Document drOaMBgad9JoKXKQp3J6jNM5
Job No.
Report No.
Date;
Title;
Aroclor Manufacturing Improvement Plan
Objective: To develop ,a guide to improvements in cost, capacity, and quality in the Anniston Aroclor plant.
Personnel: J. MacPherson (L. C. Fuhrmeister)
Reported by: J. MacPherson
Summary: *
,
The major emphasis will be on quality attainment in the liquid Aroclor product line and capacity increase in the solid Aroclors. A summary of targets and commitments is as follows:
Liquid Aroclors
Year Target Capacity
Predicted Sales
Quality Potential Savings/Earnings
1968 1969 1970 1971
53 53 65 65
42.7 44.7 46.3 49.5
Intermediate Product Strategy
s
Solid Aroclors
229,770 30,000
1, 330,000 30,000
.
Year Target Capacity
Predicted Sales
Quality
Potential Savings/Earnings
1968 1969 1970 1971
10.5 12 14 14
10.5 11.7 13.2 14.3
No Change No Change No Change No Change
150,100 233,800 238,200 121,700
A commitment of 1920 technical man-hours will be required to support the target programs.
This issuance of the MIP marks a departure from the previous PIP format although the contex is essentially the same. The plan issued on 2/9/66 has been partially absorbed by a CED project with the result that only one major savings item (Aroclor still modification) was available for implementation; the item has not been installed as yet.
0265523
TOWOLDMON0044020
Section 1 2 3 4 5 6 7 8 9
10 11 12
X. XX. HI. IV.
V. VI. VII.
VIII. IX. X.
Title
' Introduction
Summary of Major Targets for Future Efforts
General Process Description
.
Market Analysis
Process Analysis
Capacity Analysis
Cost Analysis
Competitive Technology
Patent Status
Stream and Air Pollution
Job List
Appendix
Process Sketchs `
Comparison of Competitive Materials
Market Analysis
Production Schedules
Non-productive Time
Project networks
MIP Contributors
(1) Production
(2) PR&D
(3) Quality Operations Control
(4) Maintenance
TSD Jobs and Projects
References
Cost Analysis Data
0265524
TOWOLDMONOQ44021
Section 1 Page 1
Introduction The Process Improvement Plan (PIP) is being replaced by a Manufacturing
Improvement Plan (MIP). In general the contex is the same however the KIP is to present a broader base by including source information write-ups con tributed by personnel other than the area T.S.D. engineer. The procedures used to publish the MIP will be the same as for a PIP, the plan will be in the form: of a progress report. Updating will be done when expedient to do so; certain sections may be updated quarterly while others only on necessity.
As with the PIPan MIP is to serve as a continuing guide to improvements in cost, capacity, and quality.
The previous PIP was issued on 2/9/66. This plan was not implemented because of product strategy changes. Divisional goals set in May 1966 required a much improved quality, this was not a major objective of the previous PIP. The major savings item in the 2/9/66 PIP was a labor savings project in the finished goods area; this project has been absorbed in a CED project (Aroclor expansion CEA 1430). The second major item was a modification to the liquid Aroclor still to permit the use of indirect heating of the still and realizing fuel savings, less product decomposition and reduced maintenance, this project has not been installed as yet, tentative EDC is 3/1/68,.
0^65525
TOWOLDMONOQ44022
Section 2 Page 1
Recommendations to Attain Targets
1. Install adequate fixed bed refining capacity to handle all electrical grade 1242/1254.
2. Install still modifications to allow still capacity to match chlorination ability (65 M lbs./yr.).
3. Maintain a T.S.D. effort of at least 1 engineer to attain estimated
savings/earnings.
.
4. Ensure that all personnel involved with Aroclor are aware of the capacity deficit situation in the solid product area.
0265526
TOWOLDMONOQ44023
S ection
Page 2
0265527
r\j
Year 1968 1969
Capacity M Xb/yr 53 53
1970
65
1971 .
65
TARGETS
Liquid Aroclors
Estimated Potential Savings/Earnings
Quality
labor saving;s
O.S.T. savings
earnings
total
Intermediate
8, 770
221,000
229, 770
Product strategy goal
* 10, 000
20, 000
--
30,000
Product strategy goal
10, 000
20, 000
1,300,000 1, 330,000
Product strategy goal
10, 000
20, 000
--
"30,000
Year 1968 1969 1970 1971
Capacity M Ib/yr Quality 10.5 _ No Change 12 No Change 14 No Change 15 No Change
Solid .Aroclors
Estimated Potential Savings/Earnings
material savings
labor savings
O.S.T. savings
earnings
30, 000 33,800
--
30, 000
120, 000 40, 000
--
130, 000
38,200
30, 000
40, 000
130, 000
41, 700
40, 000
40,000
total 150, 100 233,800 238,200 121, 700
>
TOWOLDMONOQ44024
Section 3 Page 1
Synopsis of the Process
A. Chlorinator Area
There are four batch operated liquid chlorinators, one batch
operated solid chlorinator, and one continuous chlorinator system. The
continuous system consists of four chlorinators cascaded with overflow in
series.
,
The liquid chlorinators are charged with biphenyl and ferric chloride catalyst; charges for the solids chlorinator depend upon the Aroclor to be produced. Chlorine gas added through a sparger reacts with the charge to release HC1 and heat; the HC1 gas goes to the Muriatic Acid department. The specific gravity of the crude is used as the monitoring and control variable.
Crude Aroclors from both batch and continuous chlorinator systems are transferred to a tank to be air blown before distillation. Figures 1, 2, and 3 in Appendix I are sketches of the batch, continuous, and solid chlorinators.
B. Still Area
There are four stills in the Aroclor department; stills No. 2 and 3 are used for liquid Aroclors only, No. 4 is for solids only, and No. 1 can distill any grade of liquid or solid with the exception of 1268 anc) 5460.
(1) Liquid Aroclors
Crude Aroclor is charged from a blowing tank or a feed tank to a still. Rydrated line is added and a vacuum of 40 MM. Hg applied; the still charge is then direct fired by circulation through a coil in a gas furnace, the distillate goes forward to a receiver. The distillation is semi-continuous since ten receivers are distilled prior to drawing residue from the still. The receiver charge is in turn transferred to a blending tank where it is treated with Attapulgus clay and filtered. Finished product is transferred to storage tanks prior to loading into drums or tank cars. Figure 4 is a sketch of a typical liquid still.
(2) Solid Aroclors 1
Distillation of solid aroclors is similar to liquids with the exception that the vacuum is approximately 10 MM. Hg. absolute and that generally two still charges are distilled before withdrawing residue.
Solid Aroclors 5460 and 1268 are flaked; all other refined solids are drummed from the,receiver.
Figure 5 is a sketch of the solid still system.
0265528
TOWOLDMONOQ44025
Section 3 Page 2
C. Chemical Equations
(1) Liquid Aroclors
Based on the forecasted demands through 1971, the average Liquid Aroclor could be called 1245.6.
C12H10 + 3.66 Cl2
154.20
70.9
C12H10(CS.66+ 3'66 HCL
283.8
36.5
(2) Solid Aroclors
* Based on the forecasted demands through 1971, the average Solid Aroclor would contain 60.4% chlorine and 2.92% Biphenyl,
.971 Santowax R + .029 Biphenyl + 10 CI2
230.3
154.2
70.9
Solid Aroclor + 10 HCL
586.0
36.5
0265529
TOWOLDMONOQ44026
Section 4 Page 1
3. Market Analysis
Appendices II and III present (1) a comparison of competitive materials
with Aroclors 1242 and 1254 and (2) an analysis if the world market for Arcclors.
If Monsanto is to compete^ the following goals must be met:
..
' 1242/1254 Goals
In Plant Storage
As Packaged
As Delivered
1254 Resistivity 15. 00D>
PF (lkc)
.3% 4 .1
10,000 <0.4%
> 5,000 < 0.5% (i 0.1%)
1242 Resistivity 10. 000>
5,000
PF (lkc)
0.6X4 0.1) <0.9%
> 3,000 < 1.0% (4 0.1)
Monsanto's share of the market in 1966 and the objective$for 1971 are presented below:
Capacitor Aroclor
1966
1971
Domestic Non-Domestic
78.4% 71.5%
71.5% 67.2%
Transformer Askarel
1966
1971
Domestic Non-Domestic
61% 59.5%
67.4% 65.8%
. It must be emphasized that the quality goals presented above were introduced at the Corporate Aroclor meeting held in St. Louis on May 9 and 10; these goals represent marketing necessity as of 1967. The Product Strategy quality goalq remain at a higher quality level since they represent a long range goal.
0266530
TOWOLDMON0044027
Monsanto
' OROANIC CHEMICALS DIVISION
FINISHED PRODUCT 0 SPECIFICATION
PRODUCTION
R, G. Moody/s/R. G. Moody 3/23/67
SALES
.
W. E. Ault/s/W. E. Ault 3/17/67
GENERAL DESCRIPTION
PRODUCT
Export Grade
Aroclor 1254 - Electrical Grade
PLANT
PROOUCT CODE
Page 1
. JoEPT.
127-L
USE
Anniston
DATE EFFECTIVE
326.13
SALE* CODE
Sales
3/23/67
APPROVALS RESEARCH
L040-280-16-009
L. R. Stark/s/L. R. Stark 3/21/67
QUALITY CONTROL (Chlet Chemist)
G. W. Mlller/s/G. W. Miller 2/23/67
CHEMICAL FORMULA
-
Mixture
MOL WT. SUPERSEDES SPECS. OF
Tentative 4/27/66
CHARACTERISTIC
UNRESTRICTED INFORMATION
AMPLE FOR ANALVIlt
3x5 pt. Amber bottles
LIMIT*
IIIUED D V
J. A. Liddle 2/21/67
- METHOD
(R) Color, APHA
(R) Condition
(R) Specific Gravity @ 65/15.5 "C
'(R) Acidity (mg KOH/gm.)
(R) Moisture (H2O), ppm
(R) Refractive Index @ 25C
(R) Inorganic (free) Chlorides, ppm
(R) Pour Point, C
(R) Dielectric Constant
. 1000 Cycles @ 100eC
(R) Resistivity ohm-cm
500 VDC @ 100"C, 0.1" Gap
(R) Hydrolysis Stability Test
. as chlorides, ppm
(R) Monsanto Stability Test
. as chlorides, ppm
(R) Distillation Range, ASTM D- 20,
. . corrected
107. Distilled by vt.
50% Distilled by wt.
