Document ZBBwbyND44pwy66z9RLZx5d4V

CHEMICALS INDUSTRIES INTEROFFICE / LAKE CHARLES TO P. S, Trew FROM M. G. Carver DATE July 21, 1982 SUBJECT Vent Sampling The Organics Classifier Scrubber Vent has been recharacterized for chlorinated hydrocarbon emissions. The vent was characterized in May, 1982 and was found to be a continuous emission source with a flow rate of =46 ft3/min emitting 650-1200 lb/day chlori nated hydrocarbons. The nitrogen pad pressure was 2.5 in. Ha0 and the water seal pressure was 3.0 in. Ha0. The vapor pressure due to the light chlorinated hydro carbons in combination with the nitrogen pad pressure was enough to overcome the water seal resulting in a continuous flow through the vent. The AP was increased to 1.5 in. Ha0 by increasing the water seal to 4 in. Ha0. The procedure of recharacterization was to sample the vent while tar buggies and vacuum trucks were dumping into the classifier, and during periods where no "dumping" was taking place. In order to sample during all operating conditions, the vent was sampled as the sludge built up to capacity which normally takes three to four weeks. The minor changes made on the system have significantly reduced chlorinated hydrocarbon emissions. Attached is a series of analyses and a graph of velocity data gathered during dumping operations. It is strongly recommended that tar buggy operators and labor personnel wear respiratory protection in the area. ce Attachments cc: H. J. Hoenes, Jr. M. W. Wood C. P. LeBlanc B. Salter/M. Huber W. Oglesby/M. Kamal Environmental Control File (Wyche) gL 044025 Sample Time/Date 9:00 a.m./6-30 10:30 a.m./6-30 2:00 p.m./6-30 2:30 p.m./6-3Q 9:00 a.m./7-l 9:30 a.m./7-l 9:45 a.m./7-6 9:00 a.m./7-9 9:10 a.m./7-9 1:20 p.m./7-13 1:30 p.m./7-13 9:30 a.m./7-19 Dumping Operatii EC tar buggy None EDC tar buggy None None DCE tar buggy None None Vacuum truck None DCE tar buggy None Flow Rate (ft3/min) <0.5 <0.5 <0.5 <0.5 <0.5 <0.5 2.7 4.4 71.0 <0.5 61.0 <0.5 Total C1HC V% PMR*(lb/day) <0.1 <1 <0.1 <1 <0.1 <1 <0.1 <1 <0.1 <1 <0.1 <1 7.0 78** 5.6 88** 6.1 1499** <0.1 <1 7.9 1411** <0.1 <1 * Pollutant Mass Rate at continuous emission. ** See attached analysis. SL 044026 t'l me (m * duw\pm^ p tr'iod -V- Sampling period SL 044027 . Analysis c>*f "VVkG. Oy^amClflSS*i *ft-er (^a.w^le.4 4 7-L-&X ) C^U-vw^Wx^j o ' O V\S L'me^r 'flpcu r<z\e. - __________ Component Chloroethene Chioro ethane (VC) (EC) Methylene Chloride (MeCla) 1.1- Dichloroethene (VDC) 1.1- Dichloroethane (DCE) 1.2- Dichloroethene (Cls/Trans) Trichloromethane (CHClj) 1.2- Dichloroethane (EDC) 1.1.1- Trichloroethane (MC) Tetrachloromethane (CC14) Trichloroethene (Trichlor) 1.1.2- Trichloroethane (TCE) Tetrachloroethene T.