Document 3eBNxvjKQGyo8o02LXvKRORn0
TYRIN CPE PILOT PLANT REACTIVE CHEMICAL REVIEW
JULY 18, 1985
V
ST
JAMES B. AKERS $ PE.
^onftdfntiai DO 005204
REACTIVE CHEMICAL REVIEW OUTLINE
I. PROCESS FLOWSHEET II.CHEMICALS AND MATERIALS USED IN THE TYRIN CPE PILOT PLANT
III. CHEMICAL PROPERTIES
IV.REACTIONS
V. PROCESS STEPS A. DETAILED DRAWINGS
B. POSSIBLE PROBLEMS C. SAFETY MEASURES
"
VII, TYPICAL PILOT PLANT RUN CHRONOLOGY
VIII. APPENDICES
A. CHEMICAL SAFETY CHECKSHEETS AND MATERIAL SAFETY DATA SHEETS
B. POLYETHYLENE DUST EXPLOSION DATA
C. T-DET STABILITY DTA
D. REACTION DTA'S E. CHLORINE COMPATIBILITY GUIDELINES
JBA: 7/85 OH1
CONFIDFNTIAL DO 005205
Tyrin CPE Pilot Plant
00 00520&
CHEMICALS AND MATERIALS USED IN THE TVRIN CPE PILOT PLANT
PROCESS
AIR CHLORINE CHLORINATED POLYETHYLENE (CPE) HYDROCHLORIC ACID NITROGEN POLYEHTYLENE (PE) POLYVINYLPRROLIDONE (PVP) TALC T-DET N-9.5 (NONYL PHENOL 9.5 MOLES ETHYLENE OXIDE) TETRAHYDROFURAN (THF) SODIUM CHLORIDE SODIUM HYDROXIDE WATER
MATERIALS OF CONSTRUCTION
ALLOY 20 = " CARBON- STEEL DERAKANE 470 DEVOE 244 HASTALLOY C MONEL 400 NICKEL POLYESTER PTFE LINED PVC TANTALUM TITANIUM TITANIUM PALLADIUM 31$ STAINLESS STEEL
APPLICATION
DRY CHLORINE DRY CHLORINE NEUTRALIZER SLURRY 50% CAUSTIC DRY CHLORINE DRY CHLORINE STEAM-ACID, ALKALINE NEUTRALIZER SLURRY WET-DRY CHLORINE, REACTOR SLURRY WATER, VENTS WET-DRY CHLORINE WET CHLORINE WET CHLORINE DRY CHLORINE, NEUTRAL RESIN
JBA: 7/85 OH2
CONFIDENTIAL. OO 005207
MATERIAL CHLORINE
CPE HCL N2 POLYETHYLENE PVP TALC T-DET THF CAUSTIC, 50%
JBA: 7/85 O
PROPERTIES
SEE APPENDIX A
PHYSICAL DATA
STABILITY
BP - 34.1C
HIGHLY REACTIVE
VAP.P 82 PSIA @ 20C HALOGEN
INCOMPATABILITT
MANY ORGANICS NH3, H2 MOIST OR HOT STEEL, FINELY DIVIDED METALS. TITANIUM WHEN DRY.
SOLID CRUMB
DECOMPOSES AND EMITS HCL AT HIGH TEMPERATURE.
-
BP - 116.7C VAP.P-0.5 PSIA
20C
CONTACT WITH METALS MAY
LIBERATE H2 GAS.
BASES AND MOST METALS. OXIDIZING MATERIALS
GAS
HIGHLY STABLE. ASPHYXIANT.
POWDER
FLAMMABLE. DUST EXPLOSION HAZARD. SEE APPENDIX B
-'
POWDER
HYGROSCOPIC. NON-TOXIC. STABLE TO 225 C (DSC)
POWDER
LIQUID PLASH PT. 260C
PLASH PT. 17C
INERT TO PROCESS CONDITIONS
STABLE TO 400C
RCL 1079 APPENDIX C
CONCENTRATED OXIDIZING OR REDUCING AGENTS
FORMS EXPLOSIVE
STRONG BASES.
PEROXIDES FROM
PROLONGED EXPOSURE
TO AIR.
BP 145C
REACTS WITH WATER, ACIDS, SOME ORGANICS, AND AMPHOTERIC METALS SUCH AS ALUMINUM.
DO 005208 CONFIDENTIAL
REACTIONS SEE APPENDIX D
PE + CL2------------------------------------------- - CPE + HCL
HCL + NAOH--------------------------------------- > NACL + H20
T-DET + CL2 ---------------T-DET + 50% NAOH ----TALC + CL2 -----------------TALC + 37% HCL -------
NR TO 250C NR TO 200C NR TO 250C NR TO 230C
TALC + T-DET ----------PVP + HCL --;---------------PVP + PE -----------------------
NR TO 400C NR TO 250C NR TO 250C
PVP + TALC ------------------
NR TO 250C
PVP + T-DET ---------------PVP + PE + T-DET --
NR TO 250C NR TO 230C
A HR - - 1070 BTU
LBCL2
A HR - - 34162 BTU
RCL 1081 RCL 1082 RCL 1070 RCL 1072 RCL 1068 DTA _ DTA DTA DTA DTA
JBA: 7/85 OH4
CONFIDENTIAL DO 005209
REACTION
CL + pyp------------------------------------- > EXOTHERM BEGINNING 30C
PEAK
85C
END
115C
DTA
PRESUMED REACTION
1 PREFERRED CHLORINATION SITE 2 ACID HYDROLYSIS CHLORINATED PVP IS KNOWN TO BE THE ACTIVE ANTIAGGLOMERATION AGENT.
JBA: 7/85 OHS
DO 005210 CONFIDENTIAL
MATERIAL COMPATIBILITY - GENERAL PROCEDURE
IT IS STANDARD PROCEDURE TO REPLACE A FITTING OR PIECE WITH ONE OP IDENTICAL MATERIAL UNLESS OTHERWISE INSTRUCTED BY THE ENGINEER IN . CHARGE.
A MAJOR CONCERN IS PREVENTING THE CONTACT OF TITANIUM OR TITANIUM PALLADIUM ALLOY WITH DRY CHLORINE. TITANIUM FITTINGS AND PIECES ARE COLOR CODED PURPLE AND KEPT IN A DEDICATED, LOCKED CABINET. CHLORINE'S REACTIVITY WITH TITANIUM, ORGANICS AND OTHER MATERIALS IS ( FREQUENTLY STRESSED IN SAFETY MEETINGS.
ALSO, ALL LUBRICANTS, ANTI-SEIZE COMPOUNDS, ETC. THAT MIGHT COME INTO CONTACT WITH CHLORINE MUST BE CLEARED BY THE ENGINEER IN CHARGE (SEE APPENDIX E).
JBA: 7/85 OH6
(
.C0^IOENTrAL DO
POLYETHYLENE LOADING
PROBLEM DUST EXPLOSION
SAFETY MEASURES
1. SMALL AMOUNTS OF POWDER (20 LB) ARE USED.
.2 STORAGE BOXES HAVE LID ON.
3. STORAGE AREA IS WELL VENTILATED AND OPEN.
4. GOOD HOUSEKEEPING PRACTICES ARE FOLLOWED.
JBA: 7/85 OH 7
OONFTDFNTTAL DO 005212
Chi orine Vcqpori
Knockout Pot
DO 005213
POSSIBLE PROBLEM OVERPRESSURE
VAPORIZER
POSSIBLE CAUSES
SAFETY MEASURES
HIGH TEMPERATURE WHILE BLOCKED IN
1. NORMAL OPERATING MODE IS VAPOR ONLY WITH OPEN VAPOR
WITH LIQUID PRESENT.
LINE (120 PSIG) TO CHLORINE PLANT.
2 DOUBLE BLOCK BLEED/PURGE
WITH gEBAR MANUALLY BLOCKED PROCEDURE FOR
SHUTDOWN.
3. FAIL-SAFE TEMPERATURE CONTROL LOOP. AIR, WATER, ELECTRICITY, OPEN CIRCUIT FAILURE PROTECTED. (CRIT. INST., QUARTERLY)
4. LIQUID LEVEL TRANSMITTER. (CRIT. INST., QUARTERLY)
5-. THREE -PRESSURE . INDICATORS .
6. REDUNDANT ULTRASONIC LEVEL DETECTORS, FOUR LEVELS. LIQUID PRESENT ALARM. (BEING INSTALLED)
7. PRESSURE RELIEF TO SCRUBBER. (CRIT. INST., SEMI-ANNUALLY)
CONFIDFIMTTAI. DO 005214
NCL3 ACCUMULATION
VAPORIZER (CONT.)
LIQUID FULL
CHLORINE-AMINE REACTION
1. OPERATING TEMPERATURE IS ABOVE DEWPOINT.
2. VAPORIZER IS ISOLATED BY DOUBLE BLOCK AND BLEED/ PURGE WHEN NOT AT TEMPERATURE.
3. LIQUID LEVEL TRANSMITTER WITH HIGH LEVEL ALARM. (CRIT. INST., QUARTERLY)
4. REDUNDANT ULTRASONIC LEVEL DETECTORS, FOUR LEVELS. LIQUID PRESENT, HIGH LEVEL, AND VERY HIGH LEVEL ALARMS. (BEING INSTALLED.)
5.- PRESSURE RELIEF TO SCRUBBER (CRIT. INST., SEMI-ANNUALLY)
'
1. VAPOR OPERATION MINIMIZES FORMATION.
2. VAPORIZER N2 PURGED QUARTERLY. (CRIT. INST.)
3. VAPORIZER STEAM PURGED ANNUALLY. (CRIT. INST.)
JBA: 7/85 OH9
confidfnttal 00 005215
VAPORIZER (CONTINUED)
REACTOR SLURRY BACKUP TO VAPORIZER
REACTOR PRESSURE HIGHER THAN VAPORIZER PRESSURE
1. CHLORINE VALVES ARE BLOCKED WHENEVER THERE IS NOT A POSITIVE CHLORINE FLOW.
2. VAPORIZER OPERATING PRESSURE IS 120 PSIG. REACTOR RELIEVES AT 100 PSIG.
3. VAPORIZER LOW PRESSURE ALARM IS SET AT 105 PSIG. (CRIT. INST., QUARTERLY)
JBA:7/85 DOW CONFIDENTIAL
00 00521f> CONFTDFNTIAL
Vaporizer Knockout Pot
CONFIDETNTIAt
Reqctor System
PROBLEM OVERPRESSURE
REACTOR
SAfETY MEASURE 1. THE COMPUTER MONITORS PRESSURE AND AT 80 PSIG
IT GIVES AN ALARM AND REQUESTS AN EMERGENCY TALC INJECTION.
2. ACCORDING TO PROCEDURE, THE OPERATOR BLOCKS THE CHLORINE VALVE AND STOPS THE PROGRESS OF THE TEMPERATURE PROGRAM AT 80 PSIG.
3. AT 90 PSIG, BOTH A SCAM ALARM AND A COMPUTER HIGH PRESSURE ALARM ARE TRIGGERED.
4.-- IF NECESSARY, COOLING CAN BE APPLIED TO THE - - 'REACTOR.
5. THE REACTOR ITSELF IS RATED TO 300 PSIG. THE 1.5 INCH RUPTURE DISK (0.5 INCH WOULD BE ADEQUATE) WILL OPEN TO THE VENT AT 100 PSIG (CRIT. INST., QUARTERLY).
6. THE REACTOR PRESSURE TRANSMITTER IS INSPECTED ON THE CRITICAL INSTRUMENT PROGRAM QUARTERLY. THERE ARE TWO PRESSURE INDICATORS ON THE REACTOR.
JBA; 7/85 OHIO
DO 005219 CONFTOFNTTAL
PROBLEM HIGH TEMPERATURE
SAFETY MEASURE
1. THE COMPUTER TRIGGERS ALARMS AT FIVE AND TEN DEGREES (CELSIUS) DEVIATION FROM SET POINT.
2. A TEMPERATURE INCREASE MAY BE ARRESTED BY DECREASING CHLORINE FLOW OR BY COOLING WITH THE JACKET.
3. THE COMPUTER AND INSTRUMENTATION USE ONE TYPE K THERMOCOUPLE. A SECOND THERMOCOUPLE IS AVAILABLE FOR MANUAL CHECKING OR SWITCH OVER OF CONTROL IN THE EVENT OF FAILURE OF THE FIRST THERMOCOUPLE.
DRY CHLORINE IN THE THE REACTOR
-- "
JBA: 7/85 OH11
1. THE REACTOR IS KEPT FILLED WITH WATER AT ALL TIMES, INCLUDING BETWEEN RUNS.
2. THE CHLORINE FLOW IS ALWAYS BLOCKED WITH AT LEAST TWO VALVES. IF THE CHLORINE FLOW" -
"WILL NOT BE.RESTARTED WITHIN A FEW HOURS, A NITROGEN PURGE OF THE LINE IS INITIATED.
3. WHEN THE REACTOR WILL BE DOWN FOR A SIGNIFICANT PERIOD OF TIME, THE VAPORIZER AND CHLORINE LINE ARE EMPTIED. THE VAPORIZER IS ISOLATED FROM THE CHLORINE LINE
WITH A DOUBLE BLOCK AND BLEED/PURGE, AND THE CHLORINE LINE TO THE REACTOR IS PURGED WITH NITROGEN. THE REACTOR IS STILL KEPT FULL OF WATER.
confidential do 005220
PROBLEM SEAL FAILURE
JBA: 7/85 OH24
SAFETY MEASURE 1. DOUBLE MECHANICAL SEAL WITH WATER AS
THE INTERMEDIATE FLUID.
2. NORMAL SEAL POT PRESSURE IS 205 PSIG
3. SEAL POT HAS A LOW LEVEL ALARM AND A LOW PRESSURE ALARM SET AT 145 PSIG (CRIT. INST./ QUARTERLY).
CONFTDFNTTAl. DO 005221
Neuivqlizer
CONFTDFNTTAL DO 005222
PROBLEM OVERPRESSURE
HIGH TEMPERATURE
OVERFLOW
RESIDUAL NAOH IN DUMPED RESIN
JBA: 7/85 OH12
NEUTRALIZER SAFETY MEASURE
1. ATMOSPHERIC VESSEL. rOUR INCH VENT TO ATMOSPHERE.
1. NORMALLY OPERATED AT BOILING POINT OF WATER.
2. TEMPERATURE CONTROLLED.
1. LEVEL CONTROLLED WITH POSITIVE PURGE ON LEVEL TRANSMITTER. HIGH LEVEL ALARM.
1. AFTER NEUTRALIZATION IS COMPLETE, THE RESIN IS THOROUGHLY WASHED WITH COLD WATER TO COOL IT AND REMOVE ANY RESIDUAL CAUSTIC.
DO 005223 CONFTDFNTTAl.
Caustic lank
Neutralizer
l r0NF1nFNllW 00 OOS^4
PROBLEMS HIGH TEMPERATURE
HIGH PRESSURE
JBA: 7/85 OH13
CAUSTIC TANK SAFETY MEASURE 1. TEMPERATURE IS CONTROLLED AT 35C. 2. VESSEL IS RATED TO 110C. 3. HIGH TEMPERATURE ALARM AT 50C.
1. THE VESSEL IS PADDED WITH NITROGEN AT J)- PSIG.-
2. THE PSV IS SET FOR 15 PSIG. 3. THE VESSEL'S MAWP IS 20 PSIG.
CONFXDFNTTAL. DO 005225
Fluid Bed Dryer
00 005226 C0^T05NTTAi
PROBLEM HIGH TEMPERATURE (CPE FIRE)
DUST EXPLOSION
JBA: 7/85 OH14
FLUID BED DRYER SAFETY MEASURE
1. INLET TEMPERATURE CONTROLLED AT 45-60C. 2. HIGH TEMPERATURE ALARM AT 95C. 3. TUBE BUNDLE CLEANOUT ON CRITICAL
INSTRUMENT LIST SEMI-ANNUALLY. 4. BED PLATE CLEANED REGULARLY AS NECESSARY.
ARC GASING AND DECOMPOSITION AT 190C RUNAWAY AT 251C AT COW RATES WHICH DID NOT CUSTAIN THEMSELVES WHEN TESTED TO 300C.
1. CPE IS NOT CONSIDERED TO BE A DUST EXPLOSION HAZARD BY ITSELF. THERE HAS BEEN A PROBLEM WITH ADDITIVES SUCH AS CAST. ONLY TALC IS ADDED TO THE CPE IN THE PILOT PLANT DRYER.
r.ONFTDFNTTAl. 00S727
DO
PROBLEM FLAMMABILITY REACTION WITH STRONG BASE
PEROXIDE FORMATION
JBA: 7/85 OHX5
RESIN ANALYSIS - THF TEST SAFETY MEASURE
1. One gallQn metal cans are used as per slp
405. 2. IT IS HANDLED ONLY IN THE FUME HOOD.