90% Distilled by wt.
(R) Biphenyl, X
Sulfates
Dielectric Strength @ 25C
Flash Point
Fire Point
'
ViscoBity @ 210"F (SUS)
Corrosion Test 6 hours @ 210C
with bright aluminum foil
Change in wt. of A1 (%)
A.C. Color, APHA
A.C. Condition
A.C. Acidity (mg. KOH/g.)
A.C. Inorganic (free)
\ . chlorides, ppm
50 Max.
Clear
1.495 - 1.505
0.010 Max.
35 Max.
'
1.6370 - 1.6390
0.05 Max.
7 -12
, 4.15 - 4.35
10,000 x 109 Min.
1.0 Max. 0.5 Max.
e
366 - 378'C 371 - 383C 379 - 394C 0.025 Max. None 35 KV, Min. None to Boll None to Boil 44 - 48
0.0 60 Max* Clear 0.010 Max. 0.05 Max.
.
S
046 G-l 052 050 047 048 045 053 113
121
010
133
054
100
043 114 114 049
046 G-l 050 045
RESTRICTED INFORMATION Power Factor @ 100C & 60 Cycles
Report
(R) Routine -Analysis, All others Analyzed by request Only
0265531
113
TOWOLDMONOQ44028
Monsanto
TENTATIVE SPECIFICATION
AUTHORIZED BY
G. W. Miller
OENENAL DESCRIPTION
product
Export Grade
Aroclor 1242. Electrical Grade
PLANT
PRODUCT coots
Anniston
DATE EFFECTIVE
826.12
' SALES CODE
6-12-67
1040-240-16-009
SOURCE OF SPECIFICATION
P. G. Benignue Memo dated 5-11-67
Page 2
use 1
1DEPT.
I 27-L
Sales
. CHEMICAL FORMULA
EFFECTIVE UNTIL
6-1-68
CHAN ACT ERISTIC
UNRESTRICTED INFORMATION
I SAMPLE FON ANALYSIS.....................
13 x 5 pt. Amber bottles
LIMITS
J A. Llddle 5/29/67
METHOD
(R) Color, APHA.
(R) Condition
(R) Specific Gravity <? 25*715.5SC
(R) Acidity (mg KOH/gm)
(R) Moisture, HgO, ppm
(R) Refractive Index @ 25C
(R) Inorganic (free) Chlorides, ppm
(R) Pour Point, "C
(R) Dielectric Constant
1 KC @ 100C .
(R) Resistivity ohra-cm
500 VDC @ 100*"C, 0.1" Gap
(R) Hydrolysis Stability Test
(as chlorides) ppm
(R) Monsanto Stability Test
(as chlorides) ppm
(R) Biphenyl, %
(R) Distillation Range (ASTM D-20,
Corrected)
10% Distilled by wt.
90% Distilled by wt.
Sulfates
Dielectric Strength @ 25C
Flash Point (F)
Fire Point
Viscosity @ 100F (SUS)
40 Max. Clear 1.381 - 1.392 0.010 Max. 35 Max. 1.6240 - 1.6260 0.05 Max. -14 or lower 4.70 - 4.90
5,000 x 109 Min.
0.5 Max.
0.4 Max.
0.05 Max.
325C Min. 360'C Max. None 35 KV Min. 338 - 392 None to Boil 82 - 92
046 G-l 052 050 047 048 045 053 113
121
010
133
100 054
12169 043 114 114 049
RESTRICTED INFORMATION
Typical Values
Power Factor (3 100C 60 cycles
1000 cycles
Report Report
0.30-0.50 0.08 - 0.10
il3
/s/G. H. Miller - 5-31-67 G. W. Miller - Chief Chemist
/s/H. L Williams - 6-1-67 H. L. Williams - Production
/s/Wm. E. Ault - 6-8-67 W. E. Ault - Sales
..
/s/L. R. Stark - 6-12-67 L. R. Stark - Research
(R) Routine Analysis, All others Analysed by request only.
TOWOLDMONOQ44029
Section 5 Page 3
5. Process Analysis
Liquid Aroclors
,
A comparison of the Product Strategy quality goals and YTD Anniston performance is as follows:
Aroclors
1242
1254
Project Strategy Goals (1242 & 12541
Color (APHA)
14 18
10 Max.
Water (ppm)
24 26
' ' . 20 Max.
Resistivity @ 100C (xlOv ohm-cm)
1.450
7,750
10,000 Min.
Power Factor @ 100C ' (% at 60 cps)
2.70
.85
0.2 Max.
Thermal Chemical Chloride Stability (ppm)
.26
.42
0.1 Max.
Intermediate product specifications are presented on the specification
sheets included in this section. <>
To attain the targeted quality goals it will be necessary to (1) improve the treatment capability of Aroclor refining, (2) reduce the atmospheric contamination during processing and storage, and (3) eliminate ionic contamination from the handling equipment.
It is possible to produce target quality 1254/1242 guides by multiple (3 or 4) batch absorbent treatments using Porocel (activated bauxite LVM grade). An apparent techological breakthrough for the treatment operation is the utilization of a fixed bed absorbtion unit chargedwith Procel; figure _____ shows a resistivity versus time for an experimented unit installed on the No. 2 liquid still system in May 1967. The technique definately will product goal quality 1242. Laboratory tests are being conducted on Aroclor 1254, it is anticipated that 1254 will upgrade easily. The installed unit is considered a pilot unit for a larger^ capacity bed to be designed in December 1967.
Degradation of product occurs during transfer to the storage tanks,
on occasion while in storage, and in loading operations. The quality decrease
is attributed to atmospheric contamination since the blending tanks and storage
tanks (with the exception of the two major tanks for 1254 & 1242 storage) are free
breathers'and to ionic contamination from exposed surfaces in the galvanized
piping and tank linings. . In-plant projects have been approved to install
nitrogen blanketing facilities on the storage tanks and refining systems. A
comprehensive project, CEA 1430 - Aroclor Expansion, has been prepared by CED
to provide improved storage and handling of product.Aroclors. In the liquid area this
will include 11 new bulk storage tanks, 3 blend tanks, pumps, filters, separate
product pipe lines, tank car and tank truck loading facilities.
.
0265533
TOWOLDMON0044030
Section 5 Page 4
Seeking all possible innovations to assist in the quality drive it has been proposed that Anniston PR&D initiate a program, to define process conditionSneeded to determine when air blowing of the crude liquid is complete; TSD will prepare a project to remove contaminants from the blowing air supply.
The basic weakness of the Liquid. Aroclor area is the fact that all the still
systems are batch operations and half of the available chlorinators are batch
units. Conversion to continuous would offer increased capacity, improved labor
efficiency, and optimum quality control. Projects oriented to continuous
operation include (1) an Anniston PR & D program to evaluate pulling sidestreams
for various grades of Aroclors from a continuous chlorination system, (2) a
proposed XKD evaluation of crude blowing and distilling in the same unit, and
(3) a CED evaluation of converting No. 3 liquid still system to continuous
operation.
.
. A basic need in the liquid Aroclor area is the establishment of the relation ship between product isomer distribution and sales specifications; this in turn will
lead to control of process, variables affecting isomer ratios and the establishment of optimum operating conditions. A TSD project to do such a study is active.
The handling of the residue (Montars) from the stills offers a hazard to the operators and promotes labor inefficiency. Current practice is to drain the still residue into drums and transport the drums to the company dump. A survey of the Montar problems has been completed, evaluation and recommendations will be completed by 12/15/68.
Solid Aroclors
Solid quality is specified by softening point and color of the finished
product. Quality problems were not evident until Santowax-R from the new still
(on stream Dec. 1966) was used for routine production of Aroclor 5460. Immediate
production problems included excessive HC1 evalution during distillation, increased
still residues, high product color, and longer chlorinator cycles. Laboratory
Investigations indicated that a higher quaterphenyl content in the Santowax-R
was responsible; PR & D work is continuing in an effort to provide relationships
between polyphenyl content, crude chloriator levels, and yields. A TSD study
based on the lab data, will be implemented to determine the most economical
.
operating conditions.
A primary need is an in-line analytical instrument to measure chlorine
content of the chlorinator charge either continuously or on demand with short
lag time. TSD will conduct a survey of available instrumentation and recommend
a section based on the duties (buy, develope, or wait).
.
Residue handling is a hazard as in the liquid still area, a major difference is that the majority of residue (Montar 5) is solid. Recommendations
for handling the solids Montars will be generated during the analysis of the Montar survey.
^6553,
TOWOLDMONOQ44031
Section 6 Page 1
Capacity Analysis
`
Detailed analysis of the liquid and solid product lines follows however it is important that the capacity goals of the Anniston plant be presented before any discussion. Table ____ is a projection of the commitments and desirable capacity goals for the Aroclor plant.
I
0265535
TOWOLDMONOQ44032
Section 6 Page 2
TABLE _____
Anniston Capacity Goals
M lbs./yr.
Liquid commitment surge (30%)
1968
42.74 12.80
1969
44.67 13.40
1970
46.26 13.88
1971
49.51 14.85
1972
51.72 15.50
Total
55.54 58.07 60.14 64.36 67.22
Solid commitment surge (30%)
Total
10.47 3.14
13.61
11.66 3.50
15.16
13.15 3.94
17.09
14.33 4.30
18.63
15.02 4.51
19.53
0265536
TOWOLDMONOQ44033
Section 6 Page 3
Liquid Aroclors
A brief summary of the liquid Aroclors production is as follows:
1966
1967 YTD (Aug.)
Actual production
40, 735, 885
Scheduled production 41, 663, 295
Capacity rate (lbs/hr)
(1) design
5,974
(2) demonstrated
6,059
O.S.T.
88.92
29,639,219 29, 821, 118
5,974 . 6,779
87.51
The capacity rates necessary to make scheduled production were 5430 lbs/hr for 1966 and 5955 lbs/hr for YTD, these rates are based on the actual O.S.T. ' However if the scheduled production had been equivalent to 48 H lbs/yr the rates would had to.have been 6255 lbs/hr and 6430 Ibs/hr based on the same O.S.T., rates of this magnitude have been demonstrated but it is 6tillImperative that the O.S.T. of the liquid area be improved. It is obvious that O.S.T. itself does not set the production rate, it is the combination of capacity rate and productive time. The objective is to eliminate as many causes of the non-productive time as possible and to permit the plant to set its productive capacity by varying the capacity rate. Appendix V presents a tabulation of the non-productive time for 1966 and 1967 YTD (May). Table _____ is a comparison of downtime for 1966, 1967 TYD, 1967 projection, and the standard values.
