Document O1EqndEadbx0p3qokyn1bB6xX
Page 1-1 J. D. Baldwin Cleveland.... April 1, 195h , CUSS 100 Hydrocarbons, non-cyclic, volatile, including their halides. 100-119 C-, through Cy and any mixture of hydrocarbons having Tag Open Cup rlash points below 20F. 120-139 Cg and Co and any mixture -of hydrocarbons having Tag Open Cup flash points between 20F* and 80F. lUO-259 C10 and UP an3r mixture of hydrocarbons having a Tag Open Cup flash point above 80F. 160-179 Volatile, chlorinated, non-cyclic hydrocarbons. 180-199 Open
0007-PMC-000000150
Page 1-2 April 1951*
Humber. Material________________ ' Ct through C7 and mixtures -with flash points below 20F,
(1A1)
(1F5) (1C1)
Hexane, Commercial
Hexane, Esso Petroleae Naphtha 3
Cr and Co and mixtures with flash points between 20 and 80F
(1*026)
(1C3) (63) (1N3) (IC9)
C-8 Naphtha
Iso Octane VM6P Haphtha Super VMScP Naphtha, 8182 Apcothinner
and higher and flash points above 80F
(3U8) (1A5) (1A6) (1F3) (1N2) (ITT)
Mineral Spirits Mineral Spirits, Slops Mineral Spirits, Settled,Decanted Mineral Spirits, Settled,Decanted Mineral Spirits (Salvage), Redistilled Mineral Spirits (Salvage), Redistilled
(1C12) (III*) (11$) (1C11) (U5)
Odorless - Soltrol 150 Odorless - Soltrol 130 Odorless -- Soltrol 170 Odorless - Shell-Sol 72 Odorless - Amsco
(5027) (ll*l) (1C2) (213) (1AU)
Mineral Spirits, High Flash Mineral Spirits, Heavy Kerosene, Deodorized Kerosene Kerosene
(1C8) (1C5) (1C10) (2J2)
Magie 1*70 Oil Magie 500 Oil Magie 535 Oil Dieselene
Chlorinated
(1A9) (1F2) (ICl*)
Carbon Tetrachloride Trichlorethylene Methylene Chloride
go go
Test Method U30.1 Distillation, F. Of, 5Qj6 10056
151 158
H*7 151* 135 165
161* 160 225
200 212
265 21*1* 263 21& 261
21*0
325 288 289
302 31*0 39U
280 330 390
35U 371 3l*5 361 1*21 1*29 31*5 361* 360 368
358 380 31*0 2*10 338 1*28 350
1*1*5 1*05 1*1*5 1*12 389
1*12 1*85 527 505(9556)
1*67 507 525 535
512 51*9 593
165 172 187 190 101* 11*2(9556)
0007-PMC-000000151
Method
U38.3 KB
Value
Method
157.1 Evap., Minutes
Remarks
30-U0 27-32.5 33-39
Vegetable Oil Extraction Traffic Paints
-
Uo-5U 0.7
3U-39 39 39
2.0
33-U0 9.0
2h
25 23 26
26.5
30-35 26-37
25-3U 30-35
90
27.6
25 27.5
For (3A5) or Redistilled
Washing only
Use (5027) Dayton Restricted; Bound Brook Restricted; ink Vehicles Restricted; ink Vehicles Restricted; Ink Vehicles Wood Preservatives:
Degreaser P & V Remover
Page 1-3 April 1, 195U Method 129.5 Test Method U01,,2 FPF. Sp.Gr. #/G TOC 75F 75F. Number
-30 0.689 5.7U (1A1) 0 0.686 5.72 (1F5)
-20 0.692 5.75 (1C1)
35 O.7l0i 6.20 (U026) 35 0.692 5.75 (1C3) 55 0.750 6.25 (63) 55 0.7liU 6.20 (1N3) 55 0.757 6.30 (1C9)
105 0.780 6.50 (3ii8) 6.5 App.(2A5) 6.5 App.(3A6)
6.7 App.(lF3) 6.6 App. (m2)
6.5 App.(l27)
135 0.757 6.30 (1C12) 130 O.7U8 6.23 (1LU) 190 0.766 6.37 (115)
130 0.757 6.30 (1011) 135 0.757 6.30 (315)
Hi5 0,790 6.58 (5027) liiO 0.79U 6.61 (lia) 330 0.793 6.60 (102)
0.797 6.63 (113) (lAlt)
230 0.805 260 , 0.807
285 O.8I45 0.865
6.70 6.72
7.03 7.20
(108)
(105) (3010) (112)
1.590
1.It65 1.336
13.27 12.20
31.32
(1A9) (1F2)
(ICli)
0007-PMC-000000152
Page 1-U April 1, 195U
Remarks
(63)
VMStP Naphtha is used in thinning paints and varnishes and is frequently employed as a diluent in lacquers, Used for short flow dip paints and in spray type materials. Used in traffic paints because of quick solv ent release, Bids is a red label solvent.-
(1l|1) Kerosene, also known as heavy mineral spirits. An institutional policy of replacement with ($027) is in effect,
(3U8)
Mineral spirits, often referred to as heavy naphtha, has largely re placed turpentine as a thinner and solvent in the paint ai d varnish in dustry, More of this type of solvent is employed than any other. Used in conjunction with other solvents for most any type of application.
(U026) Hydrocarbon solvent used in lacquers as a diluent and in fast drying varnishes and enamels. Generally used where VMScP Naphtha is found to be too slow. This is a red label solvent,
($027) Hi-Flash mineral spirits insures good leveling and flow. Slow evapor ation of this solvent from the paint film eliminates lapping. Gives good wet edge in brushing paints.
0007-PMC-000000153
Page 1 R. . Parkins
August 10,
ho
CLASS 200
hydrocarbons, non-cyclic, non-volatile, including their halides
200 - 209
210 - 219
220 - 229
230 - 2U9 250 - 259 260 - 269 270 - 279
280 - 289 290 - 299
Mineral oils with viscosities at 100 F. of not over 75 seconds Saybolt Universal.
Mineral oils with viscosities at 100 F. of 75 to 125 seconds Saybolt Universal.
Mineral oils with viscosities at 100 F. of 125 or more seconds Saybolt Universal.
Open.
Petrolatums.
Paraffin (slack waxes, scale waxes, white paraffin, and micro-crystalline).
Other hydrocarbon waxes (ozokerite, oeresin, montan, candelilla).
Non-volatile, chlorinated, non-cyclic hydrocarbons.
Open.
0007-PMC-000000154
Page 2 August 10, 1956
Number
200-209 T2'I 37 (2 A U) (2 A 8) (2 A 9) (2 C 16) (2 C 18) (2 K 1)
210-219 {216) (2 C 20) (2 C 23) (2 C 25) (2 D 10) (2 F 2)
220-229 I22F) (2 A 10) (2 C 11) (2 C 15) (2 C 2U) (2 F 6) (2 P 2) (2 1 1)
250-259 25U (2 C 2) (2 c 5) 2 D 50 2F7 2L2 (2 N 1) 2 T3 2 Y5
260-269 261 (263) 266 (2 A 6) (2 A 11) (2 A 12) 2 A 13 2C8
Name
Mineral Oil 50 Mineral Oil Gulf 372 Oil Ultrol #5 Mineral Oil,Special Diesel Fuel Light Process Oil Topaz Oil A
Mineral Oil Mineral Oil #1*1*62 Mineral Oil 97 Mineral Oil 100 White Rose Oil #2 Mineral Insulating Oil
Mineral Oil, Heavy Sohio White Mineral Oil Mineral Oil 215 Inkol No. it 750 Pale Oil Paraffin Oil Base Oil 200 Pale 200 Dormant Oil
Petrolatum, Amber Vaseline Solution Vaseline Yellow Petroleum Paste Petroleum Grease Petrolatum Extra Light Amber Vaseline Solution Petrolatum, Extra Light Amber Water Proof Grease #1
Crude Paraffin Wax Paraffin Wax Solution Paraffin Wax, Refined Wax Solution Paraffin Wax Solution Refined Paraffin Wax Solution Sunoco #3U25 Wax Petrolite Crown #1035
NVK %
100 100 100 100 100 100 100
100 100 100 100 100 100
100 100 100 100 100 100 100 100
100 50
100
-
100 100
10 100 100
100 15.2 100 19.1 1.8 10 100 100
Melting Point
Body G-H
Al* - a2 --- A2 --
-- -
- A1 - A1 - A1
-
- A1
-X
--
-B - z2
--A *
--
138 F.ASTM
--
112F. S.P.