1. DISCUSSED IN SAFETY MEETINGS. OPERATORS ARE AWARE OF THE HAZARD.
2. RESIN IS HAND SQUEEZED TO REMOVE AS MUCH LIQUID AS POSSIBLE PRIOR TO DISSOLUTION IN THF.
3. THE CAUSTIC IS ADDED TO THE NEUTRALIZER FROM A SEPARATE ONE GALLON CAUSTIC POT IN ONE GALLON ALIQUOTS.
4. PROCEDURES PROHIBIT ADDING CAUSTIC - DIRECTLY.
1. WHEN A NEW CAN OF THF IS OPENED, IT IS LABELED WITH THE DATE.
2. ANY OPEN CAN IS USED UP BEFORE ANOTHER CAN MAY BE OPENED.
3. DURING THE PROCEDURE, WATER IS ADDED TO THE THF (PREVENTING PEROXIDE FORMATION).
4. THF, WATER WASTE ARE PLACED IN THE LAST EMPTY CAN OR A SPECIAL PLASTIC CONTAINER AND LABELED THF + WATER.
5. THE WASTE CONTAINERS ARE DISPOSED OF BY THE PRODUCTION PLANT.
DO 005228 confidential
TYPICAL PILOT PLANT RUN CHRONOLOGY
1. 20 POUNDS or PE, 250 GRAMS Or TALC OR 102 GRAMS OF PVP ARE WEIGHED OUT. 2. 25 ML OF T-DET ARE MEASURED. 3. THE T-DET IS DISSOLVED IN 189 POUNDS OF COLD POTABLE WATER. 4. THE TALC OR PVP, AS REQUIRED, IS ADDED. 5. THE PE IS ADDED AND ALLOWED TO AGITATE FOR A FEW MINUTES. 6. THE CHLORINE SYSTEM IS PRESSURIZED WITH CHLORINE AND PURGED OF
NITROGEN. 7. THE WATER IN THE REACTOR IS DRAINED AND THE PE SLURRY IS TRANSFERED
TO THE REACTOR. 8. THE REACTOR SLURRY IS HEATED, USING THE JACKET, TO 100C. 9. THE REACTOR IS VENTED TO THE DITCH. 10. THE REACTOR IS COOLED TO 95C. 11. THE CHLORINE VALVES ARE OPENED, AND THE CHLORINE Iff ALLOWED TO
FLOW AT 0 - .4 LB/MIN., AND THE TEMPERATURE IS ALLOWED TO "INCREASE AT 0 - .2C/MIN. AS PER THE PROGRAM. 12. AT 115C, 250 GRAMS OF TALC ARE ADDED IF THE PROGRAM CALLS FOR IT. 13. WHEN THE TOTAL AMOUNT OF CHLORINE (APPROX. 22.5 LB) HAS BEEN ADDED, AND THE FINAL TEMPERATURE REACHED (APPOX. 130C), THE CHLORINE FLOW IS SHUT OFF AND THE REACTOR IS COOLED. 14. WHEN THE SLURRY HAS COOLED TO 85C, THE TRANSFER VALVES ARE OPENED AND THE RUN MAY BE PRESSURED TO THE NEUTRALIZER WITH NITROGEN.
JBA: 7/85 OH16
DO 00S279
CONFIDENTIAL.
15. THE REACTOR IS THEN REFILLED WITH WATER. 16. THE NEUTRALIZER INITIALLY HAS A 20 PERCENT LEVEL OP POTABLE WATER. 17. AFTER THE RUN IS IN THE NEUTRALIZER, THE LEVEL IS AGAIN DROPPED
TO 20 PERCENT. 18. THE NEUTRALIZER IS THEN REFILLED TO 60 PERCENT ANDD HEATED TO 95 C. 19. THE LEVEL IS THEN DROPPED TO 20 PERCENT. 20. STEPS 16 AND 17 ARE REPEATED FOR 30 MINUTES. 21. WITH THE LEVEL AT 60 PERCENT AND THE LIQUOR HOT, ONE GALLON OF
CAUSTIC IS ADDED. 22. AFTER 30 MINUTES, THE RESIN IS SAMPLED AND IT'S PH IS DETERMINED
BY USING THE THF TEST. 23. IF THE RESIN IS NOT NEUTRAL AFTER TWO HOURS, AN ADDITIONAL GALLON
OF CAUSTIC MAY BE ADDED. 24. WHEN THE RESIN IS NEUTRAL, THE 20-60 PERCENT WASHING CYCLE IS
RESUMED FOR 45 MINUTES. -25, THE SLURRY IS-THEN COOLED TO LESS THAN 45C.
26. THE SLURRY IS DUMPED INTO A SIPHON BARREL TO DRAIN. 27. THE RESIN IS THEN EXPRESSED AND LOADED INTO THE DRYER WITH 125 GRAMS
OF TALC. 28. COLD AIR AND NITROGEN ARE BLOWN THROUGH THE RESIN UNTIL IT IS DRY
ENOUGH TO FLUIDIZE. 29. THEN THE NITROGEN IS SHUT OFF ANDD THE AIR TEMPERATURE IS INCREASED
TO 60C. 30. WHEN THE RESIN APPEARS DRY (THIS IS OBVIOUS WITH EXPERIENCE), THE
HEAT IS TURNED OFF AND THE RESIN IS FLUIDIZED WITH COOL AIR FOR A FEW MINUTES. 31. WHEN IT IS COOL, THE RESIN IS DUMPED INTO A BOX AND TAKEN TO THE LAB FOR ANALYSIS. JBA: 7/85 OH17
D0 005230
OONFTDFNTTAl
APPENDIX A CHEMICAL SAFETY CHECKSHEETS AND MATERIAL
SAFETY DATA SHEETS
JBA: 7/85 0H18
CONFTDFNTTAl 00 005231
CUBICAL SAFETY CHECXSHEET
To B* CcmpltJ By Any Uanrs For All Cfowlcals
CHEMICAL
CYSTIC 50'/. W/w MELT IMS POINT
EXPLOSURE (pp)
VAPOR PRESSURE 1.5 VMM*
<1+ 2X>*C
BOILING POINT V\Yf./-- 145* c
EXPLOSIVE LIMITS
n/a
FLASH POINT
n|a
____n/a IGNITION TS4P.
CORROSIVENESS Hl<oM CHEMICAL REACTIVITY <Tgh)- LOW STABILITYtTo pH CHANGE, HEAT, LIGHT 6oOC>
-
USING SAFETY CONTAINER M I A
TOXIC PROPERTIES
AvjaiD
IM65T\okJ . 7
EWSKliO CONTACT, --- r------ ------------------ 7
/M hM-ATtosj
PROTECTIVE EQUIPMENT TO BE USED:
MONOGOGGLES
X
FACE SHIELD
X
GAS MASK
SLICKER SUIT
X
RUBBER BOOTS
X
RUBBER GLOVES
X
FUME HOCO
_
SPECIAL mECAUTIONS Avo\t> Au-
6Ye/ S\Clio
R6ACT v4 v-m Aluminum, ^/
/
1
BfcteS. /
BIohze
OTHER_________ ___________
HAVE YOU READ THE TOXICOLOGY SHEET ON IS THE CHEMICAL OR MIXTURE:
THIS CUBICAL? (ye?) GROUP LEADER DiW*.
NO
SUBJECT TO TSCA7
ON TSCA INVENTORY?
@)
NO
noQimo-ij-z]
USERS SIGNATURE
DATE
PLEASE COI^IW WITH SUPPLIER
USED FOR RAO ONLY7
YES
4j)
jjrt *'*'*
/i }t<)?4 /fit*
IN COMPLIANCE WITH ALL TSCA RULES A ORDERS YES
MFtOFNT 1AL NO cNh
DO 005232
ii i /% s~~
-- //^AS
c
material
safety
data
sheet
fas : 1
OOW CHEMICA- J.S.A. MIDLAND MICHIGAN R3S40 EMERGENCY 3HCNE: 51 7 - S3 S-M ' 0 C
effective date;: 2<* aug sr cat? print::: 5 sep sr
product coo-:: 1521s
product name: cajstic soda solution sox
ms: 0101
instlDiems 1 tr3i:a_ vauues-ndt s-:ciricationsj
SODIUM hydroxide WATER
: balance:
SECTION 1
PHYSICAL DATA
3oi_ing fdint: 233F, 1 a5c approx. : sol. in water: water solution
V A3 3RESS: 1.5
3.5 K 3 A 3 23C: SP. GRAVITY: i 2 CD <DE:NS.) 1.52 3/vL
va3 density <air = d:--------
: x volatile by vol: low (water)
( P 3 E A R A N CE an: 333R: COLORLESS to SLIGHTLY COLDRED.LIDUIO*- NC ODCP.
^ SECTION 2
31R E AN 3 EX^-LCS I ON..HAZ AR 3 D^ATA - _ -
RLASH POINT: NDNE 1ETH03 USED: NOT A33LICAE-LE
: FHM.MA3LE LIMITS : lcl: not a3plic jfl: not arplic.
EXTINGUISHING MEDIA.* NON-C0M5UST13lE.
SPECIAL FIRE RIGHTING E3D13*ENT ANO HA ZA3DS: IN WATER SOLUTION CAJSTIC CAN REACT WITH AMPHOTERIC METALS (SJCH AS ALUMINUM) GENERATING HYDADSEr WHICH I *5 FLAMMABLE AND/OR EX3L05IVE WHEN IGNITES.
SECTION 3
REACTIVITY DATA
STA3I.ITY: 3 R 3 3 JC T 43S0R5S WATER AND CARBON DIOXIDE FRO*' THE Air. <EE3 CONTAINERS C.OSED AND SEALED.
INC0M3ATI3ILITy: WATER AND ACID. PRODUCT IS STRONG CAUSTIC ALKALI. MAY REACT VIO.ENT.Y DR EX3LOSIVE.Y .I^H WATER. ACID. AND A NUMBER OF ORGANIC C 3 V3 D L11, C S CAUSTIC REACTS RA3IO.Y wITn ALJMINUM TIN. AND ZINC. IT WIL ALSO REACT WITH 3RJN2E AND 6RA53.
HAZARDOUS DECDM3C31TI 0\ PRODUCTS: NONE*
^ lA/ARDDUS 3D^YMER1Z4TI0N: WILL NOT OCCUR.
DO 005233
^ SECTION A
S3 IL L * LEAK. AvD DISPOSAL 3 R 0 D E DU< ES
OONFTDFNTTAl
4CTICN TC TAKE R D R SPILLS: ONLY TRAINED AND PRD3ER.Y 3ROT CTEC pERSDNNESHOULD 5 E INVO.VED IN I3ILL CLEANUP CPEJATI0N3. ACTING w *4 iJ T 1 0 U 1 L f V sma._ A;cr;-:\Ti. s3:lle df caustic soda solution should 6Z CA^':cJ..r
r*
MATERIAL S A F E t Y DATA S H E T P-,.: 2 OOW DiEMlCA. J.S.A. MID.AnD -ICHIJif. MS&4P E*ERGEJCY PHCNE: 517-EJ S-4 40 C
C-:crw" date: ?< ajg 34 date printed: 5 s:n b** .dojot (ccnt*d>: :ajstic soda solution eot
product code: 13213 f*sd: om
SECTION 4
$=>ILL, Li< AMD DISPOSAL 3 * DO D Us S (CONTINUED!
ACTION TC TAKE *D^ SPILLS: (CONTINUED) *.UM:: WIT-1 *ATER. DILUTE ACID* PREFERAB.Y ACETIC acid* may be used TD nEJTRA_IZE D\u Y THE FINAL TRACES of CAUSTIC A r T E R FLUSHING.
DISPOSAL METHOD; DISPOSAL of CAUSTIC SODA must MEET all "DlFAL* STATS AMD L D C A _ REGULATIONS. CONTACT THE DUJ CHEMICAL COMPANY =DR ADDITIONAL INFORMATION.
SCTIGN 5
HEALTH HAZAPO DATA
EYE: MAY CAUSE SEVERE IRRITATION WITH CO*<EAL INJURY AND RESULT IN PERMANENT IMPAIRMENT 3^ VISION. EVEN BLINDNESS. DUSTS MAY IRRITATE EYES.
S'-IN CONTACT: SHORT SINGLE EXPOSJRE MAY CAUSE SEVERE SKIN BL'F.r %k
SKIN ABSORPTION: a SINGLE PROLONGED SKIN EXPOSURE IS NOT wIKELY TO RESULT I\ A3SDR=TlDN Dr HARMFUL AMOUNTS. THE DERMAL LD50 HAS NOT BEEN DETERMINED.
STIO-:: May CAJSE 3 ASTRO INTEST I _N AL IRRITATION OR L.CERJTIG1. AND
VERE -BURNS 0r 7+E KQLTH AND THROAT. SINGLE DO S E - DR *.L LDL_ H S N D T *
EN DETERMINED.-^
--. .
-- -
INHALATION: DUSTS DR MISTS -<AY CAUSE SEVERE IRRITATION TD JPR RESPIRATORY TRACT.
SYSTEMIC J DTHER EFFECTS: --------
SECTION S
FIRST AID
EYES: .'ASH EYES IMMEDIATELY AND CONTINUOUSLY L'NTI. FDR TRANSPORT TO MEDICAL FACILITY? .ASH ENRDJTE* MEDICAL ASSISTANCE IS NOT IMMEDIATELY AVAILABLE* AND SEEK MEDICAL ATTENTION IMMEDIATELY.
ASSISTANCE ARRIVES IF POSSIBLE. If
WASH FOR 30 MINUTES
SKIN! IMMEDIATE CONTINUED AND THOROUGH HASHING IN CLDJINC- WATER FDR 30 MINUTES IS IMPERATIVE HIlE REMOVING CONTAMINATED CLOTHING* PROMPT MEDICAL CD*. 3U.TATIDN IS ESSENTIAL. WASH CONTAMINATED CLOTnl rG 5Er0RE REUSE. DESTROY CONTAMINATED SHOES.
IN3ESTI0-: DC NOT INDUCE VOMITING. GIVE LARGE AMDJNTS OF JATER CR MI_K IF AVAILABLE AND TRANSPORT TD MEDICAL FACILITY.
j ` N H A L a T 1 ' NI Si'OVE TD F*-E$n AIR 1= E FE C T S OCCjF. CONSULT MEDICAL. roNFTDFNTI AL
`T E ro PHYSICIAN: CORROSIVE. *;y CAUSE STRICTURE. IF LAVACE .
DO
is p-;rc:kved sjogest endotracheal and/cr E3d=ha3o::of :c cu\trcl. MATERIA, IE STRONG ALKALI. IF BURN IS PRESENT, T - E A T AS ANY TnERU.
BU5'*, AFTER OECCNTAMINaTI ON. FDR BURNS OF SKIN ONLY. EYE IRRIGATION MAY BE NECESSARY fj? & TOTAL DC 4^ *IN*TES TC REMOvE aE ML'C.i CAUSTIC
AS POSSIBLE. DURATION OF IRRIGATION AND TR^AT'ENT IS AT T-iE
005234
dcj
material
safety
data
sh
j.s.a. midland Michigan mbsao emergency 3hc
T FA 3 ; 3 517-fc36-A<CC
(--;e:tive oat-:: ?r ajg s. dat-: primed: 5 sep 54 oduct j:ovto: caustic soda solution 50*
PRODUCT CODE: 1521S sc: Qi3i
3 r: T 10 M
FIRST AID (CONTINJED)
note to physician: ccnti\jed> DISCRETION 0= MEDICAL PERSONNEL. NO SPECIFIC ANTIDCTE. SUFPGPTIVE Z\\i, TREATMENT 3ASED ON JUDGMENT 3r THE PHYSICIAN I Ni RESPONSE T3 reactions cr the patient.
SECTION 7
SPECIAL HANDLING INFORMATION
EXPOSJ^: GUIDE.INE(S): SODIUM HYDROXIDE: AC31 n TLV IS 2 MC-/K3 CEILING*
33HA
IS 2 M 3 / M 3 < U A >.
VENTI.ATION: C3NTR3. AHECINt CONCENTRATIONS EE.OJ The EYp?SJRE C-UIDE.IUE. 33 33 GEVE2AL VENTILATION SUFFICIENT r3R MOST OPERATIONS.
RE S 3 IR AT C3 V PROTECTION: IN MISTY ATMOSPHERES* USE A\ iPPPQVEj MIST RESPIRATOR. I- RESPIRATORY IRRITATION IS EXPERIENCED* USE AN.-APPROVED AI.R-PjFIrriNG RES=IRATC=.
protective clothing: JSE PROTECTIVE CLOTHING IMPERVIOUS TO THIS MATERIAL. SELECTION OF S 3 : I -1 c ITEMS SUM AS GLOVES* BOOTS* APRON* FjCE-SHIElD OR rJlL*30DY SJIT Wll. DEPEND ON OPERATION. REMOVE CONTAMINATED CTHIM IMMEDIATELY , WASH SKIN APEA WITH SOAP AND WATER, AND LAJNDER
3 MI-* 3 3E*ORE RTUSE
EYE PROTECTION: JSE Chemical-goggles* full face SHIELD IN ADDITION to 30G3.ES MAY BE DESIRA3LE TO PROTECT FACE. M AI V T AIEYE wASh FOUNTAIN AND SAFETY SHOWER AT DP NEAR WQP< AREA.
SECTION S SPECIAL PRECAUTIONS AND ADDITIONAL INFORMATION
PRECAUTIONS TO BE TAKEN IN HANDLING AND STORAGE: PREVENT EyE AND SKIN CONTACT. DO NOT 3REATHE DJSTS OR MISTS.