-tmcU\oro e-+Ua.he. Pa^VatWoro -4Vc*v\ e- I *\MtVlvy cXnI o Xc. (Perchlor) Total C1HC Ttms (Year % vA jlpil 0.<+L *=o. Of <0.01 /.28 ^o.o| 0.(1 VSQ <?0.0| O.bS 6.07 0.22 IOK.tl fr- 1.05 PMR /lb Day I'3.3 _0_ 2tf6 MIL M3. 2.8 UL3. AS 2.3 1% SL 044028 Analysis o'? "VY\S- Oy^clyuc-s C Uss'i *f\er (W.*lcJl VOOn.*, 7-^-sa. ) K^O Dlcw>piV\e b^9*wfi'ohS LjV> 'f'tauj, r^ie. - V Component Chloroethene (VC) Ch&roethane (EC) Methylene Chloride 1,1-Dichloroethene (MeCla) (VDC) 1,1-Dichloroe thane (DCE) 1,2-Dichloroethene (Cis/Trans) Trichloromethane (CHC1,) 1,2-Dichloroethane (EDC) 1,1,1-Trichloroethane (MC) Tetrachloromethane (CC1J Trichloroethene (Trichlor) 1,1,2-Trichloroethane (TCE) Tetrachloroethene DY (Perchlor) (/Aed) % v/v O. 01 J22-- <6.0/ oM-- *caof 1. IF <0.0/ 6.21 0.2S" 0.14 0.36 pmr lb /Day 0- 1 so, a I--3-- -- f- 3 / 5.7 ------ - \ s. s /S.7 7.( Total C1HC Tov*s^/Y&ar S.l>f SL 044029 ____ l(. Analysis o'? "VW OrgamcA C Uss'i -ft er \/0At UJ| q: iocu* }n- i-8z. ) Du-r, vvj Op^-f; s L_'iV\eAr -^Ipiv /re. ~ 4 oo ^L/nJ^ /V*4e_'. TUfc- linear lw vA'- ? 4W*7 JIcuti-k-j miv\u.-Wb Component % vA 4oo las-WJi p'eJf^vta'OKS. ' pMr lb /Day Chloroethene Chiproethane (VC) O-OX (EC) \.4o 32._ ^18,1 Methylene Chloride 1,1-Dichloroethene (MeCla) (VDC) 0. OB ^O.q | /*l.C, ------- 1,1-Dichloroethane 1,2-Dichloroethene (DCE) (Cis/Trans) o. ro *ZO. 0 ) 128,5" ~' Trichloromethane (CHCla) 0.-2 r 77. S" 1,2-Dichloroethane (EDC) 1,1,1-Trichloroethane (MC) Tetrachloromethane (CCU) Trichloroethene (Trichlor) 1*20 ^D.o) O. 20 0.4-0 3o?/ -- 7<?. <7 5" 1,1,2-Trichloroethane (TCE) O.fsO ?7'7.'2_ Tetrachloroethene (cJU\o'r\<l - (Perchlor) (^AcCf) 0-20 O.S St.l (>s;6 Total C1HC 6.o s' i+M SL 044030 Analysis o*? "\*W Oy^oumca CUss'i-fter \ZcjaV (^G_vv,^)l-e.4 r*3jow> ^ *7- 13' ^"2- ^ DcAJTtVxej OJO ^VS3r("11? Lm Ar -flocu Y^e. 357> ^4/y^s No'ht' 'TV*- liwA)T -f(oto *fe> KVMV\ v^s c! Uri 3 a.wS. Component % vA c\.?4-i<ur - JLtfvf'ivx P>aR lb /^Day Chloroethene Chloroethane Methylene Chloride (VC) (EC) (MeCla) 0.04 5-Ot 0.0 1 S-.7 m-%.2 -- 1,1-Dichloroethene (VDC) ^O.bl --* 1,1-Dichloroethane (DCE) 0.3 8 1,2-Dichloroethene (Cls/Trans) & <?. 4 Trichloromethane (CHCls) 0I(, <f3,^ 1,2-Dichloroethane (EDC) 1,1,1-Trichloroethane (MC) Tetrachloromethane (CC1*) Trichloroethene (Trichlor) 1,1,2-Trichloroethane (TCE) 1-10 *=a.OI 0.(7D-%Z to.0% ---. <+3-2. loo.z Tetrachloroethene \Me^y{cU oy Jl &. (Perchlor) (M^i) 0.13 0.5-1 <f 3. "2S'?. 6 ev^ Total C1HC 7.9 KM SL 044031