, face shield or all purpose canister respirator, laboratory coat.
Spills:
Liquid or solid--Cover with sodium bi sulfate. Spray with water, neutralize* and wash into drain with large excess of water.
* Make a litmus test. Use 6M-HCI or 6M-NH.1OH as required.
Package lots:
(CHOICE OF PROCEDURES)
1 Add the contaminated amine to a layer of sodium bisulfate in a large evaporating dish. Spray with water. Make neutral and wash into the drain with large excess of water.
2 Dissolve in a flammable solvent
(e.g., waste alcohols). Burn in an open pit by means of an excelsior train. Stay on the upwind side.
3 Solution of #2 may be sprayed
into the fire box of an incinerator with afterburner and scrubber.
Examples
Allyl amine Amyl amine Aminoethylethanola-
mine Butyl amine Iso-butyl amine Tert-butyl amine Dibutyl amine Cyclohexylamine Dicyclohexylamine Diethanolamine Diethyl amine 2-diethyl
aminoethanol Diethylenetriamine Diisopropylamine
Dimethylamine Ethanolamine
Ethylamine
Ethylene diamine
N-ethyl-N-nitrosoN-butylamine
N-ethyl-Nnitrosovinylamine
n-heptylamine
Hexamethylenetetra mine
1-6-hexanediamine Hydroxylamine Hydroxylamine
hydrochloride Lutidine
N-methylbutylamine Monomethylamine N-nitrosodiethanola-
mine
N-nitrosodimethylamine*
1, 2-propanediamine Propyl amines Propylene imine Pyrrolidine
Tetraethylenepentamine
Triamylamine
Tri-n-butylamine Tri-ethylamine Triethanolamine Triethylene tetramine Trimethylamine
Tri propylamine
* Carcinogenic.
CMA 045757
.DISPOSAL PROCEDURE
7bORGANIC PHOSPHATES AND RELATED COMPOUNDS
Rubber gloves, self-contained breath ing apparatus, laboratory coat.
Absorb on paper towels or sweep onto towel. Put on an iron pan in the hood. Add some pulverized limestone and pour onto it a slight amount of benzene. Ignite from behind a body shield with a long torch. Dump residues into a large beaker of water. When settled decant into drain with large excess of water. Wash site thoroughly with soap and water.
Package lots:
(CHOICE OF PROCEDURES)
1 Take packages to an open incin erator. Stay on upwind side and mix with equal parts of sand and pulverized limestone. Wet down with a flammable solvent (benzene or alcohol). Ignite from a safe distance with an excelsior train.
2 Shovel mixture of #1 into a paper
box and drop into an incinerator with an efficient afterburner. Alkaline scrub bing will prevent escape of any oxides of phosphorous and arsenic.
Examples
0-chlorophenyl diphenyl phosphate Dibutyl phosphite Diethyl ethyl phosphate Diisopropyl fluorophosphate Dimethyl-1,2-dibromo-2, 2-dichloro-ethyl
phosphate Grain fumigants Hydroxy dimethyl arsine oxide Malathion Methyl parathion 1-naphthylisothiocyanate Parathion Phosdrin Ronnel Systox
Tetra ethyl dithiono pyrophosphate Tetra ethyl pyrophosphate Tri butyl phosphate Triphenyl phosphate Triphenyl phosphine Tritolyl phosphate
CMA 045758
PROCEDURE-------------------------------------- - i
AZIDES and AZO-COMPOUNDS I
The organic azides and heavy metal azides are explosive. Alkali and alka line earth azides are not considered ex plosive under normal laboratory con ditions.
Keep stock of all azides very low. Stamp date and receipt on package.
Wear.-
Leather gloves, heavy face shield, labo ratory coat. Work from behind a barri cade (body shield or wall). Avoid un necessary heat, friction or impact.
Small spills.-
Absorb the liquid on paper. If it is a solid, brush onto paper with great care. Deposit on an iron pan in a hood and add some crumpled paper for fuel. Ignite by means of a torch from behind a body shield.
OR Sponge up with water, followed by de
contamination with a 10% ceric am monium nitrate solution.
Large spills or Package lots:
(CHOICE OF PROCEDURES)
1 Dissolve alkali or alkaline earth azides in a large volume of water. Wash into drain with a large volume of water.
2 Transfer organic azides and azo
compounds, and azides of heavy metals to an open pit, preferably on an iron pan. Add paper and wood for fuel. Ignite by means of a long excelsior train.
3 "Kill" in a grea t e r-t h a n-
stoichiometric amount of ceric am monium nitrate solution with agitation sufficient to provide suspension of all solids.
Examples:
Sodium azide Hydrazoic acid Diazo methane
2,3-dimethyl-azo benzene
l-ortho-tolylazo-2-naphthol
3-methyl-4-dimethyl ammo-azobenzene Dimethyl amino azo benzene-2-naphthalene
2,2'-azonaphthalene
l-phenylazo-2-naphtho!
I I
i
CMA 045759
CARBON DISULFIDE
Rubber gloves, safety glasses, labora tory coat. If hood is not available wear self-contained breathing apparatus. Carbon dioxide fire extinguisher should be available.
Eliminate flammables and all sources 0f ignition. Allow to evaporate or absorb with paper towels and evaporate in hood on an iron pan. Burn the paper.
Package lots:
All equipment or contact surfaces should be grounded to avoid ignition by static charge. Absorb on vermiculite, sand, or ashes and cover with water. Transfer under water in buckets to an open area. Ignite from a distance with an excelsior train. If quantity is large, carbon disulfide may be recovered by distillation and repackaged for use.
Iarbon disulfide
DISPOSAL PROCEDURE 9-PAGE 137
CMA 045760
r
CAUSTIC ALKALI AND AMMONIA
Wear.-
Rubber gloves, large face shield (wear all-purpose or special canister respira tor for NH(*), Laboratory coat.
Package lots:
Pour into large tank of water and neu tralize. Transfer to sewer with large excess of water.
Spills :
Solid--Sweep up, dilute and neutralize with 6M-HCI in a large bucket. Wash down drain with large excess of water.
Solution--Neutralize and mop up--or use water-vac. Discharge to sewer with large excess of water.
*NH.i or concentrated solution of NH3. Spray atmosphere with 6M-HCI from a stainless steel spray can or its equiva lent--or fog cjown with a water hose. Neutralize and flush to sewer with ex cess of water.
Examples:
Ammonia, anhyd. Ammonia, aqua Slaked lime Quick lime Caustic soda Caustic potash
PAGE 138--DISPOSAL PROCEDURE 10
CMA 045761
DISPOSAL PROCEDURE INORGANIC SALTS
Rubber gloves, safety glasses, labora tory coat.
1 Solutions--Cover with soda ash,
mix and scoop into a beaker of water. Neutralize with 6M-HCI and wash down drain with excess water. 2 Solids--Collect in a beaker. Dis solve in large amount of water. Add soda ash, mix and treat as above. If spill contains a fluoride, add slaked lime in addition to the above treatment.
Package lots;
Add slowly to a large container of water. Stir in slight excess of soda ash. If fluoride is present add slaked lime also. Let stand 24 hours. Decant or siphon into another container and neutralize with 6M-HCI before washing down drain with large excess of water. The sludge may be added to land fill.
