Document ba9ZmOz50zOXjQy8ywEg5nar0

H 1*. Wheeler Determination of Polychlorinated Biphenyl (PCB's) Residues in Grades of Pulp, Paper and Paperboard by S. L Shahied, Richahd P. Stanovick, David E. MclNTURFF,*nd Emil Missachi Biochemistry Department DazeIton Laboratories, Inc. yienna, Lirginia 221 HO Polychlorinated biphenyls (PCB's, ArocloP^ 1242 and 125b) are of widespread use in the manufacturing of electrical insu lators, varnishes, paints, lubricants and heat transfer fluids. They are also used as plasticizers. JENSEN, et al, (1,2) and WIDMARK (3) identified a group of PCB's in the Swedish environ ment through the use of g^s chromatography and mass spectroscopy. This was the first time that PCB's were recognized as environ mental pollutants. The purpose of this study was to determine residues of PCB's in different grades of pulp, paper and paperboard samples. These grades included both food packaging and non-food packaging grades. The samples were procurred from members of The American Paper Institute frqm various geographic locations throughout the country during the months of November and December of 1971. Materials and Methods Ten grams of sample were weighed, shredded into small pieces, and transferred to a 500-ml round bottomed flask. One-hundred milliliters of 2% methanolic potassium hydroxide were added to the sample and refluxed for 30 minutes. The bydrollzed sample was filtered and bo ml were taken for extraction with petroleum ether. The bO-ml aliquot (b.O gm sample) from the extract was transferred to a 250-ml. separatory funnel. The aliquot was shaken vigorously with 20 ml of petroleum ether and bO ml of distilled water. The aqueous layer was drained into a second separatory funnel containing bo ml of petroleum ether, the separatory funnel was shaken vigorously, and the aqueous layer discarded. The petroleum ether extracts were combined and washed with three 20-ml portions of distilled water. The petroleum ether extract was taken through a column of anhydrous sodium sulfate into a 100-ml volumetric flask. The volume was adjusted to the mark with petro leum ether. A 10-ml aliquot (O.b gm sanple) was taken fhom the above- mentioned 100-ml sample, and concentrated to a known volume. A 1- to 5-pl sample was Injected into a gas chranatocraph equipped with an Nl63 electron capture detector system. A standard curve was plotted each day for Aroclors 12b2 and 125b. Registered trademark, Monsanto Company 80 Bollrtin of oronmrnt*l ConOmioalion & ToJco!ojry, Vo!. JO, No. 2 0 19TJ by 5pfinfVerUj: New York. Joe. DSW 030135 STLCOPCB4014097 dues py. ' B's ese ides. mtry - sees. Z, 7 the is :her. - laken ed V nnel 20-tnl -ml etro- A jped irve I j - . ' i ' ^ditk i wl 7* 1 Qaa Chrcmatopyaphlc Conditions . Oas chrcnatographlc column, 6' x 1/4" O.D. glass, packed with 3% OV-17 on 100/200 mesh Gas-chran Q Oolumn Temperature: 200 C Detector Temperature: 245 C Inlet Temperature: 275 C Carrier Gas (Nitrogen): 86 ral/Mn flow TABLE 1 Sumary of Aroclor 1242 and 1254 