Document zdy50ZkxM5aGernwqkwJLJk0a
(conoco)
Interoffice Communication
To Distribution
From Oate
J. K. McCrary, Ponca City,Oklahoma July 27, 1984
Subject VCM Cost ProfilesReport--Review Issue
Attached is the review issue of the VCM Cost Profiles Report. We will be scheduling a meeting to review this document in the near future, Please call me at ETN 442-5503 if you are interested in attending.
iii Process Engineering Department
Pjc Enc CC:
Houston R. Y. Elliot J. G. Dopper F. J. Endelman W. J. Ritter G. W. Inbody
R. J. Anderson R. D. Gamblin E. A. Vogelfanger J. A. Hall
Ponca City D. E. Michels R. W. Churns
Lake Charles R. A. Conrad R. Bryan
CCR 00005 681
TABLE I
VCM c6st profiles
SUMMARY
Plant
Location
MM LB/YR _________
Typical
Nameplate Capacity
Operating Rate*
MANUFACTURING COST ?/LB VCM
Total
Total Cost
Coat at
at Typical
Variable
Capacity
Rate
B. F. Goodrich Dow Vista Shell B. F. Goodrich PPG No. 2 Georgia Pacific Dow Borden Formosa Plastics Shell
PPG No. 1 Ethyl Formosa Plastics Dow Borden
La Porte, TX ^ Plaquemlne, LA Lake Charles, LA ' Deer Park, TX ^ , Calvert City, KY ^
Lake Charles, LA Plaquemlne, LA Oyster Creek, TX Gclsmar, LA ^ Point Comfort, TX^ Norco, LA I.akc Charles, LA naton Rouge,. LA Baton Rouge, LA v/ Freeport, TX ^ Gclsmar, LA ^
. 1,0001,250*
670 1,120 -1,000 > 1 .2>
500 1,000
700 300 530 840
400 300 300 200 300
820 1,015
500 650 735
475 600 510 290 295. 300
3152 190 125.
903 100
14.94 15.14 15.08 15.22 15.44 15.81 15.81 15.14 15.54 15.32 15.42*
15.81
15.53 15.45. 15.14*
22.77
16.19 16.60 16.68 16.53 17.08 17.60 17.04 17.17 18.29 17.14. 16,82 18.87 18.10 18.17 18.61*
24.25
16.46 16.94 17.23 17.47 17.67 17.69 17.85 17.92 18.38 18.58 19.35 19.69. 19.71 21.97. 22.87*
27.21
Total
10,410
7,010
-
-
-
Production Weighted A. verage 4
870
650
15.34
17.00
17.64
Notes:
*Data front R. Y. Elliot. Based on 1983 production estimates.
^Plant was permanently shut down In 1983. Excluded from production weighted average.
^Acetylene based VCM process. Excluded from production weighted average.
Production weighted average manufacturing cost * sum [(operating rate) x (cost)]
c. total production
Dow shut down 450 MM pound capacity at Plaquemlne in 1984. Total manufacturing cost at 800 MM pound VCM
C*\po. i,tLj
von.
CCR 0 0 0 0 0 5 6 8 2
VCM COST PROFILES:
Manufacturing Costs
VARIABLE COST
FIXED COST
COST(CENTS/LB VCM)
CCR 0 0 0 0 0 5 6 8 3
OPERATING AT NAMEPLATE CAPACITY
VCM COST PROFILES:
Manufacturing Costs
VARIABLE COST
FIXED COST
COST(CENTS/L0 VCM) 20
SO,
OPERATING AT NAMEPLATE CAPACITY
o i-- LLt CO
xo
Co
LcJ
__ I CD
bCO
VCM COST PROFILES:
M anufacturing Costs
OPERATING AT TYPICAL PROOUCTWN RATE
CCR 000005685
VCM COST PROFILES:
M anufacturing Costs
VARIABLE COST
FIXED COST
CCR 000005686
OPERATING AT TYPICAL PRODUCTION RATE
(conoco)
Interoffice Communication
To J. G. Dopper, Vista Chemical Co.
From
G. J. Fryar
Oats
October 8, 1984
Subject VCM Cost Profiles
The VCM Cost Profiles activity was undertaken to provide the business area and marketing a "tool" to assist in evaluating sales opportunities for VCM and PVC. The ultimate objective vas improvement of sales margins through a better understanding of our competitive position in industry. Basic requirements for this "tool" were formulated with Fred Endelaan, Bill Ritter* and others and consisted of:
1. Accurate concise descriptions of competitive VCM producers, with site/process/transportation/feedstock idiosyncracies noted.