Examples:
Alums
Aluminum chloride, hydrate
Aluminum nitrate, hydrate
Aluminum sulfate, hydrate
Ammonium fluoride Ammonium nitrate Ammonium
thiocyanate Borax
Calcium chloride
Chromic (III) salts, hydrates
Cobaltous nitrate
Copper nitrate Ferrous Ammonium
sulfate Ferrous chloride Ferrous sulfate
Lithium carbonate
Magnesium chloride Magnesium nitrate Manganese sulfate
Nickel nitrate Nickel sulfate
Potassium acetate Potassium carbonate Potassium
ferrocyanide Potassium fluoride Potassium hydrogen
difluoride Potassium nitrate Sodium acetate Sodium benzoate Sodium bicarbonate Sodium carbonate Sodium chloride Sodium fluoride Sodium formate Sodium hydrogen
difluoride Sodium iodide
Sodium phosphates
Sodium propionate
Sodium silicate
Sodium tetraborate
Stannic chloride, hydrate
Zinc acetate
Zinc chloride
2GANIC SALTS
DISPOSAL PROCEDURE 11--PAGE 139
CMA 045762
OXIDIZING AGENTS
Wear:
Rubber gloves, face shield, laboratory coat. Body shield should be available for the more active agents. Replace face shield with self-contained breath ing apparatus for such agents as chlo rine and bromine.
SpHlS:
1 If a gas leak (e.g., chlorine)--Turn on the fume hood and spray the atmos phere with a high concentration of a reducer such as a solution of hypo, NajS-03, or sodium sulfite.* Attempt to stop leak and return the tank to the supplier. If the leak cannot be stopped, set tank upside down in a drum filled with reducer solution (hypo, sodium sulfite, or ferrous sulfate). Add more reducer as needed until all chlorine is converted to chloride.
* After the operation is completed wash down the furniture and floors to remove the salts used and formed.
2 If the oxidizer is a liquid or a solid--Cover with a reducer (hypo, a bisulfite, or a ferrous salt but not car bon, sulfur or strong reducing agents). Mix well and spray with water. A sulfite or a ferrous salt will require addition of some 3M-HjS04 to promote rapid reduction. Scoop slurry into a con tainer of water and neutralize with soda ash. Wash down the drain with excess water. Wash site thoroughly with a soap solution containing some reducer.
Package lots:
Add to a large volume of concentrated solution of reducer (hypo, a bisulfite or a ferrous salt and acidify with 3M-HoS04). When reduction is com plete add soda ash or dilute hydro chloric acid to neutralize the solution. Wash into drain with large excess of water.
Examples:
Ammonium dichromate Ammonium perchlorate Ammonium persulfate Bromic acid Bromine Calcium chlorate Calcium hypochlorite Chloric acid Chlorine Chlorine dioxide Cleaning solution (acid dichromate) Chromium oxychloride Iodine Magnesium chlorate Magnesium perchlorate Peracetic acid Perchloric acid Potassium and sodium perchlorates, chlorates,
chlorites, hypochlorites, persulfates Zinc chlorate
PAGE 140--DISPOSAL PROCEDURE 12a
1
CMA 045763
REDUCING
Rubber gloves, safety glasses, labora tory coat. Work in hood or wear a respirator.
ous), stir and add more water to form a slurry. Scoop the slurry into a large beaker. Let stand for one hour; dilute and neutralize* the oxidized solution and transfer to the drain with excess water.
Eliminate all sources of ignition. If a gas leak* (SOj, etc.), turn on fume hood and spray atmosphere with soda ash solution containing low concentration of calcium hypochlorite. Wash into
drain.
If spill is a solid cover it with soda ash. Mix and spray with water. If effer vescent wait until reaction is complete.
Cautiously add equal volume of calcium
hypochlorite (reaction may be vigor-
Test with litmus. Neutralize with 6M-HCI or gM-NaOH as required.
* if a tank of reducing gas has developed a perma nent leak lower it upside down into a drum filled with water. Add a mixture of soda ash and cal cium hypochlorite. Continue the treatment until the tank is empty and the drum contains a solu tion of stable element or compound.
Package lots:
If a gas,** bubble into soda ash solu tion. If a solid, mix with equal volume of soda ash and add water to form a slurry in a large container. In either case add calcium hypochlorite. Add more water if necessary and let stand two hours. Neutralize* the oxidized solution. Wash down drain with large excess of water.
Sulfur dioxide Chromous salts Sodium sulfite Sodium thiosulfate Sodium bisulfite Sodium nitrite Stannous chloride
CMA 045764
13
MERCAPTANS-and organic sulfides
Wear:
Rubber gloves, self-contained breath ing apparatus, laboratory coat.
Spills :
Eliminate all sources of ignition. Cover with calcium hypochlorite and mix. Scoop into a large beaker. After 12 hours, neutralize* if necessary. Wash to sewer with excess water. Wash site of spill with strong soap solution to which has been added some hypochlo rite.
Package lots:
1 As for spills.
2 Dissolve in waste alcohol or other flammable solvent. Burn in an inciner ator with an afterburner and scrubber to neutralize the S03.
Examples.
Ally! propyl disulfide Amyl mercaptan Benzyl mercaptan Butyl mercaptan Carbonyl sulfide** Diphenyl sulfide Ethanethiol 2-mercaptoethanol Methyl mercaptan** Perchloromethyl mercaptan Thioacetamide Thioglycolic acid 2,2-thiodiethanol Thiophene Thiourea Tetramethylthiuram disulfide (Thiram)
CMA 045765
_DISPOSAL PROCEDURE CYANIDES AND NITRILES
Long rubber gloves, self-contained breathing apparatus, laboratory apron 0r coat.
Evacuate the laboratory and isolate the area during decontamination.
Spills :
Eliminate all sources of ignition and flammables.
1 General treatment: (a) Absorb liquid on paper towel
(sweep solid onto paper). Place on an iron pan in a hood. Evapo rate and burn paper.
(b) On skin--Wash away immediately with much soap and water.
2 Hydrocyanic acid (HCN) leak.-* Turn on fume hood and spray atmos phere with alkaline solution of calcium hypochlorite. Allow gas to leak into a container of sodium hydroxide solu tion while stopping leak. Add excess calcium hypochlorite to the alkali cya nide. Discharge the cyanate into the drain with excess water.
* If the leak cannot be stopped set the tank upside down in a drum filled with a strong solution of sodium hydroxide and calcium hypochlorite, Con* tinue the treatment until the tank is empty.
3 Cyanides: (a) Scoop into a larger beaker and
make alkaline with sodium hydrox ide solution. Add to the slurry an excess of ferrous sulfate solution. After one hour, flush down the drain with excess water.
OR
(b) Add excess sulfur to the alkaline slurry of the cyanide. Heat to con vert to thiocyanate. Flush down drain with excess water.
Nitriles: Add excess of strong calcium hypochlo rite solution to produce a cyanate. Scoop slurry into a large beaker. After one hour flush down the drain with excess water. Wash site with soap solu tion containing some hypochlorite.
(Continued on n xf page)
snides and nitriles
DISPOSAL PROCEDURE 14--PAGE 143
CMA 045766
14
Package lots:
(CHOICE OF PROCEDURES)
1 Add with stirring to strong alkaline solution of calcium hypochlorite. Let stand 24 hours. Flush the cyanate down drain with large excess of water.
2 Liquid nitrile can be mixed with a flamable solvent and sprayed into an incinerator equipped with an after burner and scrubber.
