Document KowR991wDnK8gDqLVZEyB2qo

(conoco) Interoffice Communication T Tom Grumbles From p, [_. Fetzer Daie subject March 24, 1982 Comparative Testing of Organic Vapor Monitors 3M-#3500 & #3520 CONFIDENTIAL In each of the last three summers, extensive VCM exposure studies have been conducted in the Conoco VCM Plant Laboratory. These studies have examined charcoal tube/pump and passive dosimeter monitoring of vinyl chloride and ethylene dichloride exposures. Both standard gas and comparative field studies were completed the first year. The later laboratory studies utilizing a wide concentration range of vinyl chloride standards were conducted primarily with the 3M Brand Organic Vapor Monitor *3500. The data obtained from these studies indicated that the capa city of the monitor towards vinyl chloride was dependent upon the standard concentration and the duration of the testing. The data also indicated that vinyl chloride readily desorbed from the monitor during the course of the testing. During this time frame, 3M developed the dual wafer monitor, =3520, to im prove the retention of the volatile organics. The literature describing the #3520 monitor and its sampling criterias stated the validity of the test can now be established by calculating the weight ratio of components found in the primary and secondary sections of the monitor. This ratio (Ws/Wp) must be 0.5 or less for the sample to be valid. 3M provided the VCM Plant with several monitors to conduct a field and laboratory study. The purpose of the study was to compare the results from the #3520 monitor to those from the #3500 moni tor in actual field use and in a control laboratory studv. Manpower limitations delayed the completion of this study for several months. The field study portion included personnel testing during the initial shutdown phase of a plant maintenance, turnaround, vinyl chloride tank car loading opera tions and miscellaneous work functions during normal plant operations. These data are summarized in Table I. During the field study seven valid samples, according to Ws/Wp ratio, were ob tained on the twenty-five testings conducted. In examining the field study data, it is interesting to note that in the presence of ethylene dichloride (EDC), more vinyl is found on the secondary wafer than on the primary. Little or no EDC was ever found on the secondary wafer as indicated by the Ws/Wp ratio. The vinyl chloride concentration shown for the two monitors agreed within 0.1 ppm on 14 of 25 samples. Only 4 of the 12 turnaround maintenance samples were in this group. The data appears to indicate that EDC displaced the vinyl chlor ide component from the primary badge back to the atmosphere in the #3500 moni tor and onto the secondary section in the #3520 monitor. SAL 0000480!