-
120F.AS1M
--
120F.ASTM 375F.
--
-- A-
-
125F.BfcR
-
132F.ASTM
--
127F.ASTM 198F.,B&R
_
A+
--
A
*5 A5
-
0007-PMC-000000155
Viscosity SSTJ 9 100F.
75
69
100 97
_
205 215 *'
mm
208 200
mm
_.
1550
mm
>
mm mm
-.
Color Gardner Max.
n u
li
-
8
1
2
Dark 1
16 Dark
9 2 -
15
-. -- -
lit 5
Ut
-
3
-
#/Gal.
7.20 7.16
7.33 7.90 7.30
7.37 7.00 7.07 6.72 7.08 7.hi
7.63 7.27 7.1th 7.95 7.76 7.35 7.75 7.61
7.13 7.25 7.30 7.73 7.88 10.08 7.51
-
--
7.25 7.08
-
6.55 7.07 6.59
-
Page 3 August 10, 1956
FI.Point Gal./lOO# of (TOC) Number
_ 310 (2 A 3) - - (2 A h) -- (2 A 8) - (2 A 9) -- i5o (2 C 16) -- - (2 C 18) -- 3U0 (2 K 1)
350 (216) - 335 (2 C 20) - 365 (2 C 23)
- (2 C 25) - -- (2 D 10) - (2 F 2)
500 (228) - 350 (2 A 10) - - (2 0 n) - - (2 C 15) -- 395 (2 C 2h) -- - (2 F 6) - - (2 P 2) -- <2 T 1)
-- ---
-
lh.3 13.1
13.8
-
13.2
-
13.3 12.8
390 25h 81 (2 C 2)
hOO (2 C 5) - 2 D 50 - 2F7 - 2 12
2Q5 (2 K 1) - 2T3
h65 2 T 5
375 261 1Q5 (263)
- 266 105 (2 A 6)
81 (2 A 11) 105 (2 A 12) h20 2 A 13
- 2C8
0007-PMC-000000156
Page it August 10, 1956
Number
Continued
260-269 2 C 10 (2 C 19) 2 D 60 (2D 61) 2 F 10 212 211 (2 N it)
2N5 (2 N 6) 2N7 (2 8 8) (2 N 9) (2 T 2)
2 73 2 110 2 Y 12 (2 Y llj)
Name
NVM
Melting
.________ _____ %Point
Body-
0-H
Sunoco Wax #985 YellowRaybo 1*3 2305 Amber Amorphous Wax Amorphous Wax Solution Paraffin Wax
Atlantic 131 Wax Paraffin Ceremul Q Crude Paraffin Wax Paraffin Wax Solution Powdered Polymekon Wax Marproofing Agent Marproofing Agent Paraffin Wax Solution Socal Petrolatum #110 Socal Petrolatum #70 S/V Product 2310 Sure Cure White Vehicle
100 100
ii.5 100 100 100
5o 100
15 100 33.8
33.7 -
100 100 100
55.U
198F.B&R -
-
126F. 121F.Cap. 135F. 152F. 155^F. -
- -
-T7 -- -. -
--- - - '* L ' L`---.
270-279 2 Cl
2C3 2C6 2C9 2 C 12 2 C Hi 2 C 17 2 C 22 2 C 26 2F3 2F9 (2 M 1)
Refined Candelilla Wax-
Durez 219 Blend
100
Solawax ll|02
100
Ceresine Wax
100
Ozokerite 863
100
Ozokerite 861
100
Cornelowax 1822
100
Candellilla Wax,Crude or Prime
100
Estawax 25
100
Extra Light Bleached Candelilla Wax 100
Cerese Wax
100
Ceresin Wax
100
Antifoam S-l Wax Emulsion
--
' l61iF.B&R 181F.B&R --
193F.B&R 193F.B&R 200F.BStR 153QF.BSc R 2l5F.B&R
-
170F.B&R 173F.ASTM --
-- ~ ---
-
- - -
-
-
-
--
280-289
~2B7-- (2 A 2)
(2 A 7) (2 C U) (2 D 81)
Chlorowax 70 Chlorowax hO Chlorowax Dispersion
Chlorafin 1*2-5 Chlorowax #70 Solution
100 103F. 100 -
65 100
70 -
z G' --.
N
0007-PMC-000000157
Viscosity SSU @ 100 F.
Color Gardner
Max.
#/Gal.
7.6
-- 6.35 -- 7.56
--
m. -- -- 8.12
--
-- 7.08
----
-- 7.86 - - 7.23 -- - 7.30
* ---- -- --_
- -- 7.07
--
_
- -- --
- - -
- -- -- -- -- --
- 10 7.66
- --
- - -
- a 9.6
- 10 10.52
- 6 9.77 - - 10.7
Page 5 August 10, 1956
FI.Point Gal./IOQ# of (TOC) Number
12.8
12.0
-
13.25
--.
13.15
--
12. U7
-
12.2
-
-
13.U Ui.06 1U.2 --
66
--
55
-
-
-
-
105 1*95 35 35
-
.-
1*00 It60 --
2 C 10 (2 C 19) 2 D 60 (2 D 61) 2 F 10 2K2 2L1 (2 N 1*)
2N5 (2 N 6) 2N7 (2 N 8)
(2 N 9) (2 T 2)
213 2 X 10 2 T 12 (2 I U*)
ll.U
11 ,h 13.3 12.7 12.9 12.6 12.0 12.7 12.0 12.8 13.05
-
-
-- -
1j 6o
-
2 C1
2C3 2C6 2C9 2 C 12 2 C 11* 2 C 17 2 C 22 2 C 26 2F3 2F9 (2 M 1)
7.23
-
-
-
-
80
..
80
287 (2 A 2)
(2 A 7) (2 C U) (2 D 81
0007-PMC-000000158
REMARKS
Mineral oils are products resulting from the distillation of crude petroleum. Purification is accomplished through a cold sulphuric acid process. General uses of mineral oils include* low cost reducers in wood preservatives, neutral oil bases and standards, chiller pastes, and marproofing agents.
Petrolatums, like mineral oils, are products of petroleum distillation and are purified in a similar manner. Main uses are as marproofing agents, "slip" agents, and in concrete curing compounds.
Although waxes have a variety of sources, one of the chief types - paraffin - is again a product of petroleum refinement. Usage other than wax compounds is as marproofing agents, and concrete curing compounds.
Our use of chlorinated hydrocarbons is almost exclusively in fire retardant finishes.
0007-PMC-000000159
Page 3-1 J. D. Baldwin Cleveland
April 1, 195k
CIASS 300
Hydrocarbon, cyclic, both volatile and non-volatile, including halides.
300-309 C3 through C monocyclic (Benzene, cyclohexane, naphthenes)..
310-319 C7 monocyclic hydrocarbons and all mixtures of cyclic hydro carbons having a Tag Open Cup flash point below 80F.- (Toluene, toluene substitutes, methyl cyclohexane and Cj naphthenes).
320-339
Cg and higher aromatic monocyclic hydrocarbons and mixtures of
monocyclic hydrocarbons having Tag Open Cup flash points above
80F. (Xylene, cumene, "High Flash Naphtha", crude heavy
naphtha, creosote oils)..
.
3UO-3U9
Co and higher non-aromatic cyclic hydrocarbons and mixtures thereof having Tag Open Cup flash points above 80F. (Terpenes
such as turpentine, pinene, dipentene, limonene, etc.,, aliyl
hexane and alkyl naphthenes).
350-359 Non-volatile cyclic hydrocarbons (coal tar neutral oil, rosin oil, naphthalene, anthracene, etc.).
360-369 Chlorinated cyclic hydrocarbons (chlorobenzene, etc., but not chlorinated diphenyls which are in class Ii9).
