Document noyBE5zYaEB8bjXqJYj3bjX1
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J. E. Sprin E. S. Tucker - ETUCK
Harch 19, 1969
Mr. Robert Rook FWFCA 620 Central Avenue ,, Building 2 0 Alameda, California 9^501
Dear Mr. Rockt
In accordance with our Dr. Robert Keller's conversation with you laet week X have been asked to reply to the following questions which I understand you ralsedt
1. Would polychlorinated biphenyl type materials such as those in our Aroclors be expected to be found in domestic wastes (household)?
We do not know of any use of our Aroclors which would lead to their presence in domestic or household wastes.
.2 Would polychlorinated biphenyl type materials such as those found in our Aroclors be expected to be found in Industrial wastes?
One of the principal markets for our PCB (polychlorinated biphenyl) materials is in electrical applications where they are used as fire resistant insulating fluids for transformers and capacitors. In this use the material , is completely sealed in metal containers. Transformer use is for equipment in sizes above 15,000 volts rather than the familiar sizes of transformer seen along power lines for distribution to households.
Zt is my impression that the transformer and capacitor manufacturers do not have a lot of spillage or waste of the fluids which might end up in industrial wastes. Secondly, the industry has for some time practiced reclamation and reuse of these fluids from old equipment which needs repair.
DSW 201079
STLCOPCB4059143
Mr. Robert Rock
March 19, 1969
Another industrial use of the liquid PCBs is in beat transfer applications where the fluid functions in a closed system. Again the fire resistance characteristics of the PCBs leads to this use as e substitute for other flammable oils. For economic reasons the heat transfer systems should be maintained in good repair with a minimum of leakage which might conceivably be washed to plant sewers. In the functional fluid uses we have carried out a program for several years for the reclamation of used PCBs.
PCBs ere also used in several "plastic-type* applications. Such uses include specialty adhesives, elastomers and specialty surface coatings. In theBe cases the PCB becomes an Integral part of the solid material and spillage or wastage of the PCBs would also, I believe, be held to a minimum.
3. If the PCBs might be found in industrial wastes, would this be a result of a breakdown of a marketed product following use or as a waste from a manufacturing process In which PCBs are used?
The PCEs are Bfcatle materials which would not be expected to "breakdown" or degrade to any extent in recommended uses.
4. Would chlorinated biphenyls be found in oil/gasoline refinery effluents?
I am not aware of any uses in the petroleum industry which should result In PCBs in refinery effluents.
5. Do we have toxicity data - especidly for fish?
Ve have scute animal screening toxicity data on all of the members of our Aroclor series. I have enclosed a Xerox copy' of tables showing the general physical properties of our Aroclors. At the bottom of the table I have added to the printed data Information relative to the oral lethal dose in rats and the skin minimum lethal dose In rabbits. These data Indicate that the Aroclors cannot be considered seriously toxic from a standpoint of acute exposures. Icu will note that the samples were administered in various concentrations depending on the triscosity of the saEiples and their solubilities in corn oil.
DSW 201080
STLCOPCB4059144
ftr. Robert Rock
-3- Ksrch 19, 1569
X have enclosed also a reprint which describee the chronic vapor toxicity of two of the Aroclors. Aroclor 1242 and Aroclor 1254. The work described in this publication has load to the establishment of a threshold limit value for industrial environment for these two members of the Aroclor series of 1.0 mg per cubic meter of air and 0.5 Kg respectively. You will note that the authors of the publication suggested TLVs of twice the values established by the American Conference of Governmental Industrial Hygienists.
We have recently contracted with a consulting laboratory to run fish toxicity studies. X doubt that we will be able to find 96-*hcur Tiro's because of the low solubility of the Aroclors. Our analysts have recently determined for example the following solubilities In tap water at room temperature.
Arcelor _____________ ___
Sol, in ppb
1242
203 + 10
1248
106 + 14
1252
50+2
Wg haven't completed our work cn the full series of compounds but we have found that, as might be expected, solubility decreases markedly with increase in chlorine content.
Perhaps X should mention at this point that the numerical
designation of the Aroclors has meaning. Specifically the
1200 series indicates biphenyl. The two subsequent numbers
Indicate percentage chlorination. Thus, Aroclor 1242 is
biphenyl chlorinated to the extent of 42jt. The 5400 series
are terphenyls and again the last two numbers indicate the
degree of chlorination. Thus, Aroclor
is terphenyl
chlorinated to 60The 4400 and 2500 series are mixtures
of biphenyls and terphenyls chlorinated to 65$.
6. Can w provide chemical/phyaical property data for our
Aroclor products - especially solubility in water?
X believe X have answered this question In the discussion above.
DSW 201081
STLCOPCB4059145
Mr. Robert Rock
-4- March 19, 1969
In connection with the recent publication In the San Franclaco Chronicle concerning the PCBa Monsanto has cade available the enclosed coriinents.
If I can be of any further assistance, please do not hesitate to let me know.
Sincerely,
EPVic<e Enclosures 2
Elmer P. Wheeler Manager, Environmental Health
DSW 201082 STLCOPCB4059146