AVOID STORING NEXT TO STRONG ACIDS. CAUSTIC SHDULD BE STORED IN * C.EAN* DRY AREAS 433VE GROUND LEVEL. PRODJCT ABSORBS A T E R AND C02
FROM AIR. SEE3 CONTAINERS CLOSED AND SEALED.
ADDING WATER AND OTHER SUBSTANCES MAY GENERATE EXCESSIVE HEAT * SPATTERING AND M5TS. SOLUTIONS OF GREATER THAN *5* A*E VISCOUS AND S.IPPEFY.
ADDITIONAL indorsation: -eviseo sections
4. 5* 3* 7* AND
LAST
t R ) INDICATES A TRADEmA5\ 0r THE :y C.HEsiCA. COMPANY
'HE INFD=MATI0N HEREIN I $ GIVEN
GOOD FAITH. 3 J T N C
:RANT Y,
iXPRESSED `OR IMPLIED* IS mo;
CCNCLLT T*E DOW CHEMICAL company
:~R FJRTHER INFORMATION.
p A 3i
DO 005235 CONFIDENTIAL
CHB4ICAL SAFETY CHECXSHEET
To B Canplatad By Any Usiri For All CbMlcalt
CHB4ICAL
TU
CXPhOSWftC (pp<i) BOILING POINT _
1.0
- Vf'e- f-So'p)
MEETIMS POINT
VAPOR PRESSURE CORROSIVENESS
- 101*0
ptU t 0-C
at lo'C'
X TR6M
EXPLOSIVE LIMITS FLASH POINT
MOMS. CHEMICAL REACTIVITY
LOW
NOtJE,___________________ STABILITWo pH CHANGE, HEAT, LIGHT $OOP
IGNITION TB4P.
NokIE
USING SAFETY CONTAINER
lUL
TOXIC PROPERTIES Cftd CA*K& ERA-TVHi4<a PifRcOCOfcS ; SKiM tREiTAHod. P6ATH
PROTECTIVE EQUIPMENT TO BE USED:
MONOGOGGLES
X
FACE SHIELD GAS MASK SLICKER SUIT RUBBER BOOTS RUBBER GLOVES OTHER
X X X X
FUME HOOO
SeeSPECIAL PRECAUTIONS
flftadr\dl sUte-f
fov' a<AA\V *pwaI iwfomnAalltM
HAVE YOU READ THE TOXICOLOGY SHEET ON IS THE CHB4ICAL OR MIXTURE;
THIS CH94ICAL? GROUP LEADER
NO
Alsjaavl
SUBJECT TO TSCA7 ON TSCA INVENTORY?
<@> )
NO NO [lIU*1
USERS SIGNATURE
DATE
PLEASE CCTFIW WITH SUPPLIER
0*
\
'hi^
r^''
njvl: !f
-Me.
j/ifsr:
USED FOR R&O ONLY?
YES
IN COMPLIANCE WITH ALL
TSCA RULES l ORDERS
YES
<N&)
NO CONFTDFNTTAL
M*AtkzL- i
DO 005236
A ti
f
MATER IAL SAFETY OATA SHEE T PAGE: 1 DOW CHEMICAL U.S.A. MIDLAND MICHIGAN 486*0 EMERGENCY PHONE: 517-636-44 0 0
EFFECTIVE DATE: 09 SEP 81
PRODUCT CODE: 16276
PRODUCT NAME CHLORINE* GASEOUS H.P.
MSO: 1122
INGREDIENTS (TYPICAL VALUES-NOT SPECIFICATIONS)
:. % :
CHLORINE
: 99.5 :
SECTION 1
PHYSICAL DATA
BOILING POINT: -29.3F (-340 VAP PRESS: 82 PSIG S 68F* 20C VAP DENSITY (AIR=1>: 2.49 332F,0C
SOL. IN WATER: 0.73G/100G H20 3 20C SP. GRAVITY: 1.47S32F,0Ci 53.2 PSIA X VOLATILE BY VOL: 99.0
appearance and odor: ams ER COLOR - PUNGENT ODOR? LIQUIFIED GAS under pressure; vapori ZES TO GREENISH - YELLOW 3AS.
SECTION 2
FIRE AND EXPLOSION HAZARD OATA
I^LASH POINT: NONEliETMOD USED: NOT APPLICABLE
FLAMMABLE LIMITS lfl: not applic. ufl: not appl'ic.
EXTINGUISHING MEDIA: DO NOT USE WATER DIRECTLY ON A CHLORINE LEAK. A FOG NOZZLE IN AREA CAN BE USED TO ABSORB GAS.
SPECIAL FIRE FIGHTING EQUIPMENT AND HAZAROS: A POSITIVE-PRESSURE BREATHING APPARATUS FOR RESPIRATORY PROTECTION ANO PROTECTIVE CLOTHING. MAY REACT TO CAUSE FIRE AND/OR EXPLOSION UPON CONTACT WITH MANY ORGANIC COMPOUNDS* AMMONIA* HYDROGEN, OR FINELY CIVIDED METALS, OR WITH STEEL AT ELEVATED TEHPEPATURES.
SECTION 3
REACTIVITY DATA
STABILITY: AVOID PROXIMITY TO FLAMMABLE MATERIALS INCLUDING CHEMICALS.
INCOMPATIBILITY: MANY ORGANIC COMPOUNDS* AMMONIA, HYDROGEN, MOIST OR HOT STEEL, ANO MANY FINELY DIVIDED METALS. MAY REACT EXPLOSIVELY WITH SCME ORGANICS UNOER CONFINEMENT.
HAZARDOUS DECOMPOSITION PRODUCTS: NONE.
HAZARDOUS POLYMERIZATION: WILL NOT OCCUR.
(CONTINUED ON PAGE 2 ) fc'R) INDICATES A TRADEMARK OF THE DOW CHEMICAL COM3ANY
c.o^F
TP1
o0 00&237
material
SAFETY
DATA
SHEE T
page: 2
OOU CHEMICAL U.S.A. MIDLAND MICHIGAN 46840 EMERGENCY PHONE: 517-636-4400
C EFFECTIVE DATE: 09 SEP 81
PRODUCT tCONT'D): CHLORINE, GASEOUS H.P
PRODUCT code: 1627^
MSD 112?
SECTION 4
SPILL* LEAK, AND DISPOSAL PROCEDURES
ACTION TO TAKE FOR SPILLS IUSE APPROPRIATE SAFETY EQUIPMENT): HOVE UNPROTECTED PERSONNEL CROSS-WIND. CLOSE NECESSARY VALVES WITH TRAINED PERSONNEL USING PRESCRIBED PROTECTIVE EQUIPMENT.
DISPOSAL METHOD: PRIOR TO DISPOSAL, THE ACTIVE CHLORINE MUST BE REDUCED OR DESTROYED. CHLORINE MAY BE ABSORBED IN DILUTE SOLUTIONS OF CAUSTIC (NAOH), SODA ASH <NA2C03) OR HYDRATED LIME <CA<OH)2>. CAUSTIC AND SODA ASH SOLUTIONS SHOULD CONTAIN APPROXIMATELY 3 POUNOS PER GALLON, LIME 1 POUND PER GALLON, FOR 1 POUND CLCRINE. LOCAL, MUNICIPAL OR STATE AUTHORITIES SHOULD BE CONTACTED FOR DISPOSAL OF RESULTANT PRODUCT.
SECTION
HEALTH HAZARD DATA
INGESTION! NOT a PROBLEM, AS CHLORINE IS a GAS AT ROOM TEMPERATURE.
EYE CONTACT: LIQUID AND GAS - CAPABLE OF CAUSING A BURN AND IRRITATION.
SKIN CONTACT: LIQUID AND GAS - CAPABLE OF CAUSING A BURN OR BLISTERS.
C1 SKIN ABSORPTION: NOT LIKELY A PROBLEM BECAUSE OF BURN AND BECAUSE IT
.IS A_ GAS.
-
.
INHALATION: OSHA CEILING AND ACGIH TLV IS 1 PPM.
EFFECTS OF OVEREXPOSURE: MARKED IRRITATION: EYES, NASAL l THROAT LININGS. LUNG INJURY. SO IRRITATING, IT MAY BE DIFFICULT OR IMPOSSIBLE TO BREATHE.
SECTION 6
FIRST AID-NOTE TO PHYSICIAN
FIRST AID PROCEDURES:
EYES: EXPOSURE TO LIQUID CHLORINE - IMMEDIATE AND CONTINUOUS IRRIGATION WITH FLOWING WATER FOR AT LEAST 15 MINUTES IS IMPERATIVE. PROMPT MEDICAL CONSULTATION ESSENTIAL. EXPOSURE TO CHLORINE GAS - IRRIGATE WITH FLOWING WATER IMMEDIATELY ANO CONTINUOUSLY FOR 15 MINUTES. REFER TO MEDICAL PERSONNEL.
SKIN: EXPOSURE TO LIQUID CHLORINE - SKIN BURN LIKELY. IMMEDIATE CONTINUOUS AND THOROUGH WASHING IN FLOWING WATER FOR 15 MINUTES IS INDICATED. REMOVE CLOTHING IMMEDIATELY. DISCARD ALL CONTAMINATED CLOTHING AND ACCESSORIES.
INHALATION: REMOVE TO FRESH AIR if EFFECTS OCCUR. IF RESPIRATION STOPS < GIVE MOUTH TO MOUTH RESUSCITATION. AOMINIS TER OXYGEN IF AVAILABLE. ( CALL PHYSICIAN AND/OR TRANSPORT TO MEDICAL FACILITY.
(CONTINUED ON PAGE 3 ) (R) INDICATES A TRADEMARK OF THE DOW CHEMICAL COMPANY
CONFIDE^1*1 00 005238
material
safett
oata
sheet
page: 3
OOW CHEMICAL U.S.A. MIDLAND MICHIGAN 48640 EMERGENCY PHONE: 517-636-<*4 0C
EFFECT IV E DATE: 09 SEP 81 >roouct (CONT'D): CHLORINE. GASEOUS H.P
PRODUCT COOE: 1S27S MSD: 1122
SECTION 6
FIRST AID-NOTE TO PHYSICIAN (CONTINUED).
INGESTION: NOT a PROELlM AS CHLORINE IS A GAS AT ROOM TEMPERATURE*
NOTE TO physician: EYES: LIQUID VERY CORROSIVE. MAY CAUSE CORNEAL INJURY OR BURN. STAIN FOR EVIDENCE OF CORNEAL INJURY. IF CORNEA IS INJURED. INSTILL ANTIBIOTIC STEROID PREPARATION FREQUENTLY. CONSULT OPHTHALMOLOGIST. GAS - INJURY IS UNLIKELY. SKIN: LIQUID VERY CORROSIVE. MAY CAUSE BURN. IF BURN IS PRESENT. TREAT AS ANY THERMAL BURN. RESPIRATORY: MAY CAUSE SEVERE. IRRITATION. MAY CAUSE PULMONARY EDEMA. AOMINISTER OXYGEN IF AVAILABLE. BRONCHODILATORS. EXPECTORANTS.
AND ANTITUSSIVES MAY BE OF HELP. MECHANICAL SUPPORT OF RESPIR ATION MAY BE NEEDED. SYSTEMIC: HIGHLY TOXIC. CONSULT STANDARD LITERATURE. TREATMENT BASE ON SOUND JUDGMENT OF PHYSICIAN AND THE INDIVIDUAL REACTIONS OF THE PATIENT.
SECTION 7
SPECIAL HANDLING INFORMATION
VENTILATION: RECOMMEND CONTROL OF VAPORS TO SUGGESTED GUIDE.
IRESPIRATORY PROTECTIONS APPROVED ACID "G~AS"TYPE RESPIRATOR REQUIRED IN ABSENCE OF PROPER ENVIRONMENTAL CONTROL. FOR ENTRY INTO EMERGENCY AREAS. USE ONLY A POSITIVE PRESSURE BREATHING APPARATUS. ESCAPE FROM EMERGENCY AREA USE AN APPROVEO ESCAPE-TYPE MASK.
FC
PROTECTIVE CLOTHING: RUBBER GLOVES. APRON AND BOOTS AND FULL FACE SHIELD OVER EYE PROTECTION.
EYE PROTECTION: GAS TIGHT GOGGLES OR EQUIVALENT. SUGGEST SEVERAL EYE FOUNTAINS AND SAFETY SHOWERS READILY AVAILABLE. SO AT LEAST ONE IS AVAILABLE IN AN EMERGENCY.
SECTION 8 SPECIAL PRECAUTIONS AND ADDITIONAL INFORMATION
PRECAUTIONS TO BE TAKEN IN HANDLING AND STORAGE: NO ATTEMPT SHOULD 3E HADE TO HANDLE OR STORE CHLORINE WITHOUT A COMPLETE REVIEW OF THE
CHLORINE MANUAL. AVAILABLE FROM THE CHLORINE INSTITUTE. INC.* NEW YORK.
ADDITIONAL INFORMATION: 09 SEP 81 REVISED FROM 23 OCT 79 --
INGREDIENT SECTION AND SECTIONS 1.6.7. CONSOLIDATED MSDS 105* 809. 810* AND 1123.
(CONTINUED ON PAGE 4 > (Rl INDICATES A TRADEMARK OF THE DOW CHEMICAL COMPANY
MATERIAL SAFETY DATA SHEET PAGE: A DOW CHEMICAL U.S.A. MIDLAND MICHIGAN *8640 EMERGENCY PHONE: 517-636-4*00
EFFECTIVE DATE: 09 SEP 81 PRODUCT (CONT'O): CHLORINE. GASEOUS H.P.
PROOUCT CODE: 1627c usd: 1127>
last page
(R) INDICATES A TRADEMARK OF THE DOW CHEMICAL COMPANY
CONSULT THE OOU CHEMICAL COMPANY FOR FURTHER INFORMATION.
THE INFORMATION HEREIN IS GIVEN IN GOOD FAITH, BUT NO WARRANTY, EXPRESSED OR IMPLIED. IS MADE.
OONFTDFNTTAL 00 005240
MATER I A L SAFETY DATA SHEE T PAGE: 1 DOW CHEMICAL U.S.A. MIDLAND MICHIGAN A86A0 EMERGENCY PHONE: 517 63G-<l40C
EFFECTIVE DATE 09 SEP 81
PRODUCT CODE: 1S295
PRODUCT name: CHLORINE* LIQUID
MSC: 1122
INGREDIENTS CTYPICAL VALUES-NOT SPECIFICATIONS)
:% :
CHLORINE SECTION 1
PHYSICAL DATA
I 99.5 :
BOILING POINT! -29.3F (-340
: SOL. IN UATER: 0.73G/100G H20 2 20C
VAP PRESS: 82 PSIG 3 6BF, 20C
: SP. GRAVITY: 1.47332F,0CX_53.2 PSIA
VAP DENSITY <AIR=1>: 2.4? S32F.0C : * VOLATILE BY VOL: 99.C
APPEARANCE AND ODOR: AMBER COLOR - PUNGENT ODOR? LIQUIFIED GAS UNDER PRESSURES VAP0RI2ES TO GREENISH - YELLOW GAS.
SECTION 2
FIRE AND EXPLOSION HAZARD DATA
fLASH'POINT: NONE " -
_
PiETHOD USED: NOT APPLICABLE
: FLAMMABLE LIMITS : LFL: NOT APPLIC. UFL: NOT APPLIC.
EXTINGUISHING MEDIA: DO NOT USE UATER DIRECTLY ON A CHLORINE LEAK. A FOG NOZZLE IN AREA CAN BE USED TO ABSORB GAS.
SPECIAL FIRE FIGHTING EQUIPMENT AND HAZARDS: A POSITIVE-PRESSURE BREATHING APPARATUS FOR RESPIRATORY PROTECTION AND PROTECTIVE CLOTHING. MAY REACT TO CAUSE FIRE AND/OR EXPLOSION UPON CONTACT WITH MANY ORGANIC COMPOUNDS* AMMONIA. HYDROGEN* OR FINELY OIVIDED METALS. OR WITH STEEL AT ELEVATED TEMPERATURES.
SECTION 3
REACTIVITY DATA
STABILITY: AVOID PROXIMITY TO FLAMMABLE MATERIALS INCLUDING CHEMICALS.
INCOMPATIBILITY: MANY ORGANIC COMPOUNDS* AMMONIA* HYDROGEN, MOIST OR HOT STEEL, ANO MANY FINELY DIVIDED METALS. MAY REACT EXPLOSIVELY WITH SOME ORGANICS UNDER CONFINEMENT.
HAZARDOUS DECOMPOSITION PRODUCTS: NONE.
HAZARDOUS polymerization: WILL NOT OCCUR.