residues detected in pulp, paper and paperboard. Sample Identification Aroclor 1242 Found ppm Aroclor 1254 Fcund ppm Total* Aroclor Found ppm Unbleached Kraft Pulp 81 <0.50 <0.50 <0.50 3 <0.50 <0.50 <0.50 39 <0.50 <0.50 <0.50 Bleached Kraft Pulp 44 <0.50 <0.50 <0.50 11 1.33 <0.50 1.33 82 <0.50 <0.50 <0.50 55 <0.50 <0.50 <0.50 Virgin Newsprint 47 <0.50 <0.50 <0.50 15 0.58 0.42 1.00 48 <0.50 -<0.50 <0.50 Recycled Newsprint 45 <0.50 <0.50 <0.50 86 <0.50 . <0.50 <0.50 36 1:38 <0.50 . 1.38 * Recycled Bond Paper 35** 35** 17 91-00 - 265.00 - 22.50 25.00 113.50 290.00 Bleached Kraft Llnerboard 54 <0.50 <0-50 <0.50 * 1242 and 1254 * Aroclor 1242 was assayed from a 50-rnl final volume. Aroclor 1254 was assayed from a 4-ml final volume. The total of 1242 and 1254 is indicated in column labeled Total ppm. 81 I DSva 030136 STLCOPCB4014098 f i i -- . TABLE 1 (contin.) Sample Identification Aroclar 1242 Found ppm Aroclar 1254 Found ppm Unbleached Kraft Linerboard 33 <0.50 <0.50 23 <0.50 <0.50 41 <0.50 <0.50 72 <0.50 <0.50 51 <0.50 <0.50 61 <0.50 <0.50 40 <0.50 <0.50 Total* Aroclar Found ppm <D.50 <0.50 <0.50 <0.50 <0.50 <0.50 <D-50 Solid Bleached Sulfate Board Nonclay Coated 25 <0.50 <0.50 <0.50 75 <0.50 <0.50 <0.50 83 <0.50 <0.50 <0.50 32 <0.50 <0.50 <0.50 30 1.92 <0.50 1.92 50 <D.50 <0.50 <0.50 Solid Bleached Sulfate Board Clay Coated 84 <0.50 <0.50 80 <0.50 <0.50 38 <0.50 <0.50 49 <0.50 <0.50 71 <0.50 <0.50 31 <0.50 <0.50 74 <0.50 <0.50 Solid Unbleached Sulfate Board Clay Coated <0.50 <33.50 <0.50 <0.50 <0.50 <0.50 <0.50 73 <0.50 <0.50 <0.50 Patent White Newsback Paperboard (also known as White Lined, White Lined News, and White Lined Manila Back) 87 10.70 <0.50 10.70 69 3.21 1.29 4.50 66 2.42 1.67 4.09 64 18.80 4.17 23.00 28 <0.50 10,35 10.35 13 35.00 7.50 42.50 26 1-55 0.22 1.77 52 <0.50 <0.50 <0.50 9 1.50 1.00 2.50 Patent White Newsback Clay Coated Paperboard (Also Known as Clay Coated News and Clay Coated White Back) 88 , 68 65 1242 and 1254 2.75 2.92 2.83 82 <0.50 0.92 1.50 2.75 3.84 4.33 DSW 030137 STLCOPCB4014099 TABLE 1 (contin.) Sample Identification 62 27 12 6 53 7 Aroclar 1242 Pound ppn 5.42 1.55 28.40 7.50 <0.50 1.71 Aroclor 1254 Found ppm 1.46 0.30 2.20 1.10 <0.50 0.67 Total* Aroclar Found ppm 6.88 1.85 30.60 8.60 <0.50 2.38 Shell Stock (Any Dry Pood Packaging Grade Which Will Be Overwrapped with a Printed Wrapper, May be a lined Sheet such as Manila lined News) 89 23.12 <0.50 70 2.46 1.09 67 2.29 1.25 63 1.63 0.08 29 8.4o 2.40 14 41.00 8.00 58 3-25 ' <0.50 8 3-10 3.84 Unbleached Kraft Bag or Wrapper Stock 23.12 3-55 3.54 1.71 10.80 49.00 3.25 6.94 59 <0.50 <0.50 <0.50 2 <0.50 <0.50 <0.50 Bleached Kraft Bag, Wrapper or Tag Stock 57 <0.50 <0.50 78 <0.50 <0.50 77 <0.50 <0.50 19 1.00 <0.50 <0.50 <0.50 <0.50 1.00 -Glassine 20 1.10 0.25 1.35 60 <0.50 <0.50 0.50 5 <0.50 <0.50 <0.50 Greaseproof 10 <0.50 <0.50 <0.50 37 <0.50 <0.50 <0.50 76 <0.50 <0.50 <0.50 42 43 22 1242 and 1254 Publication Paper <0.50 ' <0.50 <0.50 . <0.50 <0.50 <0.50 <0.50 <0.50 <0.50 83 DSW 030138 