2. Detailed manufacturing cost buildups reflecting the idiosyncracies of item 1, but using standard unit costs for all producers in the first edition.
3. Flexibility in report format and microcomputer software to allow simple and rapid .updating either as the need arose or on a prescribed fre-- quency.
The broad philosophy statement above recognized the needs that you and the sales staff have in bidding competitively against Dow and others in the international arena with U.S. origin VCM. It also recognized the domestic possibilities in PVC sales which might be accrued using VCM from a Vista plant historically operated at higher relative capacity levels (thus lower unit costs) than those of competitors.
The cost buildups for all domestic VCM producers were entered on a diskette for use with Vista's IBM microcomputers. It was envisioned that you, for example, would be able to call up this information within seconds of identifying a need. Similarly if you recognized a need to revise input raw material costs for current or future projections, those changes could be made in seconds. It was anticipated that "master" versions of the software and hard-copy work would be maintained and periodically updated by Bill Ritter's group, although it may now be desirable for Jeff McCrary to handle this effort for the short term.
For the VCM Cost Profiles activity to reach its full potential of service to you and the marketing staff, the following actions must all take place:
1. A coordinator (i.e. Ritter or McCrary) must be designated as the clearing house for maintenance of the system and scorage of industry VCM intelligence.
CCR 000005687
J. G. Dopper Page 2 October 8, 1984
2. Intelligence gathering sources (plant personnel, sales people, your self, etc.) trust communicate information to the coordinator in timely fashion.
3. You, and whoever else you feel necessary, need to be acquainted with use (not necessarily maintenance, though) of the software program. (This should require no more than 15-20 minutes.)
4. A working policy must be established to govern frequency of updates, verification of intelligence reports, and responsibility for mainte nance.
Those of us involved in developing the original scope also envisioned that this concept should ultimately be expanded to cover selected products in the other business areas also. An excellent foundation currently exists for extension to the PVC area for example.
An invitation was extended to me to present the views expressed in this letter at the introductory meeting held at Timbervay on September 20. Unfortunately, other developments concerning the Justice Department consent decrees precluded my attending the meeting. I firmly believe the VCM Cost Profiles are a valuable piece of work, but more importantly, can be a valuable tool with minimum maintenance effort.
Chief Process Engineer Chemicals and Coal Division Process Engineering Department
Ik cc:
Visxa Chemical Co. K. McCrary ,_Tinberway
D. E. Michels, Ticberway W. J. Ritter, Timberway R. Bryan, L.C. VCM Plant
CCR 000005688
I
f
CCR 00056q9
TABLE OF CONTENTS
TABLE OF CONTENTS VCM COST PROFILES
LIST OF TABLES......................................................................................................................... LIST OF FIGURES......................................................................................................................... EXECUTIVE SUMMARY .................................................................................................................... INTRODUCTION .............................................................................................................................. ANALYSIS ........................................................................................................................................ BASES AND ASSUMPTIONS.......................................................................................................... VCM PRODUCERS.............................................................................................................................. TECHNOLOGY DESCRIPTIONS ..................................................................................................... REFERENCES.........................................'....................................................................................... APPENDIX A................................................................................................................................... APPENDIX B...................................................................................................................................
Page No. ii
iii 1 2 3 7 9
97 105 108 136
OCR 000005690 i
Table No.
I
II
LIST OF TABLES VCM COST PROFILES
Title Summary Technology Impact on VCM Manufacturing Cost
Page No.