I(CONTINUED ON PAGE 2 >
M) INOICATES A TRADEMARK OF THE DOU CHEMICAL COMPANY
oo 0052A1
CONFIDENTIAL
I
4
MATERIAL SAFETY DATA S H E E T PAGE: 2 DOU CHEMICAL U.S.A. MIDLAND MICHIGAN *864(1 EMERGENCY PHONE: * 17-636-44G 0
( EFFECTIVE DATE: 09 SEP 81 PRODUCT CC0NTD>: CHLO RINE * LIQUID
PRODUCT CODE: 1S295 MSD: 1122
SECTION *
SPILL* LEAK* ANC DISPOSAL PROCEDURES
ACTION TC TAKE FOR SPILLS (USE APPROPRIATE SAFETY EQUIPMENT): MOVE UNPROTECTED PERSONNEL CROSS-WIND. CLOSE NECESSARY VALVES WITH TRAINED PERSONNEL USING PRESCRIBED PROTECTIVE EQUIPMENT.
DISPOSAL METHOD: PRIOR TO DISPOSAL* THE ACTIVE CHLORINE MUST BE REDUCED DESTROYED. CHLORINE HAY BE ABSORBED IN OILUTE SOLUTIONS OF CAUSTIC (NAOH) SODA ASH (NA2C03). OR HYDRATED LIHE <CA(0H>2>. CAUSTIC AND SODA ASH SOLUTIONS SHOULD CONTAIN APPROXIMATELY 3 POUNDS PEP GALLON* LIME 1 POUND PER GALLON* FOR 1 POUND CLORINE. LOCAL* MUNICIPAL OR STATE AUTHORITIES SHOULD BE CONTACTED FOR DISPOSAL OF RESULTANT PRODUCT.
OR
SECTION 5
HEALTH HAZARD DATA
INGESTION: NOT A PROBLEM* AS CHLORINE IS a GAS AT ROOM TEMPERATURE.
EYE CONTACT: LIQUID AND GAS - CAPABLE OF CAUSING A BURN AND IRRITATION.
SKIN CONTACT: LIQUID AND GAS - CAPABLE OF CAUSING A BURN OR BLISTERS.
SKIN ABSORPTION: NOT LIKELY A PROBLEM BECAUSE OF BURN AND BECAUSE IT-
-- IS A GAS.
^
__
INHALATION: 0$HA CEILING AND ACGIH TLV IS 1 PPM.
EFFECTS OF OVEREXPOSURE: MAaRrKkEedD iIrRrRiItTaAtTiIoONn: eEyYeEsS. NASAL & THROAT LININGS. LUNG INJURY. SO IRRITATING. IT MAY BE DIFFICULT OR IMPOSSIBLE TO BREATHE.
SECTION 6
FIRST AID-NOTE TO PHYSICIAN
FIRST AID PROCEDURES:
EYES: EXPOSURE TO LIQUID CHLORINE - IMMEDIATE AND CONTINUOUS IRRIGATION WITH FLOWING WATER FOR AT LEAST 15 MINUTES IS IMPERATIVE. PROMPT HEOICAL CONSULTATION ESSENTIAL. EXPOSURE TO CHLORINE GAS - IRRIGATE WITH FLOWING WATER IMMEDIATELY AND CONTINUOUSLY FOR 15 MINUTES. REFER TO MEDICAL PERSONNEL.
SKIN: EXPOSURE TO LIQUID CHLORINE - SKIN BURN LIKELY. IMMEDIATE
CONTINUOUS AND THOROUGH WASHING IN FLOWING WATER FOR 15 MINUTES IS
INDICATED. REMOVE CLOTHING IMMEDIATELY. DISCARD ALL CONTAMINATED CLOTHING ANO ACCESSORIES.
INHALATION: REMOVE TO FRESH AIR if EFFECTS OCCUR. IF RESPIRATION $T0=>$ GIVE MOUTH TO MOUTH RESUSCITATION. ADMINISTER OXYGEN IF AVAILABLE.
( CALL PHYSICIAN AND/OR TRANSPORT TO MEDICAL FACILITY.
(CONTINUED ON PAGE 3 )
mtTAI
<R> INDICATES A TRADEMARK OF THE DOW CHEMICAL COMPANY CONFTDFNii
DO 005242
EFFECTIVE DATE:! 09 SEP 81 ^product (cont*d>: chlorine. liquid
product code: 1&295 msd: 1122
SECTION 6
FIRST AID--NOTE TO PHYSICIAN (CONTINUED)
INGESTION: NOT A PROBLEM AS CHLORINE IS A GAS AT ROOM TEMPERATURE.
NOTE TO fhtsician: EYES: LIQUID VERY CORROSIVE. HAY CAUSE CORNEAL INJURY OR BURN. STAIN FOR EVIDENCE OF CORNEAL INJURY. IF CORNEA IS INJURED. INSTILL ANTIBIOTIC STEROID PREPARATION FREQUENTLY. CONSULT OPHTHALMOLOGIST. GAS - INJURY IS UNLIKELY. skin: liquid VERY corrosive, hay cause burn, if BURN IS PRESENT* TREAT AS ANY THERMAL BURN. respiratory: may cause severe irritation, hat cause pulmonary eoema. ADMINISTER OXYGEN IF AVAILABLE. BRONCHCDILATORS. EXPECTORANTS. AND ANTITUSSIVES MAY BE OF HELP. MECHANICAL SUPPORT OF RESPIR ATION MAY BE NEEDED. SYSTEMIC*. HIGHLY TOXIC. CONSULT STANDARD LITERATURE. TREATMENT BASED ON SOUND JUDGMENT OF PHYSICIAN AND THE INDIVIDUAL REACTIONS OF THE PATIENT.
SECTION 7
SPECIAL HANDLING INFORMATION
( 'ENTILATION: RECOMMEND CONTROL OF VAPORS TO SUGGESTED GUIDE.
J>.ESPlRAr&R-Y PROTECTION: APPROVED ACID GAS-TYPE RESPIRATOR REQUIRED W n ABSENCE OF FRGPER ENVIRONMENTAL CONTROL. FOR ENTRY INTO
EMERGENCY. AREAS. USE only A POSITIVE PRESSURE BREATHING APPARATUS. ESCAPE PROM EMERGENCY AREA USE AN APPROVED ESCAPE-TYPE MASK.
FOR
PROTECTIVE CLOTHING: RUBBER GLOVES. APRON AND BOOTS AND FULL FACE SHIELD OVER EYE PROTECTION.
EYE PROTECTION: GAS TIGHT GOGGLES OR EQUIVALENT. SUGGEST SEVERAL EYE FOUNTAINS AND SAFETY SHOWERS READILY AVAILABLE. SO AT LEAST ONE IS AVAILABLE IN AN EMERGENCY.
SECTION 8 SPECIAL PRECAUTIONS AND ADDITIONAL INFORMATION
PRECAUTIONS TO BE TAKEN IN HANDLING AND STORAGE: VO ATTEMPT SHOULD 3E HAOE TO HANDLE OR STORE CHLORINE WITHOUT A COMPLETE REVIEW OF THE CHLORINE MANUAL. AVAILABLE FROM THE CHLORINE INSTITUTE. INC.* NEW YORK.
ADDITIONAL INFORMATION: 09 SEP 81 REVISED FROM 23 OCT 79 --
INGREDIENT SECTION AND SECTIONS 1.6.7. CONSOLIDATED MSCS 10E. 809. 810. AND 1123.
/ (CONTINUED ON PAGE A > (R) INDICATES A TRADEMARK OF THE COW CHEMICAL COMANY
CONFTDFNTTAL
DO 0052^3
4
H A T E R I A L SAFETY DATA SHEET PAGE*. A DOW CHEMICAL U.S.A. MIDLAND MICHIGAN *86*0 EMERGENCY PHONES 517-6J6-AA00
EFFECTIVE DATES 09 SEP 91 PROOUCT CCCNTD>: CHLORINE* LIGUID
PRODUCT CODES 16295 MSD: 1122 V
LAST 0AGE
CR) INDICATES A TRADEMARK OF THE DOU CHEMICAL COMPANY
CONSULT THE DOU CHEMICAL COMPANY FOR FURTHER INFORMATION.
THE INFORMATION HEREIN IS GIVEN IN GOOD FAITH* BUT NO WARRANTY* EXPRESSED OR IMPLIED* IS MADE.
I
( (
CONFIDENTIAL
DO 005244
CH04ICAL SAFETY CHECXSHEET
To B Conpltl By Anv (iMrs For All Ch*lc*l>
CH94ICAL
CP6 -%15
EXPLOSURE (ppm)
BOILING POINT
fj/h
EXPLOSIVE LIMITS
l4 A
FLASH POINT
Aj/ A
MEET IMS POINT VAPOR BtESSURE CORROSIVENESS
\*>o'C h/a
Lo^o
CH84ICAL REACTIVITY HIGH -dow)
STABILITY(To pH CHANGE, HEAT, LIGHT Goo*
IGNITION T&>.P. USING SAFETY CONTAINER
n/a
TOXIC PROPERTIES CP IS M INCfcT MATERIAL - MopJTotOC
PROTECTIVE EQUIPMENT TO BE USED:
MONOGOGGLES FACE SHIELD
_
GAS MASK
FUME HOCO
_
SPECIAL PRECAUTIONS - - --
'
SLICKER SUIT
RUBBER BOOTS
RUBBER CLONES
TMR___ JOST SjKftiy Gcfstert roNFTOFNTlAl
HAVE YOU READ THE TOXICOLOGY SHEET ON IS THE CHWICAL OR MIXTURE:
this cubical? frTj)
GROUP LEADER
DaLV,
NO
SUBJECT TO TSCA? ON TSCA INVENTORY?
<5B>
USERS SIGNATURE
DATE
*&/*>-a/ii/Fy
PLEASE COlFIfM WITH SUPPLIER
USED FOR R&D ONLY?
YES
DO 005?A=>
NO
M r
,,^
'Ji/#
IN CtXPLIANCE WITH ALL
TSCA RULES l ORDERS
YES
NO
K I'
j1
MATERIAL SAFETY DATA SHEET
PAGE: l
DOW CHEMICAL U.S.A. MIDLAND MICHIGAN *8640 EMERGENCY PHONE: 517*636-4400
EFFECTIVE DATE: 19 JUN 79 PROOUCT NAME: CPE 3615 "
PRODUCT CODE: 13652 MSP: 1038
INGREDIENTS (TYPICAL VALUES-NOT SPECIFICATIONS)
X
HD POLYETHYLENE CHLORINATED CHLORINE CONTENT OF POLYMER CRYSTALLINITY
: J 36 : <2
SECTION
PHYSICAL DATA
BOILING POINT: ------vap press: ------VAP DENSITY (AIR=1): APPEARANCE AND ODOR:
ODOR - NONE*
------COLOR
OFF
: sol* in uater: nil : sp. gravity: 1.17 : X VOLATILE BY VOL: 0.2 WHITE. PHYSICAL STATE - CRUMBS.
SECTION 2
FIRE AND EXPLOSION HA2ARC ^DATA
FLASH point: METHOD USED*. NOT APPLICABLE EXTINGUISHING MEDIA: WATER FOG. SPECIAL FIRE FIGHTING EQUIPMENT
APPARATUS.
I FLAMMABLE LIMITS (STP IN AIR) : lfl: not applic. ufl: not applic. FOAM, ALCOHOL FOAM, C02, DRY CHEMICAL. AND hazards: self-contained breathing
SECTION 3
REACTIVITY DATA
stability: avoid high temperatures - HCL gas EVOLVED.
incompatibility: -------
HAZARDOUS DECOMPOSITION PRODUCTS: HCL GAS. HAZARDOUS POLYMERIZATION: WILL NOT OCCUR.
SECTION 4
SPILL, LEAK, AND DISPOSAL PROCEDURES
ACTION TO TAKE FOR SPILLS (USE APPROPRIATE SAFETY EQUIPMENT): SWEEP UP AND OISCARD.
DISPOSAL METHOD: BURN IN ADEQUATE INCINERATOR OR BURY IN LANDFILL.
SECTION 5
HEALTH HAZARn DATA
(
INGESTION: VERY LOW IN SINGLE DOSE ORAL TOXICITY. NO LD50 VALUE AVAILABLE.
(CONTINUED ON PAGE 2 )
CONFIDENTIAL
(R) INDICATES A REGISTERED OR TRADEMARK NAME OF THE DOW CHEMICAL COMPANY
DO 005246
MATERIAL SAFETY DATA SHEET
PAGE: 2
DOW CHEMICAL U.S.A. MIDLANO MICHIGAN *8640 EMERGENCY PHONE: 517-636-4*00
EFFECTIVE DATE! 19 JUN 79 PRODUCT tCONT*D>: CPE 3615
PRODUCT CODE: 13652 MSD1 1038
SECTION 5
HEALTH HAZARD DATA (CONTINUED)
EYE CONTACT: MINOR IRRITATION ONLY. SKIN CONTACT! MINOR IRRITATION ONLY. SKIN ABSORPTION: NOT LIKELY TO BE ABSORBED IN ACUTELY TOXIC INHALATION! NO GUIDE FOR CONTROL KNOWN. NO PROBLEM LIKELY. EFFECTS OF OVEREXPOSURE: -------
AMOUNTS.
SECTION 6
FIRST AID--NOTE TO PHYSICIAN
FIRST AID PROCEDURES:
EYES: IRRIGATION OF THE EYE IMMEDIATELY WITH WATER FOR FIVE MINUTES
IS GOOD SAFETY PRACTICE. SKIN: WASH OFF IN FLOWING WATER.
INHALATION: REMOVE TO FRESH AIR IF EFFECTS OCCUR. CONSULT. MEDICAL
PERSONNEL. INGESTION: LOW IN TOXICITY. INDUCE VOMITING IF LARGE AMOUNTS ARE
INGESTED.
NOTE TO PHYSICIAN: EYES: MAY CAUSE MILD IRRITATION. INJURY.
STAIN FOR EVIDENCE OF CORNEAL
SKIN: MAY CAUSE MILD IRRITATION WITH REPEATED CONTACT. TREAT AS
ANY CONTACT DERMATITIS. _ -
"
RESPIRATORY: NO EFFECT EXPECTED
oral: low in toxicity. GENERAL: HUMAN EFFECTS NOT ESTABLISHED. NO SPECIFIC ANTIDOTE.
TREATMENT BASED ON THE SOUND JUDGMENT OF THE PHYSICIAN
AND THE INDIVIDUAL REACTIONS OF THE PATIENT. N
SECTION 7
SPECIAL HANDLING INFORMATION
VENTILATION: GOOD ROOM VENTILATION USUALLY ADEQUATE FOR MOST OPERATIONS. RESPIRATORY PROTECTION: NONE NORMALLY NEEDED. IF REQUIRED USE AN
APPROVED DUST RESPIRATOR. PROTECTIVE CLOTHING: NONE REQUIRED. EYE protection: NOT NORMALLY NECESSARY.
SECTION 6 SPECIAL PRECAUTIONS AND ADDITIONAL INFORMATION
PRECAUTIONS TO eE TAKEN IN HANDLING AND STORAGE: PRACTICE REASONABLE CARE AND CAUTION.
(CONTINUED ON PAGE 3 ) (R> INDICATES A REGISTERED OR TRADEMARK NAME OF THE DOW CHEMICAL COMPANY
CONFIDENTIAL DO 005247
material safety data sheet
page: 3
DOU CHEMICAL U.S.A. MIDLAND MICHIGAN 486*0 EMERGENCY PHONE: 517-636-4400
EFFECTIVE OATE: 19 JUN 79 PRODUCT <CONT*D>: CPE 3615
PRODUCT CODF: 13652 MSD: 1038
SECTION 8 SPECIAL PRECAUTIONS AND ADDITIONAL INFORMATION CONTINUED)
ADDITIONAL INFORMATION: REVISIONS 6/19/79 -- SPECIAL FIRE FIGHTING EQUIPMENT AND HAZARDS*
LAST PAGE (R) INDICATES A REGISTERED OR TRADEMARK NAME OF THE DOU CHEMICAL COMPANY
THE INFORMATION HEREIN IS GIVEN IN GOOD FAITH* BUT NO WARRANTY, EXPRESSED OR IMPLIED, IS MADE.
V
DO 0052A8
CH941 CAL SAFETY CHECKSHEET To B* Complete By Any Uaars For All Choalcal*
CH94ICAL EXPLOSURE < ppm) BOILING POINT EXPLOSIVE LIMITS FLASH POINT
W<A0\JS I^U w/vJ y 1------ --------- ------- *' aMm ~
MEETING POINT
VAPOR PRESSURE
-Hi AH-CORROSIVENESS
fiONE
CH94ICAL REACTIVITY
LON
STABILITYETo pH CHANGE, HEAT. LIGHT &OOP
IffllTION TB4P.
n/a
USING SAFETY CONTAINER
Av/o\PTOXIC PROPERTIES
foritACT
PROTECTIVE EQUIPMENT TO BE USED: MONOGOGGLES_________ X FUME HOOD
TACE SHIELD ~
__________ _
__________________ SPECIAL WECAUTI046
GAS MASK_______________________________________________ _________________________
SLICKER SUIT___________________________________________ _________________________
RUBBER BOOTS___________________________________________ __________________________
RUBBER GLOVES________ _________________________________ _____________ __________
OTHER
HAVE YOU READ THE TOXICOLOGY SHEET ON IS THE CH94ICAL OR MIXTIFE:
THIS CHB4ICALT
NO
GROUP LEADER _ DatOO. AtSjcxvn^
USERS SIGNATURE
DATE
/I-//)/? 1/
^ h'/'V/
/ 'A/tr
SUBJECT TO TSCA?