Examples
Calcium cyanide Cuprous cyanide Cyanamide Cyanogen Cyanogen chloride Hydrocyanic acid Potassium cyanide Sodium cyanide Acetone cyanohydrin Acetonitrile Adiponitrile Benzonitrile
Benzyl nitrile Butyl nitrile Chloroacetonitrile Crotononitrile Cyanoacetamide Ethyl cyanoacetate
Lactonitrile Propionitrile Sevin
Succinonitrile Tetramethyl-
succinonitrile Trichloroacetonitrile
CYANIDES AND NITRILES
CMA 045767
CEDURE 1 5
Rubber gloves, large heavy face shield (if in doubt use body shield also). Selfcontained breathing apparatus.
Eliminate all sources of ignition and flammables. Absorb on paper towel. Evaporate from an iron pan in a hood. Allow time for vapors to completely escape the hood vents, then bum the paper. If large spill, absorb on much more paper or vermiculite and allow com plete evaporation from all surfaces. Use same precaution before burning paper.
Package lots:
1 Pour on ground in open area. Allow evaporation or ignite from a dis tance by means of a long fuse or excel sior train.
2 Dissolve waste in higher alcohol (e.g., butyl), benzene, or petroleum ether. Incinerate.
3 PEROXIDE FORMATION. (See MCA Data Sheet SD-29 ethyl ether.) Ether of long standing in contact with air and exposed to light may contain peroxides, especially if stored in clear glass. Explosions have occurred when caps or stoppers were turned. (See MCA Accident Case History No. 603.)
Transport cans or bottles to an isolated area (e.g., deserted quarry). Each con tainer should be wrapped in padding material or packed in sawdust. At site uncover containers and arrange an ex celsior train. From a safe distance
puncture the cans near bottom with rifle fire. Ignite excelsior train. Local regulations must be observed.
Examples:
Allyl glycidyl ether n-Amyl ether
Anisole Butyl vinyl ether Di-n-butyl ether
2.2-dichloroethyl ether
Diethylene glycol monoethyl ether
Diglycidyl ether Diisopropyl ether
Dimethoxy ethane
Dimethoxy methane Dimethoxy propane
Dipropylene glycol methyl ether
1.2-epoxy-3-phenoxy. propane
1.2-epoxy-propane
Ethoxyacetylene Ethyl ether Ethyl vinyl ether Ethylene oxide Glycidol Guaiacol Hydroquinone
monomethyl ether Methyl ether
Methyl ethyl ether
Methyl vinyl ether Phenyl ether
Phenyl etherbiphenyl mixture
iso-propyl ether
iso-propyl glycidyl ether
Vinyl ether
SHERS
DISPOSAL PROCEDURE 15--PAGE 145
CMA 045768
Wear:
Rubber gloves, self-contained breath ing apparatus. Impervious clothing recommended. Body shield should be available.
S/BillS:
Eliminate ail sources of ignition and flammables. 1 On skin or clothing--Wash skin immediately. Remove contaminated clothing at once. 2 Absorb liquid with paper towels. Sweep solids onto paper. Burn the paper on an iron pan in a hood. 3 Large spills--Collect the liquid with an aspirator such as used for re covering spilled mercury. Empty into a large beaker and neutralize with dilute sulfuric acid. Wash to drain with excess water. Wash site with soap and water.
Package lots:
(CHOICE OF PROCEDURES)
1 Dilute to at least 40% and neu tralize with dilute sulfuric acid. Flush to sewer with excess water.
OR 2 Dissolve in large volume of waste alcohol or other flammable solvent and burn in an open pit. Ignite from a dis tance with an excelsior train.
PAGE 146--DISPOSAL PROCEDURE 16
HYDRAZINES
Examples:
Hydrazine Methyl hydrazine Phenyl hydrazine 1,1-dimethyl hydrazine (UDMH) Hydrazine salts
HYDRAZINES
CMA 045769
HYDRIDES
Rubber gloves, fire proof clothing, face shield. Work from behind body shield where possible. Keep available pulver ized dolomite or dry graphite for fire fighting.
Eliminate all sources of ignition and flammables. Sweep powder onto dry paper and place on an iron pan in a hood. Spray with dry butyl alcohol. Keep blower on to maintain low gas concentration. Destroy last traces of hydride by spraying with water. Neu tralize and wash to sink with excess water. If hydride powder lands on skin blow it off and flood the skin with excess water.
Package lots:
(CHOICE OF PROCEDURES) 1 Mix with dry sand to avoid or stop fire. Scoop into bucket and remove to open area. Slowly spray with dry butyl alcohol. Later add water by fogging until last of hydride is destroyed. Scoop the solid into a large container. Neutralize* with 6M-HCI. Let settle. Decant and flush to sewer with excess of water. Send sand residue to land fill. 2 Burn in iron pan or in open pit.
* Test with litmus-- neutralize with 6M HCI if necessary.
Examples:
Decaborane Silane Germanium hydride Lithium borohydride Lithium hydride Sodium hydride Potassium hydride Sodium borohydride Diborane Pentaborane Lithium aluminum hydride Aluminum borohydride
HYDRIDES
DISPOSAL PROCEDURE 17--PAGE 147
CMA 045770
- PROCEDURE
HYDROCARBONS, ALCOHOLS, KETONES, and ESTERS
Wear.-
Rubber gloves, face shield, laboratory coat Have all-purpose canister mask available.
Spills:
Eliminate all sources of ignition and flammables.
1 A gas leak from a faulty tank-- Keep concentration of gas below the explosive mixture range by forced ven tilation. Remove tank to an open area and allow dissipation to the atmos phere. Attempt to cap the valve outlet and return tank to the supplier.
2 A liquid--Absorb on paper. Evapo rate on an iron pan in a hood. Burn the paper. 3 A solid--Sweep onto paper and place in an iron pan in the hood. Burn the paper and compound.
Package lots.-
1 A gas--Pipe the gas into the incin erator. Or lower into a pit and allow it to burn away.
2 A liquid--Atomize into an incinera tor. Combustion may be improved by mixing with a more flammable solvent.
3 A solid--Make up packages in paper or other flammable material. Burn in the incinerator. Or the solid may be dissolved in a flammable sol vent and sprayed into the fire chamber.
