Document X2p0EeD3exLKGQxvnErRb6Gg
St. Louis Rese<
f Deparjaaent
August 16, 1967
J.ti. Lull
-M.0.-3
R.S.WObus
-R.B.-3
T.M. Patrick, Jr,-Rea, 8
R.L. l&dworth
-Amista
H.L. Morten
-Res. 1
T.W. Dalton
-W.G.K.
Mr. D.B. Hosoar
AXMISTOH
TMP/D8BI, B-l-57
AHQCLQF, RLSSARCH PROGRAM
An active program has been urjdorvtay since May to study the vari ables in the Aroclor process especially with the new stability test as a tool. This has aeant repeating cany of the experi ments that have been made in years past in order to reevaluate the stability in terras of the newer analytical procedure.
Our program has been laid out with empit&sis on the phases of the present process where deviations in the plant can conceivably occur. Z aia attaching a copy of the outlined program that Dr. Merten has suggested after a careful review of the foraer Swann and Monsanto reports and also your program suggestions of
April 1, 19.7.
Our conclusions to date nave oeen reported in our progress reports and in several letters to your plant. These a&y be summarised as
followsi
(1) With all process conditions being met, the rate of chlorine feed can be increased to 16-OQ pounds per hour for 4000 lbs. batch with no deleterious offeet on the stability of the Aroclor 1242,
(*) Trie addition of air up to
by volume does not raake an
unstable Aroclor 1242 when operating under standard condi
tions and a normal chlorine rate of 660 pounds of chlorine
per hour for 4000 pound charge of biphenyl.
(5) The effect of temperatures lower than the specified 120*C. in the process m*y be detrimental to the stability of the Aroclor 1242. This offeet varies with the amount cf catalyst present.
(4) Chlorination at temperatures of 120 to 160*C. have no adverse effect on the stability of the Aroclor 1242. Higher tempera tures should not affect stability but other operating problems may result.
(b) Tna aeration step Is not critical In the production of stable Aroclor 1242. The Quantity of air nor the temperature of the Aroclor between 100* and 1!>0*C. appears to affect the stability
of stable Aroclor. In cases where Aroclor has stability chlorides over 1 ppm, the aeration step is an aid in improving
the stability.
(6) The plant distillation step shows no tendency to Isolate an unstable fraction.
DSW 297213
STLCOPCB4067123
4
Mr. D. B. Hosoar Anniston
-2- Auguat 16, I957
Other features of the program aru he Inc Investigated now. The quality of the biphenyl is currently under study with the idea of finding how trace impurities may affect the stability.
The following data will'give you a resume* of the various teats we have made. All tests are based on the standard process of
chlorinating with chlorine gas at a feed rate of 66o pounds per
hour based on a 4000 pound charge. Ferric chloride (0.03$ baaed on biphenyl ciiargc) is well mixed with the biphenyl arid the temperature is maintained at 120~lpQ*C. throughout the chlorina tion. After the chlorination, the crude Aroclor is blown with air at 100 *C. and distilled from 0.25# Ca(0H). At a pressure of >0 nsa Hg., the distillation is cut when the oolumn temperature reaches 23i>24oC. The distillate is agitated for 4 hours with 0.2Js dried attapulgus clay while trie temperature is maintained at 70-30C. Stability chlorides are run by the Monsanto test method based on 16 hours heating at 21Q*'C.
Any variation from the above procedure is ahown in the tables.
TABLii X
AIR-CHLQRIH& MIXTURES (LABORATORY)
Air-Chlorine Volume Ratio
0:100 10:90 20:30 50:50
Distillation fields
Monsanto stability teat, ppm chlorides
TABLE II
CHLQRBta F2D RAT&S
Chlorine feed
Distillation Yields
660 (lab.)I
1530 lab.)
700 Anniston plant
BOO 11
M
350
,r
"
Monsanto Stability test, ppm chlorides
0.16 0.12 0.49 0.J1
0.22
DSW 297214
STLCOPCB4067124
Up. D. B. Hosmsr
August 16, 1957
TABLE III TEMPatATORK STUDIES (0.03* FC1)
Temperature. *C.
'
100* > 8 hr. 110*. 8 hr. 120*, 8 hr. 14o*, 8 hr. 90*, 2 hr.* 110*, 6 hr. 95*. 0.phr.|130\7.S hr. 95 . 2 hr.* 130*, 6 hr. 95*. 3 hr.* 120*, p hr.
Yields
93,5*
98.5* 93.5* 97.8* 93.8#
m
93.0* 98.0*
Monsanto Stability, com Cl
0.20 0.12 0.21 0.1? 1.22 0.1 0.1b 0.14
*S* O.Ol
. $0.008
0 00
TABLE IV
CATALYST COKCatTRATIOli AT 120*C.
71t34i
Monsanto Stability, psa Cl
98.1
0.89
97.7
8.87
chlorine passing through-slow chlorine*
tlon batch discarded
Maple
1 1 1^ 1 1 2 2 2
TABLE V
AERATION STEF - WANT SAMPLES - W.O.K.
Tims of Aeration
Temperature
Rate of air, aWain*
Stability test. Pi Cl
None
0.5 hr. 1 4 4
None 1 4
10Q*C. 100 100 150 ---
150 150
1380 1330 1330 1330
1700 1380
0.96 1*62 1.40
1.10 0.76 0.49 0.46
0.45
DS\W 297215
STLCOPCB4067125
J .
Hr. D. B. liosoer
4- August 16, 19^7
rxm+u vi
PIABT. DISTILLATION TEST AT AKHXffgOW
Aroclor 1242 Baton Ho,
SOI
309 314 317 319 321 359
Run Ho. in Series
1 3 . 5*<7 J 10 1 10
Kansanto Stability, pun Chloride
. oat
oat oa? oaa
oa? 0,28
oao 0.2o
conclusions above are bated on these tests on the present proc&es, At pi^esent. Dr. Kenton is sending some tlm in tne Annistoa And Kruseirich Plants to see If tie can observe any operational details that nay bo a contributing /actor to the manufacture of unstable Aroclor.
da 3-20-57
attaciimunt*
A. K. Bllenburg
29l^6 0S>N
STLCOPCB4067126