TABLE _____ Liquid Aroclors Downtime Comparison
Repair Process Other
Standard Hours
259 173 173 605
1966
220 355 369 944
1967 YTD (Aug.)
196 122 317 635
1967 Pro
294 183 475 952
Table __ presents a summary of downtime causes and corrective actions; the estimated time savings are 58.0 process hours and 104.3 other'hours. An additional 29.3 other hours should not re-occur. A projection, based on successful completion of the indicated actions, for future downtime is:
Repair Process Other Total Hours
294 125 342 761
0265537
TOWOLDMONOQ44034
Section 6 Page 4
O.S.T. for this downtime sum would be 91.2%, requiring a capacity
rate of 6100 lbs/hr. which has been demonstrated. Capacity beyond 48 M lbs/yr
can be gained by installing level instruments on the still receivers, blend
tanks, and filtrate receivers and by replacing the existing still receiver
pump with identical but new pumps._ The capacity rate estimated for this
modification is 6650 lbs/hr or 53 M lbs/yr.; a project has been approved for this
modification.
.
The 53 M lbs/yr. must be considered on interim production plateau since the chlorination capacity is estimated at 65 M lbs/yr. Steps to exceed the 53 M lb. level include items such as improved preheat for the sitll feed, improved still condensers, and higher capacity vacuum jets; an estimated in vestment of $85,000 will allow the still system to match the chlorination capacity.
It appears that Anniston can meet the capactiy goals through 1971.
0265536
TOWOLDMONOQ44035
TABLE
Downtime Cause
* Corrective Action
Time Savings - hrs.
i. Waiting on room in blend tanks
a. Expert grade 1242 to be refined in fixed bed refining unit.
b. Install second fixed bed refining unit to handle all 1242; first unit to handle all 1254.
14.5 Process
8.5 Process
Responsibility
Unit installed, production to accept as manuf. unit at end of 12/10/67r- demonstra tion period.(12/10/67) T.S.D. to design based on data from first unit. EDC for installed unit-6/1/68.
2. Waiting on crude
Charge trim size of chlorine valves on batch chlorinators.
35 Process
Maintenance
3. GI2 plant down
4. Export grade Aroclor * `
5. Inventory Adjustment
Install drowning system so that Aroclor does not have accept CI2 air mixture during maintenance operations in chlorine plant.
a. Same as 1. a. |b. Same as 1. b. i
Install adequate finished product storage.
27.5 Other
' 20 Other . 12 Other
44.8 Other
T.S.D. to design drowning system - EDC?
1. a. 1. b.
.
C.E.D. design package; estimated installation date 10/15/68.
6. a. Low CI2 pressure b. Empty Cl^ cars
0265539
Install RR spot/loading station to handle additional cars.
17.3 Other
Project approved,- T.S.D./ consultant design package ready by 12/15/67.
ha>3 wrt>
C/i o
o(r-**
Ln O
O'
TOWOLDMONOQ44036
Section 6 Page 6
Solid Aroclors
A summary of the Solid Aroclors production is as follows:
1966
1967 YTD (Aug)
Actual production Scheduled production Capacity rate (Ibs/hr)
(1) design (2) demonstrated O.S.T.
8,287,766 9,435, 599
1247 1789 73.23
6,280,503 6,275,675
1289 1485 79.17
Design capacity for the plant is 10 M lb/yr.; design rates for 1967 have,been adjusted to reflect the change in O.S.T. standard, 907 versus 93% (1966). When discussing capacity it important to remember that the plant ability is measured by both O.S.T. and capacity rate. For instance, in 1966 a 1789 lb/hr rate was recorded with an 81.46% O.S.T. and a 1312 Ib/hr rate was experienced with 88.69% O.S.T.; YTD O.S.T. was 79.17% with a 1349 lbs/hr,The first objective in the solid Aroclor area is to reduce as many downtime causes as possible in order to improve the O.S.T. and_maintain capacity rates at levels required to meet design production (10 M lbs/yr).
Appendix V presents a tabulation of the non-productive time for 1966 and 1967 Y.T.D. Table _____ is a*comparison of downtime for 1966, 1967 Y.T.D., 1967 projection, and the standard values.
TABLE
Solid Aroclors Downtime Comparison
Standard Hours
1966
1967 YTD (Aur.)
1967 Prolection
Repair Process Other
431 172 172 775
732 1039
486 2257
630 209 168 1007
945 314 252 1511
Corrective actions for some if the downtime causes are presented in
Table
. Predicated on the successful completion of the proposed projects,
future downtime is estimated at:
Repair Process Other
868 313 104 1285
__ This nop-productive time represents 14.8% downtime or 85.2% O.S.T.;
at 10 M lbs/yr. ^his would be capacity rat of *1360 lbs/hr., this rate has
been demonstrated. To produce more than 10 M lbs/yr there must be:
.
1. bottleneck elimination 2. improved yield 3. Improved O.S.T.
026^-0
TOWOLDMONOQ44037
Section 6 Page 7
' Th most immediate bottleneck is the solids flaker; this unit can process 10.2 M lbs/yr. A new flaker capable if handling 16 M lbs/yr is to be installed, estimated incentive for this new unit is presented in Appendix VIII. Timing of this installation will depend upon whether the unit is to be part of a CED design package or an in-plant project.
The estimated capacity of the solids system is:
1349 lbs X 8640 hr X .90 O.S.T. X 90 goal yield
= 13 M lb/yr
hr 4 yr
73 actual YTD yield
To gain this 13 M lb., yield must be improved from the YTD 737. to 907. and the O.S.T. advanced to 907.; the improved O.S.T. must be gained while maintaining at least a 1349 lbs/hr capacity rate.
A increase in yield can be gained by an improvement in the quality of the crOde (5060) produced in the No.9 chlorinator. From January 1 - January 4, 1967 the solids still had difficulty in finishing a distillation and experienced high evaluation of HC1 at the end of a batch. The problems were traced to high quaterphenyl content (17.207.) in santowax R for the new still system. A lab oratory investigation of this phenomena reported that not only did reduced quaterphenyl content improve yield but also reduced the chlorination time. Based on these preliminary lab results, the first estimate of the capacity gain at a 57. quaterphenyl content would be:
1590 lbs X 8640 hr X *90 O.S.T. X 90 yield
*= 15.26 M lb/yr.
hr yr '
73 yield YTD
This calculation assumes an 2 hour decrease in chlorination time and an improvement in yield to 907*. A plant study on the effects of varying quater phenyl content is scheduled to be completed by December 1967; data from the study will permit a firmer estimate.
The program to-date has the ability to improve the O.S.T. to 82.57.; continued planning and updating of the project networks will be required to push the O.S.T. to 90%. Efforts will be continued to define targets for O.S.T. im provement.
* Another opportinuity to gain in capacity to gain in capacity rate is in chlorine quality; YTD chlorine delivered to the Aroclor chlorinators is 82.47., chlorine quality at the header from the CI2 plant is 907.. The chlorine used in the solid system has a higher quality since the CI2 vaporizer output is predominately used by solids, estimated quality is 907.. However if the delivered CI2 quality can be raised to 907. the solid feed chlorine quality would become approximately 94.5%; this could raise the capacity rate from 1349 lbs/hr to 1415 lbs/hr. If the SW-R yield studies, are fruitful that projected 1590 lbs/hr could be raised to 1672 lbs/hr., 16.02 M lbs/yr at 907. O.S.T. and 907. yield.
Based on the analysis it would appear that Anniston can meet the solid
goals through 1970. If the solids market continuies to expand it may be necessary
to install a second solids chlorinator. .
.t
A summary of capacity calculations is presented after Table
`.
0265541
TOWOLDMONOQ44038
. Downtime Cause 1. Still circulatin line plugged
TABLE
Corrective Action
Install flowmeter capable of withstanding high temperatures
Time Savins Hours
11.3 Process 46.5 Repair
Responsibility *
TSD select and install instrument - EDC - ?
2. (a) Switch CI2 car (b) Low pressure, CI2 cars (c) empty CI2 car
Install RR spur to handle two additional CI2 tank cars; loading stations will be required.
148 Other
Project approved; TSD working on design, installation will be construced - EDC 2/1/68
3. Cl^ plant down
4. (a) Chlorinator pump (b) Cl^ distrubutors
Install drowning system so that Aroclor does not have to accept C12/air'mixture during maintenance operations in Cl plant.
^ A
Improve availability of spare parts
90 Other 30 Repair
TSD to design system EDC Maintenance
zn ctoo a n> <-f
o1S>
oo o 3
O' \r
O'
> rv
TOWOLDMONOQ44039
Section 6 Page 9
Solid Aroclor Production Potential October 18. 1967
17. 500 lbs batch
*
@ 16 hr/batch 13*hr/batch
* includes downtime 1 = real cycle
1. No damage in yield or cycle time: improved O.S.T. only
17,500 lbs x 8640 hr x batch x .7917 O.S.T. = 9.21 M lbs/yr
. batch
yr
13 hr
9.21 M lbs/yr x 8500 = 9.88 M lbs/yr .7917
9.21 M lbs/yr x .9000 = 10.48 M lbs/yr .7917
2. Yield raised from 73% to 90%
lbs/yr
O.S.T. f'
11.38 12.18 12.92
.7917 .8500 .9000
.
3. Yield raised from 73% to 90% and cycle time dropped from 13 hrs to 11 hrs.
lbs/yr
O.S.T.
13.42 14.40 . 15.26
.7917 .8500 .9000
4. Yield = 90%
cycle time = 11 hr
improved Cl,, quality; YTD supplied by Cl. plant = 82.5 % YTD at solid chlorine = 90%* ^combination of CI2 plant, chlorine + vaporizer supply
Target quality 94.5 for solid system
lbs/yr
O.S.T.
.
14.10 15.10 16.02
.7917
.8500 .9000
0265543
TOWOLDMON0044040
It,
FT Ibb/^R.
' i*
13
12. 11
C-V Cus" * VI t*2*>, t<_ QvMiTV a
V>vo 9o
-C.VCVC" . \\ ttf^V
(^GMU7>1 a> ^vo
0 1 *p QJ
V
>H
PI
St-*.o So oa.io > i'J uej,.
VVSS920
S ection 6
Page 10
7S SO SZ. s-f- S4 SS So 92^
TOWOLDMONOQ44041
Section 7 Page 1
Cost Analysis
1. Cost Variances
Table I presents a summary of the YTD variances (July 1967) for Liquid and Solid Aroclors. Comments on the individual variance items and copies of the YTD dost report are presented in Appendix X.