Examples
Acenaphthene
Acetone Acetylene Alizarin dye
Allene Allyl acetate Ally! alcohol m-Amyl acetate iso-Amy! acetate sec-Amyl-acetate m-Amyl-alcohol
iso-Amyl alcohol tert-Amyl alcohol
Amylene iso-Amyl formate
Anthracene
Anthraquinone 1, 2-Benzanthracene Benzene
Benzyl acetate Benzyl alcohol Benzyl benzoate Biphenyl
Borneol Butadiene m-Butane iso-Butane 1-Butene
2-Butene m-Butyl acetate iso-Butyl acetate sec-Butyl acetate
tert-Butyl acetate
m-Butyl alcohol iso-Butyl alcohol sec-Butyl alcohol
tert-Butyl alcohol
Butyl cellosolve m-Butyl formate iso-Butyl formate
Butyl methacrylate iso-Butyl methyl
ketone
p-tert-Butyl toluene 1-Butyne 2-Butyrolactone Camphor Carbon monoxide Cellosolve
Cellosolve acetate Cresols Creosote Croton oil Crude oil
Cumene Clycloheptanone Cyclohexane
Cyclohexanol Cyclohexanone Cyclohexene Cyclohexyl benzene Cyclopentadiene Cyclopentane Cyclopentanone Cyclopropane p-Cymene
PAGE 148--DISPOSAL PROCEDURE 18
HYDROCARBONS, ALCOHOLS, KETONES, and ESTERS
CMA 045771
SAMPLES--Continued
DISPOSAL
necahydronaphthalene m.necane
rn-Decyl alcohol piacetone alcohol
' 6-Dibenzanthracene 1 2, 5. ' 6-Dibenzofluorene
1, Z, 3, 4-Dibenzophenanthrene
3 4, 8,9-Dibenzpyrene nib'utyl tin diluarate pibutyl oxalate Dibutyl phthalate picyclopentadiene
Diethyl adipate piethyl carbonate piethylene glycol
piethyl ketone piethyl matonate piethyl phthalate 3, 4-Dihydropyran Diisobutyl ketone 2r 2-Dimethyl butane
Dimethyl carbonate 1 2 Dimethyl chrysene Dimethyl fumarate Dimethyl naphthalene Dimethyl propane Dimethyl phthalate pi-m-octyl phthalate Di-sec-octyl phthalate 1,4-Dioxane Dipentene Dipentene monoxide Diphenyl methane Dodecane
Ethane Ethyl acetate Ethyl acetoacetate Ethyl acrylate
Ethyl alcohol Ethyl-sec-amyl ketone Ethyl benzene Ethyl benzoate Ethyl butyl ketone Ethyl butyrate Ethyl crotonate
Ethylene Ethylene glycol Ethyl formate 2-Ethyl hexanol
Ethyl lactate Ethyl oxalate
p-Ethyl phenol
Ethyl silicate Furan
Furfuryl alcohol Gasoline Glycerol Greases Heptane
Hexane m-Hexanol 1-Hexene 2-Hexene sec-Hexyl acetate p-Hydroquinone
5-indanol Industrial gases (LHG) Isoprene Jet fuels
Kerosene Ketene Lacquer diluent Ligroin
Liquefied petroleum gas p-Mentha-1, 8-diene
Mesityl oxide Methane Methyl acetate Methyl acrylate
Methyl alcohol
Methyl amyl alcohol Methyl-m-amyl ketone 6 Methyl-1, 2-benzanthra
cene 10 Methyl, 1, 2-benzanthra
cene Methyl benzoate Methyl benzyl alcohol
2-Methyl-l-butene 2- Methyl-2-butene 3- Methyl-l-butene Methyl butyl ketone Methyl butyrate Methyl cellosolve
Methyl cellosolve acetate 3- Methyl cholanthrene Methyl cyclohexane 2-Methyl cyclohexanol 2-Methyl cyclohexanone 4- Methyl cyclohexene
Methyl ethyl ketone Methyl formate 2-Methyl furan
Methyl isobutyl ketone Methyl isobutyrate Methyl isocyanate Methyl methacrylate 1-Methyl naphthalene Methyl-m-propyl ketone
Methyl salicylate Methyl styrenes Methyl-toluene sulfonate Naphthas
Naphthalene 1- Naphthol
2- Naphthol Natural gas Nonyl phenol Octane 1-Octanol
dYDROCARBONS, ALCOHOLS, KETONES, and ESTERS
2-Octanol Oil, cocoanut Oil, fuel Oil, lubricating Oil, mineral mist
Oil, olive Oil, peanut Oil, soybean Oil, vegetable Paraffin m-Pentane
iso-Pentane 1, 5-Pentanediol 2, 4-Pentanedione 2-Pentanol
Petroleum ether Phenanthrene Phenol Phenyl acetate
Phenyl isocyanate o-Phenyl phenol
Phorone iso-Phorone
Phosgene solutions in benzene
2-Pinene Piperylene Pival
Polyvinyl acetate emulsion Propane 1, 2-Propanediol
Propargyl alcohol iso-Propenyl acetate iso-Propyl acetate m-Propyl acetate m-Propyl alcohol
iso-Propyl alcohol Propyl benzene iso-Propyl benzoate Propylene
Propylene carbonate
18
Propyl formate iso-Propyl formate Propyne Propyne-allene mixture Qumone Resorcinol Rotenone Stoddard solvent Styrene Tall oil Tallow Terphenyls Tetradecane Tetrahydrofuran Tetrahydronaphthalene 1-Tetralone Toluene Tridecanol Triethylene glycol Triethyl-ortho-formate 5, 9,10-Trimethyi-l,
2-benzanthracene 6, 9,10-Trimethyl-l,
2-benzanthracene Trimethyl borate 2, 2, 4-Trimethyl pentane 2, 4, 4-Trimethyl-2-pentane S-trioxane Turpentine Varnish Vinyl acetate Warfarin Xylenes Xylenols
DISPOSAL PROCEDURE 18-PAGE 149
CMA 045772
19
INORGANIC AMIDES and Derivatives
Wear:
Rubber gloves, large face shield, pro tective laboratory coat. A large body shield should be available.
SpHlS :
Eliminate all sources of ignition. Sweep up solid amide onto dry paper. Cau tiously add to cold water in small por tions with agitation. Neutralize* and discharge into drain with large excess of water.
Package lots:
Sift slowly into a large container of cold water, with agitation. When all has reacted, neutralize* and pour into drain with large excess of water.
Examples
Sodium amide Sulfamide Sulfamic acid Ammonium sulfamate
Test with litmus. Neutralize with 3M-HCI or 6M-NH*OH as required.
PAGE 150--DISPOSAL PROCEDURE 19
INORGANIC AMIDES and DERIVATIVES
CMA 04S773
ORGANIC amides
Rubber gloves, safety glasses, labora tory coat.
Sweep onto a paper towel. Place on an iron pan in a hood. Add alcohol and ignite. If liquid, absorb on a paper towel.
Package lots:
Add to a flammable solvent (alcohol or benzene). Pour into an iron pan in an open pit. Ignite.
OR Spray into an incinerator. Oxides of nitrogen may be scrubbed out with alkaline solution.
20
Examples.-
N, N-dimethylacetamide Dimethyl formamide Formamide 2-Phenanthreneacetamide 3-Phenanthreneacetamide
CMA 045774
21
INTER NON-METALLIC COMPOUNDS
Wear:
Long rubber gloves, safety glasses or goggles, self-contained breathing ap paratus, laboratory coat. Recommended that work be done in an effective hood from behind a body shield or in an open barricaded area out of doors. NOTE--Some suppliers will collect unwanted cylinders of com pressed gases on request.
Spills :
Eliminate all sources of ignition. Gas leak (e.g,, boron trichloride, chlo rine trifluoride). Allow gas to flow into a mixed solution of caustic soda and slaked lime or invert the cylinder in a large container of the solution of main tained concentration. If possible, keep in a hood until cylinder is emptied. Liquid or solid--Cover with mixture of soda ash and slaked lime (50-50). Mix
and spray water cautiously from an atomizer. Scoop up and add slowly to a large container of water (if too active continue spraying). When reaction is complete neutralize* and wash down the drain with a large excess of water. Wash site with soap solution.
Package lots:
Sprinkle or sift onto a thick layer of mixed dry soda ash and slaked lime (50-50) from behind a body shield. Mix and spray water cautiously with an atomizer. Scoop up and sift cautiously into a large volume of water. Neutral ize* and wash down the drain with large excess of water.
* Make litmus test Neutralize with 6M-NH4OH or 6M-HCI as required.
Examples
Boron fluoride-ethyl ether complex
Boron tribromide Boron trichloride Boron trifluoride Boron trifluoride complexes with acetic
acid and methanol Bromine pentafluoride Bromine trifluoride Carbonyl fluoride Chlorine trifluoride Nitric oxide Phosphorous oxychloride Phosphorous pentachloride Phosphorous pentasulfide Phosphorous sesquisulfide Phosphorous tribromide Phosphorous trichloride Silicon tetrafluoride Sulfur decafluoride Sulfur dichloride Sulfur hexafluoride Sulfur monochloride Sulfuryl chloride Sulfuryl fluoride Thionyl chloride Thionyl fluoride
CMA 045775
PEROXIDES, INORGANIC
Rubber gloves, large face shield, labo ratory coat. A body shield should be available.
