Document LpqpON2pEg1NY50Lzjb7NQRJ7
I
eve mci WirCMtNCt TO :
April 14, 1969
cc M. Farrar Res. 1
CAPACITOR AND TRANSFORMER
D. Olson Kuhn
DOLSO WKUHN
PGB to WRR , 5/11/69
P. Benignus H. Bergen
PBENI HBERQ
J. Bryant
JBRYA
FILE
R. Munch
Res. 2
D. Armstrong
WGK
G, Miller
ANNISTON
J. Landwehr
AjNNISToFT
C. Coleman
HTOESFr
Discussed Aroclor program and possible assignments.
Item #1. Needed purification and quality control of transformer askarei "scavengers'' FFO and Unox 221:
Suggested that work proceed at AnniBton under G. Miller, probably should include . column refining to permit our own and customer's plants to achieve lower power
factor and Increase resistance In the pres ence of PPO or Unox 221. G. Miller also to resolve purity requirements on incoming PPO and Unox 221 with suppliers Shell and Carbide.
Item #2, Stabilizers for capacitor Aroclor:
Agreed that Research and MCL will proceed with Dr. Munch and Mr. Coleman. This pro gram was started in Jan. We view this primarily as a defensive move vs. Prodelec and Baeyer; an offensive one if we get a
good stabilizer system. We have been screen ing stabilizers using electrical properties of Aroclor as a guide to performance. To push the trial beyond this stage a promising stabilizer would have to be screened vs. capacitor materials and then used and tested in a capacitor. E.U.C. is the "partner" in supplying capacitors for impregnation.
Item #5. Refinement of capacitor Aroclor 1242 contain
ing Btablllzers:
1
Research to proceed with column refining of Aroclor containing Unox 206, DER 552 and Baeyer stabilizer so that we can advise customers on Aroclor recycle purification. Many of our customers are already ahead of us on this Job. We need to help with technical service and minimize Prodelec/Baeyer/ influence. This assignment to R. Munch and V. Saeger.
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1 tern #4. Explore possibility of modifying Aroclor 1242 to gain
Improvements: :
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Prodelec and Baeyer are manufacturing an Aroclor 1242 with -5 to -10 C lower pour point. Could they Invade our markets in the U. S. and U. K. with this product at a premium, at no premium? The Prodelec product is high in dichlorobiphenyl (high 2,4* and low in 4,4* ) as compared with Aroclor 1242. The
problem seems to be how much is this product worth in the market place? .We have MCS 717 and jt>2 low vise, versions of Aroclor 1242=** V/e are using this product to contact capacitor designers and discuss its merits vs. Pyralene 15003 and vs. Aroclor 1242.
We have samples out at WeBtlnghouse and G.E. Canada. C. Coleman.has sample requests to fill in Europe.
We- need a manufacturing tfCratr-eTstimate; JBob Kountz and Bill Kuhn will get a better, feel .j.han "5^/lb11.
Prodelec visited our U.S. Customers offering Pyralene
1500S at a 10^ premium. Would Prodelec cut us out
if it were offered at a normal Aroclor 1242 price?
How much would we have to drop our Aroclor 1242
price to be competitive?
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We need knowledge of a process which could make this
material at the lowest manufacturing cost. Our
"high ,DK process" used fractional distillation to
separate-the--ST*1 dichlorobiphenyl. This column
fractionation cost should be reviewed. We left the
meeting with the- -vtffaerstanding .that this- separation
might-
. Bill Kuhn will recherk vlfh.R.
Kountz on coetB.,. XT fractional distillation is
too expensive to concentrate the 2,4* dichloro
biphenyl, then we will need a process to get it by
direct or indirect chlorination. An alternate is
to minimize or separate the low DK crystalline
4,4* dichlorobiphenyl frpm Aroclor 1252 and blend
with a higher Aroclor.
This problem will be presented to Dallas Armstrong
with inputs from 0. Miller and Research to see if we have some possible routes to be tried on a lab scale. Dallas has the set-up and technical capability on Aroclor chlorinations,
Can we make a Fluid which will work better in poly propylene film capacitors?
Wetting agents in Aroclor which increase rate of spreading for aluminum and polypropylene are one approach. The Unox 206 and/or PPO are supposed to
aid wetting. Research (R. Munch and V. Saeger)
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have been working on other additiveo to promote
wetting without adding electrical degradation
mechanisms.
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Plan is to see what the capacitor designers want in way of decreased viscosity, Increased or de creased dielectric constant, decreased surface tension and Improved wettability.
Base Stock TrJ. chlorobenzene
2,M dichlorobiphenyl
DK=7.9
Aroclor 1221
Aroclor 1232
MCS 717 (1239) Aroclor 12*12
Chloro terphenyl?
2,2' dichloro diphenyl ether
DK -10
Tolyl Xylyl Sulfone
DK20
+_ Wetting Agents
We will make available in at least a tech, lab volume amounts of the base stock modifiers on the top of the above table and blend appropriate mixtures for trial as dielectrics.
R. Munch made 1 calculation which seems to indicate a DK over 20 would put maximum electrical Btress on polypropylene film. This says that the xylyl tolyl sulfone (and higher IK Aroclor blends) should be re-examined closely.
Less Refractory, More Degradable Aroclors or Aroclor Substitutes - Research Problem
Concern over pollution, persistence of chlorinated hydrocarbons, ability to detect in the ppb range, the Risebrough storm about PCB's in nature all conspire to force the synthesis of Aroclor substi tutes in those applications which can reach the
environment.
We assume that the lower chlorinated compounds will be more easily degraded. We know that sensitivity to radiation and sunlight will be Br > Cl > F, We know that substitution of OH, OCH3, CH3, COOH on .the ring should speed up degradation. _
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We have been examining the F and F/Cl biphenyls. Decafluorobiphenyl is more toxic than Aroclor.
We want to examine the bromobiphenyls for toxicity and hv decomposition. Bromlnatlon could be made available in Monsanto via dla/Br2 generation, a process we practice inadvertently and on a small scale because of KBr content in KC1 in an electrolysis cell.
In Dielectric Fluids - Partly Covered - Small Program going. Q, Thompson, R. Weiss, R. Munch
Plan is to test polypropylene film compatibility, thermal chemical stability, acute toxicity and bio degradability of
2,2' dichlorobiphenyl ether
tolyl xylyl sulfone dibromoblphenyl bromochlorobiphenyl
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In Hydraulic FluldB - Not Organized - Need Help
Need a biologically acceptable FR component for 15^/lb.
Is chlorinated terphenyl/TCB a potential solution? Can we use a chlorophenol derivative? Can we use a chlorinated phthalic anhydride deriv.? Can we use a chlorinated alkyl benzene? Can we use a chlorinated alkylbiphenyl?
In Plasticizers - M. Farrar
In NCR Paper - M FarrarAl. Touchette
Looking at alternate compounds probably not chlorine
containing compounds; phosphates - possibly tributyl .
phosphate.
\
A---r--o--c--l-o---r---P---l-a--n---t-s---------A---l-t-e--r--n--a---t-e-----P--r--o--d--u--c--t-s--/-VN/ot. Organized, <; y Looking at Aroclor as a chlorination facility
Trichlorobenzene Tri-tetrachlorobenzene
Trichloro-m-xylene for Textiles
Other products
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