- Comparative Testing March 24, 1982 Page 2 The data for the standards study conducted in the laboratory are shown in Table II and graphically represented in Figure I for vinyl chloride and in Figure II for EDC. These data substiate the observation made from the field data concerning EDC in that it remains on the primary absorbent wafer. Our standards data for vinyl chloride supports the study conducted by 3M and shows how rapidly the vinyl chloride is transferred to the secondary absorbent or eliminated to the atmosphere. This study indicates that for a combined gas, 8.20 ppm mole vinyl chloride and 9.8 ppm mole EDC, the #3520 provides a valid sample for at least 6 hours. Figure I. It appears that the single badge, #3500, began losing the vinyl chloride almost irnediately when compared to the corrected value for the #3520 dual wafer badge. ; Additional work will be required v/i th lower concentration standards to deter mine where it becomes practical to use the #3520 monitor in place of the #3500 monitor. P. L. Fetzer kf CC: SRA-JAD-RB-JWW-J. Hal 1 FT FI D STUDY COMPARISON '3-M 3500 AND 3520 BADGES VINYL CHLORIDE AND ETHYLENE DICHLORIDE Sample No. Samole Tine-Min. a 500 b 475 c 465 d 465 e 480 f 490 g 450 h 450 i 4^0 j 440 k 430 1 480 m 445 n 450 0 420 P . 470 q 410 r 495 S 450 t 470 u 450 V 450 w 430 X 490 y 450 .D. - Not Detected PPM VCM #3500 #3520 0.33 0.89 0.06 0.07 0.23 0.04 0.26 0.39 0.13 0.27 0.13 0.59 0.14 0.06 0.45 0.19 0.17 0.06 0.62 0.25 0.05 0.03 N.D. 0.10 0.07 N.D. N.D. N.D. 0.21 2.34 N.D. 0.14 0.11 0.21 <0.01 0.09 0.04 0.16 0.15 0.04 0.01 0.02 0.02 0.04 0.04 0.01 0.06 0.04 0.05 0.07 1.08 1.47 0.34 0.33 1.48 0.78 1.12 1.61 1.59 2.47 1.18 1.80 3.95 0 0.65 0 0.16 0.33 0 0.67 1.09 0.46 0.53 #3500 3.11 3.00 22.56 7.81 17.17 31.71 11.57 9.70 46.38 100.40 13.20 5.03 N.D. N.D. N.D. N.D. 1.10 0.36 0.17 N.D. 0.40 0.13 1.57 1.93 0.31 PPM EDC -3520 3.74 3.79 24.25 8.72 16.79 31.79 11.96 9.54 23.30 20.58 13.39 4.78 N.D. N.D. N.D. N.D. 1.00 0.44 0.23 N.D. 0.37 0.49 1.37 6.17 0.91 Ws 0 0 0 0 0 0 0 0 0 0.01 0 0 0 0 0 0 0.81 0 0 0 p, | () 0 0 0 4 8 0 9 TABLE ri LABORATORY STUDY COMPARISON VINYL CHLORIDE AND ETHYLENE DICHLORIDE STANDARDS 3M #3500 AND #3520 BADGES Time Samples 360 _____________________ VCM AREA________________________ #3500 #3520 Single Front Back Correct Total Ms/ Wd 666,271 527,397 159,306 379,470 .30 #3500 Single 75,307 ___________EDC AREA #3520 Corrected Ms Front Back Total W 72,623 0 72,628 0 240 530,436 442,349 71,324 599,262 .16 55,654 51.749 0 51,749 C 125 27,990 120 257,706 241,421 23,974 294,163 .10 26,302 24,638 24,638 0 60 134,303 13,540 ^00048092 /OO (conoco) Interoffice Communication Ta From Cate Subiect Tom Grumbles P. L. Fetzer March 24, 1932 Comparative Testing or Oraanic Vaoor Monitors 3M- =3500 i =3520 CONFIDENTIAL In each of the last three summers, extensive VCM exposure studies have been conducted in the Conoco VCM Plant Laboratory, 'hese studies nave examined charcoal tube/pump and passive dosimeter monitoring c* vinyl chloride anG ethylene dichloride exposures. Both standard gas ana comparative field studies were completed the first year. The later laboratory studies utilizing a wide concentration range of vinyl chloride standards were donducted primarily with the 3M Brand Organic Vapor Monitor -3500. The data obtained from tnese studies indicated that the capa city of the monitor towards vinyl chloride was dependent upon the standard concentration and the duration of the testing. The data also indicated that