STLCOPCB4014100 * 1 r^ ..... " k. A. Sample Identification 79 21 4 1 16 85 34 TABLE 1 (contin.) Aroclor 1242 Aroclor 125*) Found ppm Pound ppm Virgin Bond Paper <0.50 8.50 <0.50 <0.50 2.10 <0.50 1.60 <0.50 <0.50 <0.50 <0.50 <0.50 <0.50 <0.50 Total# Aroclor Found PFm <0.50 8.50 <0.50 <0.50 2.10 <0.50 1.60 1242 and 1254 TABLE 2 Recovery of Aroclor 1242 and Aroclor 1254 from pulp, paper and paperboard sanples. Sample Identiflcation 50 45 52 5 1 10 3 63 52 63 10 1 Paperboard Grade Solid Bleached Sulfate Board Nonclay Coated Recycled News print Clay Coated Unbleached Patent White Newsback Glasslne Virgin Bond Paper Greaseproof Unbleached Kraft Pulp Shell Stock Patent White Newsback Shell Stock Greaseproof Virgin Bond Paper Spike Level 1242 1254 ppm ppm 0.61 1.21 2.42 4.85 9-70 14.54 29.10 121.10 2.065 103.250 14.450 10.330 84 Recovery 1242 1254 ~r ...i 92.2 93.0 88.0 75.0 88.0 80.5 86.0 82.0 99-0 97.0 82.5 108.5 DSW 030139 STLCOPCB4014101 Ii I | i I l .0 \ .0 5 5 4 l .44 ; I 85 OSW 030140 STLCOPCB4014102 TNI i i in j N 2*06 rg Arocior 1254 Siarvdord ' 2- i 86 DSW 030141 STLCOPCB4014103 Results and Discussion The results obtained for the surveyjihe summarized in Table 1. The sensitivity of the method for PCTfe? ls_0.50 ppm. Recovery data to validate the method are presented-irr Table 2. The average recovery for Aroclor 12^12 is 8&L and-that for Aroclor 125*4 is 98?. Typical chromatograms for'ar'StandarcL (Aroclor 12*42) and fortified samples are presented in Figure 17 irraddition, typical chromatograms for a standard (Aroclor-125^)"and fortified paper board samples are shown in Figure 2. . __ We found that 11? of the different grades of pulp'Tpaper, and paperboard samples contained PCB residues higher than 1CLQ ppm, 4? of the samples contained PCB residues of 6.0 to lO.O-pprrand 25? of the-samples contained PCB residues `.IrTthe range of 1.0 to 5-0 ppm. However, PCB residues were found to be less than 0.50 ppm in 58? of all samples analyzed. It should be'noted, however, that this sur vey was conducted during the November-December 1971 period, and if a new survey is made, levels"'of PCB residues in samples would most likely-be "lower-due to'the effort put forth by the paper Industry. As shown in Table 1, PCB residues .were..also found in virgin newsprint and virgin bond paper. . However-, -it is suspected that the .manufacturing processes may be-the cause of the residues. Acknowledgments -_The research was supported-by The-American Paper Institute (API) . We thank all members for`their support and-cooperation. Special thanks go to Dr. Paul Trout who is with-Container Corpo ration of America and Mr. Einar T. Wulfsberg, .Consultant to API. -------- References 1. JENSEN, S., A New Chemical HazardNew-Sei-^-32, 612 (1966). 2. JENSEN, S., et al., DDT and PCB in Marine' Animals from Swedish Viaters, Nature, 22^ 2fl7-250 (1969)- --,,_____ 3. WUMARK, G., Possible Interference -by Xhdorinatecr Biphenyls, J.A.O.A.C. , 50, 1069 (1967). ----- :. . 87 OSW 030142 STLCOPCB4014104