370-399 Open
0OO7-PMC-OOOOOO160
Page 3-2 April 1, 199U
Number Material
Cp through Ca monocyclic (3C7) Benzene, 2 Industrial
Cy monocyclic and low-flash mixtures
(2Ul) Toluene, Industrial, Pure
(UoUl) Toluene, 'Hide Range
(3F3) Toluene (Specification)
(3C23) Toluene (Specification)
(3C2) (3C9) (3D10)
Bidosol #1 Velsicol IF (Alti Hi-Solve T) T" Sol Toluene Substitute
Cr etc a aromatic monocyclic and higher flash mixtures
(hou6) (liOUo) (3A2) (3AU)
Xylene, 20 Xylene, Wide Range
Xylene, Slops Xylene, Ends from Redistillation
(3C19) (3N2)
(3P2) (3XU) (3A1)
Xylene (Salvage), Redistilled
Xylene (Salvage), Redistilled Xylene (Salvage), Redistilled Xylene, Amsco Solvent B SC Solvent 2B
(U021) (2*OU8)
(1297) (3X7) (3D20) (3X8)
Aromatic Naphtha Aromatic Naphtha Hi-Flash Solvent Naphtha Shell IS-28 Hi-Flash Naphtha Solvent 7R
(3A.6) (3X3) (3X2)
(312)
Creosote Oil, A.R.E.A* Creosote AW PA#1 Creosote Diluent #1
Shingle Stain Oil 1X767
___
(3C17) (3A9) (3C1)
(311) (3x6)
Styrene Monomer N99 Velsicol AR90G (Methylated Naphthylene) Polymethylated Naphthalene 2
Nevinol Union 1*060-0 Aromatic Oil
Cr etc, non-aromatic and higher flash mixtures
(lU)
Turpentine, Wood Sulfate
(20li9) Dipentene
(3C6) Orange Oil (D-Limonene)
(3FU) Turpentine, Gum Spirits
Non-volatile cyclic (3D92) Coal i&r Neutral Oil
UOJ-l;
HSU0 (Part, hydrog. mix* of isomeric terphenyls)
Distillation F. 0% $Q% X0(%
Value
179 178 118
229 200 220 228
228 221 210
223
239 300
23lt(DP)
23U(DP) 239(BP) 280(DP) 237(BP)
109 82
88 90-99 92 Min.
270 311 270 290 3U0
90 90
260 360 79 299 369 90
270 311(DP) 87 276 390(d p) 79
3^0 379 390 380
302 320 300 332 280 315 326
109 hZ$ 370 390
38it 33li
69-89 89 Min 89-100
7U 33-Uo
107
671
293
380 900 80 970 700 Uoo 600
302
33k 330 3h7 302
360
370(9$%) 379 360
99 69 70 96
302 970 680
0007-PMC-000000161
Evap.
Minutes-
Remarks
FPF TOC
Sp.Gr.
75F
Page 3-3
April 1, 195U
#/G 7>F. Number
1*0
2.5 3.0 -
30.0 30.0 7.5
P & Remover
--
Vest Coast Spec. TT-A-51*8a Spec. TT-A-5U8& lacquer Lacquer Alt. for (3C9); use (3C9)
West Coast For Redistillation Ends from (3A2) RedistiUation
Washing Only Washing Only Vest Coast alt. (l*0l*6) Restrictedr TT-V-119
West Coast alt. (1257) Acme only; R.B.L. pres ervatives
Shingle Stains. vast Coast alt. (3A6) Preservatives Solvent Lowe Bros.
Alkyd Tarnishes Restricted; Bound Brook VB & Awning, etc. Plasticizer Preservatives Solvent
12 0.880
7.38 (3C7)
1*0 0*863 1*2 0*828
2*5 0*863 1*5 0.863
0*831 0*82*2
35 0.835
7.18 6.90 7.18 7.18
6.92 7.01 6.96
(21*1) (l*oi*i)
(3F3) (3C23) (3C2)
(3C9) (3D10)
81 0.863 81 0*863
65
80 0,81*3 81 0.831
135 0.865 135 0*879 105 0.870 125 0.81*0
0.780 100 0.873
1.080 l*oo 1*095
0.963 0.906
80 0.905
160 0.91*3 1.01*1* 0.935
7.28 (1*01*6) 7.18 (1*01*0) 7.2: Af p. (3A2) 7.2 Ah >. (3Al*)
7*1 Ar >. (3C19) 7.0 Ajp..(3N2)
7.2 A0>,(3P2)
7*02 (3x1*) 6*92 (3A1)
7.21 7.32 7*25 7.00 6.50
7.27
(1*021) (l*0t*8)
(1257) (317) (3D20) (3X8)
9.00 9.08 8.02
7*55
(3A6)
(3X3) (3X2) (312)
7.51*
7*85 8.70 7.78
(3C17) (3A9) (3C1)
(311) (3X6)
6.0 10.0
Emulsions Restricted* Sherdye
85 0.861*
io5 0.853 120 0.81*0
75 0*861*
7.20 7.10
6.99 7.20
(1U) (201*9) (3C6)
(3Fl*)
Salamander Black
100 1*020
155 0.91*3 *, 0007-PMC-000000162
8.50 7.85
(3D52)
,(3P1) M3C11)
Page J-U April 1 195>k
Number
Material______________________________Restricted
Chlorinated Cyclic
3A5 Dichlor Diphenyl Trichlorethane
347 Benzene Hexachloride
3A8 lindane (99% Gamma Isomer of Benzene Hexachloride)
3410
IDE (BED) Technical
3411
Marlate $0 (Metho^ychlor $0%')
Bound Brook Bound Brook
Bound Brook Bound Brook Bound Brook
REMARKS
Toluene
Toluene is one of the most conation solvents for lacquers and synthetic resins and is extensively employed as a thinner for such coatings
Its very rapid rate of evaporation makes it desirable in these appli cations in which quick drying is an essential quality.
Xylene
like toluene, xylene possesses high solvent power for most synthetic resins. Its slower evaporation rate indicates its use, in preference to toluene, in certain cases where such property is desired.
High Flash Naphtha
High flash naphtha does not possess as much solvent power as toluene. On the other hand, its much slower evaporation rate and high flash make it desirable for use as a solvent or thinner requiring such properties.
Turpentine
Turpentine has more solvent power for most resins than petroleum naph thas, but less than aromatic or coal tar solvents. Its main use is as a thinner in certain paints and as a solvent in varnishes.
Wood turpentine contains less dipentone and more pinene than gum turpen tine. For this reason, it has slightly less solvent power and slightly greater speed of evaporation.
Dipentene
Dipentene has more solvent power and is slower evaporating than turpen tine. It is largely used as an anti-skinning agent.
Creosote
The creosotes are used mainly in preservatives as fungicides.
0007-PMC-000000163
Page 4-1 E* Kulish
Chicago
February 8, 1955
CLASS U00
400 through 429 4oo - 409 410 - 419 420 - 429
Alcohols, mcuohydric Alcohols, 0^ through C3 Alcohols, Cj through C7 Alcohols, Cg through C^g
0007-PMC-000000164
Page U-2 February 8, 19??
Material No.
(Uoi)
(UC16) (U03) (1*0?) (U06)
(1*C19)
(108)
0*11) (1*C20) (l*ll*)
OlDlO)
(U09) (U6) 0*15) UT6
0*17) (Ua U) 00-6) 0*18) (1*C22)
`.(1*21) OiCl) (1*C18) (UC17) (1*F7)
0*22) (1*19) 0*23) (UF1) 0*2?)
0*F9) I*A3
Previous No (2617) (1891) (30) (330)
(3031* (1167) 0*037)
(2602)
(l6?6)
0*033)
(1682)
(3031)
(3032)
(2610)
(3039) (293)
Material
Methyl Alcohol Methyl Alcohol (Heads) Ethyl Alcohol - Anhydrous Ethyl Alcohol - 9$% Ethyl Alcohol - S. D. #1
Alcohol Blend Isopropyl Alcohol N. Butyl Alcohol
N. Butyl Alcohol Mixed Butanols
Mixed Solvent"6?$ But. Al., 32$ Tol.s 3% water
Methyl Cellcsolve Pensolve Alcohol
Ethyl Cellosolve. Cyclohexane!