vinyl cnloride readily desoroed from the monitor during the course of the testing. During this time frame, 3M developed tne dual wafer monitor, =3520, to im prove the retention of the volatile organics. The literature describing the = 3520 monitor ana its samoling criterias stated the validity of the tes-t can now be established by calculating the weight ratio of comconents found in the primary and seconaary sections of the monitor, "his ratio yis/Wp) must be 0.5 or less for tne sample to oe valid. 2M provided tne VCM Plant with sever31 monitors to conduct a field and laboratory study, 'he purpose of the study was to ccmoare the results f^om the =3523 "ioniser to tnese from tne =3500 ronitor in actual field use ana i~ a control laDoraso--;/ stuav. `-'anoewe^ limitations delayed tne comcietion of th's study ":r several mcrt"S. The field study portion included personnel testing during the initial shutdown onase of a olant maintenance turnaround, vinyl cnloride tank car loading operat"ors ad1"* mi sc3' 1 anecus vcv'k f^nctio^" o u" n o ^ z '''"= a.art z Zz ^ zz' zz. ~S32 :ata a-e summarizes ;~acle 1. 3ur' nc ~"e ~= 1 c s* utv ' tainso on tne "'isniv-fi vs te data it is in teres titc to " EBC:, more vinyl is found c or no EEC was ever founc on tne secondary wafer than on t.-.e orimary. Little ie seconcarv *afer as -'rdi cased by tne >is/Vio ravo. vinyl cnloride concentration snewn for tne two monitc"s aoreed within cn l-d of 25 samoles. Only - o~ tne 12 turnaround "c i - tenance samples ns ircuo. 'he oata aocears to incica e that EEC disci aces tne vinyl i d e component from tne orimary badge back to the atmGStnere in the ?35QQ noni,,3 ano onto the seconcarv section in tne =3523 monitor. Comparative Testing Marcn 24, 1982 Page 2 The dat3 for the standards study conducted in the laboratory are shown in Table II ana graphically represented in Figure I for vinyl chloride and in Figure II far EDC. These data substiate the observation made from the field data concerning EDC in that it remains on one primary absorbent wafer. Our standards data for vinyl chloride supports the study conducted by 1M and shows how rapidly the vinyl chloride is transferred to the secondary absorbent or eliminated to the atmosphere. This study indicates that for a combinea aas, 8.20 ocn mole vinyl chloride and 9.3 opm mole EDC, the *3520 provides a valid same's *`cr at least 5 hours , Figure I. It aooears that the single badge, *3500, began losing the vinyl chloride almost immediately when comoarec to the corrscteo value for the *3520 dual wafer badge. Additional work will be required with lower concentration standards to deter mine where it becomes practical to use the *3520 monitor in olace of the t350C monitor. P. L. Fetter kf CC: SRA-JAD-RB-JWU-J. Hall Comparative Testing March 24, 1982 Page 2 The data for the standards study conducted in the laboratory are shown in Table II and graphically represented in Figure I for vinyl chloride and in Figure II for EDO. These data substiate the observation made from the field data concerning EDC in that it remains on the primary absorbent wafer. Our standards data for vinyl chloride