Document Dvw9ww1EqboE2G7YgQgE5JD0O

HUM IriL HiL50f THt WGK LAeOKATORV PR0^i.R^L der^SE W.G. KftUMMRICH PLANT gC)H.C. CARDER Qj.m. CONNAUOHTON 'Cl T*w> OM-TON |l.t. HCISLER ["'| W.. RAPACEOROE | H.B. PATRICK *pt| J^trT McClain Cl W.Q.Kramper d J .R. Savage d d.E. Harris ti V. Brawley DMflD.C. Armstronf K1J.J. Luecken a n 'TO RECEIVE OCT (L KC TJON J (f ^ ^ JOB NO. k 's' ! REPORT NO. 91370:1716 RESEARCH GENERAL OFFICE r'C* jiyjjjs *(^j 0. UANNA *LJ p*w* EDWARDS '(X) J.E. SMITH a R.E. Soden ANAGNOSTOPOLU5 !3| H.L. M1NCKLER kfllogc 'g| t.c. FUHRMEUT ER H.T.. Hubbard Q J-A. MULL ENOORE R.W. Bucknei: l.E. KLEIN '0 K. ELL1NGSON Ann is f.on i*a E.TrnroiTT ^0 P.G.Benlgnus W/ J . Mol loy *ffl R.G. Moody 1 J.G. Bryant Q titli: AR0CL0R: PROCESS IMPROVEMENT PLAN personnel: p. r. Middleton (J. R. Savage) PROBLEM: Report status of present work and present future plans. summary: The status of the previous Process Improvement Plan published 7/29/64, is as follows: Long Range Target (IQ, 66) Status Rate 39. OM #/yr. Yields (Bijf) 98.0$ Theory Manufacturing $5.983/cwt Cost Quality 0.40 ppm Thermal Chemical Chlorides (TCC) 36.OR #/yr. only need 26.4 through 1969 98.5$ of theory through June, 1965. $5 859/cwt through June, 1965. Present average 0.50 ppm TCC. New target less than O.15 ppm. Presently targeted quality improvements are: Recommend facilities required to make Aroclor 1242 with a Thermal Chemical Chloride (TCC) of less than 0.15 opm Cl by January 1966 and determine how to consistently ship-P./raaols with a power factor of less than 5$ at 100c and 60 cycles by June 1966. The capacity of Dept. 246 (Aroclor) Is sufficient to meet forecasted sales plus 25$ through 1969- The capacity of Dept. A-246 (Pyronols) will be Increased to meet forecasted sales by up-grading the blending facilities (6/66) and providing storage for TCB, 1260 PPO, and 1254 PPO (1/67). To meet forecasted sales In Dept. B-246 (Pydraul), Storage for one of the two product (Pydraul 200 and 280) will be provided by using the present TCB underground storage when it becomes available in 1/67. HONS 060264 CONFIDENTIAL INFORMATION This document is the properly of Monsanto Company and the recipient is responsible for its safekeeping and disposition. It contains confidential information of Monsanto Company which must not be reproduced, revealed to unauthorized persons or sent outside the company without proper authorization. Either retain in secure files or destroy. 91370:1716 Pg. 2 9/17/65 High speed drumming facilities will enable a reduction of 1 man, $10,000/yr. in 1/67. A work force evaluation will be made by 1/67 to determine feasibility of further reductions. D-Slu D. R. Middleton /Jd HONS 060265 91370:1716(1) Pg. 1 9/17/65 DETAILS Synopsis of Process The Aroolor Process consists of the following steps: Chlorination Batch chlorination of biphenyl (B10) with Snift Gas (contains approximately B6 mole % Cl^ at 150C produces crude Aroclor. The by-product is hydrogen chlorine (HC1) gas. Blowing Crude Aroclor, from chlorinators, is blown with air to remove excess HC1 before distillation. Distillation Crude Aroclor which has been air blown is continuously fed to the stills. These stills are straight-take-over type with no fractionation. Earth Treatment & Filtration The distilled Aroclor is earth (Attapulgus) treated, filtered, and transferred to storage. Blending & Loading The finished product from the storage tanks is loaded into cans, drums, tank trailers, and tank cars, or used for making blends (Electrical and Non Electrical ). The principal Aroclors which are produced at WGK are 1242, 1248, 1254, and 1260. The last two digits indicate the weight plus % chlorine contained in the chlorinated biphenyl