. The total product cost variance for 1967 is projected to be $340,000; of this amount 74% ($252,000) will be in direct conversion costs. These costs are due for the most part to unforseen increases in TSD, Research, and Experimental costs and in some items unrealistic cost standards. A savings item in this cost category is the production department containers; this cost in incurred by the present procedures for handling the waste Montars ' from the Aroclor plant. A study is being conducted to determine possible alternate handling techniques, potential savings are estimated to be $9,300/yr.
A target in the material costs is chlorine. Total CI2 variances for the Aroclor plant amount to approximately $70,000/year. Programs required to reclaim these costs include (1) an improved monitoring system for the cell efficiency in the chlorine plant, (2) a study to determine how to improve chlorine quality, and (3) a study of chlorinator efficiences in the Aroclor department. Anticipated dates for the recovery of the $70,000 are not available at this time.
Of particular interest are labor savings to be gained by the
installation of improved drumming, flaking, and storage facilities (CEA 1430) in
the Aroclor department. Labor requirements to meet projected production rates
are compared below in two categories, with existing facilities and with the
improved plant:
(CEA 1A30)
Year
Existing Plant
Improved Facilities
1968 1969 1970 1971
11 12 12
13
8 8 8 8
Labor savings by CEA 1430 may range from $30,000 to $50,000/yr.
An unusual cost item is the handling of Montar 5 which is the
residue from the Solids still. The material is solid in three basic forms (1)
coarse crush 375 lbs/drum (2) fine crush 375 Ibs/drum, and (3) fine crush
350 ibs/drum. A comparison of selling price and cost are as follows:
$/lb
Selling Price
Cost
Coarse crush 375 lbs/drum
$.053
$.0569
Fine crush 375 lbs/drum
. ' $.053
$.0835
Fine crush 350 lbs/drum
$.053
$.0606
02655A5
TOWOLDMONOQ44042
Section 7 Page 2
A study will be made on the production of labor costs in the
handling of this product. However this will continue to be a marginal item
since drum/material costs are as follows:
mk Drum/Material Costs
. Selling Price
Coarse crush 375 lb/drum Fine crush 375 lb/drum Fine crush 350 Ib/drum
$ .0412 $ .0412 $ .0412
$ .053 $ .053 $ .053
The required reduction in labor costs is a; Present Labor
follows: Labor Cost to match Manuf..Cost
Labor Cost Reduction
Coarse crush 375 Ib/drum Fine crush 375 lb/drum Fine crush 350 lb/drum
$ .0157 $ .0423 $ .0183
$ .012 $ .012 $ .012
$ .0037 $ .0303 $ .0063
TABLE 1
YTD (July 1967) Cost Variances for Aroclors
Direct Cony. Indirect
Material Cost
Cost
Conv.
Product Cost
Liquid Total Solid Total
$ 18,234- $ 119, 794- $ 227$ 19,567- $ 7,648- $ 5,857-
$ 138, 175 $ 42,615-
Potential Raw Material Savings
# Improve Santowax R/Biphenyl yields in the Solid Aroclors product
line. If all yields can be raised to 90% the following material savings
potentials exist:
#
1968
1969
1970
1971
1972
Solid Aroclors $30,100 $33, 800 $ 38,200 $ 41, 700 $ 43, 700 <
Production Cost Standard yields are as follows:
Santowax R
Biphenvl
1269 4465 5442
5460
78 92
78
78 78
YTD (July) yields are 73% vs. 78%.
0266546
TOWOLDMONOQ44043
' Anniston, Alabama
September 22, 1967
.
AROCLOR COMPETITIOH
George R. Buchanan General Offices
Section 8 Page 1 '
A Manufacturing-Improvement Plan is being prepared for the Aroclor
product line at Anniston. Ona section of this report is entitled competitive technology.Comparison of competitive materials has been
performed at Annioton, however, a description of the competing
companies is not available. Can you provide data on Beyer, Prodelec,
and V Items such as home office, assets, product linos,
etc, would be most desirable,
.
Thank you
JM:kd
John MacPhoreon
0265547
TOWOLDMONOQ44044
Anniston, Alabama
November 8, 196V
1
Section 9 Page 1
R. C. Loyer Patent Attorney General- Offices
A Manufacturing Improvement Plan is being prepared for the Aroclor
product line at AnniBton. One section of: this report 1g entitled
patent status. Can you furnish a brief description of the patent
situation for the Aroclors?
,
Thnnk you.
JMPikd
John MacPherson
TOWOLDMONOQ44045
Section 10 Page 1
Stream and Air Pollution
A survey of the Aroclor plant pollution will be completed by
` 2/15/68.
026554*9
TOWOLDMONOQ44046
TOWOLDMONOQ44047
A
;VENT
c"
r\
-WATER OUT
rj[___ -XXX
i fil1-l
AROCLOR FEED FRO/A
BLOWING "ANK OR ROOF TANK
t7
', luCc)------ \
wI
II
li
II HT~n
('I
STILL RECEIVER PUMP
np^/cuu jla x ~ r
.
STEAK'; VACUUM JET
FILTL-R
ARCCLCR STILL- FLOW SHEET
TO AFOCLC
STORAGE TANKS, TA'CARS. OR DRu.v.3.
- ' f T
0265551
ANNISTON PLANT - MONSANTO CHEMICAL COMPANY - ANNISTON. ALA.
TITLE
.
AROCLQR STILL- FLOW SHETET
.
AUTK.-NO. - :
DRAWN 0Y
HAE
APPROVED
DATE 3-IO-&4
SCALE
MONE
job no. : .
DEPT.
ARCCLOR TS-A-704
TOWOLDMONOQ44048
TOWOLDMONOQ44049
TOWOLDMON0044050
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0265554
TOWOLDMONOQ44051
0265555
TOWOLDMONOQ44052
BY ............ DATE.^/?TMTM. CHKD. BY!?A*yft:.DATE.S#./$.k..
SUBJECT...........................................................................
SHEET NO JOB NO......
.OF.
Section 12 Appendix I Page 6
MCC ABSORBER
0265556
TOWOLDMONOQ44053
BY..5,kjd*?,..... ...DATE.f.h/kk. CHKD. By3AvftV: .DATE ^JA.
SUBJECT.................................................................................... ..Ll.QD.IL)..M-.QEE' CrPiZi....CL&AV.
FROM cdiortiNAT&Ct* t-4-
..........
.
SHEET NO.................OF. JOB NO...............................
Section 12 Appendix I
0265357
TOWOLDMONOQ44054
Section 12 - Appendix IX
COMPANY CONFIDENTIAL
I Report No. _
RESEARRCCH AND DEVELOPMENT REPORT ANNISTON PLANT
I Job No._ R Date____
Page 1
1
370-503 5-5-67
OTHER LOCATIONS
J. R. Savage - WGK P. E. Heisler - WGK D. C. Armstrong - WGK A. F. Regan - MCL C. R. Coleman - MCL H. L. Hubbard - So. 2nd
GENERAL OFFICE
H. C. Carder P. G. Benignus R. A. Steenrod G. R. Buchanan H. 0. Hehner R. A. Munch C. M. Williams J. Cresce
ANNISTON PLANT
W. B. Papageorge L, C. Fuhrmeister J. MacPherson J, G. Bryant V, R, Haupt W. B. Dunlap
Title:
Quality Report on Japanese Kanechlor 300 and Bayer Clophen A-50
Personnel: Problem:
S. 0. Kemp and G. W. Miller
Quality Surveillance of Competitive Insulating Fluids in Competition with Monsanto Aroclor
Justification: Protection of Domestic Sales and Increase Potential for Foreign Sales
Summary:
Bayer Clophen A-50 is quite superior to Anniston and WGK Aroclor 1254 in , electrical properties. This material as received exhibited a resistivity ' of 150,000 x 10^ and thermal' chemical chloride stability of 0.27 ppm.
Japanese Kanechlor 300 is also superior to Anniston and WGK Aroclor 1242. Even though this material had a 9,600 x 10^ resistivity and 0.08 ppm TC it is still considerably better than any routine domestic production in Monsanto operations.
' /dp
Gl W^Miller
0265558
TOWOLDMONOQ44055
Research and Development Report No. 1
Job No. 370-503
-2 -
Section 12 Appendix XI Page 2
Background
The last report concerning competitive Aroclor type material was issued during October 1966. In that report (435-5-66) a comparison of Clophen A-30, Pyralene 1499, and Aroclors from the three Monsanto production facilities was presented. Also presented was a comparison of Pyralene 1476 and Anniston Aroclor 1254.
The additional data presented in conjunction with values cited from the above report should serve as a useful data source for summarization of Monsanto's marketing position at the end of 1966.
Discussion
Bayer Clophen A-50
This material was received in a 16 gauge, welded seam galvanized steel drum. Even though the drum was equipped with rolling hoops it was dented in several locations during transit. It is apparently characteristic of Bayer to use drums equipped with side wall bungs.
As in previous sampling of competitive drums this material was sampled by insertion of a clean glass tube and displaced into clean bottles with dry nitrogen. One sample of the material was obtained at room temperature; however, due to the high viscosity the drum was necessarily transferred to the Aroclor Department hot house to aid in sampling. Analysis of the sample drawn prior to warming the drum gave a resistivity of 190,000 x 10. This value could not be achieved after warming. Several replicate tests on the samples collected from the warm drum showed a maximum of 150,000 x 10. All stability tests were performed in duplicate or triplicate.
The dielectric fluid compares favorably with Monsanto Aroclor 1254 specifications in all areas except that gravity and index are too low and the dielectric constant is above our spec limit.
Isomer distribution and a full analysis report are included in the attached tables.
Japanese Kanechlor 300
This material was received in a 35 gallon welded seam galvanized steel drum. This material was sampled Indoors without any heat being applied.
The material was submitted to at least two analyses on all electrical and stability
properties.
.
There are no test properties on this material which are not within the specification limits of Aroclor 1242.
Isomer analysis and a full analysis report are included in the attached tables.
0*65559
TOWOLDMONOQ44056
Research and Development Report No. 1
Job No. 370-503
-3
Section 12 Appendix II Page 3
Future
Two five pint samples of these materials are being forwarded to WGK for analysis. It would be appropriate to report WGK results on the aforementioned materials in this report; however, in the interest of having this data available at the May 9 quality conference the report contains only Anniston results. If serious dis crepancies develop in the data comparison with WGK, a follow-up report will be Issued.