Package lots:
Use the above method for the encrusted impure peroxide. Repackage any recov ered pure granular peroxide in glass containers with rubber stoppers.
22a
Examples .*
Hydrogen peroxide {3% to 90%) Sodium peroxide Potassium peroxide Potassium superoxide
Cover with at least double volume of sand-soda ash mixture (90%-10%). Mix thoroughly and break up any lumps of peroxide. With a plastic scoop add slowly to a large beaker of sodium sul fite solution (3 or 4 liters) with stirring. Neutralize with dilute sulfuric acid. When settled decant the sulfate solu tion into drain with excess water. The sand can be sent to the landfill.
CMA 045776
I
22b
PEROXIDES, ORGANIC
CAUTION: Keep stock low and date each container as received. Never transfer to glass stoppered containers or screw cap bottles which can cause dangerous friction. See Procedure 15.
Wear:
Rubber gloves, large heavy face shield, laboratory coat. Work from behind heavy body shield in hood.
NaOH, Bum the original cartons and bags.
2 Solid peroxide spills should be mixed with a large volume of vermiculite or sand. Cautiously transfer as above and burn.
3 A very small quantity of #1 or #2 may be destroyed by adding 10 vol umes of 20% NaOH. After 24 hours, neutralize* and pass into drain with large excess of water.
Examples.
Acetyl peroxide Benzoyl peroxide Butyl hydroperoxide Tert.-butyl peracetate Tert.-butyl perbenzoate Butyl peroxy pivalate Cumene hydro peroxide 3,4-dichlorobenzoyl peroxide Dibutyl peroxide Diisopropyl peroxy dicarbonate Lauroyl peroxide Methyl ethyl ketone peroxide
Spills:
Eliminate all sources of ignition.
1 Liquid peroxide spills may be ab sorbed in large quantity of vermiculite or sand. Using a soft plastic scoop, carefully place the mixture in a plastic container. Spread on a steel pan or in a deep pit. Ignite from a distance with an excelsior train or a long torch. Wash the scoop and container with 20%
Package tots:
Absorb or mix in small portions on ver miculite or sand. Wet down with 10% NaOH. Scoop up with plastic scoops and take to open-incinerator pit. When dry, ignite from a distance with an ex celsior train.
CMA 045777
4ULFIDES, INORGANIC
Wear:
Package lots:
Rubber gloves, safety glasses. Work in hood or wear self-contained breathing apparatus, laboratory coat.
Add to a large volume of FeCI3 solution with stirring. Add more FeCI., if neces sary. Add soda ash with stirring until neutral. Scoop up and wash down the drain with excess water.
Eliminate all sources of ignition. Add peCIs solution. Stir until FeS formation is complete. Add slight excess of soda aSh. Scoop up and wash into drain with excess water. Wash site with soap solution.
Note: If a gas (e.g., H^S), seal the cylin der and return to supplier. If a per manent leak, place the cylinder upside down in a tank of FeCI:j solution and treat as above.
23
Examples
Ammonium sulfide Calcium sulfide Hydrogen sulfide Ammonium polysulfide Potassium sulfide Sodium sulfide
CMA 045778
24a
ACIDS, ORGANIC (Limited to C, H, and 0 Compositions)
Wear:
Rubber gloves, face shield, laboratory coat. Body shield and self-contained breathing apparatus should be avail able.
Spills :
Eliminate all sources of ignition. 1 If acid is volatile (e.g., CH3 COOH, etc.) spray atmosphere with 6M-NH4OH. Cover contaminated surfaces with soda ash. Mix and add water if necessary. Scoop up slurry and wash neutral* waste down drain with excess water. Wash site with soda ash solution.
2 If acid is a non-volatile liquid or
Package tots:
(CHOICE OF PROCEDURES)
1 Liquid acid may be injected at base of incinerator or after mixing with a flammable solvent. Afterburner is suggested for complete combustion.
2 A solid acid may be dissolved in a flammable solvent and burned as above.
3 Solid acid may be packaged in paper or other flammable material and burned in an incinerator.
Examples
Acetic acid Acetic anhydride Acrylic acid Benzoic acid m-Butyric acid iso-Butyric acid Butyric anhydride Caproic acid Citraconic anhydride Citric acid Formic acid Fumaric acid Gallic acid Glutaric anhydride
Glycolic acid
Hydracrylic acid-B-lactone*
Laurie acid Maleic acid Maleic anhydride Methacrylic acid Octanoic acid Oleic acid Oxalic acid Pimelic acid Propionic acid Pyrogallic acid Pyruvic acid Salicylic acid Stearic acid Succinic acid
Succinic anhydride Tannic acid Valeric Acid
CMA 045779
ACIDS, inorganic
Rubber gloves, self contained breath ing apparatus, laboratory coat. Have body shield available.
1 If a volatile acid (e.g., HCl, HBr, etc.) spray the atmosphere with 6M-NH4OH. Cover the contaminated surface with a soda ash and slaked lime mixture (50-50). Mix and add water if necessary to form a slurry. Scoop up slurry and wash down the drain with excess water. Wash site with soda ash solution.
2 If a non-volatile liquid or solid, cover with a mixture of soda ash and slaked lime. Mix and add water. Scoop up slurry and wash down drain with excess water.
Package lots:
Add slowly to large volume of agitated solution of soda ash and slaked lime. Add neutralized solution to excess run ning water. As an added precaution, the sink can be lined with protective matting and filled with coarse chipped marble.
24b
Examples:
Boric acid Boron oxide Fluoroboric acid Fluorosilicic acid Hydriodic acid Hydrobromic acid Hydrochloric acid Hydrofluoric acid Iodic acid Mixed acids Nitric acid Phosphoric acid Phosphoric anhydride Sulfonic acids Sulfuric acid Sulfur trioxide
CMA 045780
DISPOSAL PROCEDURE
CARBIDES
Rubber gloves, safety glasses, labora tory coat.
Eliminate all sources of ignition. Sweep onto paper. Place in an iron pan in the hood. Spray slowly with water from an atomizer until the reaction is com pleted. Burn the hydrocarbon gas by using a lighted burner as a pilot flame. Wash the residue down the drain with excess water.
Add slowly to a large container of water and burn off the hydrocarbon gas with a pilot flame as above. Allow precipi tate to settle. Siphon off the liquid into the drain with excess water. Transfer the precipitate to the landfill.
Aluminum carbide Calcium carbide
PAGE 158--DISPOSAL PROCEDURE 25
CARBIDES
CMA 045781
DISPOSAL PROCEDURE
WASTES to be dumped into landfills or released to air
Heavy work gloves, safety glasses.
properly assembled waste ready for pick-up trucks may be used as fill in reclaiming low areas or may be dumped into a landfill.