mixture (Aroclor). QUALITY Aroclor The two main quality measures of Electrical Grade Aroclor are resistivity and stability. Presently the major portion of quality work is aimed at improving Aroclor 1242 stability to less than 015 ppm Cl by the Thermal Chemical Chloride (TCC) method. MONS 060166 91570:1716(1) Pg. 2 9/17/65 The questions to answer concerning Aroclor stability are: 1. What factors effect stability of Aroclor? a) Raw Material Impurities b) Chlorination Techniques c) Distillation Techniques d) Earth Treatment and Filtration 2. What combination of factors are necessary to produce desired quality at the. least cost? a) Impurity free raw materials b) Chlorination Technique: temperature, feed rate, catalyst, geometry of chlorinator, etc. c) Distillation Techniques: stripping and/or rectifying d) Earth Treatment and Filtration e) Chemical Treatment Chlorination: Chlorination techniques (in present WGK Plant Equipment) affect the amount of over and under chlorinated Bi/, but not necessarily the final stability of the product. The variables which have been measured were: amount of catalyst, method of catalyst addition, chlorinator, chlorination rate, chlorination temperature. The first three were the most significant variables. Distillation: Laboratory distillations, in which low & high boiling fractions (chemical nature of these are not known) were removed from plant crude, produced Aroclor with less than 0.2 ppm TCC. Due to variability of plant crudes the size of the fractions varied from 1-5% for low boilers and 10-15/ for high boilers. It may or may not be feasible to recycle these fractions to non-electrical Aroclor production. . Future Aroclor Quality Work 1) jOrganic Research is presently running continuous distillation tests to determine column design and operating conditions needed to refine present WGK and Anniston Plant crudes to less than 0.15 ppm TCC. Start: 6/65 EDC: 9/50/65 2) Run plant test using revaporized Cl2. Start: 8/65 EDC: 10/65 MGNS 060267 91370:1716(1) Pg. 3 9/17/65 Future ftroclor Quality Work (continued) 3) Investigate Earth Treatment. On two different tests, material earth treated .In plant was 0.1 ppm Cl higher than laboratory treated material. Current work at Anniston will be followed. Start: EDC: By: 9/65 10/1/65 TSD , PR & D 4) Preliminary evaluation of Chemical Treatment of .crude Aroclor to remove unstables. Start: 7/26/65 EDC: 9 '30/65 By: PR Sc D 5) Vapor Phase chlorination for 1242. Sta.rt: EDC: By: 10/65 12/65 TSD 6) By 12/1/66 recommend facilities needed to produce Aroclor 1242 at various TCC levels between 0.5 and 0.1 ppm. Pyranols The quality of WQK Pyranols (Transformer Blends) must be improved to meet the market's power factor requirements. The target is to consistently ship material with a power factor of less than 5% at 100C and 60 cycles, and have little or no deteriatlon during transit. Future work in this area is as follows: 1) Initiate studies to define the power factor problem. Start: 4th Q of 65 EDC: 6/66 By: TSD 2) From above Information take appropriate action. Start: EDC: By: 6/66 6/67 TSD 3) Studies to determine effect of exposure to various metals is presently underway. EDC: 10/65 HONS 06C268 91370:1716(1) Pg. 4 9/17/65 CAPACITY Dept. 246 - Aroclor Capacity of Dept. 246 (92/ On-Stream Time) -- ~~ Demonstrated 1966 Forecast* 1969 Forecast* 1965 Extrapolated Potent la 1 Yearly ' 27.4m// 31.6 M# 29-9W 56.OR// Monthly 2.3M# 2.6'IK// 2.6H// 3.0M// Monthly plus 2.9M// 3.3 M# 23'/ Surge Capacity ll.J. Day's forecast dated 5/12/65 multiplied by 1.2 - - The potential capacity of Dept. 246 Is sufficient to meet the needs of future forecasted sales. The department bottlenecks are: Product Bottleneck 12*12 Distillation 1248) 1254) 126O) Chlorine Availability The Cl? bottleneck can be relieved by cleaning or replacing the snift gas line from the CI2 Dept. The distillation bottleneck can be relieved by furnace burner alterations and demonstration of high capacity still pump with 3" furnace coil. The only active work in the capacity area is the above demonstration. 