&
135
CCR 000005691 ii
LIST OF FIGURES VCM COST PROFILES
Figure No. 1
2
3
4
5 6 7 8 9
10
11
12
13 14
15
16 17
Title
Block Flow Diagram--Borden (Acetylene Feed)-- Geismar, Louisiana
Block Flow Diagram--Borden (Ethylene Feed)-- Geismar, Louisiana
Block Flow Diagram--Conoco--Lake Charles, Louisiana
Block Flow Diagram--Conoco (Air Feed Oxychlorination)--Lake Charles, Louisiana
Block Flow Diagram--Dow--Freeport, Texas
Block Flow Diagram--Dow--Oyster Creek, Texas
Block Flow Diagram--Dow--Plaquemine, Louisiana
Block Flow Diagram--Ethyl--Baton Rouge, Louisiana
Block Flow Diagram--Formosa Plastics--Point Comfort, Texas
Block Flow Diagram--Formosa Plastics--Baton Rouge, Louisiana
Block Flow Diagram--Georgia-Pacific--Plaquemine, Louisiana
Block Flow Diagram--B. F. Goodrich--Calvert City, Kentucky
Block Flow Diagram--B. F. Goodrich--LaPorte, Texas
Block Flow Diagram--PPG (400 MM Lbs VCM/Yr)-- Lake Charles, Louisiana
Block Flow Diagram--PPG (500 MM Lbs VCM/Yr)-- Lake Charles, Louisiana
Block Flow Diagram--Shell--Deer Park, Texas
Block Flow Diagram--Shell--Norco, Louisiana
Page No, 11
16
21
24
29 34 39 44 49
55
60
65
71 78
82
88 93
OCR 000005692 iii
List of Figures Page 2
Figure No . 18
19 20 21 22 23
24
25A&B 26A&B 27A4B 28A&B 29A&B 30 31
Title Process Flow Diagram--Acetylene Feedstock
Technology Process Flow Diagram--Ethyl Technology Process Flow Diagram--B. F. Goodrich Technology Process Flow Diagram--Mitsui Toatsu Technology Process Flow Diagram--PPG Technology Process Flow Diagram--Stauffer Technology (Air
Feed Oxychlorination)
Process Flow Diagram--Stauffer Technology (Oxygen Feed Oxychlorination)
Manufacturing Costs at Nameplate Capacities
Manufacturing Costs at Typical Production Rate Variable Cost Summary
Fixed Cost Summary Paw Materials and Fixed Costs Overview
Fixed Cost Versus Nameplate Capacity Manufacturing Costs Versus Production Rate
Page No.
108
109 L10 111 112 113
114
115 118 122 125 128 131 132
CCR 000005693 IV
EXECUTIVE SUMMARY
V
f CCR 000005694
EXECUTIVE SUMMARY VCM COST PROFILES
Page 1
An analysis of the manufacturing costs of the U.S. VCM producers and of the competitive position of Conoco in the U.S. was made by PED at the request of F. J. Endelman, Conoco Chemicals Business Research. This study provides insight into:
1. Important technology factors affecting the manufacturing costs of U.S. VCM producers assuming equal unit costs for raw materials, energy, and labor for all producers.
2. The competitive position of Conoco in the U.S. VCM market again assuming equal unit costs for raw materials, energy, and labor.
3. Prospects for Conoco in VCM.
Raw materials currently constitute 80 percent of the VCM manufacturing cost for Conoco. Fixed costs (in--plant) account for only 10 percent. However, fixed costs can vary greatly from plant to plant and, therefore, affect manufacturing costs. Staffing variations as a result of plant capacity; number of parallel plant trains; and, in some cases, technology are the major constituents of fixed costs.
Actual feedstock and supply prices strongly affect the variable portion of manufacturing costs. This report assumes identical prices for each VCM producer. Further study should be made to determine the effects of regional prices on the applicable VCM producers. Price differences on a regional or producer specific basis can dominate technology factors when determining actual production costs.
The manufacturing cost for Conoco's VCM plant is 16.68 cents per pound VCM in a sold-out VCM market and 17.23 cents per pound VCM at 500 million pounds per year or "typical" production rate. The Conoco VCM plant ranks fourth in manufacturing costs among the thirteen active VCM plants in a sold-out market and third at typical production rates. Conoco's manufac turing cost is below the production-weighted industry average cost of 17.00 cents per pound VCM sold-out and 17.64 cents per pound VCM at typical production rate.
000005695 CCR
INTRODUCTION
S' CCR 000005696
INTRODUCTION VCM COST PROFILES
Page 2
Conoco Chemicals' Business Research office commissioned this analysis of manufacturing costs for VCM producers. The objective of this work is to provide insight into:
L. Important factors affecting the manufacturing costs of VCM producers.
2. The competitive position of Conoco in Che VCM market.
Four factors exhibit the major effects on the manufacturing cost of VCM. They are:
Plant Capacity Feedstock Prices Number of Parallel Trains Technology
Manufacturing costs were determined for each U.S. VCM producer. These costs include the effects of plant capacity, process technology, and parallel process trains. The effect of differences in feedstock price as a function of market price and plant location is not considered. The manufacturing costs were prepared assuming equal feedstock unit prices for all producers. Plant capital investment and working capital costs are not included in the buildups.