Methyl Any! AIcchel Benzyl Alcohol Diacetone Alcohol Butyl. Cellosolve Methyl CarbitcX
..........
Octyl Alcohol.
Amyl Alcohol, Tech. Octyl Alcohol Iso-octyl Alcohol Iso-octyl Alcohol.
Solvent C-8 Carbitcl Butyl Carbitol Lauryl. Alcohol. Pine Oil
Pine Oil Di (p-chlorophenyi) methyl
carbinol
0007-PMC-000000165
Distil* Range C Test Method 1*03.3
61* 66 61 69 7h 79 75 80 75 80
70 82 81 83 115 118.5 115 118.5 113 121
Flash Point F - T.O.C. Test Method 1*29.5
52 52 65 1*5 15
1*1* 60 nit llh
122 126
109
130 137 152 162
135 170
127 133 199 20lj 135 170 163 173
185 195
131 212
llih 165 200
180 192 132 136
181 186.5 175 200 175 200
182 111. 182 180 180
171* 181.5.(85* .180
185 205 between;205
220 235
230
261* 332.
190 250
165
190 250
172
Sp. Gr.
Wt/Gal.
75F.
75F.
Test Method - 1*01.2
0.790
0.791 0.790 0.808 0.808
6.58
6.59 6.58 6.73 6.73
0.808 0.782 0.808 0.808 0.810
6.73 6.52 6.73 6.73 6.75
6.93
0.963
8.02
0.928 0.960
7.73 8.00
0.80'U 1.03*0
0.937 0.900 1.030
6.70
8.67 7.81 7.50 8.58
0.832 0.815 0.82?
0.831 0.831
6.93 6.79 6.89 6.92 6.92
0.811* 1.021*
0.953 0.83U 0.920
6.78
8.53 7.91* 6.95 7.67
0.930
7.75
Page ii3 February 8, 1955
Material
0*oi) (1*016) (U03) (UQ5) (U06)
(1*019). (108) (l*H) (1*020) (lolt)
(1*D10)
(1*09) (1*6) (1*15) I*x6
(1*17) (l*Al*) (ia6) (1*18) (1*022)
(1*21) (l*ci) (UC18) (1*017) (1*F7)
(1*22) (1*19) (1*23) (1*F1) (1*25)
(1*F9) 1*A3
0007-PMC-000000166
CLASS LOO - (LCD through L29) Remarks
The lower boiling members of this class (through C-12) are used principally as solvents in nitrocellulose lacquers. Certain mem bers are also used in enamels and stains such as methyl alcohol in stains and butyl alcohol in alkyd resin enamels (particularly those enamels modified with urea or melamine resins). As the bell ing point increases (above 170C.) the use of these alcohols as lacquer solvents decreases. These higher boiling alcohols are used as anti-foam agents, leveling agents, and wetting agents. The principal use cf alcohols is in nitrocellulose lacquer. Alco hols are in themselves non-solvents for nitrocellulose, but in the presence of an active solvent (such as esters or ketones) they be have as though they were true solvents. It has been proved that the use of active solvent plus. alcohol will result in a lower vis cosity than active solvent alone. Also, most alcohols are lower costing than, the corresponding ester and by using them, raw material costs are lower.
0007-PMC-000000167
Page 4-5 E. L. Superits Chicago November 30, 1956 Class 400 Monohydric alcohols (C^3 and above) and polyhydric alcohols, including halogen-substituted. Also additional similar reacting poly-functional oxides. 430 - 439 Monohydric alcohols (C13 and up) 440 - 449.1'Open450 - 459 Dihydric alcohols 460 - 469 Trihydric alcohols 470.- 479 Tetra-and higher-hydric alcohols 460 '- 499 Open
0007-PlVfC-000000168
Vfeagh 4-6 November 301 1956
Number
Prev Wo. Kama
Flash
Wt. X Wt. X
Point *F. `Water Add
Viscosity
Monohvdtic Alcohols Sub-Class 430
(430) <4A7) .(4A9) (4C6) (4C13>
CW(2967) CW(309l)
Abitol Tergitol HP-14 Triton-Xl02 Triton-XlOO Triton-W1756
420
i
6*50
(4C15) (4C24)
(4F2).
(4m)
(29C29)
Tergitol-XC Tergitol-NPX Abitol (90X in Xylene)' Triton X-45
500
Di-Hvdric Alcohols A Di-Functional Oxides Sub-Class 430
(450)
(451) (452) (453) (4A10)
(3075) CW(1677) (4098) CW(2819) 0W(612)
Ethylene Glycol Di-Propylene Glycol Propylene Oxide Plasticizer X565 Hexylene Glycol
240 280 f-35
6,50 6,50 1.00
0.01 0.01 0.05
0.01
(4C7) (4Gll> (4C12) (4C23) (4C30) 4C31
(4034) (24C6)
Di-Ethylene Glycol Eplchlorohydrin Polyglycol P-1200 Pluronic L-44 Dimethyl Octynediol Carbowax 1500
Tri-Hvdric Alcohols Sub-Class 460
245 105
430
0.30 6.10
0.Q2
654 cps
(462) 4C14
(2666)
Glycerine Trimet
Tetra-Hvdric & Richer Alcohols Sub-Class 470
472 473 475 4F6
2296 1986
Pentaerythritol-49 Pentaerythritol-47 Di-Pentaerythritol Stabiliser A-5
0.50
0007-PMC-000000169
Page 4-7 November 30 1956
Hydroxyl
Distillation Melting
Bolling
Value
ColorRange *0.Point *F.
Point *C.
Wt./Gal.
Number
5.0
8.34
(430)
8.53
(4A7)
(4A9) -
8.85
(4C6)
(4C13)
8.6 8.9
8.65
(4C15) (4C24) (4F2) (4F11)
15(APHA) WW 15 (GH)
15(Hazen)
WW ww
Cloudy
3(GH)
190-210 215-245 30-40
193-200
230-270
197 232 30
250 116
9.28 8.53 6.93
7.70
9.88 9.85
8.85 8.5 9.48
(450) (451) (452) (453) (4A10)
(4C7) (4C11) (4C12) (4C23) (4C30) 4C31
200
10.51
(462) 4C14
482 428
9.50
472 473 . 475 4F6
0007-PMC-000000170
Page 4-8 November 30, 1956
Remarks
(430)
Abltol (Hydroabletyl Alcohol) - produced by hydrogenolysis of rosin and represents a colorless, tacky, viscous liquid at room temperatures. Chemical reactions are typical of a primary monohydric alcohol plus what might be expected from the residual unsaturation in the ring structure.
Uses!
Modifiers for chlorinated rubber, plasticiser in many synthetic resins and waxes, modifier for hydrogenated oils and essential oil vehicles.
(4A7)
Alkyl Phenyl Ether of Polyethylene Glycol - surface active agent finding use in Brush cleaner formula - can be used in oil soluble emulsifier.
(4c6)
Triton X100 - (Alkyd Aryl Polyoxy Ethylene Glycols) an anhydrous liquid non-ionic detergent and wetting agent which is freely water soluble. An outstanding emulsifier for many applications,
(4C15) Tergltol XC - Polyalkalene Oxide used as emulsifying agent.
(4C24) Alkyl Phenyl Ether of Polyethylene Glycol - surface active agent used as dispersent in emulsion. Good detergent, vetting agent and emulsifier.
(4F2) (4F11)
Abltol (90% in Xylol) - (Hydroabletyl Alcohol - 90Z in Xylol) - would dis play much the same type characteristics of (430) with consideration being allowed for 102, Xylol which is present.
-K
Alkyd Aryl Polyether Alcohol - surface active agent - good detergent for non-aqueous system - miscible in all proportions in aliphatic solvents.
(450)
Ethylene Glycol - difunctional alcohol which finds use as printing ink
solvent, formation of plasticizers, special alkyd resins, esterification
of rosin to obtain lower melting point ester gum with improved alcohol
solubility.
'
(451)
Dipropylene Glycol - similar in properties to (4C7), having greater molecu lar weight. Has great solvency for castor oil. Much wider compatibil ity. Should provide more flexibility and better solvency for printing ink resins.