11/65. DejfU A-246 - pyronals Capacity of Dept. A-296 EDC 1260 PPO 1254 PPO Total for Year Avg. Monthly Avg. Monthly 9 25/ Present Capacity 1966 1969 Debottlenecked 1965 Extrapolated Forecast Forecast Capacity 6.32W 4.6lM# 6.1 M# 4.3 W 7.5 M 4.5 M HONS 060269 1.04M# 1.15M# 1.15R# 11.97M// 11.55M# 13.15R# 25.OR# 1.0 M#(Max.)1 0.96m# 1.1 W 2.0M# -- 1.20M# 1.37M# 91370:1716(1) Pg. 5 9/17/65 For flexibility in Dept. A-246 it is desirable to have sufficient capacity to meet 25% surges and sufficient storage for 200,000# of each 1254 and 1260 PP0. The present capacity of A-246 is l.OM# (when making the 3 blends). No storage is available for these blends. A design premise has been submitted for facilities to Increase capacity to 2.0fl#/month. ($25, - 30,000). This increase can't be realized until the following storage is available: New 20,000 gallon tank for 1254 PP0 New 20,000 gallon tank for 1260 PPO New 20,000 gallon tank for TCB (R/M) Estimated cost of these storage facilities is $105,000. Design premise will be out 9/65- Installed January 1967. Dept. B-246 - Pydrauls Capaclty of B-246 1966 T957 ' ""1969 Demonstrated Forecast Forecast Forecast Capacity Future Capacity A-200 A-280 4.7 W 0.7 1?# 5.22TO# 1.0 FI# 5.26 H# 1.5 M# 6.0 1?# Total Yearly Total Monthly 5.1* M# 0.45W# 6.221?# 0.52M# 6.75 1?# 0.5b M# 6.0M# .501?# Meet Fore casted Sales Monthly 4- 25% 0.56H# 0.651?# 0.7051?# - Presently A-200 is the principal blend which is made in the No. 1 Mix Tank. The capacity is limited by sales, because the product is stored in the Mix Tank. The blending capacity will be Increased to at least 1.0M#/month (if sales are available) as part of the $25-30,000 up-grading job for A-246. As A-280 sales materialize storage for one of these blends will be needed to attain flexibility. For short range No. 6 underground storage (present TCB) can be used following installation in New TCB storage.(January 67). Presently there are no long range (thru 1969) plans for Pydrauls storage. YIELDS The raw, materials for manufacturing Aroclor are Chlorine Snift Gas and Biphenyl. The Snift Gas usage is not measured, it is calculated. The Biphenyl yields are as follows: 1964 B10 Yield 1965 Bij( Yield (through June) 1965 Standard BI0 Yield 96.57% 98.5# 95.5# MGNS 060270 91370:1716(1) Pg. 6 9/17/65 The Biff yield losses are as follows: Chlorlnator Off-Oas (Collected in Brink and discarded) Still Bottoms Still Vacumm System Unknown TOTAL 0.4# 0.5% 0.1% 0.4$ 1.4# On the average, the Aroclor produced_ls about 5056 Cle, therefore the ciz loss la also approximately 1 A%. In a 29M# year the yield losses, based on raw mate lal costs, amount to the following: Cl2 B10 TOTAL $4,300 6,400 $10,700 The chlorinated Biff and Biff which Is collected In the Brink ($3,200/yr.) are presently not recycled because Its effect on stability is not known. The still bottoms are profitably sold as Montar. Presently no extensive future work is planned in this area. HC1 off-gas recovered by Dept. 217 and P-21? Is 83.4^ of theory, through June 1965. The loss amounts to about $45,OOO/year of Muriatic Acid credit. COSTS Dept. 246 - Aroclor - Basis Jan-July 1965 Cost/100# Aroclor Cost for 29R#/year Material Costs Cl* B1 ff Mlsc. HC1 (Credit) Handling Sub-Total 2.090 3.088 0.015 0.730 0.033 (-) 1+. h 96 606,000 896,000 4,350 (-)211,000 9,560 $1,300,000 HONS 060271 