ON TSCA INVENTORY?
<SD>
PLEASE COIFl4 KITH SUPPLIER
USED FOR RAD ONLY?
YES
IN COMPLIANCE WITH ALL
TSCA RULES A ORDERS
YES
NO
QNNOo[l(r41-Ol-0]
<s>
C0NF10F^lftL
1 NO .
DO 0052*9
0A A
'/
$ / --7
i^Tr CHCCKSHEET
To B Ccmpla'ad By Any Users For All CNmIcsIs
CHWICAL
Poiyen^c&J6 - Hpp
MEET I Mi POINT ^ IIS- ITo*c
EXPLOSURE (ppm) BOILING POINT EXPLOSIVE LIMITS FLASH POINT
rtone Fl/A n/a
Nj
IGNITION TEMP,
3 oo*c
USING" SAFETY CONTAINER
m/a
TOXIC PROPERTIES
n/a
VAPOR PRESSURE
n/a
CORROSIVENESS
LoW
CHEMICAL REACTIVITY HIGH -<to3)
STABILITY(To pH CHANGE, HEAT, LIGHT GcOp
PROTECTIVE EQUIPMENT TO BE USED:
MONOGOGGLES FACE SHIELD
-
GAS MASK
SLICKER SUIT
RUBBER BOOTS
RUBBER GLOVES
*
Dost Mask ;
FUME HOQO AvSBowe t>Msr
SPECIAL PRECAUTIONS MM flteS&JT ArilBtAKioM JAkxarp.
6lassf.<l
HAVE YOU READ THE TOXICOLOGY SHEET ON IS THE CHB4ICAL OR MIXTURE:
THIS CH94ICAL7 6p)
NO -
SUBJECT TO TSCA?
<>
GROUP LEADER
USERS SIGNATURE
4
DATE
/-//,/?*/
ON TSCA INVENTORY?
(SI)
PLEASE COFFIRM WITH SUPPLIER
USED FOR RAD ONLY?
YES
rJi-1: M
IN COMPLIANCE WITH ALL
TSCA RULE5 A ORDERS
YES
wv------------------i hjA^_____
h^hL^--
AQ
.. /
NO
N0(3Ol-gSM]
(g>
NO CONFIDENTIAL
DO 005250
CH^ICAL SAFETY CHECKSMEET To B* CaxpBy Any Usors For All Ch*lal*
X-D&T >1 5CHWICAL ______
MEETING POINT_
EXPLOSURE (ppm)VAPOR PRESSURE
BOILING POINT
CORROSIVENESS
EXPLOSIVE LIMITS FLASH POINT
7 S&c?
CHEMICAL REACTIVITY HIGH - LOW STABILITTITo pH CHANGE, HEAT, LIWT
IGNITION TEMP, USING SAFETY CONTAINER TOXIC PROPERTIES
PROTECTIVE EQUIPMENT TO BE USED:
MONOGOGGLES__________________________
FACE SHIELD____________~
"-
GAS MASK
FUME HOCO SPECIAL PRECAUTIONS _
SLICKER SU IT _
RUBBER BOOTS _
RUBBER GLOVES
OTHER
HAVE YOU READ THE TOXICOLOGY SHEET ON IS THE CHBIICAL OR MIXTURE:
THIS CHBIICAL?
YES
NO
SUBJECT TO TSCA?
YES
GROUP LEADER
ON TSCA INVENTORY?
YES
USERS SIGNATURE
DATE
PLEASE COIflW WITH SUPPLIER
t'LSn/fV
USED FOR RAD ONLY?
YES
OONFTDFNTTAI DO 005251
NO NO
IN COMPLIANCE WITH ALL
TSCA RULES l ORDERS
YES
NO
CHWICAL SAFETY CHECKSHEET
To B* Coatplotad By Any llsors For All Chlc*l*
CHWICAL
TU
WLOGuRfe <ppi)
~Thf MEETIW POINT _ -lot.SM________
'T.OQ VAPOR PRESSURE 114 ***** g'fc lS*C
BOILING POINT
(p5.4PC
CORROSIVENESS
U>o0
EXPLOSIVE LIMITS LL I.Vfn^UfcL \\.|*/ CHWICAL REACTIVITY 4UGII L6W MOPCfcAT^
FLASH POINT
1.4* f__________________________ STABILITYtTo pH CHANGE, HEAT, LIGHT
IGNITION TB4P.
(olQ*P
USING SAFETY CONTAINER
Me-tai SAfeT^ CAN
TOXIC PROPERTIES_ Awip
Ho\P S\Ciri CofJTACT
UWP
PROTECTIVE EQUIPMENT TO BE USED:
MONOGOGGLES_________ ________________ - FADE- SHIELD. T~
FUME HOOD - _ SPECIA't PRECAUTIONS--MAY FogH
GAS MASK SLICKER SUIT RUBBER BOOTS RUBBER GLOVES
X
ftprov RkuoAi&eD Coa/tact iOrm Air.. Reacts \J\owm lO ITH
fcott, NOH.
OTHER HAVE YOU READ THE TOXICOLOGY SHEET ON IS THE CHBUCAL OR MIXTURE:
c0nftdf^al
DO 005252
(5D>THIS CH04ICAL?
NO
GROUF LEADER $*>!. AlsywwA.
SUBJECT TO TSCAT ON TSCA INVENTORY?
<S3>
NO
no[ioT-,H-^)
USERS SIGNATURE
St*J&**- (lddins
DATE
PLEASE CONFIRM WITH SUPPLIER
USED FOR R&O ONLY?
YE5
<
IN COMPLIANCE WITH ALL
TSCA RULES A ORDERS
YES
NO
'A///
4wi
l~l*
CHEMICAL SAFETY CHECKSWET
To Bo Ccmpl*Tl By Any Usort For All Chwlcals
CHWICAL
Pyrrol; Jo*'
EXPLOSURE (PP) _ fJBAt
BOILING POINT_______________ --
EXPLOSIVE LIMITS
FLASH POINT
-----
MEETING POINT__________________________
VAPOR PRESSURE_________________________
CORROSIVENESS
l/g <W /O kj
CHEMICAL REACTIVITY HIGH -rfSO)
STABILITYCTo pH CHANGE, HEAT, LIGHT
IGNITION TBMP.
USING SAFETY CONTAINER
h)/
TOXIC PROPERTIES
A)o*t
-
PROTECTIVE EQUIPMENT TO BE USED:
MONOGOGGLES
1/
FACE SHIELD -GAS MASK SLICKER SUIT RUBBER BOOTS RUBBER GLOVES OTHER
"
FUME HOOO SPECIAL PRECAUTIONS
HAVE YOU REAO THE TOXICOLOGY SHEET ON
THIS CHBMICAL? ^YES^?
NO
GROUP LEADER
S]'** -Ah*
IS THE CHB4ICAL CR MIXTURE: SUBJECT TO TSCA7 ON TSCA INVENTORY?
OATE
PLEASE COICIRM WITH SUPPLIER
USED FOR R&D ONLY?
YES
NO NO
NO
IN COMPLIANCE WITH ALL
TSCA RULES A ORDERS
YES
NO
CON/!JoeNTJAl 0 005253
APPENDIX B POLYETHYLENE DUST EXPLOSION DATA
JBA: 7/85 0H19
CONFTDFNTTAl DO 005054
E December 18, 1980
fi'J-----
Linear Polyethylene and Derivatives TECHNOLOGY CENTBt
Building 807 Ploquamine, Louisiana 70764
504 389-8564 or 504 389-8231 ^
D. Andrews - Sarnie C. W. Brannan - Plaquemine K. Burmelster - Tessenderlo
D. G. Flood * Sarnia G. C. Kools - Plaquemine A. J. Seidule - Plaquemine B. G. Shamburger - Plaquemine
DUST EXPLOSIONS SUMMARY
Over the past fifteen years, extensive data has been generated on the explosive t ndency of high density polyethylene powder. This data has been generated both int rnally from the Dow slurry process and externally for polyethylene dust. Additional data has been obtained correlating the effects of hexane in the parts per million range and the effect of particle size on the explosive tendencies of the "dust". This information is included in the attached report.
Some of the data previously generated is Included in Appendix I. The data compares several variables in the process and analytical'techniques in the d veloproent of explosive tendencies of polyethylene dust. During the last few y ars, the use of a'Dust Material Constant, Kst, originally developed by Donat and Bartnecht (units of Kst are Bars-meters/sec) has been used to calculate the area required for explosion vents. The calculated values of this constant Kst is given with much of the data. It is important to remember that the presence of low concentrations (0-1000 ppm) hexane will greatly influence the rate of pressure rise in a polyethylene "dust" explosion and must be considered in the sizing of the explosion vents.
Variables reviewed in the data in the appendix include:
A. Effect of Test Apparatus Size and Geometry on the Dust Explosion Tendencies
Container Geometry Volume of Container-1
Maximum Rate of Pressure psi/sec
Cylinder-Hartmann Sphere Sphere Sphere
1.2 1.2 20 1000
1290 1841 1610 972
The U.S. Bureau of Mines has used the Hartmann test apparatus with a strong ignition source - a wtre at 1700*F with an energy input of 0.125 to 0.4 joules.
DOW CONFIDENTIAL
CONFTDFNTTAL OO 005255
Dust Explosion Summary
-2
December 12, 1980
B. Effect of Alr/Dust Mixture Temperature
Temperature of Dust/AIr
Rate of Pressure Rise, psi/sec
Maximum Pressure, psi
Ambient 20*C 90*C
1610 207*
84.1 53.2
C. Effect of Hexane Content vs. Minimum Ignition Energy
Hexane Content, ppm
0 2500 5000 12000
Ignition Energy, joules
0.101 0.096 0.080 0.080
The effect of hexane content on the rate of pressure rise and the effect of particle size are discussed in the attached report.
Please review this data as It applies to our current operations.
Robert D. Armstrong Linear Polyethylene and Derivatives Technology Center - Slurry Process Building 807 Plaquemine, Louisiana
Attachments
Itb
DO 005256
COMPARISON OF OUST EXPLOSION DATA
CONCENTRATION AT MAXIMUM EXPLOSION COND.
MINIMUM IGNITION ENERGY/joules
MAXIMUM PRESSURE
PSI
MAXIMUM RATE OF PRESSURE
KST
(B a rs ) M/Sec
TEST
Skimmer Tank Powder from T ssenderlo - reeular plant catalyst
oz/ft3 - 0-A
. 1. Q
2.0
68.2 1290
24
69.2 1841
34
53.2 2074
39
Hartmann
1.21 SPHERE ROOM TEMPERATURE 20 l SPHERE 90*C
1 'essenderlo Powder - " _
"
_
Plaquemine CPE LP Sl.l
84.1 1610
_30
20 1. SPHERE ;
_ - - B TERNEUZEN
- * . 108.8
972
67_
1000 L Sofiere Westfalische
Berggewerk-
SchaftsKasse
0.33 0.045
69 2044
IS
Hartmann
Start-up Powder 2/77 . B.D. = 12-14 /; 3
0.40 0.045
Start-up Powder with 300 ppm Irpanox 1010 and Weston 618
0.40
0.020
58 2633 64 4428
19
32
69065
B.D. = 18
0.67 0.061
i Avb. particle size * 62 nneror
60 1733
13
Hartmann Hartmann
Hartmann
69065 with 2000 ppm CaSt B.D.*21 Avg. part. siz * 60 microns
0.27 0.061
59 2750
-- .------- ---
iKHlilll
20 Hartmaw _____
_ C__ Ort.Nirr fOFNTtAt. _ nn 005257
-------_____
i1____________________
COMPARISON OF OUST EXPLOSION bAftf
CONCENTRATION AT MAXIMUM EXPLOSION COND.
MINIMUM IGNITIOh ENERGY/joules
MAXIMUM PRESSURE
PSI
MAXIMUM RATE OF PRESSURE
RISE____________ TEST CONDITIONS
H S2
Sarnia Tr.II 2-17-76 1800 hr. Average particle size*44 microns
0.33
0.12S *
67 1917
14
Sarnia Tr.II 2-16-76 0400
0.33 0.125
Average particle size*38 microns
67 1979 14.5
Sarnia Tr.II 2-12-76 2400
0.20 0.125
Av rage particle size-41 microns
66 2793
20
Sarnia Tr.I 2-13-76 1800 Average particle size*30 microns
0.27 -
0.125
-
Sarnia Tr.I 2-16-76 0400
0.40 0.H)lr
Average particle size*26 microns
71 66
2285 16.7
__
2533 ~
18.5
.-V
-
Sarnia Tr.I 2-13-76 2400
Average particle size=28 microns
'
0.27
0.125
67 2054 15.0
Institute for Explosion & Low Pressure Polyethylene
Average particle $ize*13 microns 0.015 Av rage particle size*25 microns
Av rage particle size=76 microns
110 1189
' 82
107 899 62
119 1595 110
1 M3 SPHERE
1 Dow coNnnFNTiAi
CONV" i'JL " DO O
1--
At CMOaNxC.ERNaTteRAToI fONR is * MINIMUM IGNITION . ENERGY/joules MAXIMUM PRESSURE PSI MAXIMUM RATE OP PRESSURE RISE KST
COMPARISON OF DUSl fcAKlOSION DATA - TITANATE CATALYST
i "
I-
--
Tessenderlo Blank
Titanate 3-30-78
Powder 6 ppm C^ H ^
O.S ' 0.25
85 6210
45
76 5750
42
12 ppm Cc H j 24 ppm Q H, , 48 ppm CH,a 96 ppm "C H,,
0.1 0.1 0.5 0.25-
""
64 4100
3Q....
64 5230 38.2
63 6050 44.2
68 3960 29.0_ I
- " -r
-
--
LUOW------------------ CONFIDENTIAL
D O 0052>59 CONJFIDEN1riAL.
COMPARISON Oh DUST EXPLOSION DATA
MINIMUM
IGNITION
ENERGY/ jo u le s
HEXANE CONTENT
Sarnia Tr.I 2-16-76 0400 9 0.40 oz/ft3
0.101 0.096 0.080 0.080
0 0.2S* O.S \ 1.2 %
-
\
- ' '-
I DOW OJNFIDENTWt 1 ' ""
DO C 05260 ^nKICTT
---------
DUST EXPLOSION POTENTIAL OF HOPE POWDERS LINEAR POLYETHYLENE TECHNOLOGY CENTER REPORT
F 1 lowing an explosion in the powder drying system of Train III, Plaquemine, March 28, 1980; tests were run to
1. Evaluation of the effect of hexane on the explosive tendencies of HOPE powder.
2. Effect of powder particle size on the explosive tendencies. 3. Explosive characteristics of powder made with Type II B alkoxide catalyst.
All tests were made using the Standard Hartmann testing unit by the Instrument Methods Group in Midland.
Discussion of Results
A. Effect of Hexane on the Explosive Characteristics
Samples of Type i Alkoxide powder produced on Train IV, April 8, 1980 were
used in these tests. The particle size distribution of the powder was broad
ranging from 10 microns to 600 microns with a volume median diameter of 148
microns. Particle size distribution is included in Appendix II. The hexane
concentration in the air was varied using 0, 100, 500, and 1000 ppm in the
-Jests. Datafrom these tests are given in.Table land Figure I.
-
Based upon this data the conclusions are:
1. The addition of hexane over the range studied does not change the explosive limits of the powder which varies between 0.08 and 2.40 oz/ft3.
2. The higher hexane content in the powder will increase the rate of pressure rise especially at the lower powder concentration - 0.08 to 1.0 oz/ft3. Therefore a relief system must function faster when hexane is present. This will linearly effect the Kst used for sizing explosion vents.
3. The maximum pressure released from an explosion is not effected by the presence of hexane at the concentrations studied. The amount f fuel present remains approximately constant.
4. The reduction of explosion intensity by the higher levels of hexane at loading of 2.4 oz/ft3 cannot be explained but is reproducible.
5. These tests also showed that using this procedure a gas mixture containing 1000 ppm wtll burn if a hot source of ignition is availabl The flame from this ignition will not propagate through the vessel nor will it continue to burn when the heat source Is removed. (Explosive limits of hydrocarbon are defined as the range over which a flame will propagate).
This data was reviewed with Reid Tait - 438 Bldg. - Midland. He indicated this was common for hydrocarbon mixtures to ignite well below the Lower Expl sive Limit in a Hartman test instrument when a high energy source is used. He also emphasized there would not be ignition of the mixture when a spark was used as the source of the ignition. Similar data for hydrogen and ethylen were request d.
^ONFTDFNT
RATE OF PRESSURE RISE
PSI/SEC
Oust Explosion Potential of HOPE Powders Page 2
B. Effect of Particle Size
Powder made with Aikoxide Type I catalyst used in the tests determining the effect of hexane was screened with the material passing a 200 mesh screen tested to determine the particle size on the explosive tendencies.
As expected, the finer particle size increases the rate of pressure rise to double or triple the previous values but again does not effect the maximum pressure. Data is given in Table I and II and shown in Figure B.
C. Type II Aikoxide Powder
Powder made with Type II B Aikoxide from the pilot plant April 2, 1980 was used in this test. Again the particle size distribution was broad ranging from 10 microns to ^30 microns and the volume median diameter was 163 microns.