(453)
Dow Plasticizer X565 - (Technical 4-4' Isopropylidene bis Phenoxy Propanol)* difunctional viscous plasticizer which dissolves in all common solvents except aliphatic naphthas, glycerin and water. It is generally compat ible with alcohol soluble resins such as ureas, melamines and shellac however, it is not compatible, with vinyl resins. Can be used to form large size molecules in esterification processes in order to enhance viscosity. Varnishes employing.this plasticizer exhibit extremely good flexibility and toughness.
0007-PMC-000000171
Page 4-9 November 30, 1956
(4C7)
Diethylene Glycol - difunctional alcohol which finds use as printing ink -solvent, formation of plasticizers, and makes possible more stable emulsions in soluble oils acting as a coupling agent between free fatty acids and fatty acid soaps.
(4C11)
Epichlorhydrin - a reactive intermediate for the synthesis of materials which may be used in surface active agents, resin intermediates, stabilizers and plasticizers. The reactivity of this item is due to the presence in the molecule of both an epoxide ring and a chlorine atom.
(4C12) Polyglycol P-1200 - Polypropylene glycol finding some use as an emulsifying agent in latex paints.
(4C23)
High Molecular Weight Polyethylene Glycol - surface active agent - water miscible - relatively non-hygroscopic - dispersing agent in emulsions, polishes and abrasives.
4C31
Polyethylene Glycol 1500 - molecular weight 500-600 - water soluble polymers used to modify alkyds for emulsion vehicles. Used as water soluble lubricants - good solvents for dyes, resins, proteins. Dispersent for casein, glues, zeln and cork.
4C14
Trimet - Xrimethyolethane represents a polyhydric. alcohol that could be con sidered as a substitute for pentaerythritol which can give a tougher film along with improved color retention under certain conditions.
(4F6)
Stabilizer A-5 - produced by Carbon & Carbide and believed to be essentially the diglycidyl ether of Bisphenol A. It could be considered a monomer but it also resembles polymeric materials. in regard to its character istics .
0007-PMC-000000172
Page 5-1 E. Kulish
Chicago
February 3> 1955
CLASS 500
Aldehydes, Ketones, Quinones, and any other compound in which a carbonyl is the sole or principal functional group, includ ing halogen substituted.
500 - 519 520 - 529 530 - 5U9 550 - 559 560 - 569 570 - 579 580 - 599
Open Aldehydes Ketones of Cp through Cg Ketones of Cg and higher Open Quinones Open
0007-PMC-000000173
Page 5-2 February 3> 1955
Material Number
(5C1U) (5C9) (5C13) (5C10) (5M1)
(5CU) (5C15) (5C12) (530) (533)
(507) (5A2) (5Uo) (5U6) (5F1)
(5C2) (556) (5cn) 5F2 5L1
503
Previous Number
(5A1)
(1826) (2639)
(3038) Oi03l)
(U030)
Material
Formaldehyde Solution Formaldehyde Solution (37/0 N. Butyl Formcel (U0^) Glyoxal (30^) Glyoxal
Cisco Solve H Methyl Acetone Acetone Acetone Methyl Ethyl Ketone
N. Butyraldehyde Mesityl Oxide Methyl Isobutyl Ketone Cyclohexanone Pentanedione
Paraldehyde Isophorcne Di-isobutyl Ketone Synthetic Camphor Anthraquinone
Chloroanthraquinone
Distil. Range C Test Method 1*03.3
56-77 52-62 55-57 55-57 78-81
70-80 120-135 11U-H7 130-157 125-lUU
100-127 205-220 163-173
0007-PMC-000000174
Flash Point F. T.O.C. Test Method 1*29.5
Above 80
150 127
Below 32 20 15 15 22
6U 98 81 116 105
90 205 11*0
Sp. Gr. 75F. Test Method
1*01.2
Wt./Gal.
75F. Test Method 1*01.2
1.038 1.087 0.980
1.257
8.65 9.06
8.17 10.00 10.U8
0.81U 0.832 0.788 0,788.
0.803
6.79 6.93 6.57 - 6.57 6.69
0.802
0.853 0.799 0.9U3 0.972
6.62
7.11 6.66
7.85 8.10
0.990
0.919 0.805
8.25 7.66
6.71
Page 5-3 February 3> 1955
Bulk Gal/100
12.1 8.0
12.0
Material Number
(5C1U) (509) (5013) (5010) (5M1)
(5cl*) (5ci5) (5012) (530) (533)
(507) (5A2) (5Uo) (51*6) (5F1)
(502) (556) (5CH) 5F2 5u
503
0007-PMC-000000175
Page 5-U February 3, 1955
Remarks The ketones in this class display exceptional solvency for a vide variety of materials, particularly those which are used for surface coatings. Cellulose nitrate, ethyl cellulose, cellulose acetate butyrate, acrylic resins, vinyl acetate, vinyl chloride--vinyl acetate copolymers, in fact, practically all snythetic and natural resins commonly used in lacquers are soluble in one or more of these ketones. Other uses consist of solvents for camphor, fats, grease, gums, oils, and dyes. Aldehydes such as butyraldehyde are excellent antioxidants. They are used in the manufacture of snythetic resins (phenolics and ether resins). The quinones find usage as oil bodying catalysts.
0007-PMC-000000176
:Class 600
Acids, carboxylic, fatty
Page 6-1
Formulator *s Hdbk, Cleveland Aug* 1956
"n u mber NAME
.
sc 600, :1~C10
(6 F 3) Formic, 85$
(602)
Acetic, Glacial
(6 C 2it) Acetic, 58$
(6 A U) Acetic, 56$'
(6 A 23) Acetic, 28$
(6 C 20) Pelargonic, 90$
(6 CA9) Capric .
ACID TITR I.V. 7ISC.
VALUE
OHT
C
COLOR GARDNER .
FLASH PTF TOC
SP. cm 77F
LBS. /Gal 77F
* 9.95 . 8.65
350 .5 333 26
53
.910 7.63
sc 620, -li-ciu
(62U)
Laurie, 90$
(62^)
Cocoarrat
(6 c 25) Myristic
.-
280 1*3 1.0- .......... ___ 2------ -- ---- "I . .870 7.2U ..
260 21; 10
3 .880 : 7.33 5
2U6 50 1
2 ..888- 7.1*0
sc 630, ZXd- Sc Up
(6 C 7)- Stearic, Triple Pr 202
(632)
Oleic
195
(6 X 9) Oleic, Emersol 233 202
(6 F 2) Soya, Emersol 610 193 (6 X 11) Soya, Neofat 127 200
(6 A 6) Scya,
195
(6 C 26) Aliphat 16 W
200
(63U)
Linoleic, 55$
198
(6 C 1*) Linoleic, 59$
198
(6 c 15) Linoleic, Emer.9310 19U
(6 X 12) Linoleic, Emer.9310 19U
(6 A 8) Linoleic, Emer.9315 19u
55 5.o 9 90 5 88
28 115 m 28 315 m
29 125 m
25 125 5 138 m
19 138 m ll*0 m
1U0 m
11*5 m
1
5 5 1* 2 2/ .u k 1*.
.891* .888
7.1*5 . 7.1;0
.89k 7.1*5 .891* 7.1*5 6: .900 7.50.. .900 7.50
..900 7.50 .900 7.50 .900 1-7.50 '
.906 7.55
(639) (638)
Black Oil Linseed
70-170 200
150 m 15 180 m
Dk 6
.921;. -7/7Q : .90U. 7.52
( 6 A 3) (6 C 9) (6 X 10)
(6 A 1) (6 A 5) (6X6)
D.C.O.F.A. D*C. O.FJU Synthenol Tung
Tung, 35$ NV Soln Tung, 25$ NV Soln
170
195 11*5 195"
sc 650, C-icr & Up, with rosin acids
(6 C 17) Acintol F A 2
195
(6 L5) Aliphat kh A
195
(6 A 7) Acintol FA 1
189
(6 I) 51) Indusoil
(6 T 1) Acolin
180
(6 C 18) Acintol D
190
15 120 m 5 150 m 130 m
1*0 158 in
ROSIN ACID $
1M 127 m A 2M 120 m UM 138 A
28 158 GH 32- 161* D
' 6M 5M 8M
12 M 13 M
8M 8M 9M
8
.908 .900 .900
.913 .882 .8U6
7.57'' 7.50 ` 7.50 7.60 :
7.3k 7.05
380 .898 7.1*8 .