Examples;
Asphalt Batteries, dry cel) Boron
Bromochloromethane Bromoform Calcium carbonate Carbon black
Chlorobromomethane Chloroform Crude lime Dichlorodifluoromethane Dichloromethane Ferrosilicon Fluorotrichloromethane Helium Hydrogen Lamp bulbs Latex Molybdenum, insoluble compounds Neon Nitrogen Nitrogen fertilizers Nitrogen trioxide Octafluorocyc lobutane Osmium tetroxide
Oxygen Ozone Paint Pyrethrum Resins Rubber Scrap glass Scrap metal
Scrap stoneware Silica Sludges
Stone, alberine Sulfur Tar Tetrabromoethane 1, 1,1, 2-Tetrachloro-2, 2-difluoroethane 1,1, 2, 2-Tetrachloro-l, 2-difluoroethane Tetramethyl silane Transite Titanium oxide Tremolite 1,1,1-Trichloroethane 1,1, 2-Trichloro-l, 2, 2-trifluoroethane Trifluoromethane Urea Zinc oxide Zirconium-hafnium powders
CMA 045782
27a
Scrap metal in the f rm f sheets, rods, wire, tubes
Wear.-
Heavy gloves, safety glasses, laboratory coat.
1 Larger pieces of less expensive metals can be salvaged profitably for use in local shops, or can be sold as scrap metal--e.g., aluminum, copper, brass.
2 The more expensive metals are worth salvaging, even in small pieces-- e.g., platinum wire, silver foil.
Metal should be sorted, classified, and placed in boxes, properly labelled. Turnings, shot, cuttings of the cheaper metals may be assigned to landfill. (See 27.)
Examples:
Sheet, rods, wire, tubes, foil, etc. Aluminum Brass Bronze Cadmium Cobalt Copper Gold Lead Magnesium Manganese Molybdenum Nickel Paladium Platinum Rhodium Silver Steel, carbon Steel, stainless Tantalum Tin Titanium Zinc
CMA 045783
.DISPOSAL PROCEDURE RECOVERY*-MERCURY
Rubber gloves, self-contained breath ing apparatus, laboratory coat. CAUTION: The toxicity of mercury is such that the element and its com pounds should not be allowed to con taminate air or water.
* m procedures 27b to 27m, recovery is essential because of high toxicity of all elements and com pounds--e.g. the American Conference of Govern mental Industrial Hygienists' threshold limit values (1968) expressed as mg/M3 (milligrams per meter cubed) for mercury = 0.1, for arsenic = 0.5, anti mony = 0.5, selenium = 0.2, beryllium 0.002, lead 0.2, cadmium 0.2, barium 0.5, uranium 0.05, vanadium 0.1--as opposed to hydrogen cyanide 11, and hydrogen sulfide 15.
Spills and
package lots.-
Metal--Collect all droplets and pools at once by means of suction pump and aspirator bottle with a long capillary tube. Cover fine droplets in nonaccessible cracks with calcium poly sulfide and excess sulfur. Combine all contaminated mercury in a tightly stoppered bottle. Hold it for purifica tion or sale.
Compounds--Dissolve all water soluble contaminated compounds. Convert other contaminated compounds to the soluble nitrates. Adjust the acidity and precipitate as mercuric sulfide. Wash and dry the precipitate. Ship to the supplier.
Examples
Mercury Mercurous nitrate and chloride Mercuric nitrate, chloride and thiocyanate Organic mercury compounds Mercury fulminate
COVERY*--MERCURY
DISPOSAL PROCEDURE 27b--PAGE 161
CMA 045784
Wear:
Rubber gloves, large face shield.
PHOSPHORUS
YELLOW AND RED
YELLOW PHOSPHORUS
Spills :
Cover with wet sand. Spray with water to Keep sand wet. Scoop into a bucket of water. After standing overnight, re cover and repackage.
OR
If quantity is very small (e.g., frag ments of sticks of yellow phosphorus), cover with water and remove to an open area. Pour onto the ground or a steel pan. The water will evaporate and dry yellow phosphorus will ignite spontane ously in air and burn away.
RED PHOSPHORUS
SpillS:
Sweep up and burn on an iron pan in the hood.
Defective package:
Repackage and return to the shelf--or to the supplier.
Defective package:
Submerge defective package in a large
CMA 045785
--ARSENIC, ANTIMONY AND BISMUTH*
Rubber gloves, safety glasses, respira tor, laboratory coat. Work in fume hood.
Dissolve in minimum hydrochloric acid (concentrated, reagent). Filter if neces sary. Dilute with water until white pre cipitates form (SbOCI and BiOCI). Add just enough 6M-MCI to redissolve. Saturate with hydrogen sulfide. Filter, wash the precipitate, dry, package and ship to the supplier.
OR If the waste is of very little value, use Procedure 11.
Examples:
Metals (arsenic, antimony and bismuth) Arsenic trichloride Arsenic acid Arsenic trioxide Arsenous acid Calcium arsenate Lead arsenate Nitrates and chlorides of arsenic, antimony
and bismuth Antimony pentasulfide Antimony trioxide
* Although bismuth is much less toxic than arsenic or antimony it is included here because the recov ery procedure is similar,
RECOVERY--ARSENIC, ANTIMONY AND BISMUTH*
DISPOSAL PROCEDURE 27d--PAGE 163
CMA 045786
--SELENIUM AND TELLURIUM
Wear:
Rubber gloves, safety glasses, respira tor (or work in hood), laboratory coat.
Spills:
Absorb on paper and place in wide mouth stoppered bottle for later recov ery, Wash site with soap solution.
Package lots and recovered spills:
Liquid or solid--Make a solution strongly acidic with hydrochloric acid. Slowly add sodium sulfite to the cold solution with stirring, thus producing sulfur dioxide, the reducer.
Upon heating dark grey selenium and black tellurium form. Let stand over night. Filter and dry. Ship to supplier.
Examples:
Selenium oxides Selenium tetrachloride Selenium oxychloride Selenium hexafluoride Tellurium oxides Tellurium hexafluoride
PAGE 164--DISPOSAL PROCEDURE 27e
RECOVERY--SELENIUM AND TELLURIUM
CMA 045787
I
rECOVERY0LEAD and cadmium compounds
27f
tor (or work in hood).
4
Convert to nitrates with a minimum of nitric acid (concentrated, reagent). Evaporate in a fume hood to a thin paste. Add about 500 ml. water and saturate with hydrogen sulfide. Filter, wash, and dry the precipitate. Package and ship to the supplier.
OR
If the waste is of small volume, use Procedure 11.
Lead salts Cadmium oxide Cadmium salts
CMA 045788
27g
Wear.-
Rubber gloves, self-contained respira tor, laboratory coat (wash after each job).
Spills:
Absorb on paper towels and place in large stoppered wide-mouth bottle. Save for recovery. Wash site with soap solution.
BERYLLIUM COMPOUNDS
Package lots and recovered spills:
Dissolve in minimum of 6M-HCI. Filter and treat filtrate with slight excess of 6M-NH4OH (use litmus). Boil and allow coagulated precipitate to settle for about 12 hours. Filter and dry. Pack age and ship to the supplier.
Examples;
Beryllium salts
F
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\
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PAGE 166--DISPOSAL PROCEDURE 27g
RECOVERY--BERYLLIUM COMPOUNDS
CMA 045789
DISPOSAL PROCEDURE
RECOVERY-STRONTIUM AND 0BARIUM COMPOUNDS
Rubber gloves, safety glasses, labora tory coat.
Package lots and recovered spills:
Dissolve waste in 6M-HCI and filter. Neutralize the filtrate with 6M-NH4OH (use litmus) and precipitate with ex cess sodium carbonate. Filter, wash, and dry the precipitate. Package and ship to the supplier.
OR
If the waste is of small volume, use Procedure 11.