The basis of calculating manufacturing costs is that raw material, energy, and labor unit prices are the same for each producer. Further competitive analysis may show this to be untrue. Regional or producer specific raw material and energy costs may dominate technology factors when determining actual production costs.
The term "Manufacturing Costs," when used in this report, refers to the sum of fixed and variable costs only and excludes depreciation and amortization costs and other ex-plant costs. The erm "Typical Production Rate" refers to an estimate made by Rebecca Elliot of the 1983 annual VCM production.
CCK 000005697
ANALYSIS
i
r
CCR 000005698
Page 3
ANALYSIS
In this report, the manufacturing costs for all U.S. VCM plants is calcu lated. This calculation does no.t^consider regional or producer specific differences in the unit prices of feedstocks, energy, labor, or any other component of manufacturing cost.
The manufacturing cost at typical operating rate and at nameplate capacity is shown in Table I for each U.S. VCM plant. Variable manufacturing cost, nameplate capacity, and typical operating rates are also shown. Table I is arranged in order of increasing manufacturing cost at typical operating rates.
Variable Cost
CENTS PER LB VCM
MANUFACTURING COST
At Nameplate
At Typical
Capacity
Rates
Conoco Lowest Cost Producer Weighted Average
15.08 14.94 15.34
16.68 16.19 17.00
17.23 16.46 17.64
At typical operating rates, Conoco's manufacturing cost (17.23c/Lb VCM) is the third lowest behind B. F. Goodrich, La Porte, Texas (i6.46c/Lb VCM) and Dow, Plaquemine, Louisiana (16.94c/Lb VCM). Conoco is 0.41 cents per pound VCM lower than the production weighted average cost (17.64c/Lb VCM).
At nameplate capacity, Conoco's manufacturing Cost (16.68c/Lb VCM) is the fourth lowest behind B. F. Goodrich, La Porte, Texas (16.19c/Lb VCM); Shell, Deer Park, Texas (16.53c/Lb VCM); and Dow, Plaquemine, Louisiana (16.60c/Lb VCM). Conoco is 0.32 cents per pound VCM lower than the produc tion weighted average cost (17.00c/Lb VCM). Conoco's variable manufac turing cost (15.08c/Lb VCM) is second lowest railing only B. F. Goodrich, La Porte, Texas (14.94c/Lb VCM) and is 0.26 cents per pound VCM lower than the production weighted average (15.34c/Lb VCM).
The effect of fixed costs, particularly labor, on the variation of total manufacturing costs among VCM producers outweigh the effects of other cost differences such as raw material conversions (see Figures 29A and B in Appendix A). Excluding values from the Borden acetylene-based plant, the industry wide range in variable costs due to variations in material yields and technology differences is about 0.6 cents per pound VCM. However, the range of fixed costs is 2.25 cents per pound VCM. Fixed costs correlate strongly to plant size (see Figure 30 in Appendix A). Larger plants can operate more efficiently in this area. The number of parallel trains in a plant is also important. A single train plant can operate at approximately 0.4 cent fixed cost lower Chan similarly sized dual train plant.
A comparison of manufacturing costs, both at nameplate capacity and at typical operating rate, shows the effect of economies of scale. All of the plants, except PPG No. 2* with manufacturing costs below 18 cents per pound VCM have typical operating rates above 500 MM pounds per year. All of the plants, except PPG No. 2, above 18 cents per pound VCM have typical operating rates below 500 MM pounds per year. The two leading producers
CCR 000005699
Analysis Page 2
Page 4
both have nameplate capacities of at least 1,000 MM pounds per year with
typical operating rates above 80 percent of capacity. The lower cost producers (below 18 cents per pound VCM at typical production rates) are B. F. Goodrich (La Porte and Calvert City), Dow (Plaquemine and Oyster Creek), Conoco, Shell (Deer Park), PPG No. 2, and Georgia Pacific. At nameplate capacity this group is joined by Shell (Norco) and Formosa Plastics (Point Comfort). The higher cost producers (above 18 cents per pound VCM at typical production rates) are Borden (both Geismar Plants), Formosa Plastics (Point Comfort and Baton Rouge), Shell (Norco), PPG No. 1, Ethyl, and Dow (Freeport). Of this group, Shell (Norco), Dow (Freeport), and Ethyl were shut down, presumably permanent2y, during 1983.