380 .900 7.50 7.59 7.8
U00 .91*7 7.90
(662) (6 N 1) (6 C 22) (6 C 10) (6 C 21) (6 C 8) (6 L 1)
Tall Oil, Acid Ref. 160
Tall Oil, Unitol R
Tall Oil, Unitol G? 170
Tall Oil, Crude
165
Aliphat \6 A
180
Faresac 69 Pitch
Dimer Acid, KU61R 186
1*3 125
he 167 h2 160 70
150" 73" Z3
solid Z2-Z5
12 M
9M A8 10 M
12 M
350 .987
.990 * .965
1.01;
.9UU
8.22 8.22*
8.25: 8.03 8.66 *
8.1 7.85
0007-PMC-000000177
Class 700
Acids, carboxylic, non-fatty,
Pago 7-1
Formlators Hdbk, Cleveland Aug. 1956
NUMBER NAME
MP, or ACID vise. BP V/NV GH-T
C
sc 700 Monobasic
(7 C 13) Crotonic, sc 600 M
(7 A 2) Octoic
B
(7 A 1) Naphthenic 2ij0
(7 A 7) Naphthenic 230
(7 C 12) Naphthenic, Ref
(7 A 3) Naphthenic, Crude
72 600 220 380
: 2k0 230
Dark
B' B
(7 C 6) Lactic, 502
700 Benzoic, 982
7 C 3 Benzoic, Tech 7 Y 3 Benzoic, 932 7 L 1 ~ Ptbutyl benzoic
M M 121
166
315
7,A It Naphthalene acetic
COLOR FLASH GARD. PT F or Pt Co TOC
SP BULK LBS GR GAL /GAL
77F /CWT 77 F
Ft 30 G8 G8
190
260 .903 11.8 7.31
260 .978
ff.13
260 .978
e;i3
8.13
t?*' . v' '
.
__________
1.1U2 10.3 '
sc 75>0 Di- & Folybasic
731 Oxalic, dihydrate M 101 883 (7 C 11) Ctxalic A sol*n
733 Maleic anhydride M 32 1130
737 Fumaric
M 287 91x6
7 C 10 7F1
7 C 17 7C1 7 C 13
Malic Malic Tartaric Diglycolic, 982
Citric, monohyd
M 100 M 100
M 138 K 133
837 837
1*653 7.3
8.1 1.6U 7.3 7.3
7.3 6.8
.. 1.3U2 7.8
7 C U Adipic 7 A 8 Azelaic
M 293 767 M 203 367
376
763 Phthalic, flake K 130 770 Phthalic, molten M 130
Pt 33 Pt 33
7C7 7C8
7Y1 7Y 2
Phthalic, crude Phthalic, crude Phthalic, tech Phthalic, recov.
M 190
(.82 non-sublimable)
(.1x2 "
-)
7 C 18 Isophthalic acid K 669 7 C 19 Tetra-cl phthalic an. K 15U 7 A 9 Chlorendic anhydride M 239 303
7 C 3 Bromo TS (7 M 1) Menthadiene
* -(sub class 8800) . (sub class 3U0)
7.8 7.8 7.8 7.8
7.5 6.9k -..... .... 0007-PMC-000000178
Page 7-2 June* 1956
(7A2) (7A1) 755 707
Is limited to drier Manufacture For driers is preferred over (7A7) which Is wore available* f t Should he used only where 757 drier is not satisfactory. ' ' v And related lspure grades of phthalle anhydride stolid not W ; used in general alkyd fonailatlens*
0007-PMC-000000179
Page 6-1 ft. S. Taylor Cleveland May 1$, 195U CIASS 800 Soaps or salts of carboxylic acids of classes 600 and 700 con taining metals of the first three major and minor periodic groups, including mixed soaps also derived from phenols. (Rosin salts are classified 3320-3329.) 800 - 819 .Major Group I plus ammonia (Li, Na, K, fib, Cs) 820 - 839 Minor Group I (Cu, Ag, Au) 6li0 - 859 Major. Group II (Be, Mg, Ca, Sr, Ba, Ra) 860 - 879 Minor Group II (Zn, Cd, Hg, Phenyl Hg Oleate) 880 - 899 Group III, Major and Minor (Al, A1 Stearate, Etc.)
0007-PMC-000000180
Page 8-2 May 15, 19$h
Number % Metal
Salt or Soap
1122 813
l(8Al)
Potassium Flaxoap MI
>. Sodium
Ivory Soap Powder
Sodium
Ivory Soap Solution
8d5 (82Uo:
Copper 8 Copper
Oleate Naphthenate
(8D22) 28 Copper
Hydroxy Naphthenate
(8A9) 8F3
3.5 Magnesium Octoate Magneisum Stearate
(2236) (8C20)
(2235) 1826 8A10 8C28 (8C26)
'll.. Calcium U Calcium 5 Calcium
Calcium 13.5 Calcium
9.3 Calcium Calcium
Naphthenate Naphthenate Octoate Stearate Soyate Pulp linoleate Pulp Linoleate Base
(5096) (811) 1U09 8d 6o
8C27
8 Zinc 8' Zinc III Zinc
Zinc Zinc
Naphthenate Octoate Stearate Stearate N/C Disp. Vistex #20
C8A12.) 10 Mercury
(8d9)
Mercury
8P3 59.5 Mercury
Phenyl Hg Succinate (Super Ad-It)
Phenyl Hg Oleate Phenyl Hg Acetate
1938 51x7 8A11 (8p2i) (8C22)
8A7
6.0 Aluminum 8.3 Aluminum 11 Aluminum
Aluminum Aluminum 16 Aluminum
Tristearate Distearate (Mixed) Stearate Stearate Gel Stearate Primer Palmitate
(8D80) 6 Cerium
Naphthenate
m) It Rare Earths Tt aphthenate
NVM Body % GHT
it2.5* 100 ...20*
100 73 `
Color Gard Max,
White White
Green
53 100
57-60 60 R U8 W 100 30* 30-36*
8 ... White
11 10 5 White White White
5U E-F 50 100
100
22 a 5
10 100
100 1X50
7 a. 5 1X50
8 8 White
9
9
White White White White
Ijhite
25.6
32
Volatile as water
0007-PMC-000000181
MPC H&B ' Remarks
FPF TOC
Emul. & Detergents
Bulk G/100#
11.8
Fungicide
n.U 105
lacquer Chips
S-ttMfr., IOM
lUo
1U5 Sherdye
11.7
Drier -
105
Ferro Only
105
Kem-Glo
io5
i5o Suspending Agent
11.61
11.9
Use 8A10
11.9
8C28 in Varnish
115-120
Drier Try (5096) Flatting Agent Industrial Xacq. Kem Dura
io5 io5
5o
11.0 12.6 12.6
Fungicide
10k .
Fungicide l*i9 Fungicide
100
91-99 Flatting Agent U5-160 Thickening Agent 160 Graphic Arts
11.9 11.1
11.9
Primer 200 Thick. & Susp. Agent 11.2
Drier Drier (Baked)
Sp.Gr. ?5f .
0.912
1.03 1^195 0.906
0.9UU 0.936 0.91U
0.966 0.900
0.971 0.827
0.783 0.865
0.936
0.883
#/Gal* 75F.
7.60 8.6'
9.9$
7.55
7.87 7.80 7.62
8.05 7.50
8.10 6.87
6.52 7.20
7.80 7.35
Page 8-3 May 15, 195k
Number.