Examples:
Oxides and salts of strontium and barium
RECOVERY--STRONTIUM AND BARIUM COMPOUNDS
DISPOSAL PROCEDURE 27h--PAGE 167
CMA 045790
-VANADIUM COMPOUNDS
Wear:
Rubber gloves, large face shield, labo ratory coat. (Wear self-contained respi rator if spill is large.)
Spills.
Cover with powdered ammonium car bonate. Add a layer of crushed ice and spray with 6M-NH4OH while stirring. Scoop slurry into a wide mouth bottle, save for salvage. Wash site with soap water.
Package lots:
(Work in a fume hood).
Add (e.g,, VOCI3) slowly to a thick layer of powdered ammonium carbo nate in a large evaporating dish. Spray with 6M-NH4OH while stirring. Add a layer of crushed ice and continue stir ring and spraying. Add more 6M-NH4OH if necessary. May add more waste va nadium compound with stirring. Pour into large beaker and let stand over night. Filter off the crude ammonium vanadate, dry and package for shipment
Examples.
Vanadium oxides Vanadium chlorides Vanadium oxychlorides Vanadium sulfates Sodium vanadate
CMA 045791
DISPOSAL PROCEDURE RECOVERY-
^barbon Tetrachloride, Carbon Tetrabromide and Phosgene*
Rubber gloves, self-contained respira tor (or work in hood), laboratory coat.
Absorb on paper towels and allow to evaporate in the fume hood. Burn the paper. Wash site with soap solution.
The toxic liquid compounds concerned here are insoluble in water and cannot be burned. Purify the contaminated liquids by distillation and place the pure distillate back on the shelf.
0R Return to the supplier,
Carbon tetrachloride Carbon tetrabromide Phosgene
* The phosgene container should be sealed and re turned to the supplier. If the cylinder has devel* oped a permanent leak it may be necessary to dissipate the leak in a strong-draft fume hood. The supplier may be called to cap the cylinder and haul it away.
^^COVERY--CARBON TETRACHLORIDE, CARBON TETRABROMIDE AND PHOSGENE*
DISPOSAL PROCEDURE 27j-PAGE 169
CMA 045792
27k
The elements and their compounds listed below should be dealt with sepa rately. If the quantity justifies recovery get in touch with the supplier for spe cial instructions.
* These materials as well as all other naturally radioactive materials, elements or substances must be disposed of in accordance with regulations of the U.S. Atomic Energy Commission or those of the local or state departments of health. This may usually be done by turning them over to the radiation safety officer or a commercial disposal agency handling radioactive materials.
RECOVERY-MISCELLANEOUS
Examples:
Erbium Gadolinium Gallium Germanium Germanium dioxide Hafnium Holmium Indium Lanthanum Lutecium Niobium Osmium Osmium oxide Praseodymium Radium* Radon* Rubidium Ruthenium Samarium Terbium Thallium Thallous sulfate Thorium* Uranium*
PAGE 170--DISPOSAL PROCEDURE--27k
RECOVERY--MISCELLANEOUS .
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!
CMA 045793
DEEP burial
Heavy leather gloves, heavy full-face shield, laboratory coat.
Examples
Cellulose nitrate Celluloid Collodion
Eliminate all sources of ignition. Cover spills with vermiculite and scoop into paper boxes. Transport packaged spills and other package lots to a very deep pit or well (at least 20 feet deep). Cover with a layer of pulverized limestone, followed by earth fill.
OR
For small quantities use Procedure 29.
28
CMA 045794
!
DIRECT BURNING
Wear:
Heavy leather gloves, safety glasses.
Disposal:
Materials should be properly packed for safe handling, and placed in a pre scribed site for daily pick-up. Burning can be done in an open or closed incin erator with afterburners.
Examples
Materials:
Biological wastes--animal remains, bedding, feed wastes
Clothing, discarded or contaminated Excelsior Paper wastes, packing boxes, etc. Wood scraps, packing boxes, etc. Bags, paper and cloth
CMA 045795
f SECTION VII.------------------------------------------------------------------
j
i Disposal Materials--Minimum Requirements
{ (a) CHEMICALS
Acetone, waste (2 gal.) Alcohol, butyl (2 gal.) | Alcohol, denatured (waste) (2 gal.) j `Ammonium hydroxide (concentrated, Reagent)
(2 liters) j Ammonium hydroxide (6M) (4 liters) J Ammonium carbonate (2 x 1 lb.)
Benzene, waste (2 gal.) 1 Calcium hypochlorite (2 x lb.) i "Calcium polysulfide (2 x 1 liter) * Excelsior (box)
Fuels -- scrap wood ( paper
! organic flammable solvents Ferrous sulfate (2 x 1 lb.) Ferrous sulfate, 30% (4x1 liter)
{Ferric chloride (2x1 lb.) Graphite powder (5 lb.) Hydrochloric acid (concentrated, Reagent) (2 liters)
I "`Hydrochloric acid, (6M) (4 liters) Hydrogen sulfide (small cylinder) * Ice, chipped v Kaolin (2 x 5 lb.)
Kaolin -- Soda ash (50-50) (2 x 5 lb.) >i Limestone, pulverized (2x5 lb.)
Litmus paper, red and blue (1 doz. vials each) Marble chips (2x5 lb.) Nitric acid (centrated, Reagent) (2 liters) Paper boxes, waste Potassium iodide, 10% (peroxide test) Sand, dry (2x10 lb.) Sand-Soda ash (90-10) (2 x 10 lb.) Slaked lime (2x5 lb.) Soap powder (6x1 lb.) Soda ash (2x5 lb.) Soda ash-Slaked lime (50-50) (2 x 10 lb.) Sodium hydroxide, 10% (4 liters) Sodium hydroxide, 20% (4 liters) Sodium bisulfite (5 lb.) Sodium sulfite (5 lb.) Sodium thiosulfate (hypo) (2x5 lb.) Sulfur, sublimed (2x 1 lb.) Sulfuric acid (concentrated, Reagent) (2 liters) ""Sulfuric acid (3M) (4 liters) Towels, paper (1 doz. rolls) Vermiculite (10 lb.)
`Requires approximately 400 ml. of concentrated reagent grade NH4OH per liter of solution.
"Saturate one liter of concentrated lime water with hydrogen sulfide. Add excess sublimed sulfur. Shake.
Requires 5X6 ml. of concentrated HCI per liter of solution. ****336 ml. of concentrated reagent HSO per liter of solution.
(See over for EQUIPMENT listing)
CMA 045796
SECTION VII
continued
Disposal Materials--Minimum Requirements
(b) EQUIPMENT
Aspirator bottle (mercury collector) (2) Atomizer spray bottle (2) Beakers, 3 or 4 liter size (2) Brush, hand (6) Brush, small paint Bucket, plastic (3 gal.) Burners, Bunsen Condenser, Liebig Dish, evaporating, 12" (2) Extinguisher (Class D fires) (10 lb. size) Extinguisher (CO-) (10 lb. size) Flask, Distilling -- 1 liter (2) Gloves, heavy work Gloves, leather Gloves, neoprene Gloves, butyl rubber Iron pan (for fume hood) (approx. 18" x 24") Laboratory coat, cloth
Laboratory coat, plastic Matting, open mesh, rubber, to fit sink Mop and bucket Pipettes 10 ml. (peroxide test) (4) Respirator, canisters (1 of each) Respirator (self-contained breathing apparatus)
Safety glasses or goggles (2 prs.) Scoop, plastic Shield, body Shield, face, large and heavy, 0.050", to cover ears
and neck Spray jar (insecticide type), stainless steel
Suction pump (mercury collector)
Tank (oil drum, 55 gal.)