As expected, because of the larger particle size, the pressure rise was 1/3 to 1/2 of rate of rise of aikoxide Type I powder. Data Is given in Table III.
RDA/ltb 12-18-80
DO 005264 CONFT OENTTAt-
TABLE I DUST EXPLOSION DATA EFFECT OF HEXANE
Powder Alkoxide Type I From Train IV (PLAQ) S/8/80 Ref *RCM 11250
3 Dust Cone, oz/ft
RATE )F PRES! LIRE RIS PSI/SEC
HA CIMUM P ASSURE PSI
Powder 100 Only ppm
500 1000 Powder 100 500 1000 Kst
ppm ppm Only
nrm tmn
nJnlm* ' ittDinC-
______ ___________________ CLUB_____________ ___ 21--
47 10477
73
15.4 - 6.9 ___ I
0.40
1183 - 1039 1783
5607
56
61
60
59 ___ 4
0.80
1S00
1300 2100
5280
76
67
66
70 ___ 5
1.0
2000
1400 2700
4700
63
73
73 _ 52 . *
(
1.20
1400 1400 2800
3700
71
-- -
-
58 64
.
63 *A
1.60
830 '950 1700 2300 56 52 35
26
Air Only
NA -
-
1600 NA
-
*
50
i NOTE: All tests are made using th B Hartm inn Test Unit ith a l ot wire - 1700 'F - as the
ignition soim-A. Tjnirtnn_ -if hava Lf 9- 00 -fpe-
contradict the lower explos Lve lim it - i.; %. The igniti on in t lese te sts cou d
i riAu/ / r1--
--------------------------------------------------- 1 uijfifx
NT/AL
1 ________ _________ DC 00526
CONFIDENTIAL
1
DUST CONCENTRATION 02./ft3
--
7.
0.04 0.08 0.16 0.20 0.24 0.40 0.60 0.80 1.60 2.40
= ' '
TABLE II
POWDE t FROM RCM 1250
VOLUM MEDIA* Dia. 1 148 Mi cron 5
Rate if Rise Max. >ressui B
PSI 'SEC
PSI
71 23
1183
56
830 980
_
56 S3
-- -
PRO )UCT FRI M RC 1 11250
SCRE NED TH1 OUOJ
200 lesh (R< M 11264 ) Rate >f Rise Max.Pr !S
PSI/ SEC 320
PS 7
3500 3800 2700 2900 2200 1700
_
490
f ( C. _ __2
_
- - :
ENERGY INPUT - 12S mil ijoule l
1 nAlkl f'Ht* FlFiFN' \ vHJYt w*
\________
DO 005266 1I rONFTDFNTTAV
table III TYPE II ALKOXIDE DUST EXPLOSION TENDENCIES
Rate o f Rise
PSI/SEC
Maximua Pressure
PSI
DUST CONCENTRATION oz./ft3
0.08 0.16 0.30 0.40 0.60 0.72 0.80 0.88 1.12 1.20 1.28 - 1.36 1.52_
1.60
1.68 2.40
140 190 &0 S40 59Q . 4QQ .430 470 *70
440 460 700 440 130
-
37 64 *
65
65 -
- S8
67
69
68
56
59 67 _ 60
-' '
__ "
57 _
55
45
--
1 ENERGY INPUT - 400 ai liioule 5
" | DOW CONFIDENTIAL
11
DO 005267
CONFIDENTIAL
ALKOXIDE TYPE I TRAIN IV 5*8-80
HlflC ANALYSIS
SAMPLE1RCM 11259 PE OATE DATA SET # 1
CHANNEL
COUNTS
1 2
3 4
3 6 7* 8
9 18 11 12
34834
21349 16120
9442 6262 4433 3256 1767
470
57 11
2
AVERAGE DIAMETER
"NUMBER* AREA* VOLUME* " MEDIAN*
(microns)
31.7 121.1 168.2 147.8
01A RANGE <icrons) min - max
VOLUME a
10.0 13.0
20.0 30.8
40.0
55.0
73.0 110.0 155.0 215.0
300.0 430.0
15.0 20.0
38.0 . 40.0
55.0
73.0
110.8 155.0 215.0 300.0
430.0
600.0
0.3 0.3 1.1
1.5 2.1
3.3 12.9 33.1 28.7
8.6 4.8 3.0
TOTAL PARTICLE V0LUME*4.78E-003
PRESSURE FACTOR*
2.06E+004
DO 005268 OONFIDFNTIAL
;
\
NEW PILOT PLANT AUOXIDE II B 5-2*80
HIAC ANALYSIS
SAMPLE:RCM 11251 PE
OATE * DATA SET 2
CHANNEL
COUNTS
1 42060 2 31408 3 26425 4 17893 5 12638 6 8782 7 6375 8 4116
9 1375 10 192 11 4 12 0
AVERAGE DIAMETER
NUMBERAREA-_ VOLUMEMEDIAN-
<nicron$)
43.0 135.0165.9 163.4
01A RANGE Caicrons) ain - max
VOLUME V.
10.0 15.0
20.0 30.0
40.0
35.0
75.0 110.0
155.0 215.0
300.0 438.0
15.0 20.0 30.0 40.0 55.0 73.0 110.0 155.0. 213.0 300.0
430.0 600.0
0.1
0.1
0.6
1.1 1.9. 3.1
8.4 27.7
41.0
15.0 6.9
0.0
TOTAL PARTICLE VOLUME-1.12E-002
PRESSURE FACTOR-
1.44E+004
DOW CONFIDENTIAL
DO 005269 donftdfntiai.
APPENDIX C
T-DET STABILITY DTA
JBA: 7/85 OH20
DO 005270 CONFIDFNTTAL
DOW CONFIDENTIAL
REACTIVE CHEMICAL HAZARD DaTA
___________ MOPfWS_ANp PRECAUTIONS________________
~T-Xe.iLr<r.-
OlF^fftCNTUL Thermal ANALYSIS
<f!. N ' t J A . J zc 4o0
test
TE
DROP-wEICHT SHOCK SENSITIVITY
-iE.G-T
*S'G-7
rtpffi-
;0**C*TS- _ -
tbjrrn *J *.*V/W
th Jrt * /&J
1/1 C- S sesr St //V/ rf
r ~QOW CONFIDENTIAL INFORMATION
^- Do not copy When no
t> s longer needed:
(Q'itetym to to. CRI Shred or Bum Barrel
LA. A Tl_ LIBRARY
TS>T
fi*
*. ;f
F- T?rrt_______ JZ-Z7-2S---
FiiHUtiaiTT properties
=
flash
POINT
ii ;__________ !_
;
'(11 *- C
* ( :* h*'E
~U~
AU70IGNIT ion TEMPERATURE
*!>' SwN *t
''C Of I'i'iiMf
FLAMMABLE l
L.M'TS - vOL.T
. BSESivSE
COER
L/DRR PS.A o -'"'g
M1Ts TEM-. c
T> SOURCE
a. ipse*-' :m
WTTTi
ji !J* ;*Tf
T" tft t fib
*
-cs.
DO 005271
T------------- CONFIDFNTTAl
LA_______ '_______________ /9e/
' f\ * Si : { 11 \ ` *
CONSIDER-
ENERGY PDTEnTia TEMPERATURE PRESSURE
iz-r. REu " ON PC-YMER-.aAT.CN
MOISTURE
LIGHT SENSITIVITY
PEROXIDES AGING FREEZE -Tha* ACiDS BASES OXIDIZERS REDUCERS
INHIBITORS
Catalysts
impurities
containers
Packaging
static GENERaTic
dust EXSLCS On " --s-...-
-- 89U
JBA: 7/85 OH21
APPENDIX D REACTION DTAS
DO 0052*72
CONFIDENTIAL
REACTIVE CHEMICAL HAZARD DATA
m'M *. namI '-* C*.>, -** '
T~ Jit 9. s' L_$~0
5T**gRii!
PROPERTIES AND PRECAUTIONS
StJiut-- NfJr%tJc_____ LdL
/
i ('<*C*C( tulfl
S' 7 9 .*/*(!* ItiHON QtT[____________ i
Ov 1C-.*1
mOvECuL** *tiGwT i
HYJlCAC STATE
//'_ g _____
PURlTT
T H E R HOC H E/lC A L INFORMATION
hEaT OF formation FROM The CLEMENTS
A cal. C>a* Mala
HEAT OF SELF DECOM POSITION IN OXYGEN X t. ItOCiaai
HEAT OF SELF DECOMPOSITION K cal. ICO Sat
AH, .
AH,.
AH,..
S LC
S LG
///////////?7777777777 FkAMt TfHFClATUlC
REPORTED If
s LC
OCCORO&iTlOM T|*.
c
KFOIT MOHIII
c
LABORATORY SCREENING. TESTS
WARNING: Dala NiN an laLatwianr ian cawWiltawi; uw cml-aw m aataaVmf ta 4iHmtwmt aaviiwwaaiL
DIFFERENTIAL thermal analysis
I1TI OF l(a>. latllail
MAX (BOM tf|T TCmM,
tio "r*t**> START
C UIH. c REAR
T.OO
c t0
*c
C SIZE
TEST METHOD
SmIiR * Lt%iiW
TEST temp.
c
DROF-WEIGNT SHOOC SENSITIVITY
height
cm
WEIGHT K
NUMBER OF TESTS
negative
none
COMMENTk
--- _
MW
vt &M///u,ry
a---------
# W ................
COMMENT! (Mjo, (Ml: . .
frmn prtsiur*
'_
TClT WM T
Hjt date
TEST REFERENCE
7/rnS
/-ZI-7T
FLAMMABILITY MOMtTlH (|a 9m #t wbivM priiiur* u*l*f fhtrvsiM hmimR)
METHOD
FLASH POINT
T|lt BUM If
C *F CTHOD
c f Tirrani-------------- TUT KflKxCI
TUT RUNRY
AUTOIGNITION TEMPERATURE
T|ST RUM IT
TWBiYl "
c f
TEST REFERENCE
FLAMMABLE LI MITS
SLIMITS- VOL.
PRESSURE
TEMP.
L0>ER
UPPER
P51A ** mH|
c
IGNITION SOURCE
.Ui i* oIic'ihISo* lb* 0n it dHfMli*. .allllai.'
S. Grmn/er________________
J*l
Wtifl---------------- wrmnser
CONSIDER -
ENERGY POTENTIAL
TEMPERATURE
PRESSURE
SELF.REACTION
POLYMERIZATION
MOISTURE
LIGHT SENSITIVITY
PEROXIDES
AGING
FREEZE-THAW
ACIDS
BASES
OXIDIZERS
REDUCERS
INHIBITORS
CATALYSTS
IMPURITIES
DO 005273
CONTAINERS PACKAGING
STATIC GENERATION
DUST EXPLOSION
lulLBUS---------------
/fo/
&+T0
DOW CONFIDENTIAL
REACTIVE CHEMICAL HAZARD
PROPIRTIIS AND PRECAUTIONS
v:`>> i
.' '
mg
Misi cob-V-*~F * rj'Jc.J.dh/eribi <-
DATA
V* *?C: w L' .L:Q1.0. --*U**!U.^. IXs**e-
___ ^ ___
....____________ _____________________&*/tJ"/r?ki'J___________
TMERmCCHEmICAl'inFORraTiOn
^^DOW CON FID LN UAL INFORMATION
HEAT Of FJRmaTCn
'wg*RCv
ELEMENTS
< coi. C
Mo P
-*T OF StLF CECQm. ,
; OS'T'On in OYYSEn < CBl. 1C : Grflm 1
~A7 OF It,1
1OECOmPOS V-
* c!. 'X *J* l
1 ^ Do not copy When no I
A-
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-- -i- .
1 loofler needed: 1 ^-Refum to La. Oil A 0 Shred or Bum Barrel
LA. AS A TL LIBRARY
I 1
SL /
tL r
G
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' *-**1 *tRA`*.5E
A
SL ;s Ziv*S'*'0N *m*
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LABORATORY SCREENING
D 5' 0 fcaite 9" otorSTe-s 'os* ;;*C p'f -so ;o.'3 *-
DIFFERENTIAL {;'? ;i :t*t ts^s-iiss
thermal analysis ukA'Mumt;'
Z*0
;cs
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E"" esc;' i-*-
' ; pE`-
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.
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$a d L- q-.-c
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TESTS
e 9 `ifr' nv.ron*' *- j.
DROP-WEIGHT SHOW SENSITIVITY
-`E.GhT '
-EiGHT
.
cm
`iJMoER OF Ti:"i
' e3S TiVE ; VEnEG-*
'
rl9**
//* ikt-tma.i v.t.4'ivify /***<>
Xi 0-& * S///V/ '/f,
r.
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test is'!;-*:-:
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properties
'in <r oi gwfc'vnf pr*itwv j^rn oih*rw \* te'ed
CCvm %Tji-v
FLASH POINT
l,
7Yi q.N fty
, TiT DAt
1' TEST BFESrsC
AUTOIGNITION TEMPERATURE
7TtS RWN BY
iTEST LITE
`C '
F
. "EST ^E'tsEhCE
!
1________ _________________________
FLAMMABLE LIMITS
LIMITS* VOL. ^
LOWER
UPPER
PRE5SURE j
PSiA or mmHfl i
TEMP.
C
; *cn:tiOn ! SOURCE
>1T*;*h'
tw*. ar T. Grr*,nt&r
vf\v\; ^ -
DO 005274
COfVF tntjAl
MLL
CONSIDER-
ENERGY POTENTIAL TEMPERATURE FRESSURE SELF-REACT'CN POLYMERIZATION MOISTURE LIGHT SENSITIVTY PEROXIDES AGING FREEZE-THA ACIDS BASES OXIDIZERS REDUCERS INHIBITORS
catalysts impurities containers packaging
STATIC GENERATION DUST EXPLOS'ON
npi -- &7i
' (
aat
~
DOW CONFIDENTIAL REACTIVE CHEMICAL HAZARD
PROPERTIES ANO PRECAUTIONS
*
DATA
T*Tw` >vi /-8-7Y 0t(
OtlCjl"**
TTTunwlAL
"
\
1 \o9# nW^jf5
j-ci.tdui.AA ai.&hi
!
HtJiCAL T*H
VAM'll PgRTY
J I'/* +/*
THERiOCHEXCAL "INFORMATION
HEAT OF FORMATION FRKOMTl.HCE'MEBLEMMaElaNTS
hPeOaKtSIcToaIOlf.NXs)ie0nlGfOtMXDYaEtGCEONM
KDMEEcCAaOTl.M'lOPOODFSIbSTIaEOLaNFs
AH, .
AH# .
AHj a
S LC
S LG
S LC
FLANC T(Na|*4Tuf
DtcoupQimQft rt#a
ICP6ATC0 t
c REPORT MUKktCD
c
LABORATORY SCREENING
WARNING! Pt* SawF *A >*WrMry MSI caNUfiafl*, y|i CflMliaa in
DIFFERENTIAL THERMAL AMALTSIS
UK 91 TlaA. 1-dHail
*1X0 TTPf CMOO VT ART
ttAIlWVM TUT TEMP.
C MIN, c PEAK
zso
c tHO
*C
TEST
c METHOD tat SaMd L'*p*4
TEST TEMP.
c
TESTS
la aiHarcnl ano-a--n*4.
DROP-wEICHT SHOO SENSITIVITY
NUMBER OF TESTS
HEIGHT
an
EIGHT
K
POSITIVE
negative
FIR/J^
COMMENTS' /<. tU*r>**l whvrff '"J, cxi4.J
0- o' a^/7
//.
COMMENTS IHJO. EsRlt
.
TILT RUN RT
TEST DATt
fr. T/hfJ__________
Tin REFERENCE
FLAMMABILITY properties (Ir ir r ahuM pniwrt wIbii iilwwiii A*tW)
method
FLASH POINT
TUT RUM T
c c
TEST DATS
f itwii ""
f
TEST nriiln(l
TfJT RUH $Y COMMENTS ANO SPECIAL PRECAUTIONS
TElf DATE
AUTOIGNITION TEMPERATURE
till Iun'A'y
teiY Sate
c f
TEST nrciuci
FLAMMABLE linits
LIMITS- VOL. %
PRESSURE TEMP.
LOWER
UPPER PSIA m <mH|
c
IGNITION SOURCE
Till Ion It
Tel" OatI
n*Mt OF 0R4CIMA1OR OR 0*nCR OF CHEMICAL. tfftYCRtAi
-r f.
-1 Y\ ttttlIMHUfl
* \
ItlVlUOH
/. A
DO 005275
0QNFTDFNTTA1
IUI.BInJ!
/9at
Timnnwi--
CONSIDER*
ENERGY POTENTIAL TEMPERATURE PRESSURE SELF REACTION POLYMERIZATION MOISTURE LIGHT SENSITIVITY PEROXIDES AGING FREEZE -THAR ACIDS BASES OXIDIZERS REDUCERS INHIBITORS Catalysts IMPURITIES CONTAINERS PACKAGING STATIC GENERATION DUST EXPLOSION ----- |MSk( "
9470
DOW CONFIDENTIAL REACTIVE CHEMICAL HAZARD
PROPERTIES AND PRECAUTIONS
ft<- \ DATA
Mi'sfacn IfaftrTk/c ;
f.S'___ ///_
RCL /C e_
Tt<EPCCrtgHlC*L I N F C R 4 T I c n
- r;:Vi* :
*: i"*-.*v.**'."?