/dp Att. 4
G. W. MilTer
TOWOLDMONOQ44057
`
Research and Development Report No. 1 Job No. 370-503
-4 -
Section 12 Appendix II Page A
'
' Table I
Comparison of Competitive Materials With Monsanto Aroclor 1242
Property
Bayer Clophen ' A-30
Prodelec Pyralene
1499
"
Anniston AH-248
MCL Z-16
WGK B #450
Kanechlor 300
Japan
Color, APHA
<5
<5
15
15 15
10
Acid No.
0.001
Ref. Ind. @ 25C 1.6237
Sp. Gr. @ 25eC
1.378
Vise. @ 100F, SUS 79.8
0.002 1.6245 1.387 85.7
0.001 1.6248 1.386 90.2
0.001 1.6249 1.388 86.9
--
... ... ...
0.001 1.6248 1.390
Moisture, ppm
63
Free Chlorides, ppm 0.01
35 0.01
30 0.01
52 0.01
28 0.01
24
O.OO?
0^09
HST, ppm Cl
0.11
( n. Stab., ppm Cl 0.06
0.16
0.14
0.06 * 0.11
0.32 0.12
0.50 0.16
0.11 0.06
TC Stab., ppm Cl 0.07
0.12
0.28
0.48
0.48
0.08
West. Stab., ppm Cl 0.40
Resist, x 10,
OHM/CM, 100C P.F. @ 100-C
60 cycles 1 KC
15,200
0.22 0.06
0.48 1,270
4.6 0.33
0.51 1,980
2.0 0.17
1.56 1,900
0.93 1,030
3.4 0.25
4.8 0.28
0.36 9,600
0.55 0.13
D.K. @ 100"C,
>M>cvcles Distillation 107.
90%
4.90
327 348
4.87
330 352
4.83
328 352
4.80
327 348
4.90
--
4.82
331 352
Type drum
Steel, galv. Steel, welded
dlpped,
seams. Type of
16 ga.
lining to be
determined
One coat phenolic lining
Two coats Bottle phenolic lining
Steel welded
seams, ga lvanized
Appearance of drum Good, no . dents
Head bent, rim seam split, lining flaking
Good as produced
Good, no major dents
Bottle
Good
*6556J
TOWOLDMONOQ44058
' Research and Development Report No. 1
Job No. 370-503
-5-
Section 12 Appendix II Page 5
-
Table II
Comparison of Competitive Material With Aroclor 1254
Test Date Property
10-15-66
Prodelec Pyralene
1476
10-5-66
Aroclor 1254 AH-68
4-30-67
Bayer Clophen
A-50
Color, APHA
10 20 7
Acid No.
0.002
.
0.002
0.001
Ref. Ind. @ 25"C
1.6380
1.6382
1.6365
Sp. Gr. @ 25C
1.503
1.504
1.490
Vise. @ 210F, SUS
46.2
45.9
Moisture, ppm
30 20 30
Tree Chlorides, ppm
0.02
0.02
0.009
Hydrolysis Stab., ppm Cl
0.14
0.14
0.07
Thermal Chem. Stab., ppm Cl
0.32
0.30
0.28
We6tinghouse Stab., ppm Cl Resist, x 109, OHM/CM, 100C
1.00 3,180
1.13 5,880
0.62 150,000
Power Factor @ 100C, 60 cycles 1 KC
1.5 0.14
0.60 0.10
0.288 0.09
Dielectric Constant, @ 100C, 60 cycles
4.23
4.25
4.37
Distillation - 10% 507. 90%
368 370 365 376 376 373 387 388 387
Monsanto Stability, ppm Cl
-0.18
0.14
0.10
Type drum
Steel, welded seams, 16 ga. Type of lining to be determined
One coat phenolic lining
Steel welded seams. Galvanized rolling hoops
..^pearance of drum
Good, no dents
Good as produced Good
0265562
TOWOLDMONOQ44059
''
.
Research and Development Report No. 1 Job No. 370-503
r" .' /
-6-
'
Table III
. GLC Analyses of Competitive Aroclor 1242
Section 12 Appendix IX Page 6
Peak
.
Japan
Kanechlor
.
Anniston
300
WGK
England
Bayer Prodelec Identification
i
0.03
0.01
0.11 0.05
Trace 0.009
Biphenyl
2
0.79
0.01
0.13 0.18
0.003 0.01
2 Chloro
3-4-5
0.25
Trace
0.04 0.07
0.03 Trace
3 Chloro-4 Chloro
6-7
` 4.39
3.02
3.30 3.69
4.91 3.44
2,2'; 2.6
8-9-10 11
11.79 1.15
8.57 1.15
9.98 0.74
10.19 1.26
12.36 8.91 1.19 1.06
2,5; 2,4; 2,3'; 2,4'; 2,3 3,5
12-13-14-15
J6-17-18-19-20 f 21-22-23-24
21.64 27.56 7.50
24.03 32.27 7.08
26.50 25.04 32.72 32.78 7.05 6.59
26.33 28.23 31,32 34.26 5.79 6.79
3,4; 3,4'; 2,5,2' 4; 4; 2,3,2' 2,5,4'; 3,4,2'; 2,3,4
25-26-27
10.04
10.22
9.69 8.84
8.58 9.51
3,4,4'
28-29-30-31 8.07
7.24
6.26 6.23
5.29 6.66
32-33-34
3.50
3.31
2.51 2.64
2.32 2.60
35-36-37-38-39-40 1.57
1.19
0.69 0.87
0.85 0.77
41-42
0.69 ' 0.62
0.23 0.36
0.46 0.40
43-44-45-46 '
0.41
0.39
0.11 0.25
0.31 0.22
47-48-49
0.09
0.21
0.02 0.08
0.16 0.09
50-51
0.04
0,04
0.02 0.11
0.03 0.02
52
0.01
0.04
Trace 0.03
0.01 0.005
53-54-55-56
0.07
0.13
0.02 0.22
0.03 0.09
57
NDA
0.08
NDA 0.02
NDA NDA
^'-59-60
0.06
0.10
Trace 0.26
0.01 0.01
61-62-63
Trace
0.08
NDA
0.17
NDA
Trace
64
NDA
Trace
NDA
0.10
NDA NDA
0265563
TOWOLDMON0044060
1 .
Research and Development Report Ho. I Job No, 370-503
-7-
Section 12 Appendix II Page 7
0
Table IV
GLC Analyses of Competitive Aroclor 1254
Peak 1"
Anniston 1254
0.015
WGK 1254
0.02
Bayer Clophen
A-50
Trace
Prodelec Pyralene
1476
Trace
2
0.01
0.36
. Trace
Trace
3-6-5
Trace
0.16
0.01
0.12
6-7 . 0.07
6.04
.
0.23
Trace
8-9-10
0.46
0.19
0.75
0.30
11
0.05
0.01
0.03
0.04
12-13-16-15
1.09
o:48
0.76
0.90
16-17-18-19-20
1.59
0.81
1.11
1.35
1-22-23-26
8.34 > 7.80
8.03
8.08
25-26-27
4.01
3.59
4.61
3.32
28-29-30-31
13.29
13.09
14.27
12.35
32-33-36
16.11
16.24
16.66
15.80
35-36-37-38-39-60
17.77
18.23
19,35
18.10
41-62
13.14
14.12
12.85
14.26
43-44-45-46 .
11.05
11.65
10.23
11.93
47-48-49
8.32
8.77
7.10
8.70
50-51-52
1.98
2.02
1.68
2.10
53-54-55-56
1.56
1.56
1.37
1.36
57
0.64
0.66
0.39
0.80
58-59-60
0.50
0.62
0.50
0.46
61-62-63
NDA
Trace
Trace
Trace
A
NBA
NDA
0.02
NDA
0265564
TOWOLDMONOQ44061
Section 12 Appendix III Page 1
TABLE I
THE WORLD MARKET FOR CAPACITOR AROCLOR
Total Potential and Monsanto Share 1966 and 1971 (Estimated)
DOMESTIC MARKETS
Metric Tons C ud4 \ks
USA UK Prance Germany Japan
Total
166
Total
11,000 930 515
1,100 ...1,.1.0.0
15,245
Monsanto Share
11,000 930 0 0 0
11,930
1971
. Total
Monsanto Objective
13,000
1,^00 1,000 1,400 3.300
13,000
1,400 0 0 9
20,100
14,400
NON-DOMESTIC MARKETS
EFTA EEC
E. Europe
Asia-Pacific Rest of
Americas Rest of World
Total
740 1,370
305 330
1,035 370
4,150
Grand Total
19,395
285 200
90 235
975 100
1,885
13,815
925 1,850
725 665
1,940 600
6,705
500 0
300 500
1,900 400
3,600
26,805
18,COO
OZ***6*
TOWOLDMONOQ44062
Section 12 Appendix III Page 2
. TABLE II
NON-DOMESTIC MARKETS FOR CAPACITOR AROCLOR BY AREA - BY COUNTRY
Metric Tons
Austria Denmark Finland Norway Sweden Switzerland
Total
Italy Belgium Holland
Total
Czechoslovakia East Germany Hungary Poland Romania Yugoslavia
Total
EFTA
12.
70 25 95 30 290 230
740
EEC
'1266
800 350 220
1,370
EASTERN EUROPE
1966
20 100
15 70 15 85
305
1971
80 . 45
100 . 50
350 300
925
1971
1,050 500 300
1,850
1971
45 200
50 200 100 120 725
0265566
TOWOLDMONOQ44063
Section 12 Appendix III Page 3
TABLE II (continued)
NON-DOMESTIC MARKETS FOR CAPACITOR AROCLOR BY AREA - BY COUNTRY
Australia India Hong Kong
Total
Metric Tons
ASIA-PACIFIC
2266
170 150 _10
330
1971
350 300
15
665
Argentina Brazil Mexico Canada
Total
REST OF THE AMERICAS
1966=
. 100 250 135 550
1,035
mi
380 450 360 750
1,940
Israel South Africa Spain
Total
REST OF THE WORLD
1266
30 0
lie
370
1971
50 50 500
600
265567
TOWOLDMONOQ44064
Section 12 Appendix III Page 4
TABLE III
ESTIMATED WORLD PRODUCTION CAPACITY*
*
USA Prance UK Germany Italy Spain Japan
TOTAL AROCLORS
Monsanto Prodelec MCL Bayer Caffaro Flix Kanegafuchi
Million Pounds
80 . 10 10 10
2 1 _7 120
Tons 36,200
4,600 4,600 4,600 1,000
500 3,500 55,000
*Also produced in East Germany and Russia
568
TOWOLDMONOQ44065
TABLE IV
KNOWN WORLD MARKET BY PRODUCER - 1966
(Metric Tons)
MAJOR DOMESTIC MARKETS
E.F.T.A. E.E.C. E. EUROPE ASIA-PACIFIC REST OF AMERICAS REST OF WORLD
TOTAL
M.C.L.