Tools -- hammer pliers wrench, crescent screwdrivers
Water-vac
CMA 045797
SECTION VIII
BIBLIOGRAPHY
IA--"Nitroparaffins and their hazards," Report #12, and "Chemical Hazards Bulletin," American Insurance Association, 85 John St., New York, N.Y. 10038
ACGIH--"Threshold Limit Values," American Conference of Govern mental Industrial Hygienists, 1014 Broadway, Cincinnati, Ohio 45202
ASTM--"Fire and Explosion Hazards of Peroxy Compounds," Tech, Bui. #394, American Society for Testing and Materials, 1916 Race St,, Philadelphia, Pa. 19103
Audrieth, L. F. & Ogg, B.A.---"The Chemistry of Hydrazine," John Wiley & Sons Inc., 605 3rd Ave., New York, N.Y, 10016
BDH--'"Spillages of Hazardous Chemicals," British Drug Houses Ltd., Poole, Dorset, England. Also available from Gallard-Schlesinger Chemical Mfg, Corp., 584 Mineola Ave., Carle Place, Long Island, New York, N.Y. 11514 or from British Drug Houses (Canada) Ltd., Barclay Ave., Toronto 18, Ontario, Canada
Brookes and Alyea--"Poisons," Van Nostrand Reinhold Company, 430 Park Avenue, New York, N.Y. 10022
Campbell, Neil--"Schmidts Organic Chemistry," Oliver and Boyd Ltd., Edinburgh, Scotland
CGA--"Safe Handling of Compressed Gases" Pamphlet P-1, Com pressed Gas Association Inc., 500 5th Ave., New York, N.Y. 10036
Cloyd, D. R. & Murphy, W. J.--"Handling Hazardous Materials--N.A.S.A. SP-5032," National Aeronautics and Space Administration, Washing ton, D. C. 20546
Elkins, H. B.--"Chemistry of Industrial Toxicology," 1963, John Wiley & Sons, 605 3rd Ave., New York, N.Y. 10016
Fairhall, L. T.--"Industrial Toxicology," Williams and Wilkins. Balti more, Md.
Gaston, p. J.--"The care, handling and disposal of dangerous chem icals," 1965, Institute of Science Technology, Northern Publishers (Aberdeen Ltd.), Aberdeen, Scotland
Gonzales, Vance, Helpern--"Legal Medicine and Toxicology," 1940, Appleton-Century Trade Books, 250 Park Ave., New York, N.Y. 10017
Hurd--"Chemistry of Hydrides," 1952, John Wiiey & Sons, Inc., 605 3rd Ave., New York, N.Y. 10016
IBM--"Freon" solvent data book, IBM Corp., Yorktown Heights, New York 10598
Kirk & Othmer--"Encyclopedia of Chemical Technology," Vol. 8, p.489 2nd Ed,, Wiley-lnterscience, 605 3rd Ave., New York, N.Y. 10016
Los Angeles Fire Dept.--"Dangerous Chemicals Code," 1951, Parker & Son, Inc., Los Angeles, Calif.
McElroy, F. E.--"Accident Prevention Manual tor Industrial Operations," 5th Ed,, National Safety Council, 425 No. Michigan Ave., Chicago, III. 60611
MCA--"Chemical Safety Data Sheets," "Safety Guides" and "ChemCard Manual," Manufacturing Chemists Association, 1825 Connecti
cut Ave., Washington, D. C. 20009
PAGE 175
CMA 045798
MGB-See Matheson.
Matheson--"Gas Data Book," The Matheson Co., Inc., P.O. Box 85, East Rutherford, N.J. 07073
Matheson, Coleman & Bell--"Safety Procedures: Laboratory Chemical Catalog," pp. 9-31, Matheson, Coleman & Bell, 2909 Highland Ave., Norwood, Ohio 45212
N.F.P.A.--No. 49, "Hazardous Chemicals Data"; No. 325, "Fire Hazard Properties Of Flammable Liquids, Gases and Volatile Solids"; No. 491, "Manual of Hazardous Chemical Reactions"; No. 704M, "Fire Hazards of Materials," National Fire Protection Association, 60 Batterymarch St., Boston, Mass. 02110
Nat'l Research Council--"Evaluation of the Hazard of Bulk Water Transportation of Industrial Chemicals," 1966, National Academy of Science, 2101 Constitution Ave., N.W., Washington, D. C. 20418
Nicholson, H. Page--"Pesticide Pollution Control," Science 158, 871 (Nov. 17, 1967)
Noller, D. C. & Bolton, D. F.--"Safe Handling and Storage of Organic Peroxides in the Laboratory," Anal. Chem. 35, 887 (June 1963).
NSC--"Chemical Safety References," National Safety News 97, 47 (Apr. 1968). and "Industrial Safety Data Sheets," National Safety Council, 425 No. Michigan Avenue, Chicago, III. 60611
NTTC--"Commodity and Equipment Data Sheets," National Tank Truck Carriers, Inc., 1616 P St., N.W., Washington, D. C. 20006
O'Brien, Richard D.--"Toxic Phosphorous Esters," 1960, Academic Press Inc., Ill 5th Ave., New York, N.Y. 10003
Patty, Frank A.--"Industrial Hygiene and Toxicology," Vol. II, 1963, Wiley-lnterscience, 605 3rd Ave,, New York, N.Y, 10016
Pennsylvania Department of Health--"Short Term Limits tor Exposure to Airborne Contaminants," "Hygienic Information Guides," "Indus trial Waste Manual," Division of Sanitary Engineering, Harrisburg, Pa.
PAGE 176
Pennsylvania Department of Revenue--"Highway Transportation 0f Hazardous Substances," 1968, Hazardous Substances Transportation Board, Harrisburg, Pa. 17127
Remy, H.--"Treatise on Inorganic Chemistry," Vol. I & II, 1956, Ameri. can Elsevier Publishing Co., 52 Vanderbilt Ave., New York, N.Y. 10017
Ross, R. D.--"industrial Waste Disposal," Van Nostrand Reinhold Com. pany, 430 Park Avenue, New York, N.Y. 10022
Sax, N. I.--"Dangerous Properties of Industrial Materials," 1963, Van Nostrand Reinhold Company, 430 Park Avenue, New York, N.Y. 10022
Sidgwick--"Chemical Elements and their Compounds," Vol. I & II, 1955 Oxford University Press, Inc., 200 Madison Ave., New York. N.Y 10016
Sittig, Marshall--"Sodium, its manufacture, properties and uses." 195^ Van Nostrand Reinhold Company, 430 Park Avenue, New York, N.Y 10022
;
Steere, N. V.--"Handbook of Laboratory Safety," Waste disposal pp 34-40, 1967, Chemical Rubber Co., 18901 Cranwood Parkway, Cleve-
land, Ohio 44128
f j
Voeglein, Joseph F.--"Storage and Disposal of Dangerous Chemicals," J
J. Chem. Educ. 43, A151 (Feb. 1966)
'I
Walsh, John--"Pollution--The Wake of the Torrey Canyon" (nevs
comment), Science 160, 167 (April 12, 1968)
|
Weast, R. C. & Selby, S. M.--"Handbook of Chemistry and Physics,"
1967, Chemical Rubber Co., 18901 Cranwood Parkway, Cleveland 1
Ohio 44128
'I
World Health Organization--"Treatment and Disposal of Wastes," WHO *
Tech. Report Series No. 367 (1967)
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CMA 045799
>1 I
i
CMA 045800