1122 813 (8A1)
8cl5 {my
(8D22)
(8A9) 8F3
(2236) (8C20) (2235) 1826 8A10 8C28 (8C26)
(5096) (811) 11*09 8d 60 8C27
(8A12)
(8C19) 8P3
1938 5U7 8A11 (8p 2i) (8C22) 8A7
(8d 80) (8rli)
0007-PMC-000000182
Page 8-I1 May 15, 19$k
Remarks Calcium naphthenate is frequently used to replace a lesser amount of lead drier in varnishes exhibiting a poor tolerance for lead to help prevent precipitation. In some cases, complete replacement of lead ob tains equal or better drying when the calcium is activated by the pres ence of cobalt and manganese. Calcium often eliminates the tendency of the enamels and dipping varnishes to exhibit silking or blooming. It has pigment wetting and dispersion characteristics in grinding liquids. zinc naphthenate is noted for its ability to inhibit the wrinkling which is often induced by sizeable quantities of cobalt, especially in baked finishes. Use of three parts zinc to one part cobalt practically eliminates this tendency. While zinc slows the initial set and dry, it does not usually affect the overall drying time. It is said to have a pronounced tendency to inhibit gelation. Ibis inhibition.is also said to be an effective preventative of skinning in some alkyds. Because of its wetting power for pigments, zinc is used as a mixing and grinding agent. It also is used as a fungicide. Copper naphthenate is of prime interest as a fungicide and pre servative. Use as a drier is severely restricted by its color. Aluminum stearates are used as flatting agents and suspending and bodying agents. Rare Earth naphthenate must be baked, it cannot be used in air dry finishes. It wild, gel coconut fatty esters.
0007-PMC-000000183
CIASS 900 -
page 9-1
M&y 19, 195U R. S. Taylor Cleveland
Soaps or salts of carboxylic acids of classes 600 and 700 contain ing metals of the Uth through 8th major and minor periodic groups, ineluding mixed soaps also derived from phenols. (Rosin salts are classi fied 3320 - 3329).
900 - 919 Group 17, major and minor (lead, tin, Ti, etc.)
920 - 929 Group V, major and minor (antimony, Bi, Va, etc.)
930 - 939 Group VI, major and minor (chromium, molybdenum, etc.)
9U0 - 9h9 Group VII, major and minor (manganese, etc.)
990 - 969 Group VUI, (cobalt, iron, nickel, etc.)
970 - 999 Combinations of any class 9 compounds with or without class 8 compounds.
0007-PMC-000000184
Page 9-2 May 15, 1951*
Number i Metal
Color
NVM Body Gard. % GHT Max. Remarks
#/G 75f .
ACETATES
9A13 9Ah9 9A?2
9A$9
55 Lead(.3H0) 100 25.UMang. pfHg0) 100
22.I*Mang.(.J*j0) 100
23 Cobalt(.l*H20)100
Solid White Solid Pink Solid Pink
Solid Pink
Drier Mftr. Drier Mftr. Drier Mftr.
Drier Mftr.
1*. 8 (Bulk) 7.5 7.5 "
7.1 ''
FATTI ACIDS (UltEDENTIFIED)
(9W2) 6 Zirconium 28 A (913) 21* lead . (9L7) 6 Cobalt
U
Flock Adhesives Odorless; Lowe Odorless; Lowe
7.1*0
LINOLEATES
*(51*3) 1.2 Manganese *(37l*) (13 Lead .
. * 1 Manganese
NAPHTHENATES
3l*.5 A bh A
Ifl Dark
7.00 8.00
*(1*090) 21* Lead *(9Cl6) 21* Lead
-
*(1*230) 10 Lead
*(1*091) 6 (9C21) 6
*(9Y1) 6
Manganese Manganese Manganese
*(1*231) 2 Manganese
*(1*092) 6 (9C22) 6 (9T2) 6
Cobalt Cobalt Cobalt
*(1*232) 2 Cobalt
(3230) 6 Iron (9Dl*) 6 Zirconium
7$ R-W 13 100 2l*0 17
Hi Flash; Cut:'in oil
9.90 10.61
9.58
32 A1 11
7.50
$7 A-K 70 A-B
60-70 A-K
16 18 16
7.73
Restricted Source
7.98
Rejected (1*091) for (1*231) 8.20
20 a 5^a i 16
6.8?
56 Alt Dark 70 Al-H Dark Restricted Source
7.93 7.98
A-B Dark Rejected (1*092) for (1*232) 7.85
16.8 Al*-A Dark
80 J 28 A
Dark 1*
Acme Automotive
6.95
8.37 7.1*0
(9D71) ,13.5Lead ' 0.1*8Manganese
Acme
8.1*6
9A70 /21 lead 'it Manganese
Paste
L.O.H.
8*62
* S-W Manufacture
Note: Flash point of all liquids is 10f>F. Minimum, TOC, unless otherwise stated.
0007-PMC-000000185
Number % Metal
OCTOATES
*(9A9) 2U Lead (9C7) - 2U Lead
(9A1U) 2U Lead
<9A10) 10 Lead
(9C9) 6 Manganese (9A71) 6 Manganese
(9C8) 2 Manganese
<9567 6 - (222U) 6
(9A6U) 6
Cobalt Cobalt Cobalt
*(9C18) 2 Cobalt (9TU) .'2 Cobalt
MISCELLANEOUS
(993) UU Lead (Uo66)
Color
NVM Body Gard. % GHT Max. Remarks
60 A-B 10
63 Aii-c 7 5U 3 Std.' Odorless
30 A5-A 10
UU A-D Dark i U5 Odorless
IS Dark
37.7 A2 16 B Uo
Purple Purple
Purple Odorless
lU 1U.U
Purple Purple
79 Paste Gray Nuact Paste 30 Gel 6 5/6 Nuade
Page 9-3 May 15, 195U
#/G 75f .
8.90 9.17 9.33
7.5
7.5 7.5
6.81
7.U* 7.58 7.U7
6.73 6.86
13.9 7.0
ifS-W Manufacture Notes Flash point of all liquids is 105F. Minimum, TOC, unless
otherwise stated.
0007-PMC-000000186
Page 9-1} May 15, 1951}
Remarks
lead naphthenate is widely used as a polymerization catalyst, promoting through drying.' It must be used in combination with either cobalt or manganese, in order to effect a tough, resistant film. It cannot be used with aluminum paints because it destroys leafing properties#
Cobalt naphthenate is generally used with lead to promote rapid surface drying. Excessive use will promote wrinkling, particularly on baking#
Manganese naphthenate is regarded as an intermediate drier, having somevhat of an affect on both through- and surface-drying properties. It must be used carefully in white paints as a pink stain may develop# . Use is primarily in baking finishes.
0007-PMC-000000187
pa~e 20-I
R. D. Eolrir-er. Cl'ir-o, 111. An-ust 11, 1-2.
C!"ss 1000 thru 1099 - Phenolic Compounds and their met"! compounds, inclndi:''halo~en substituted, divided into the followin'- subclasses
1000 - IOC? - Phenol
1.010 - 1019 - Cresols and Xylenols (Cresylic acids, etc. 1 and er-rl
1020 - 1029 - All other PllrfL and aryl phenols
l'**'''- - 10* 9 - Phenols, halo-enated (chlcro phenols)
10':o - 10"o - K-phthols
105-0 - 1069.- Dihydric phenols (hydroquinone, hisphenol, etc.)
XO^c - 109? - Miscellaneous phenois not previously covered.
50 . c some of the materials in this class are used as fungicides, we quote the 'Vllcwin- from R. fc P. Bulletin # 1*4.2 dated March 2*t, 1?5>0:
* X. The followin'* has been received from the Industrial Sales Department: Cenerallv spealdLn", on any material cornin'" under the Federal or State Insecticide. Fun'd.cide, and Rodenticide acts, the Technical Department will assume responsibili+v- for technical preparation.
The Technical Department will then furnish information as to label ara-lvses, directions for use, and precautions to be observed, in use and handlin'; of product -rd finished product.
The Sales Dep~.rtmoat "Till then nrcnaso final l~bel ccay to ve *arrc"e'" >v le "1 and technic-l
2. This mlir applies to such products as Kenwood Se-lers, Wood Prsser*"t5/'es, ~nd St'inc th't have incorporated into them certain poisonous or toxic
components.n
0007-PMC-000000188
10-2 August U, 19?2
Humber Prev. Ho. _ Hame
(10C2) (locli) (io a ?)
10C3 10C1
(307U) (1*071) (889) 187U
Synthetic Phenol
1, 3, 5, Xylenol Cresylic Acid Para Tert. Butyl Phenol Octyl Phenol
196U (ion) lOClit (lopit)
07733 2260
Pentachlorophenol, Tech. Fentachlorophenol Sol. Ha Pentachlorophenate Toxic Preservative
20?2 (2231) (10T1)
W110?