930 220 200
90 210
0 90 1,740
BAYER
PRODELEC
1,100 155 805 115 50 50 . 0
2,275
515 365 300 100
50 0
-22 1,360
CAFFARO
FLIX
0 -0 00 65 0 00 00 00 _0 250 65 250
KANEGAFUCHI
M.C.
TOTAL
1,700
11,000
00
0'
0
00
0 20
0 _____ 0
985 0
1,700 '
12,005
15,245 740
1,370 305 330
1,035 ____ 212 19,395
O0TOO T*T03O tTt"Oot 3 P*
D, O
H 3
rsj v/
WM N?
sj\ O'
TABLE V
R.M.POSITION Benzene Chlorine
PROD. QUALITY 1254 1242
ANALYTICAL
DATE PROD. STARTED Years
PRODUCT RANGE
SALES ORGANIZATION Strength Method Visit Frequency
Customer Relations
TECHNICAL SERVICE
OTHER ASSETS
.
SUPPLY SITUATION
ELECTRICAL AROCLOR TABLE OF COMPETITIVE STRENGTHS
MCL/HC
Buy/Make Make
Good/Fair Fair/Fair
Adequate 1951/1930
14 35 Very large
BAYER
Buy Make
Good Good
Adequate
1930 35
'
Very large
PRODELEC
Buy (Progil) Make (Progil)
Good Good
Adequate
1938-1939 27
Limited (Progil)
CAFFARO
Buy Make
Good Fair Adequate Post 1945
Limited
Good Direct/Agents
Much respect Good
EFTA (Large Comp.)
Drums OK Bulk ?
Good Direct/Agents Europe more than MCL Much respect
Good
EEC (Large Comp.)
Drums OK Bulk Good
Good Direct/Agents Europe more than MCL Much respect
Good /f< .
EEC (Progil)
Drums OK Bulk Good
Italy only Direct Italy OK
Bit amateur
Not as good Big Three
Local
Drums OK
(H S S 9 Z 0
S e c tio n 12
A ppend I I Iix
TOWOLDMONOQ44067
RESEARCH EFFORT
NEW PRODUCTS
AROCLOR
.
IMPORTANCE {!%)
PRICE LEADERS/ CUTTERS
PHILOSOPHY
mcl/kc
Needs MC/MCL liaison
Yes
'
BAYER
Not obviously energetic
No
PRODELEC Very active
Very active (1500)
CAFFARO Non-existent
No
Small but valuable
Small but valuable
Large
Medium
- Stability
Stability
Leaders
Cutters
Common schedule Common schedule Common schedule To capacity
S e c tio n 12
A ppend I I Iix
Page 7
0265571
TOWOLDMONOQ44068
Section 12 6 Appendix III
Page 8
TABLE I THE WORLD MARKET FOR TRANSFORMER ASKAREL
TOTAL POTENTIAL AND MONSANTO SHARE 1966 AND 1971 (ESTIMATED)
1000 POUNDS - (FINISHED BLENDS)
DOMESTIC MARKETS
USA UK France Germany Japan
TOTAL
TOTAL
17000 650
6100 3600 1600
28950
'
MONSANTO SHARE . TOTAL
17000
25000
650
3000
0 7000
0 : 4000
0 2500
' 17650
41500
2211
-
MONSANTO SHARE
25000 3000 0 0 0
28000
NON-DOMESTIC MARKETS
EFTA
'
EEC
Eastern Europe
Asia-Pacific
Rest of Americas
ReBt of World
520 2000
175 620 3380 750
TOTAL
7445
30 0
25 . 270
3380 300
, x 4005
GRAND TOTAL *#"
35285
.21655
730 2500
250 750 38607 1040
9130
50630
200 0
100 500 3860? 700
5360
32360.
0265572
TOWOLDMONOQ44069
Section 12 Appendix III Page 9
. TABLE II
NON-DOMESTIC MARKETS FOR TRANSFORMER ASKAREL
BY AREA - BY COUNTRY
1000 POUNDS (FINISHED BIENDS)
EFTA
;
126
Austria
: 100
Denmark
. None
Finland
' \ None
Sweden
None
Switzerland
300
Norway Portugal
. 20 * 100
' TOTAL
520 **r *
\
Italy Belgium Holland
. TOTAL
EEC 1966
750 1200
50 2000
1971 150
None None None
400 30
150 730
1971 1000 1400
iqq
2500
.,
*
0265573
' **
TOWOLDMON0044070
Section 12 Appendix HI Page 10
1 EASTERN EUROPE
126
: -'I-/' ' 1971
Czechoslovakia
' None
None
East Germany . ,
?
Hungary
. ' None ; None
Poland Homanla
; i \ 25 ' : None
.
50 None
Yugoslavia
; 150
' 200
TOTAL
175
. ' "/ 250
Australia India
'
; ASIA-PACIFIC
; 1266 ,i. r '280
'Ji; 1211 ' 350
\ 7, 34o . ' . .
400
Hong Kong
None
None
.
TOTAL . 620
;
750
0265574
TOWOLDMONOQ44071
Section 12 Appendix III Page 11
REST OP THE AMERICAS
Argentina
1266 70
1221 ; 120
.. Brazil ' Mexico
, .
200
* ; 400
-.'w?:".: V.K,,,
170
.
300
Canada . Chill i1 Puerto Rico
.r
2900 '
v. v` : ' .
20
; -'V\' ' : . ' 10
, ...... '
3000
: 20 ' t ' v '
10
Panama '
. v 7___10
10
,
, TOTAL
3380
3860
:V ; ' ' '
i. Israel
' k )' ,
- REST OP THE WORLD
v/: .1966
,,
mi
` ` 7
,, 100
South Africa
v 150
~'
200
: Spain . P. ' .akistan ; '. . J. :
500
700
" 30 ' `
-
40
v
TOTAL
750
, 1040
-'
. . i,
iii-
1 .*.y *' } '
. <*
'1 ^:'.v; ^;:. 5
"V
1
.,;V. H;,,
V.
_ oZ***7'
^
'1 .
..
TOWOLDMONOQ44072
S e c tio n 12I I I
A p p e n d ix Page 12
\
TABLE -H5- 32
KNOWN WORLD MARKET BY PRODUCER - 1966
.
3
1000 POUNDS (FINISHED BLENDS)
'
MARKET
MONSANTO UK
BAYER
PRODELAC
CAFFARO
FLIX
KANEGA- MONSANTO
FUCHI
USA
Major Domestic Markets 650
3600
6100
0
0
1600
17000
TOTAL 28950
Efta
30
270
220 '
0
0
0
0 520
EEC
0
350
. 900
750
0
0
0 2000
Eastern Europe
25 0 .150 0 0 o'. 0 175
Asia-Pacific
" 260
200
150 -
0
0
0
10
620
Rest of Americas
0
0
o' ' 0
0
0 3380
3330
Rest of the World
300
0 50 0 400 0 0
750
TOTAL
1265
4420
7570
750
400
1600
20390
36395
TOWOLDMONOQ44073
H. J. Day, St. Louis General Offices
Section 12 Appendix IV Page 1
September 7j 19^7
..
LIQUID AROCLORS Requirements Through 1972
Mr. H. W. Tlppee
.H, C. Carder G. R. Duchanan J, Cresce
*5XoU Wrrmelstes. prK.'Helsler"
D.. B. Hosmer N.- L, Sample R, P. Stevens Jack Molloy Hill Williams Bob Yates
- HOARD - GBUCH - JCRES
y ;v * ;Anniston " `'-''KrummriC
- DHOSM - NSAKP - RSTEV
- Krummric - Anniston - RYATE
The attached shows the U. S. requirements for Liquid
.
Aroclors through 1972. This is based on sales estimates
received by this group on August 17, 1967.
Note that the forecast is down somewhat from that calculated on July 13., 1967^ Current Anniston capacity is 40,000 M lbs./year and WGK capacity is 28,800 M lbs/yr., total, 7o,800 M lbs./year. It might be interest ing to note that 7 months 1967 total liquid aroclor production has been at an annual rate of 73,700 M lbs./year and inventories at this writing are at a maximum.
:
Jms Attachment
....... .. v '
H. J. Day-
'.
'
'.
0265577
TOWOLDMONOQ44074
Section 12 Appendix IV Page 2
LIQUID AROCLORS 5-YEAR FORECAST (IN THOUSANDS OF LBS.)
TOTAL REQUIRED FROM U.S. PLANTS
Krummrlch 1242
1248 : 1254
1260 1262
1968
1969
1970
1971
1972
16,107 5,049 4,831
6,638
__ 121
32,750
19,037 4,596 5,039 6,953 135
35,760
21,484 4,571
. 5,462 7,345 145
39,007
23,772 4,447 5,957 8,140
155
42,471
25,572 4,861 6,257 8,485 165
45,340
Anniston
1242 1248-
1254 1260 1262 1221
. 1232
": :
DIV, TOTAL
; 28,636 1,782 8,647 2,291 630 110 593
42,739
75,489
29,745 1,98 9,426 2,360 649 120 463
44,671
80,431
30,691 ' 1,993 9,555 2,725 641 130 526
46,261
85,268
33,491 2,308 9,445 2.878 656 140 593
49,511
91,982
35,247 2,708 9,265 3,009 694 150 645
51,718
97,058
II. J. Day 9/7/67
. 02655 78
TOWOLDMONOQ44075
Section 12
Appendix IV
Page 3
{L.J. Hay. St. Louis General Offices _ __
September 8, 1967
R. B. linger
_ RBILG
SOLID AROCLORS
H. C. Carder J. Cresce
- HOARD - JCRES
REQUIREMENTS THROUGH 1972
Lou Fuhrmeister - Anniston
D. B. Hosmer
.. DHOSM
Don Marriner
- DMARR
Mr. H. W. Tippee
N. L. Sample R. P. Stevens
- NSAMP - RSTEV
W. F. Waychoff - WWAYC
Hill Williams
- Anniston
Bob Yates
- RYATE
The attached shows the Anniston requirements
for
Aroclors through 1972. This is based
on sales estimates received by this group on
August 17, 1967.