supports the study conducted by 3M and shows how rapidly the vinyl chloride is transferred to the secondary absorbent or eliminated to the atmosphere. This study indicates that for a combined gas, 8.20 oom mole vinyl chloride and 9.8 ppm mole EOC, the #3520 provides a valid sample for at least 6 hours. Figure I. It appears that the single badge, #3500, began losing the vinyl chloride almost immediately when compared to the corrected value for the #3520 dual wafer badge. Additional work will be required with lower concentration standards to deter mine where it becomes practical to use the #3520 monitor in place of the #3500 monitor. P. L. Fetzer kf CC: SRA-JAD-RB-JWIJ-J. Hal 1 Comparative Testing March 24, 1982 Page 2 The data for the standards study conducted in the laboratory are shown in Table II and graphically represented in Figure I for vinyl chloride and in Figure II for EDC. These data substiate the observation made from the field data concerning EDC in that it remains on the primary absorbent wafer. Our standards data for vinyl chloride supports the study conducted by 3M and shows how rapidly the vinyl chloride is transferred to the secondary absorbent or eliminated to the atmosphere. This study indicates that for a combined gas, 8.20 ppm mole vinyl chloride and 9.8 ppm mole EDC, the #3520 provides a valid sample for at least 6 hours, Figure I. It appears that the single badge, #3500, began losing the vinyl chloride almost immediately when compared to the corrected value for the #3520 dual wafer badge. Additional work will be required with lower concentration standards to deter mine where it becomes practical to use the #3520 monitor in place of the #3500 monitor. P. L. Fetzer kf CC: SHA-JAD-RB-JWW-J. Hall FTFLD STUDY COMPARISON '3-M #3500 AND *3520 BADGES VINYL CHLORIDE AND ETHYLENE DICHLORIDE Sample No. Samole Time-Min. a 500 b 475 c 465 d 465 e 480 f 490 g 450 h 450 i 440 j 440 k 430 1 480 m 445 n 450 0 420 P . 470 q 410 r 495 5 450 t 470 u 450 V 450 w 430 X 490 y 450 .D. - Not Detected PPM VCM #3500 0.33 0.06 0.07 0.23 0.04 0.26 0.14 0.06 #3520 0.39 0.39 0.13 0.27 0.13 0.59 0.45 0.19 0.17 0.06 0.05 0.03 N.D. 0.62 0.25 0.10 0.07 N.D. N.D. 0.21 N.D. 0.14 <0.01 0.09 0.04 0.01 0.02 0.02 0.04 0.04 N.D. 2.34 0.11 0.21 0.16 0.15 0.04 0.01 0.06 0.04 0.05 0.07 % 1.08 1.47 Q.S4 0.33 1.4S 0.78 1.12 1.61 1.59 2.47 1.18 1.80 3.95 0 0.65 0 0.16 0.33 0 0.67 1.09 0.46 0.53 #3500 3.11 3.00 22.56 7.81 17.17 31.71 11.57 9.70 46.38 100.40 13.20 5.08 N.D. N.D. N.D. N.D. 1.10 0.36 0.17 N.D. 0.40 0.13 1.57 1.93 0.81 PPM EDC #3520 3.74 3.79 24.25 8.72 16.79 31.79 11.96 9.54 23.80 20.58 13.89 4.78 N.D. N.D. N.D. N.D. 1.00 0.44 0.23 N.D. 0.37 0.49 1.37 6.17 o.ai Ws 0 0 0 0 0 0 0 0 0 0.01 0 0 0 0 0 0 0.81 0 0 0 SAL 00 < ) 0 4 3 0( FIELD STUDY COMPARISON '3-M #3500 ANO #3520 BADGES VINYL CHLORIDE AND ETHYLENE DICHLORIDE Samp!e No. Sample Tine-Min. a 5 00 b 475 c 465 d 465 e 480 f 490 9 450 h 450 i 440 j 440 k 430 1 480 m 445 n 450 0 420 P . 