Tetrachlorophenol Tetrachlorophenol Sol. Tetrachlorophenol Sol.
(10A3)
10C1? 10C6 1061 (306?)
AV273 2210 21m lOAlt
HV1283
Beta Haphthol Sol. B-oxy Naphthoic Acid Bisphenol A Hydroquinone Hydroquinone Sol.
IOC?
(1082) (1767) 10C13
CH2800 (1761;) 171?
Dichloro Diphenyl Dihydroxy Methane Tech. Guaiacol Guaiacol Sol.
Sodium Ortho Phenyl Phenate Tetrahydrate
Melting point F S.W.Method 10U h?U.?l 206-210 1*&.?1 161-16? 3ti? 1;?U.?1
120-1?6 l*?l*.c
302 U?U.?l 33o approx.
3?1 approx.
Body
Liquid Liquid Flakes
Flakes AFlakes A-
Flakes AB
A-
Flakes Crystals A-
Powder
AAFlakes
0007-PMC-000000189
10-3 August 11, 1952
Color
Lt. Pink Dark Pale White White
Dark
Buff
12
Tan
10 ll*
6
Lt, Yellow Cream White WW
Off-White
10
10 White
HVM
100 100 100 100 100
100 U1 100 1*3
100
20
100
20 100 100 100 9.2
100
loo 18.3 100
Solvent
Hone Hone Hone Hone Hone
Bulking Value Gals/lOO#
13.2 12.75
Flash Point F TOC
#/Gal.
975F
8.92 8.1*2* 8*60
Hone
(2650)
Hone
79(31*8)12(1*021)9(2003)
Hone
5o(l*oli6)5o(3l*8)
(2)
75(1*01*6)25(1167)
None None None
(1168)
ll*.l 3l*.0
H*.3
33.3 8.1*
10* 9.61* 7.85
7.60 9.37 7.1*3
'35 7.62
None
None
..(31*8)
None
18.6
8.95 105 6.83
Number
(10C2)
(loci*)
(1Qa 5) 10C3 10C1
1961*
(ion)
lOCll*
(10Pl*)
2052 (2231)
(ion)
(10A3)
ioci5 loc6 106l
(3065)
loc5
(1082)
(1767) 10C13
0007-PMC-000000190
Pore 10-U August 12. :52
noc2) (locii)
IOC3 10c6
lv6t ) (10T1) ) ClOYU) )
10C13 ) 10C1>4 ) ICC*? )
20?2 )
(2271)
>
J
(10T1) )
''10A3) 1061 j (306?) /
(1062) / (l7 67) )
10C1
Used in Used in Used in Used in
Remarks
and U310.
Used in the manufacture of wood preservatives.
Used as emulsion preservatives.
Used as
Used as "as-checking and wrinkle inhibitors. Used as anti-skinning a~ent. Stabiliz: er in cable lacquers.
0007-PMC-000000191
CLASS 1200
Esters of Monohydric Alcohols and Monobasic Acids
Page 12-1 E. Kulish
Chicago February 3> 1955
1200 1219 1220 1239 12U0 12U9
1250 1269 1270 1289 1290 1299
Volatile esters with initial boiling points (AS'EM D-1078) up to 100C.
Volatile esters with initial boiling points (ASM D-1078) above 100C.
Mixtures of volatile compounds which contain a substantial fraction of volatile esters (many "thinners" for N/C and other lacquers, vinyl coatings, etc.).
Non-volatile esters derived from alcohols of Ci through Cq .
Non-volatile esters derived from alcohols of C9 and higher.
Open.
0007-PMC-000000192
Page 12-2 February 3 1955
Material Number
(1202) (12C13) (120U) (12C6) (1222)
(12C7) (1223) (l2Al) (12F1) (1225)
(123U) (1232) (12C19) (12P1) (12C18)
(12C17) (12C25) (12C2li) (12C23) (1252)
(1253) (12F6) (12F5) (12U2) (12U3)
(12F2) (1213) (12DU0) (12C22) 12C9
1272 12C16 12C8 (12C11) 12C20
12C12
Previous Number (1168) (2611) (1170)
(1670)
(1769) (262U) (20U6)
(2688) (1868)
(1616) (1617)
Material
Ethyl Acetate No Propyl Acetate Isopropyl Acetate Propyl Isobutyl Acetate N. Butyl Acetate
Isobutyl Acetate Sec. Butyl Acetate Methyl Acetate-Methanol Methyl Cellosolve Acetate Amyl Acetate
Cellosolve Acetate Methyl Amyl Acetate Butyl Lactate Butyl Carbitol Acetate Butyl 2,h-Biehiorc-phenoxy acetate
Butyl 2 j, U,5~Trichloro~phenoxy acetate Vinyl Acetate Isc-octyl Ester of 2,ii D Technical Butyl Stearate Butyl Stearate
Hercolyn Hercolyr. D Plasticizer KP-120 Solvent Blend Solvent Blend
Recovered Lacquer Thinner Lacquer Wash Thinner Lacquer Thinner Camauba Wax Solution (20^) Camauba Wax
Beeswax, Pure Emulsowax 12lU Petrolite Crown 36 Emulsion Wax Crown #15
Emulsion Wax 1530
0007-PMC-000000193
u h im;.,
Distil. Rang C. Test Method U30.3
72-80 93-105 8U-90 105-121* 115-130
110-119 103-115
55*65* 137-11*7 110-155
11*5-160 138-11*5 165-190 235-250
Flash Point F. - T.O.C. Test Method
1*29.5
l*o 63 51*
100
90 85 30 132 93
150 113 176 2U0 200
23
360 370
361
Sp. Or. Wt/fcal.
75 F.
75 F.
Test Method
1*01.2
0.898
0.877 0.866 0.870
0.873
7.1*9
7.31 7.22
7.25 -7.28
0.862 0.859
1.003 0.858
7.18
7.15 7.U 8.36
7.11*
0.970 0.855 0.979 0.975 1.237
ll332
1.136 0.862 0.853
8.08 7.11 8.16 8.13 1.031
lino
7.79 9.U7 7.18 7.09
1.017
1.017 0.961
0.831 0.808
8.1*8 8.U8 . 8.01
6.93 6.7l*
0.837 0.836
0.885
6.98 6.97 7.37
0.957 0.981* 0.968
0.968
1.056
7.98 8.20 8.07
8.07
8.80
Page 12-3 February 3, 1955
Bulk Gal/100#
Soft Point F. Test Meth.
1*51.12
Material Number
(1202)
(12C13) (I20li) (12C6) (1222)
(12C7)
(1223) (12A1) (12F1)
(1225)
(123U) (1232)
(12C19) (12P1) (12C18)
(12C17)
(12C25) (12C2U) (l2C23) (1252)
12.0 12.5 12.2
12 .U 11.u
82
Hill 162 180
180
181
(1253) (12F6) (12F5) (12U2) (12U3)
(12F2) (12Y3) (l2DliO) (12C22) 12C9
1272 12016 1208 (12Oil) 12020
12C12
0007-PMC-000000194
I
Page 12-U February 3, 1955
Remarks Because of their high solvent power for nitrocellulose, the esters are extensively used as an ingredient of nitrocellulose lacquers and other "types of pyroxylin coatings. A blend of fast and medium boiling esters with appropriate alcohols and diluents yields thinners and solvent mixtures of excellent solvency and blush resist ance, good flow and leveling, and compatibility with various resins and oils. Esters are also solvents for camphor, mineral and vege table oils, natural resins, and many synthetic resins. Ester, kauri, manila, pontianak, and dewaxed damar gums dissolve completely in most esters; shellac is partially dissolved; gum rubber is softened but not dissolved. Butyl Lactate is not subject to auto-hydrolysis and is not hygro scopic. Although it is not a solvent for cellulose acetate, solu tions of cellulose acetate containing butyl lactate deposit clear films on evaporation. Butyl Stearate is a stable oleaginous material used in the manufac ture of polishes and in coatings which are to be polished and is used as a lubricant in molding synthetic resins. The waxes in this group are used in furniture cream, self-polishing wax, household wax, and many other such products.
0007-PMC-000000195