/Jms Attachment
H. J. Day
0265579
TOWOLDMONOQ44076
Section 12 Appendix IV
Page 4
SOLID AROCLORS FIVE-YEAR FORECAST (IN THOUSANDS OF LBS.)
TOTAL REQUIRED FROM ANNISTON
1268 2665 , 4465 - < 5060 5442 5460 - S'
Rated Capacity
Deficit
1968
290 25
865 410 18b 8699
10469
1QOOO
469
1969
300 25
925 420 210 9780
11660
lopoo
1660
I2Z2
310 25
985 440 240 11150
13150
10,000
3150
1971
320 25
1045 450 270
12220
14330
1Q000
4330
1972
330 25
1105 46b 300
12800
15020
1Q000
5020
H. J. Day
9/8/67
0265560
TOWOLDMONOQ44077
Section 12 Appendix V Page 1
Liquid Aroclor
Process Non-productive Time
Plugged lines Waiting on room in blend tank Switch products Lack of still capacity Druming out receiver Waiting on crude Vacuum troubles Repack pump Miscellaneous
1966
DN RV
43.4
2.0
33.7
4.5
3.1
49.6
2.4
202.0 22.8
23.6
1.3
1.8 1.6
20.0 .--
340.41 71.4
1967 YTD (May) DN 15.8. 23.0-
47.9' 4.1
11.3
102.1
1. 1966 DN Time report is for February - December, years' total is 355 including January.
2. Requires change to CI2 control valve trim.
3. Due to export grade
4. For projection, use 10 hrs. for WOR in blend tanks and 20 hours WOC.
Liquid Aroclor
Other Non-productive Time
Faulty Cl^ car Low Cl^ pressure CI2 plant down No CI2 car Switch CI2 cars Empty CI2 car Poor CI2 quality Steam press line Product change Rebrick furnace Export grade Aroclor Lack of still capacity Inventory adjustment Product demand low Refining pilot plant Miscellaneous Water lines
1966
DN RV
15.9
2.3 12.5
17.5
7.8
6.4
7.2 25.2 16.1
9.7 15.9
.. -- - -
--
11.4 44.6
-.
23.2
50.0
91.1 ____
12.0
------
318.9'
12.6 -- 65.5
1967 YTD (May)
DN EL
7.1 27.5
-- -
10.2
..
9.0
3.2
-- ___ -- ___
0265581
-
32.0
44.8
15.0 44.4 14.3
204.3
-- -
-- 3.2
TOWOLDMONOQ44078
Section 12
Appendix V Page 2
1. 1966 DN line is for Feb. - December, year's total is 369 including January.
2. For projection of 1967 YTD use only 16 hrs. for export DN, 0 hrs. DN for pilot plant, 3 hrs. for low CI2 pressure, 5 hrs. for empty cars and 0 hrs. for water lines.
Liquid Aroclor
Repair Non-productive Time
1966 DN RV
Still receiver pumps
37.4
Still circulating pumps
28.2
Blend tank pump
Catalyst check
Chlorinator coil replacement
Still circulatingcoil
12.0
CI2 vaporizer
90.6
Piping failures
19.8
Miscellaneous
f' 4.0
1.2 18.5
''
1967 YTD (May) DN
4.6 11.8 11.5 50.7
7.7 7.7
37.3
212.01 18.5
131.3
1. 1966 DN line is for File - December, year's total is 220 including January.
0265582
TOWOLDMONOQ44079
Section 12 Appendix V Page 3
Solid Aroclors Process Non-productive Time
<
CI2 feed lines plugged Chlorination cooler plugged Still circulating line
plugged Waiting or flaker Vacuum trouble Waiting on crude Miscellaneous Waiting on room, blow tank Check softening point Plugged lines Operating errors Drumming 4465 Vaporizer
1966 DN RV
28.9 3.0
--
70.3 159.6 194.6
37.0 186
37.1 2.0
92.0 57.0 21.0 21.6
61.4 21.0
--
*910.1
82.4
1967 YTD (May)
DN
RV
7.5 2.0
11.3 6.0 8.0 1.0
10.0
8.8
-- 45.8
-- 8.8
Solid Aroclors
Other Non-productive Time
1966 DN RV
1967 YTD DN
RV
Santowax-R Cost Switch Cl^ car Low pressure Cl car Water in SW-R CI2 plant down Empty Cl, cars Cl, quality Cooling water problems Steam problems Therminol Tie-in Miscellaneous Product chcnge over Equipment modification Still Therminol System
83.5 38.7
88.0
66.2 32.4
13.0
32.0 38.5 39.2 88.6
487.7
-- 32.4, '
72.1 75.8.1
6.51
17.6 39.7 24.11
2.5 11.5 11.0 30.9
27.6 7.5 8.8
31.7
-- 291.7
-- 75.6
1. Use 30 hrs. switching, 2 hrs. low pressure, 10 hrs. empty cars for projection time saving based on projection.
0265^83
TOWOLDMON0044080
Solid Aroclor
Repair Non-productive Time
1966 DN RV
Flaker-grinder gumming
__
Therminol leak
__
Demister No.9 chlo.rinator
_
Weigh tank agitator
__
Chlorinator pump
__
Still pump
152.7
Still entrainment separator __
Chlorinator Cl^ distributors 31.8
Therminol system
75.6
CI2 vaporizer
157.7
Cl,, flow control valve
__
Vacuum Jet
21.6
Burst furnace coil
__
Miscellaneous
54.3
Off-gas condenser
48.0
Vacuum problems
64.0
Flaker
23.1
Steam leaks
11.3
Instruments
o 89.4
5.0 35.0
729.5 40.0
Section 12 Appendix V Page 4
1967 YTD (May) DN RV
51.7 55.8
23.8 11.5 18.0 13.0 82.8 33.0 35.5
7.0 13.1
9.0 46.5 66.0
__ _
51.6 _ __ _ __ _ _ 15.0 __ _ _
466.7
66.6
0265584
TOWOLDMONOQ44081
teVCiN5*T<sQ CftCv^Ty
'^<.<1
t^-to
fl-y >
S e c tio n 12 Appendix V I
Page 1
0265585
TOWOLDMONOQ44082
TV fa*)
[O 090 /
looo
bQu'O Anoexuf*. QuAO-Ty 6iM.^ C<*-*WvWlfy A-
lo,Na es>*VTvvtry o^
V^A^Tu***
tsv^iOT 6n*oiy /w^cioAS 'U42./ij.r4,
0>Hm D>-m<
98SS9?0
S e c tio n 12 Appendix V I
Page 2
\
*on
TOWOLDMONOQ44083
TO CO cro
u^iop Amcu>g. capftoTv Poj*tecrc
fctMQAJ VTrttTl?
F'*/>/<> sr ^r Wiury
^ts^^Tvost >t^, c r *+' \w./n^.. 'W'S'/fcOi
^A&v<.Ti8m VC'fc. /^.. \o/v**/fcv
S e c tio n 12 Appendix V I
Page 3
0265587
TOWOLDMONOQ44084
Section 12 Appendix VII Page 1 VII. MIP Contributors 1. Production - a separate section will not be written by the Production Supervisor since the basic outline of the MIP developed in conversations between Production and TSD. 2. PR&D - to be written by 2/15/68. 3. Quality Operations Control - to be written by 2/15/68. A. Maintenance - to be written.
0265588
TOWOLDMONOQ44085
Authority No.
2026
2098
2219
2239
2323
2324
2342
2379 2545
i !
i !
I 2566_________ !
TABLE
Description
Approved Prolects
'
Piping to Manifold Instruments
Aroclor Still Revision
Aroclor Alarm System
1 Department
( | 826.08
* 826.08
i 826.08
Capital 11.000
* Savings B.T. 1
l !
Success Factor 90%
13.600 1.450
5.900 2.870
857. ! 607.
Fixed Bed Tower for Refining Aroclor 826.08
Level Indicator on #4 Still Receiver 826.17 i
Vertical Condenser on #4 Still
! 826.17
Railroad Spur for Chlorine Tank Cars 826.17
Drumout line for Aroclor 4465
Debottleneck Liquid Aroclor Still System
i" i 826.17 ]
826.08
Platecoil Heat Supply for
]
#1 Roof Tank______________________________ I 826.08
2.515
1 2.020 |
i 16.600 !
Quality
1.500 -
6.800
31. 700 ! 21.200
! 1.495 ! 3.400
907. ' 757.
857. 857. 907. '
17.130 '221.000
857.
j i.
j
' 1.500 :____________________ ! 100%
S e c tio n 12
Appendix V III
Page 1
0265589
TOWOLDMONOQ44086
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TOWOLDMONOQ44089
References 1. TSD Job No. 370-500, Report No. 2, 4-20-67. 2. TSD Job No. 370-500, Report No. 1, 2-13-67.
Section 12 Appendix IX. Page 1
0265593
TOWOLDMON0044090
Section 12 Appendix X
Page 1
Cost Analysis
A. Liquid Aroclors Cost Variances
1. Net material cost: major contributor (76% of total variance) is the chlorine cost; delivery of plant chlorine to Aroclor is based on cell efficiency, standard is based on pegged numbers. A program is planned for the improvement of cell efficiency monitoring.
.
2. Indirect conversion:
..
(a) steam - this is an assigned valve, true value will recorded when steam meters are installed.
. (b) gas - negative variance is a result of pushing the stills (lower efficiency) to gain higher production rates
(c) labor - variance is the result of high overtime (d) packing containers - high negative variance is the result
increased export demand and the use of an improved drum ($0.50/drum) (e) laboratory - high production rates have required increased laboratory effort. (f) production department containers - increased production rates have exceeded predicted usage (g) Pilot plant exp. - high positive variance resulted from delay in project for waste heat recovery (h) Technical Services - increase in personnel assigned (i) experimental - bauxite, refining unit was installed under experimental expense funds (j) research expense - increased activity (k) plant process research - increased personnel assigned plus higher activity level a) mechanical expense - low budget
B. Solid Aroclors Cost Variances
1. Net material cost: major contributor (70% of total variance) is the chlorine cost; again this is a pegged value rather than a true measurement. The program planned for the improvement of chlorine cell monitoring will improve chlorine assignment to 6olid Aroclors.
2. Indirect conversion:
(a) steam - this is an assigned value, cost should improve as
steam meters we installed.
.