470 q 410 r 495 s 450 t 470 u 450 V 450 w 480 X 490 y 450 .D. - Not Detected PPM VCM #3500 #3520 0.33 0.06 0.07 0.89 0.39 0.13 0.23 0.27 0.04 0.26 0.13 0.59 0.14 0.06 0.17 0.06 0.05 0.03 N.D. 0.45 0.19 0.62 0.25 9.10 0.07 N.D. N.O. 0.21 N.D. 2.34 N.D. 0.14 <0.01 0.11 0.21 0.16 0.09 0.04 0.15 0.04 0.01 0.01 0.02 0.02 0.04 0.04 0.06 0.04 0.05 0.07 1.08 1.47 0.34 0.33 1.48 0.78 1.12 1.61 1.59 2.47 1.13 1.80 3.95 0 0.65 0 0.16 0.33 0 0.67 1.09 0.46 0.53 #3500 3.11 3.00 22.56 7.81 17.17 31.71 11.57 9.70 46.33 100.40 13.20 5.03 N.D. N.D. N.D. N.D. 1.10 0.36 0.17 N.D. 0.40 0.13 1.57 1.93 0.81 PPM EDC -3520 3.74 3.79 24.25 8.72 16.79 31.79 11.96 9.54 23.80 20.58 13.89 4.78 N.D. N.D. N.D. N.D. 1.00 0.44 0.23 N.D. 0.37 0.49 1.37 6.17 0.91 Ws Hn 0 0 0 0 0 Q 0 0 0 0.01 0 0 a 0 0 0 0.81 0 0 0 hj 00004809 pi C| n c TODY COMPARISON '3-M -3500 AND =*3523 RADGES VINYL CHLORIDE AND ethyle: !E OICHLORrO c Sample No. a b c d o f g h Sample T i m e -' M o 500 -75 465 465 450 490 450 45G 44Q j 44Q k 430 1 430 m 445 n 450 Q 0 470 q 410 - 4 05 3 "-- ^^ 3 -* " ! J u 4- 7 Z-H v 400 .< 1C r* 7 1- N.D. - Nat Detected PPM 7cm -3500 0.33 = 3520 q pq 0.06 0.07 0.23 0.39 0.13 0.27 0.04 0.26 0.14 0.06 0.17 0.06 0.13 0.59 0.45 0.19 - .0^ 0.25 0.05 0.03 N.D. 0.10 0.07 N.D. N.D. 0.2' N.D. 2.34 N. D. 0.14 0.11 0.21 <:.:; 0.09 - -2.1c 7 04 0.31 '"i ^ c 3.34 3 0' 0.06 '22 2.34 e . -w*' ^* 0.05 0.0' i;i:s0. 1.03 1.47 0.34 0.33 1.43 0.73 1.12 1.61 1.59 2.47 1.13 1.30 5.95 0 0.65 - :- 0.3 3 ~i / > , Ct : i :w 0. 16 0.53 = 3500 3.11 1w> n-ry 22.55 7. si 17.17 31.71 11.57 9.70 46.33 00.40 13.20 5.03 N.D. m, t n u \W . N.D. 1.10 0.35 - 17 N.D. 0.40 0.13 1 57 1.93 0.31 PPM EDO = 3520 3.74 3.79 24.25 3.72 15.79 31.79 11.96 9.54 23.30 20.53 13.39 4.78 N.D. *1 *S , ^ u N.D. n.d. 1i jr- r 1.44 J . 4_ J 0.37 0.49 1.37 6.17 0.91 Ws 0 nj 0 0 0 0 0 0 0.01 0 0 rU*1 3 0 0 0.31 O n.j 0 TABLE I! LABORATORY STUDY COMPARISON VINYL CHLORIDE AND ETHYLENE DICHLORIDE STANDARDS 3M *3500 AN0""#3520" BADGES Time Samples #3500 Sinqle 360 666,271 VCM AREA #3520 #3500 Front Back Correct Ws/ Total Wd Sinaie 527,397 159,306 379,470 .30 75,307 EDC AREA #3520 Front 72,623 Corrected Ws Back Total W 0 72,628 c 240 530,436 442,349 71,324 599,262 .16 55,654 51.749 0 51,749 125 27,990 120 257,706 241,421 23 ,974 294,163 .10 25,302 24,633 - 24,633 - 60 134,303 13,540 i #04 8' TABLE II LABORATORY STUDY COMPARISON VINYL CHLORIDE ANOTHYLENE ~DrCHLORIDE_STANDARD$ 3M #3500 AND #3520 BADGES Time Samples VCM AREA EDC AREA #3500 #3520 #3500 #3520 Sinale Front Back Correct Ws/ Total Wp Sinale Corrected Ws Front Back Total Wf 360 666,271 527,397 159,806 879,470 .30 75,307 72,628 0 72,628 0 240 530,436 442,349 71,324 599,262 .16 55,654 51.749 0 51,749 0 125 27,990 120 257,706 241,421 23,974 294,163 .10 26,302 24,638 24,638 0 60 134,303 13,540 `-'00043092 TABLE II LABORATORY STUDY COMPARISON VINYL CHLORIDE AND ETHYLENE DICHLORIDE STANDARDS 3M #3500 AND #3520 BADGES Time Samples VCM AREA EDC AREA #3500 #3520 #3500 #3520 Sinqle Front Back Correct Ws/ Total Wp Sinqle Front Corrected Ws, Back Total Wr 360 666,271 527,097 159,306 879,470 .30 75,307 72,628 0 72,628 0 240 530,436 442,349 71,324 599,262 .16 55,654 51.749 0 51,749 0 125 27,990 120 257,706 241,421 23,974 294,163 .10 26,302 24,638 24,638 0 60 134,303 13,540 SAL 0000^8092 mi rji /OO n: tin m ( H rtrji