91370:1716(1) Pg. 7 9/17/65 COSTS (Cont'd) Direct Conversion Steam Labor Salaries Supplies Laboratory TSD Prod. Process Res. Mech. Expense Others Sub-Total Cost/lOO# Aroclor 0,098 0,223 0,042 0.080 0.082 0,069 0.08l 0.337 .097 1.109 Cost for 29M#/yr 28,700 64,600 12,200 23.200 23,800 20,000 23,500 92,800 28.200 $321,000 Indirect Dep.. PIE Sub-Total 0.122 0.152 0.274 35,400 44,100 $79,500 TOTAL PRODUCT COST 5-879 $1,700,000 In 1966 TSD and Prod. Process ReB. costs should decrease after answers to quality (stability) problems are found. In the first quarter of 1967 when blending facilities (Dept. A & B-246) are Installed there will be a work force evaluation and possibly a reduction. Extrapoleted labor costs for Dept. A & B-246 in 1965 are: Dept. A-246 (pyranol) $14,850/12,000,000# Dept. B-246 (Pydraul) $14,900/4,370,000# In the first quarter of 1967 high speed durmming facilities should also be installed (TSD Job No. M5007) which will enable work force reduction of one man ($10,OOO/year savings). STREAM AND AIR POLLUTION MONS 060212 The principal stream pollutants from Dept. 246 are B1J2(, chlorinated B10, and HC1. None of these are presently considered a problem. In the future approximately 150#/day of Bi# chlorinated B10 can be removed from the sewers by sending all off-gas brink collections to the toxic dump. The principal air pollutant Is HC1 gas. This can be minimized by drowning the blow tank vapors and gases with the existing water Jet. 91370:1716(1) Pg. 8 9/17/65 ACKNOWLEDGEMENTS Much of the Information and Ideas In this plan were obtained from D. E. Harris, V. Brawley, J. J. Luecken, W. G. Kramper, and others. JX D. R. Middleton /Jd HONS 060i?3 TSD 3198 3229 3287 3362 M5007 M5031 TITLE, OBJECTIVE Aroclor: Improve Electrical Orade Quality Aroclor: Install 3" coll In No. 2 still furnace Aroclor: Improve loading and blending facilities Aroclor: Increase Capacity (to minimian of 2.5R#/mnth) Aroclor: Provide high speed drumming facilities Aroclor: Provide storage for 1254 PPO, 1260 PPO and TCB Aroclor: Provide roof above truck loading dock Aroclor: Provide level measurement for #1 and #2 still receivers Aroclor: Provide exhaust fan for Drumming Area LIST OF CURRENT AND PROPOSED JOBS SAVINGS BENEFITS CAPITAL TSD TIME TO COMPIiTION MAN-MONTHS EDC TECHNICAL SUCCESS FACTOR STATUS. COPKENTS Protect Market Position 7 6 1/66 IOO* (Eval.) Increase still capacity None coll to be compatable with new low maintenance still pump Capacity increase needed to meet sales, possible work force reduction Meet sales In first hair of 1965 Bo,000 None $10,000 savings from labor reduction ? Increase capacity to 1105,000 meet sales, flexibility Prevent shipment delays; save $l,200/yr demurrage Improve operationsNo definite savings 3, *00 !/ 10/65 50% 2 6/66 90* 1/2 10/65 100* 3/67 80* 4 1/67 90# i/ 50* 1/66 50X Presently having maintenance prob lems with new external still pimp Storage for Pyranols needed to realize full capacity Increase Capacity of Dept. 246 la 3.0M#/mo. If sales are available. Work la being done by TSD Mechanical Group Capacity increase from 3287 cannot be realized without this Job. Safety - Pume inhalation MONS 06027*1 LIST OP CURRENT AMD PROPOSED JOBS (Coat'd) Pg. 2 9/17/65 TITLE, OBJECTIVE SAVINGS BENEFITS CAPITAL TSD TIME TO COMFITION MAN-MONTHS EDC TECHNICAL SUCCESS FACTOR STATIC. COMMENTS Pyranols: Investigate high power factor problems Needed to meet the industries future requirement Aroclor: Increase safety of still bottoms dropping operation Safety Pyranols: Determine suitable material for shlpnent of Transformer Blends $10-$20,OOO/year customer reimbursement 1/2 1/3 1/66 9056 10/66 90)6 TSD Materials Section presently working on. MGNS 060275