-:at 0? 5*e DC0v*
cs t<#o..n `i<" zxi'oC1.
:r:;
* , y <_ TfvvS-A",?!
is.v^i;
LABORATORY DiFFRnTial ThERmaL ANALYSIS
Z0 ^cp
SCREENING TESTS
.sp :o. :
"f~ c *: 'c - '`ftp' pn. *;**
DROP-VEICHT SHOCK SENSlTlvur
TS*
h = :ot
n u s--e
non*.
JA' *t r*
id 0-S StrtSr/iv/fys
^^O^CONHDE^,AL
information
Do nort copy V* --/hon longof nded:
rrWotum to La. C--M-
Shred or Bum Bo-rJ
"I a nTL. LLIIOORRAARRYY AO
"j* ssfjesnCj
a:
rr^a
FLAMHAllLITY Ir r g> 9-[ *- ^mk>f
P0f[STIES fit It t*'H
C`_A;FC *.*
rr if -t
TESTI['E(iCE
t. j ~ : c- n i t :: n Tv "RATLRE
1't>* t", !
n.'iissd
7T & t e. f
Lt\
DO 005276
,C0NFId?nttai
/9 /
cons:; = =
ENERGY PG*E*T:al TEmPERaT.P* PRESSURE SE..F .fiEAC"C*.
RC-YVEfi'ii- ;n
C STURE L.GHT Sn; * v-v FEROaiGES AG NG FREEZE -T'-a ACIDS
cases
OXIDIZERS REDUCERS INHIBITORS Catalysts
impurities containers packaging
STATIC GENERATION gust ex Peer- :n
M71
DOW CONFIDE' \l
I REACTIVE CHEMICAL HAZARD DATA
PPOPlJtTliS AND PRECAUTIONS
M3 7 *d*/fydroxl IjJprit. A&/c/
Z'* t W ` i Jr l
J^azZ-
L*';' ** * t >}*< Zi a *
rs < os*u. i T'TT^TTav
4*. * i
w
p -.{ Z. *R * C jh
:n i*ATj
PWC|T*
J'/i Q(/(dgg/
----------------------
THERmOCHEmI Cal'information
-EaT Cf *0ma7jOn
The Elements
A {1 . C'3 M*l
HEAT of self DECOm*
*OA ScTo;Ol.nIOICN Go*wxytgen
hEaT C*
DECONPr;
K co . ICC
- t-
Ar d =
5L .' y / ' '.*{ iitf
''-/// '
S -L
i oec2vcl:*:on *1.-
BfPCRT SfMt-t
LABORATORY SCREENING TESTS -
A3N NO; Coo fcoses 3- itco^'r '*' cs-wj e-*-
C3.'`3^ *n i'tnd-ng `e d
nviroi|i**n'ft.
Differential thermal analysis
5a* - - f "Er iN'TB^A'f
MA\IV,V "Jj~ Ww
2o
PC VA',
' SSO S*
TEST METHOD
Sa a L Ht-d
TEST temp.
DROP-HEIGHT SHOCK SEHSITIVITT
NUMBER CF '.*3
height
-EIGHT
605 TI\
rtn-
tfl -fljirrn*/aidw~J**TMd
j 0,~
//*ri t'U-JB'fHrt-JTV
trf*//
T;T
F
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Tihf/L
J- $z23
FLAMMABILITY properties
r|n O'f Q* ***biM D'*ltur
vt NOTd`
i^StHOO
FLASH POINT
TEST sw-n &
flC
~ ~1 , vi 'HZD
C j *e'
TEST ((EIEhCi
':i` !wN B*
Ti As; C a^ **EC*w' r>i
AUTOIGNITION
temperature
TES- JM ST
Test D*ii~
Cc cr
-- -{it yptdE-;t--
FLAMMABLE limits
LIMITS- VOL. ~
LOER
UPPER
PRESSURE j PSiAs---H, i
TE.wP. c
"GNIT'ON 1 SOURCE
TRTiUTir
cotf
| TITT,t*TE I " ` Vl W'"ifP?Tfv;r
0 005277
,cowioeNriflt
Si{ Zf }mC'SAtCS
Gr ;n4'CA. M * * 5`*,
_>T
i-t&K------------------------------ ------
AA.
/9c/
Hi -s E " 5 - * `
cons ;: =
ENERGY POTENTIAL TEMPERATURE PRESSURE SELF-REACT :s POLYMERIIa- ;n MOISTURE LIGHT SENS;- . IT y PEROXIDES AGING FREEZE-THA. ACIDS BASES OXIDIZERS REDUCERS INHIBITORS CATALYSTS IMPURITIES CONTAINERS Packaging STATIC GENERATION DUST EXPLCS:n
1V ` * A r-
DOW T IFIDENTIAl REACTIVE CHEMICAL HAZARD
PftOPCRTIIS AND PRECAUTIONS
DATA
UorinZ
KCU-IP&L
* fc
.`.,4
, * / c-: * /* tz. ; ;- 7r a *9
Q A . f - S~M~W 7j
i l_ ,, *- < v
^CONFIDENTIAL INFORMATION
I * ^ not copy When no I "_/ longer needed;
- H/ Return to La. CRI
Shred or Burn Barrel
L>. A a n. LIBRARY
^:k ; ',.Ai: * r 0" *
, e- ' i ;*L iT A T [
VAMP* t
_________________________ _______________________ !______ //>A*Vor _______________
'T
THERaOCMEmICAL
INFORMATION
AT OF FORMATION FROM THE ELEMENTS
A' COl. GrO^ MO`*
nAT OF SELF PECOMj ?OS`T:0N IN 0*Y&n
< COL TQQ C'9*t
heat OF SE-F
0EC0mP0ST'C`4 K CO'. 1M Gf 9* *
i--*
1
" o=
A ^r`j *
5 .
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/
hs:*t`l at
C -,
S LG f.*vt * E * JE s A T _t
S .G SECDm?CS''.Os 'lo-*,
ec
E PC* T hjeg! *
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...
....
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LABORATORY SCREENING TEST'S *A*?N(NO C'a3't04fd 9" -SfcS'S'V. 'CV Co*'* '-0-* i IF ca-'tifl-p -p ti'frtl *; *c ; 'le'ent tnrfOAntn,
S*"E 3f
differential `iS*S
THERMAL ANALYSIS Vtl IMU Tl* T[p
i i*
20 'P(
. ' r i. - " ^ta5-
n 9* *
1
'Cn itA
i
2J-0
`Cl LnD
`C
l I
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T;S7 mETptOD
. i
S:. -- L *<! '
1 1
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TEST T EM=.
C
drop-weight shock sensitivity :!
Sum5* Oc
'EtTS
( k-' GHT
' .E-ChT
!..............
J
0S Ti'. e
nEGaT'VE
i 1i!
: ! ;j
C-vfTRTS
Ht>tk*rrn'*l
2Y AT ?/
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-
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= r ?e i5-v:-
A* 77*1*3________
FLASH PO'NT
TEST iwh
FLAMMABILITY |n 0*r 0 O^fi *At Orfltw'O
1
1j !:
|
properties HI 9tK*rn* ''dt*d'
iMtTrtCD i F i
, w:-;o
-
1TfST DATE
6F :
| 'EiT SE'EUf-CE
11
' <" A.s. 9 Y
as; jcEw Am -i ;i.' ;s;
.-En^TE
AUTOIGNITION TEMPERATURE
Ti' *JN er
JTEST 3**E
cc I
Of
1.*EST 3EEESEXCE 1
FLAMMABLE LIMITS
L.M IS * VOL. r-
LO*ER
UPPER
PRESSURE
P5IA o' #atHg
t1 i
I
Tt i* fuh BT '
: T i T 5a1C ii
i
TEmP. C
j `GNIT'ON
1 SOURCE
1
i
i
i
i
1: -ESI E'EE*.CE 1
i _n * ^ z. - * * ,PtM'LAt
- -v'
T \
DO 005278
rnWF T DFNT T Al
,,
tej' itfjetha i i
CONSIDER-
ENERGY POTENTIAL TEMPERATURE PRESSURE SELF-REACTION POLYMERIZATION MOISTURE LIGHT SENSITIVITY PEROXIDES AGING
ACIDS BASES OXIDIZERS REDUCERS INHIBITORS CATALYSTS IMPURITIES CONTAINERS PACKAGING STATIC GENERATION DUST EXPLOSION
l3c/_l 84%
DOW CONFIDENTIAL
REACTIVE CHEMICRL HAZRRD DATA
PROPERTIES AND PRECAUTIONS
7-15-
VSSmtTST *51X7
unu to kwt m
*. kmr%
mMr
t&JKX cr W^JULMMt*n,aki!
Ittkk 4r anvbeWMr(u*^ii>iwMT
WSSSSSifSrW*
name T. AWLAi
BLOG. .2513
LOCATION tA.blVt$t0*O
NO.1210
PHOtC NO.
LABORATORY SCREENING TESTS
HflRMIHGt D*t brd an laboratory \* oawOltlonoi moo BNTUn Pn xfrdlfl t StfKwt tnylrcntnU.
ME fflTfl) THERMAL ANALYSISDROP-WEIGHT IMPACT SENSITIVITY <DW5
mm. or too txjmtm.
mwmm vr tw
TEST TEST
NO. or TESTS
Q (OSHZN.
^50 < TCTHOO
TY'S fintr <c> MK *C1 DC ( fQK
TE>ff. (
HEIGHT tCICHT POSITIVE TCGATTVE
H
Lxo 30C *5 1|SC
AT*Ax IS SEjOSITWITY \m5&CM
iBsnsrm
FLASH POINT
tFP5
kts. wLlkmm.
' mr arm 7-11-25
KTMGB <F>
to
g*. pmztjnw
fiaT am5 TOT M wt
A 1Q3_ nr on
wrtot km
"tot sat------------
LWITS-VOL*
LOCK
UPPER
i*
tO
motion
AUTOXGNITION TEMPERATURE <RIT>
Tii *t
to
TOT OPT*
CF)
DO 005280 CONFTDFNTTAl
ACCELERATING RATE CALORIMETRY (ARC) SfS-------------
WALKER ADIABATIC RUNAWAY DEVICE CARD) |_g_
DO1' CONFIDLNTIRL
RERCTIVE CHEMICAL HAZARD DATA
PROPERTIES RND PSECRUTIONB
UI4 4,
ffSicnm- w*u>.ca^5faTtw,oapaiPfft t bmMif&~
iestm STSHfSriSr
Bkm or MniniHii,k(i
Rmm nKJT
sms or svinpisw,tu/m wwT
a*a 4* okodmW* or" NRME T. 4K(R& 8LDG. .26)3 LOCATION iXbiViSiCkJ
LABORATORY SCREENING TESTS
CHARGE NO. &J0 PHONE NO. LP^R
D0C(tlTAj THERMAL ANALYSIS
&n or m* wcmmt
N0CDU4 TOT 1W .
XO (O/MIN.
J&O
"S'Kr *TTOT CO MDSC CO DC CO
SIS
TUT METHOD
DROP-HEIGHT IMPACT SENSITIVITY (DM)
TEST
TEJ*. CO
HEIGHT
HEIGHT H
MO. OF TESTS POSITIVE NEGATIVE
NkW
tot **mmt WOnv
m OM 3w
ftZJK OMR
Kio Activity fcETtcrtJL ^os A UT-AW5 3JSIT\/ITV dr J^CH-
eoNwna
TSTSfir M.glJ)n3
FLASH POINT <FP)
n*i BR| 1 7iZ-85
try
C>
TOT mW TOT KM IT A)iOa
TOT TOTE
Tor KTOKU
LIMITS-VCL*
LOMU
IFFCR
TBT TEFT IGNITION (C)
AUTOXGNITION
mTEnMsPErRwATURE (RIT)
(C) (F)
Tw om
TwT WJC*
CONFTDFNTT At. -- DO 005281
ACCELERATING RATE CALORIMETRY (ARC) SR
MaXER ADIABATIC RUNAWAY DEVICE (ARO)
"
rsfii
"*
DOH
REACTIVE CHEMICRL HRZRRD DRTR
1*851.17^
| CONFIDENTIAL
PROPERTIES AND PRECAUTIONS
HWR, nm
ww wocm. txniy
brkjtdio^LPVftouufeQk)L
J*. roMJLA
Tauc4Q33-34tAtja_r___.______|_w_r_m_c_w_._r_n________________m_m__m_b_u_v_tw__m_,__
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$5127
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Murna to war waoai atiMRJcff
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own ow qouxnf qp mmmt NAME T AKA
SLDC. ^5i3 LOCATION f.c-A. vbivr-stoiO
" ----------
CHARGE NO. IZlO
/ncQ
PHONE NO. *254
LABORATORY SCREENING TESTS
O0C >m or r* dcmml
THERMAL ANALYSIS ma*M tot ibt
2Q (O/MXM. n^Soo snotr to MOM <C)
JJ50 <
> (C)
na
TEST mrmoo ant-Lin
DROP-HEIGHT IMPACT SENSITIVITY (DM)
TEST
TDM. <CJ
wz0<r
HEIGHT n*
NO. OF TESTS POSITIVE NEQATTC
Uooe.
tat
Q9WfTW
MHMMM - OFTmm
a omm
MoTHttmM. ACfWlW teTEcTCfe'fftltit A
At-axiS fi>)sniviTy oF i9Jocm.
tBt Pw If
M.CaiXMA^
FLASH POINT (FP)
caiMfli,
nil
1 7"
(F)
(O
lQi_
iarsnr
| nw bmt
j txst wna
LXMXTS-VOUt
LOMER
EATER
PSXR i* wM
IGNTTW (C)
AUTOICNITION
TEMPERATURE (AIT)
(C)
tar kw m
'tai "uML
(F)
CONFTDENTIAL DO 005082
ACCELERATING RATE CALORIMETRY (ARC)
MflLKER ADIABATIC RUNAWAY DEVICE (ARD) TBffi
DOW CONFIDENTIAL
REACTIVE CHEMICRL HAZARD DATA
PROPERTIES M40 PRECAUTIONS
S^aiKWt-PVftQUJfaQfJfi .* tbLVLTHVk^|.^-^
-?sm
murm re mm
soub
MB orlytlct**,
tiMfc iKvmjaw>n-tL^i Iy <"*>
WIM4, '
T-I5-8S
oni tSBT 4Q*i-HA
wusmTsr
6mm 4* tatMnm or Ann* NAME X AKtRi
bum. -Z5i3
LA.LOCATION
bJVlSlOl
LABORATORY SCREENING TESTS
CHARGE NO. Oio PHONC NO.
DSC 0^9 THERMAL RNALY8I8
arm or vam dcmpk
MttSUC Tlr TVMP
JQ CO/TUM. txF'fao TAT CO mm co
J.&0 <
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xs
TEST
WTHOO ii-Ct*
DROP-WEIGHT IMPACT SENSITIVITY CDH)
TEST
TEW. CO
WIGHT
WZ9CT 0
MO. OF TESTS POSITIVE WGRTIVE
ElOb0 IX5 130. 45
Ijawartf--~" : AT-AAI& sK)s*Tv ilY * l*%0CH
TBrssrm-------
FUW POINT CFP)
twit ant
7-I2-T5
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FLAMMABLE LIMITS CFL)
LXMXTS-VOL*
LOWS
UPPER
"XT
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AUTOIGNITION TEMPERATURE (AIT) CO cn TarasTtr
DO 005283 C0NFTDFNTIA1
ACCELERATING RATE CALORIMETRY CARO tMJCER AOIRBRTIC RLMAWAY DEVICE CARD)
APPENDIX E
(
JBA: 7/85 OH22
CHLORINE COHPATIBILITY GUIDELINES
00 005285
00typ
r0F*Tr<4,
* t* 7kikl
'
CHLORINE
i
Monvlothtting Chemiili* AiiKiolien, Inc.
Cbeniical Safety Data Sheet
% . *. ** *
ADOPTED MAY IS60
..
. .*
1. NAMES *
* m * *
Chemical Name: Chlorine * *
Common Name: 'Chlorine
Formula:
O*
- . * .
* 2^* PROPERTIES
.. -.
2.1 GRADE ` Commercial (liquid)
2.2 PROPERTIES AND CHARACTERISTICS .
`-
Physical State_
___________________ Gas at atmospheric temperatures and pressures. Chlorine In commerce is a liquefied gas under pressure; the chlorine
. in containers has both a liquid and a gas phase."
- Boiling Point. .Color------------
____________________-34.05*C (-29.29*F.)
________, -
Gas--greenish yellow - v
Liquid---clear amber-
...
Critical Density- :___ ;________________ 35.77 Ib./ftA (5*3 g./L) '
Critical Pressure. _______________ !___ 1118.4 psia. (76.1 atmos.)
Critical Temperature. -
________ l__144*C (291-F.)
*
Critical Volumes___ __________ !0.02796 ft.*/lb. (0.001745 L/g.)