(b) gas - YID reflects three months below capacity production
0265594
TOWOLDMONOQ44091
Section 12 Appendix X Page 2
(c) packing containers - low estimate of required amount
(d) laboratory - YTD reflects increased sampling in previous
months with production difficulties
,
(e) technical services - increased personnel assigned to department
(f) mechanical expense - low budget
0265595
TOWOLDMONOQ44092
ICO ST REPORT YEAR TO OATE
( '............. ...
.......... Section i2 (- Appendix X - Page 3
ORGANIC DIVISION
ANNISTON* ALA.
`LIQUID AROCLORS
DEPT. 82608 PRODUCTION CODE 82608
ACTUAL PRODUCTION - YEAR TO OATE 25,815,494
^
SCHEDULED PRODUCTION - YEAR TO DATE 25,822,500
JULY 1967
' . MATERIAL
YEAR TO DATE QUANTITIES
OR EXPENSE
ACTUAL QUANTITY SCHED. QUANTITY OVER-UNDER SCH.
STEAM
MBTU
60*085
60,412
19,673-
53 0
ELECTRICITY CKWH . HATER PLANT MGAL
8,881 268,373
10,325 257,682
1,444
' 10,691-
533 542
GAS
MBTU
54,472
-47,337
7,135-
54 5
LABOR
HRS
16,903
15,287
1,616-
570
PACKING LABOR
4,956
4,956
601
LABORATORY HRS
2,449
1,931
518-
610
CLAY ATTAPULGUS
` 25,100
'33,560
8,460
19400
FERRIC CHLORIDE
2,055
7,745
5,690
33510
LIME HYCRATED
141,967
129,078
. 12,889-
38800
NITROGEN ' PORCCEL
'
154,000 14,185
. . , . . J ..
154,000- . 43100 14,185- 48289
' BIPHENYL
14,786,618 14,914,095
127,477
82601
CHLORINE
25,882,425
25,117,633
764,792-
82638
HCL 100*
12,193,770-
: 12,193,770-
82851
MCN1ARS
876,248-
' 613,831-
37,583-
82868
0-
0
o; o; o; o; o; o; o; o; o; o; o; o; o; o;
MATERIAL OR EXPENSE CLAY ATTAPULGUS FERRIC CHLORIDE LIME HYDRATED
( NITROGEN
V PORCCEL
BIPHENYL CHLORINE HCL ICO* MONTARS . IET MATERIAL COST
: . : . . : : YEAR TO DATE AMOUNTS
ACTUAL COST SCHEDULED COST ;OVER-UNDER SCH.
` 985
1,397
412
. 329
1,242
913
1,586
. 1,442
144-
330. 573 * . ^
- * * - ' .
330573-
709,327
715,543
6,216
641,210
621,871
19,339-
198,148-
' I9e,148-
15,328-
161,328-
1,000-
1,140,864
1,127,019
13,845-
19400 33510 38800 43100 48289 82601 82638 82851 62868
'-
*
0 0 0 0 0 0 0 0' 0'
RAW MATL. HAND. TOTAL MATERIAL .COST
4,389 :1,145,253
1,127,019
4,38918,234-
530 0< ***
__ A..
0245596
TOWOLDMONOQ44093
........... -a ?............. ...............
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'
Section 12 Appendix X Page 4
C'- '
COST REPGRT YEAR TO DATE - ORGANIC DIVISION
o
ANNISTON,
'LIQUID AROCLORS
DEPT. 82608 PRODUCTION CODE 82608
ACTUAL PRODUCTION - YEAR TO CATE 25,815,494
. SCHEDULED PRODUCTION - YEAR TO CATE 25,822,500
JULY 1967
' STEAM
ELECTRICITY
' HATER PLANT
GAS
LABCR
. SALARIES
.
. PAYROLL OVERHEAD
( SUPPLIES
V. PACKING LABOR
PKG CONTAINERS
PACKING 0/V
LABORATORY
i CLOTHING LAUNDRY
PROC DEPT CONTNR
PILCT PLANT EXP
TECHNICAL SERVIS
EXPERIMENTAL
RESEARCH EXP
PLT PROCESS RES
. MECE EXPENSE
TOT DIRECT CONVERSION
TOT DIRECT MFG. COST
! DEPRECIATION
FACT. INC. EXP.
TOTAL INDIRECT CONV.
PERFORMANCE VOL. TOTAL PRCDUCT COST
, ' PRICE 6 MAT. MIX
UNSCHEDULED CAP.
INV. VALLE TOT VAR.
39,293 5,716 5,770
16,295 63,681
9,862 13,318 .. . 11,699 15,716 96,401
3,543 18,007
1,379 11,718 26,029 27,746 '30,708 12,261 23,850 59,587 . 492,579 1,637,832
56,079 40,249 96,328
1,734,160
30,768 . 6,646
' 5,676 14,595
58,343 . 9,599
13,783 9,525
15,794 69,705
1,743 14,959
971
. 1,931 59,703 11,767
'
1,033 5,900 40,344 372,785 1,499,804
58,764 37,337
. 96,101
.
80 1,595,985
93,639-
9671,501,379
8,525- ^ ' 930
941,700- ^ 5,338- ^
263465 2,174- ^
78
26,696- ' : 1,800- '
3,048-' 408-
9,787-' 33,674 15,97930,708-11,228-17,95019,243119,794138,028-
2,685 2,912-
227-
80
: 138,175-
93,639967-
232,781-
53 0 53 3 54 2 54 5 570 575 57e 590 601 602 603 610 614
618 620 621 63 5 651 657 694
o c 0
0 c c
c c 0 c c
c c
c c c
c 0 c c
'
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994 1
996 1 997 1
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:----- - - - TOWOLDMONOQ44094
."
( '-
Section 12 - Appendix X - Page 5
COST REPORT YEAR TO DATE - ORGANIC DIVISION
ANNISTON, ALA.
REF SOL* ARCCLORS
OEPT. 8Z617 PRODUCTION CODE 82617
* ACTUAL PRODUCTION - YEAR TO CATE .5,647,969
. SCHEDULED PRODUCTION - YEAR TO DATE 5,990,324
JULY 1967
MATERIAL
YEAR Tt` DATE QUANTITIES
OR EXPENSE
ACTUAL QUANTITY SCHEO. QUANTITY OVER-UNDER SCH.
STEAM
MBTU
.
32,944
24,384 ` 8,560-
ELECTRICITY CKWH
4,460
5,071
. 611
HATER PLANT MGAL
83,893
81,165
: 2,728-
GAS
M8TU
43,263-
35,807
7,456-
LABCR
HRS -
PACKING LABOR
8- ,2' 22"
8,365 5,138
143 5,138
LABORATORY HRS '
`
650
337
313-
' FERRIC CHLORIDE
928
1,694
766
LIME HYDRATED
37,847
28,237
9,610-
BIPFENYL
.
181,803
176,827
4,976-
SANTOHAX R'
. 2,968,658
2,821,294
147,364-
CHLCRINE
;9,276,064
8,693,577
582,487-
H C L ICO* .
3,857,071-
3,857,071-
M0N1ARS
120,707-
120,707
SOL ID AROCLOR RE
1,462,695-
1,462,695-
MATERIAL
' * . \ .. ' . . YEAR:TO DATE AMOUNTS
OR EXPENSE
. ACTUAL COST SCHEDULED COST OVER- UNDER SCH.
FERRIC CHLORIDE
' ' 150
273
123
LIME HYCRATED
422
314
108-
BIPFENYL
' 8,784
8,537
247-
SANTOHAX R
.132,292
125,775
6,517-
( CHLCRINE
-
228,272
213,569
:14,703-
H C L ICO* MONTARS
62,6773,211-
. 6", 2'* ,6` 77- -
3,211
SOLID AROCLOR RE
35,836-
35,836-
NET MATERIAL COST
268,196
249,955
18,241-
530 53 3 542 54 5 570 601 610 33510 .38800 82601 82602 82638 82851 82868 82869
33510 38800 82601 82602 82638 82851 82868 82869
'
RAW MATL. HAND. TOTAL MATERIAL COST
1,326
_i_i_1_, .* n...269,522
249,955
1,326-
530
' ^?r5*T_ .... ,...
C
c c c c c
C
c
C
0 c
0 0 0 0
0 0 0 0 0 0 0
0 t
<)
0265598
TOWOLDMONOQ44095
.* *
Section 12 Appendix X Page 6
. rs'
COST REPORT YEAR TO DATE - ORGANIC DIVISION
o ANNISTON, ALA.
REF SOL ARCCLORS
DEPT. 82617 PRODUCTION CODE 82617
ACTUAL PRODUCTION - YEAR TO CATE 5,647,469
' SCHEDULED PRODUCTION - YEAR TO DATE 5,990,324
JULY 1967
STEAM
. : 16,269
' ELECTRICITY
'3,092
HATER PLANT
1,945
GAS
. 12,931
LABOR
30,951
. SALARIES
4,714
PAYROLL OVERHEAD
7,596
SUPPLIES
907
PACKING LABOR
15,277
(" PKG CONTAINERS
19,639
V. PACKING 0/H
572
LABCRATCRY
4,718
CLOTHING LAUNDRY
682
PROC DEPT CONTNR
5,802
} TECENICAL SERVIS
6,656
EXPERIMENTAL
! --
937
j PLT PROC RES
. . - . ; -
MECE EXPENSE
26,878
TOT DIRECT CONVERSION
159,566
:70T DIRECT MFC-. COST
'429,C88
DEPRECIATION FACT. IND. EXP. TOTAL INDIRECT CONV.
42,130 23,882 66,012
; PERFORMANCE VOL. TOTAL PRODUCT COST I PRICE 6 MAT. MIX i UNSCHEDULED CAP, INV. VALLE TOT VAR.
495,100 .
12,423 3,501
1,921 11,281 31,885 . ' 4,845
8,617 3,500 16,303 11,863
298 2,625
595 ;12,181
6,130
100 600 23,250 1151,918 4C1,873
40,455 19,720 60,175
S.563452,485
34,15530,654 448,984
3,846409 24-
... 1,650. 934 131 i1,021
2,593 1,026 7,7762742,093876,379 ` 526937' 100 600 3,6287,648-
27,215-
1,6754,1625,837-
9,56342,615-. 34,15530,654 46,116-
530 0
533 c 542 c 54 5 c 570 c
575 C
578 c
590 c
601 c 60 2 c
603 c 610 C 614 C
618 c
621 C 635 c 651 c 657 C
694 c
698 I 700 1
994 1
996 1 997 1
0265599
O
.
TOWOLDMONOQ44096