Document 55xYk1D5Z4o2RyYaMRXj4YeJ
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STUDY OF AROCLOR CHEMICAL CLEAN-UP PROCEDURES FOR USE . WITH ELECTRON CAPTURE GAS CHROMATOGRAPHY METHODS
INTRODUCTION
The effects of three chemical clean-up procedures on the Aroclor
1200 series have been investigated. The chemical procedures in question;
nitration, saponification, and treatment with sulfuric acid were orig
inally proposed by pesticide analysts for the cleanup and identifica
tion of pesticides in residue extracts. Later when polychlorinated
biphenyls (PCB's) were identified as environmental contaminants these
procedures were extended-to the clean-up and identification of PCB's
in residue extracts.
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SUMMARY
1. The quantitative recovery and EC response of Aroclors are not effected by saponification or treatment with sulfuric acid.
2. Nitration can have a significant deleterious effect on the quantitative recovery and EC response of Aroclor 1242.
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3. The extent of the effect of the nitration treatment is dependent on the temperature and exposure time employed as well as the Aroclor treated.
4. Analysts employing nitration.procedures prior to EC analysis may or may not, depending on the conditions used, see an EC response for Aroclor 1242 if present.
DISCUSSION
We have found that saponification and treatment with sulfuric acid . do not effect the quantitative recovery nor the electron capture (EC) response of the Aroclors. However, the nitration procedures have significant deleterious effects on both the quantitative recovery and EC response of the lower chlorinated biphenyls such as Aroclor 1242. The effect of this treatment on the Aroclors are shown graphically in Figures 1-7.
The fact that the lower chlorinated biphenyls are .nitrated under these conditions has been verified by GC/Mass Identification of the products as nitrochlorobiphenyIs.
The nitration procedure employed was referenced by Risebrough* [Erro, F., Bevenue, A., and Beckman, H., Bull. Environ. Cont. Toxicol., 372 (1967)] in his Nature article on PCB residues in the environment.
Additional, we have investigated a similar nitration procedure used by Widmark and co-workers (private communication via R. E. Reller). This treatment differs from Risebrough's in that a shorter exposure time and a lower temperature are employed. The Widmark method greatly diminishes the effects observed with Risebrough's referenced method.
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WATER PCB-SD0000041659
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STUDY OF AROCLOR CHEMICAL CLEAN-UP PROCEDURES
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RESULTS
Verification of the conclusions drawn are shown in Figures 1-7.
Extraction and measurement were performed as described in
Analytical Method No. 69-13.
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*A quote from Risebrough's article [Nature, 220, 1098 (1968)], "The DDT compounds are destroyed by nitration and p,p'-DDT, DDD, and toxapbene are dehydrochlorinated by saponification with alcoholic KOH. PCB is not degraded by either.procedure."
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Monsanto Company
Organic Chemicals Division
Applied Sciences Section
St. Louis, Missouri .
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3-70 - E. S. Tucker, W. J. Lit^chgi, R. E. Keller
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0001478
WATER PCB-SD0000041660
FIGURE 1. .
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Electron capture gas chromatographic trace of (A) biphenyl treated with 1:1 mixture of nitric and sulfuric acids and extracted into hexane, (B) biphenyl treated with distilled water and extracted into hexane, and (C) untreated biphenyl standard in hexane.
0001479
WATER PCB-SD0000041661
AROCLOR 1242
FIGURE 2. Electron capture gas chromatographic
trace of (A)' Aroclor 124 2 ar.d treated
. with 1:1 mixture of nitric and sulfuric
* acids and extracted into hexane, (3)
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' Aroclor 1242 treated with distilled
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water and extracted into hexar.e, and
(C) untreated,Aroclor 124 2 standard in
; - hexane.
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0001480
WATER PCB-SD0000041662
AROCLOR 12 4 S
FIGURE 3.
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Electron capture cas chromatographic trace of (A) Aroclor
1248 treated with 1:1 mixture of nitric and sulfuric acids
and extracted into hexane> (B) Aroclor 1248 treated with
_
distilled water and extracted into hexane., and (C) untreated
Aroclor. 124 8 standard in hexane.
. 0001481
WATER PCB-SD0000041663
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FIGURE
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4. `
Electron capture gas chromatographic trace of (A) Aroclor
1254 treated with 1:1 mixture of nitric and sulfuric acids
and extracted into hexane, (E) Aroclor 1254 treated with
distilled water and extracted into hexane, and (C) untreated
Aroclor 1254 standard in hexane.
0001482
WATER PCB-SD0000041664
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FIGURE 4.
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Electron capture gas chromatographic trace of (A) Aroclor
1254 treated with 1:1 mixture of nitric and sulfuric acids
and extracted into hexane, (S) ArocJLor 1254 treated v;ith
distilled water and extracted into hexane, and ((E) untreated
Aroclor 1254 standard in hexane.
. 0001483
WATER PCB-SD0000041665
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WATER PCB-SD0000041667
AROCLOR 12 6 >i