* *`
.'
.
Density.
v.
' .......1 ________L_Diy gas--0.2003 Ib./ft.* (3.209 g./L)
....
at 0*C. (32*F.) and 1 atmos.
*' . . - Saturated gas--0.7337 Ib./h. (12.07 g./l.) at 0*C (32*F.)
. Liquid--91.67 Ib./fL* (1468 g./L) at 0*C (32*F.)
.. . --88.79 lh./ft< 11.87)b./gal.) at 15.6*0. (60'F.)
(Sec Figure 1)
.
Flammability.
_______ L___________ Chlorine, gas or liquid, ts non-explosive and nonflammable;
however, like oxygen h is capable of supporting the com
bustion of cenain substances. Many organic chemicals '
react readily with chlorine, in some cases with explosive
violence..- '
.
Latent Heat of Vaporization------
.123.7 BTU/lb. (68.7 g. cal./g. at -34.05C (-29-29`r.)
Liquid-Gas -Volume Relationship.
.The weight* of one volume of liquid chlorine equals the weight Of 415577..6 volumes of chlorine gas at 0*C. (32*F.) and 1 atmos. (14.696 psia.)..
Melting Point.
;-100.98*C("149.76""F.) .
Odor-------------
.Characteristic pEnctrating and irritating odor.
P*sctivity
Wish Water.
. Chlorine is only slightly soluble in water.' When it reacts * with pure water, weak solutions of hypochlorous and hy
drochloric acids are formed! Chlorine hydrate (Qj.ElLO),
- may crystalize below 49J*Fi.
.
With Metals^.
.Temperatures enc untcred in normal uses of chlorine do not
CONFIDENT! At.
exceed 230*F. Below this temperature, copper, iron. lead, nickel, platinum, silver, steel and tantalum are chemically
00 005286
resistant to dry chlorine, gas or liquid. Certain copper and ferrous alloys, including Hastclloy "C*. M nel, and
-t *4
fu.y>-njsr
*
**
Afom/focfuring Chemist*' Association, Ine.
CHtORIHE
With Other Elements.
With Inorganic Compounds-. r.
'With Organic Compounds.
Solubility in Water. Spadfit Gravity.
* * **. wpcdAc Heat___
CONFTDFNTTAI DO 005287
Types 304 and 3)6 stainless neel also are resistant. The reaction rate of chlorine with most metals increases with extreme rapidity above certain temperatures, beyond which construction materials must be selected with great cue; these temperatures are considerably lower if the metal or
alloy ts in Andy-divided, powdered, sponge, or wire form.
Dry chlorine reacts with aluminum, arsenic, gold, mercury,'
selenium, tellurium, tin and titanium. Aluminum igniter In chlorine at minus 4*F. At certain temperatures, poias-
. sium and sodium burn in chlorine gas. Carbon steel ignites at 483 *F. Antimony/ arsenic, bismuth, boron, copper, iron, phosphorus, and certain of their alloys, in finely-divided, powdered, sponge or wire form ignite spon taneously in chlorine..
Moist chlorine, primarily.because of the hydrochloric and * hypochlorous acids formed through hydrolysis, is very
corrosive to all commoo metals. Gold, platinum, silver and titanium are resistant. At temperatures below 300*F, tantalum is totally inert to wet (and dry) chlorine. Moist chlorine reacts readily with mcicury.
..Chlorine unites, under specific* conditions, with most of the
elements; these reactions may be extremely rapid. At the
*-' boiling point of chlorine it reacts with sulfur. It does not
. . -react'directly with oxygen or nitrogen; the oxides and *
nitrogen compounds are well known, but can only be pre
pared by indirect methods. Mixtures of chlorine-and
hydrogen composed of-more than 5j>erceftt of either eom-
' ponent can'react with explosive violence, forming hydrogen
chloride.
`
_The preparation of soda and lime bleaches (sodium and calcium hypochlorite) arc typical reactions of chlorine
' -with the alkalies and alkaline earth metal hydroxides; the : ;. hypochlorites formed are powerful oxidizing agents. Be.* cause of its great affinity for. hydrogen, chlorine removes
hydrogen from some of its compounds, such as the reac tion with hydrogen sulfide to: form hydrochloric acid and . sulfur. Chlorine reacts with ammonia or ammonium com pounds to form various mixtures of chloramines depending pa the conditions. One of these, under proper conditions, might be the explosive nitrogen trichloride.
_Chlorine rcacu_ with organic compounds much the same as
t with inorganics to form chlorinated derivatives and hy-
1 drogen chloride. Some of these reactions can be explosive,'
Including those with hydrocarbons, alcohols and ethers,
and proper methods must be applied in operations in which
they are involved. . ^
*
-See Figure X
Below 9.6*C. (49-3 *F.) chlorine hydrate, O,.8H.0. may
crystallize. " *
.
--Dry gas--2.482 at 0*C. and 1 atmos.
**
0* 1 . Liquid--1.468 at-- C. and 53.15 psia. (3.617 atmos.)
--Diy gas--0.113 BTU/lb./*F. (0.113 g. eal./g./*C.) at con stant pressure for chlorine gas at 100 psia. or less between -- 1.1*C. and 26.7*C. (30*F. and 80*F.)
Dry gas--0.0832 Btu/lb./*F. (0.032 g. cal./g./'C.) at . constant volume for chlorine gas at 100 psia. or less between -1.1I *C. and 26.7"C. (30*F. and 80*F.)
r liquid--0.236 Btu/lb./*F. (0.236 g, eal./g./*C.) f r liquid
* * >SC/M ns(
i
>Rn*
\
Manisfocli/ring Chvmitlt' AiiKieh'en, Inc.
SVi( IM
. at equilibrium between -- 1.1*C. and 26.7'C, (30*F. and
80*F.)
.... <VC..--1 .355--Ratio of gas specific heat at constant pressure to specific heat at constant volume.
Specific Volume.
Pry gas--1.992 lt-*/lb. at 0*C (32*F.) and 14.696 psi*.
(1 atmos.)
' V*
Seioratcd gas--1.327 ft.'/lb. at 0BC. (32*F.)
Liquid--0.01091 fLJ/lb. at 0*C C32'F.)
Vapor Pressure.
`
Figure 3.
*
At 0*C <32*F.) the vapor pressure is 53.155 psia. (3.617
atmos.)
*
Viscosity----------
________ Gas--About the same as that of saturated steam between
1 atmos. and 10 atmos. liquid--About oAe-third that of water at the same tempera-
lure from 0#C to 65.6*C (32*F. to 150'F.).
Volume Temperature Relationship.
Thf. volume of liquid chlorine increases rapidly as its tem. perature increases (See Figure 4.)
3/HAZARDS
1. HEALTH HAZARDS
"
/
lit d chlorine is a skin irritant; prolonged cou
rt will pr duce "bums." Liquid chlorine in the
v will cause severe damages When exposed to
^nal atmospheric pressure and temperature -it .
ponies i_o gas.
*
Chlorine gas is primarily a respiratory imtant.
i concentrations exceeding 15 ppm h will imute .
e mucous membranes, the.respiratory system and
c skin. In extreme cases, the difficulty of breath- \
:g may increase to the `point where death can occur .'
aa sufiocati n. 'For more details sec Sect. 10.
3.1.1 Tarulnj Properties
The characteristic penetrating odor of chlorine
as gives warning of its presence in the air. Its
reenish yellow color makes it visible when high con-
estrati ns are present. .
* #`
,# *
;_2 OTHER HAZARDS
'*
33.1. Fire Hazards
Chlorine is neither explosive nor flammable; lowcver, chlorine will support combustion.....
3.2.2 Chemical Action
"*
; Chlorine has a very strong chemical affinity for
many substances. It will react with almost all the
dements and with many inorganic and organic com
pounds, usually with the_evo!ution of heat. At ele
vated temperatures it reacts vigorously with most
metals _(Sce Sect. 23) --* . '
**
`
3.23 Volumetric Expansion
The volume of liquid chlorine increases con siderably with increasing temperature. Precautions
. must be taken to avoid hydrostatic rupture of con tainers or other equipment filled with liquid chlorine.
3-2.4 Corrosive, Action
At ordinary temperatures, dry chlorine, either liquid or gas, docs not corrode steel. (For other materials used in piping systems see Sect. 43 and 2.2. In the presence of moisture, however, highly corro sive conditions exist as a result of the formation of hydrochloric and hypochlorous acids. Every pre caution must be taken to keep chlorine and cidorine equipment free from moisture.. Pipe `lines, valves, and containers must be tightly closed when not in -..use to keep out moisture from the air. Never use water on a chlorine leak because resulting corrosive conditions always make the teak worse.
...... ..
.*
... - CONFTDFNTTAL
4.-ENGINEERING CONTROL OF HAZARDS *
oo 005?S8
4.1 BUILDING DES1CN
\
> 4.1.1 General
Shipping containers and equipment c ntaining
chlorine preferably should be located indoors, in a suitable fire-resistant building. If a separate buildrg` is not provided, the chlorine c ntainers and
equipment should be located in an isolated room having floors and walls of fire-resistant construction. Standard fire walls may be needed to separate chlo rine equipment from flammable materials. Sub
surface locations should be avoided; if impossible, an adcouatc exhaust system should be provided. (See
Sect. 4.4) . . . . .
CHLORINE HANDLING PRINCIPLES Extracted from Texas Division Safety Reference No. 49
1. Chlorine will react violently with many things such as oils, greases, paints, some solvents, etc. It will also react with steel wool, oily filings or pipe cuttings. It -is therefore essential that all foreign jiaterial be removed from chlorine lines and containers before putting chlorine in them.
2. Hot water and/or steam can be used safely to clean chlorine equipment and is strongly recomnended over any solvent. Though carbon tetrachi ride is not reactive with chlorine, it is highly toxic. No solvent, soap or detergent-type material should be used without the approval of a Unit Manager.
Under no circumstances should the following materials be used with chlorine prior to further testing and consultation with the Reactive Chemicals Comnittee. In general, hydrocarbons and silicones should not be used in chlorine service without prior testing. Reactive Chemical hazard Data Reference Numbers are given if available:
' Acetone (RCD 32)
_
" Activated Alumina
-7
..
Activated Charcoal
Alcoh Is
Ammonia
Ander 1 495 Syn. Lube Oil (RCT 2217)
Anderol 500 Syn. Lube Oil (RCT 2216)
Cheaola Lubricant (TFE #8155-2) (RCL 187)
Climax 400 (RCT 2135)
Climax 400 & Iron Powder (RCT 2136)
Climax 400 & Ferric Oxide Powder (RCT 2137)
Climax 600 (RCT 2131)
Climax 6S0 (RCT 2138)
Climax 750 (RCT 2139)
. Climax 800 (RCT 2140)
Climax FS (RCT 2222)
Chi rothene (RCD 30)
Chlorothene NU (RCT 1448 A 1449) (1,1,1 - Trichloroethane plus inhi
bitors - Is more reactive with chlorine or "chlorine gunk" than
chlorothene.)
C p-Graf Anti-Seize Compound (La. Div. LAD-323)
Desco 400 (RCT 2141)
Desco 600 (RCT 2142)
1,2 - Dichloroethane (RCT-32)
Dibutyiphthalate
Dimethyl Polysiloxane
CONFTDFNTIAL
DO 005289
i-
I,
I
CHLORINE HANDLING PRINCIPLES - cont'd
Dow Coming Fluorosilicone 1-3907 (RCT 2132)
Dow Coming FS 1265 (RCT 2134)
Dow Coming Molykote 1-3912 (RCT 2133)
Dow Coming FS 1281 (RCT 2144)
Dow Coming Stopcock Grease (RCT 2145)
Dow Coming Valve Seal (RCT 2143 & 2220)
Dow Coming Valve Lubricant FS-3452 (RCT 2218)
Dowthera G (RCT-1520) & other Dowtherns
Drawing Wax
Ethers
Ethylene Glycol (fiT 451)
Eel-Pro C5-A Anti-Seize Compound (La. Dlv. LAD 323)
Freon 13 (RCT 3706)
Freon 22 (RCL 0080 6 RCT 14.51)
Glycerine
Humbletherm 500 (RCT 0512)
Hydrocarbon Oil
Kerosene
Linseed Oil
Marfax #1 (RCT 2547)
Methyl Trifluoropropyl Siloxane
Mineral Oil
Molykote Br-2 (RCT 2219)
..
_ jtolykote Z. Eowder (RCT 2221)
Neverseez - colloidal copper grease (RCT 2548)
Perchloroethylene (RCD 43)
Permatex Form A - Gasket #2 (RCT 539)
Polychlorinated biphenyl
polyethylene (RCL 0075)
Polypropylene with zinc oxide powder (RCD 32)
Silica Gel
Silicone Oil
Sisco 300 (RCT 2146)
Solox Cleaner
Super Jet Detergent (La. Dlv. LAD 323) - water solution of potassium
hydroxide
Turpentine
Unirex H2
Varsol
Vitrea 33 (1:1 vol. RCS 1086)
Some of these materials are used regularly and even routinely in chlorine plants for other than chlorine service. In some cases, there may be contact with chlorine - this is not reconended. Using the awterials in the plant may be acceptable, but extra care and caution must be used to remove the materials prior to chlorine exposure.
It should not be assumed a material is safe to use with chlorine just because it is not on the list.
DO 00S290
HL0R1NE HANDLING PRINCIPLES - cont'd
3. Lubricants For Chlorine Service
Only completely halogenated fluorocarbon lubricants are chemically inert in liquid and gaseous chlorine. See section on Lubricants for detail.
4. Chlorine and moisture form hydrochloric and hypochlorous acids that mill attack all common metals including steel if brcwght In contact with it. It .also forms hydrates of iron chloride, which will cause'
plugging.
5. Wet chlorine gap may be handled In titanium.equipment at normal tem peratures. The gas must be kept wet as dry chlorine reacts violently with titanium. Dote; All liquid chlorine should be considered as dry chlorine.
6. Chlorine that has-been dried does not react with steel at normal temperatures and is handled and stored in steel equipment.
At ordinary temperatures, dry chlorine reacts with aluminum, arsenic, g Id, mercury, selenium, tellurium, tin, and titanium.
- Antimony, arsenic, bismuth, boron, copper. Iron, phosphorus, and certain of their alloys, in finely divided, powdered, sponge or wire form igni'te spontaneously in chlorine.
7. Dry chlorine will react violently with hot steel. For this reason, welding must not be done on chlorine lines that have not been iso lated and depressured. Also welding cables must not be ettached to such lines.
8. Chlorine and hydrogen mixtures may react violently anywhere such a mixture occurs. Ultra-violet light such as sunlight can start this
reaction.
9. The acid forced by chlorine gas coming in contact with wet skin is - orrosive and should be thoroughly washed off promptly.
10. Liquid chlorine is also dangerous to the skin and In addition can
cause tissue damage due to freezing. "
,
11. Take-offs should be on the top or side of a chlorine line, not on the b ttom. "Chlorine Gunk" will tend to accumulate and cause plugging
12. All chlorine lines should be supported on shoes and not in contact with other lines. This prevents corrosion and stakes the entire line accessible for painting. Lines containing corrosive material, such as acid, should not be installed above chlorine lines.
DO 005291 CONFTDFNTTAl
CHLORINE HANDLING PRINCIPLES - cont'd
13. Chlorine systems should be purged with dry eir or dry nitrogen after depressuring to minimize pick up of moisture (and corrosion) in the system.
1&. Any vessel that has contained chlorine must be depressured, purged, blinded off and washed before it is safe to enter. (See Safety Standard 13.)
15* Chlorine equipment that has been washed should be dried.with air or nitrogen until a dqw point of -60F Is reached.
16. Valves that come in contact with water during washing must be dis mantled and dried before they are returned to chlorine service.
17. D not use water on chlorine leaks. Small chlorine leaks can be located with, the use of anmonla water in a plastic squeeze bottle. "Chlorine Gunk" will expel chlorine gas continuously for long periods. Heat will increase the degassing rate.
18. The volume of liquid chlorine Increases considerably with Increasing temperatures. Precautions must be taken to avoid hydrostatic rupture f lines and vessels. Valves that may contain condensed chlorine that may be trapped in the' valve should not be heated with steam.
DO 005292
CONFIDENTIAL
Metals a. Chlorine and Iron/Carbon Steel
Carbon steel piping and equipment are suitable for service in dry chlorine - less than 5 ppm by weight of water in chlorine at temperatures below 155C (311F). Although laboratory data shows that ignition of iron in chlorine occurs at 204-260 C (400-500F) (4$3F in "Safety Data"), a more realistic ignition temperature under compressor operating con ditions is 173 C (347F). See sunnary of LAD-420 pn next page. In the past, chlorine-iron reactions were serious problems. Present alarm and trip systems plus-temperature recording devices have greatly reduced this problem, but the potential remains. Although the reaction is not explosive it Is very vigorous and destroys steel in a very short time. Large quantities of chlorine can be released. To prevent ignition of iron in chlorine service, the iron must be kept below its auto-ignition temperature. Using a 20 safety factor, a MAXIMUM ACCEPTABLE OPERATING TEMPERATURE Is 155C.
DO 005293 CONFIDENTIAL
DO 005294 CONFIDENTIAL