A comparison of variable costs shows differences between the various VCM technologies. Technology differences show a range of 0.38c/Lb VCM in raw material, 0.25c/Lb VCM in by-product credit, 0.26c/Lb VCM in processing
supplies, and 0.49c/Lb VCM in utilities. The range in variable cost is Q.87c/Lb VCM. The lowest variable cost plant is the B. F. Goodrich plant at La Porte, Texas, which employs B. F. Goodrich oxychlorination technology and Stauffer technology elsewhere. Next are the Stauffer oxygen based oxy plants: Conoco, Shell (Deer Park), and Dow (Plaquemine, Oyster Creek, and Freeport). Following these are Formosa Plastics (Point Comfort) with Mitsui Toatsu technology, B. F. Goodrich (Calvert City) and Formosa Plastics (Baton Rouge) with B. F. Goodrich technology. Shell (Norco) and Borden using Stauffer air based oxychlorination technology, and Ethyl's plant at Baton Rouge using Ethyl technology. The two PPG plants and the Georgia Pacific plant use PPG technology which has the highest variable
cost. The Borden acetylene based VCM plant has the highest apparent variable cost. Presumably it continues to operate because its raw material costs are lower than those assumed in this report and because of integration (HC1 transfers) with Borden's ethylene based VCM plant.
The basis of this report includes common feedstock and other supply prices.
The results of vertical integration or favorable contracts, however, are
lower manufacturing costs due to lower prices for ethylene, chlorine, or
natural gas. For instance, a one cent per pound reduction in the ethylene
price leads to a manufacturing cost reduction of almost 0.5 cents per pound
VCM. A five dollars per ton reduction in the chlorine price leads to a
manufacturing cost decrease of over 0.15 cents per pound VCM (ethylene and
chlorin^price variances of at least this much may be seen in the Gulf
Coast).
A natural gas contract at 50 cents per MSCF, such as is held by
PPG and Georgia-Pacific, would decrease manufacturing costs more than 0.8
cents per pound. Feedstock and supply prices are important factors in VCM
production costs and should be considered in a thorough market analysis.
The Borden acetylene feedstock plant in Geismar, Louisiana, appears to be a poor competitor due to the large acetylene cost. If Borden receives natural gas at 50 cents per MSCF, the manufacturing cost at the plant would be approximately 13 cents per pound rather than the 26.3 cents per pound VCM shown in Figures 25A and B. Borden had a low cost natural gas contract with Texaco that terminated in 1982. The plant raanufacturing cost buildup and the current operating rate hint that Borden may still receive a limited supply of natural gas at a lower-than-market price.
CCR 000005700
Page 5
Analysis Page 3
EPA emission compliance is dictating capital investments for sime plants for continued market presence. This factor figures in the decisions for some of the plant closings this year. The only remaining plant in operation without compliance may be Formosa Plastics in Baton Rouge.
The outlook for Conoco in VCM has improved this year. Three plants have s.mt down in 1983, lowering the U.S. to:al VCM capacity 1,340 MM pounds VCM per year, to 9,070 MM pounds VCM per year. Conoco EPA emission compliance was met this year through the VCM modernization project. This respited in slightly improved v.ariaole costs over previous years of air-based operation.
Although poor market conditions are bad for all VCM producers, Conoco's presence may be sheltered by several high cost producers. 1983 has seen three plant closings. The Borden acetylane feedstock plant, Formosa Plastics in Baton Rouge, and the older (400 MM pounds VCM per yaai;) PPG plant are all candidates for closing and may not survive the next market shakeout (see Figure 31 in Appendix A). The Borden ethylene based VCM plant is also a high cost plant is not supplied by captive feedstocks.
The prospects for a major expansion at Conoco, however, do not appear as
bright. Several comapnies are better prepared for expansion of VCM
capacity in terms of both required investment and turnaround time. The Dow
plant in Plaquemine, Louisiana, is prepared for a 400 MM pounds VCM per
year expans^gn "when the market is ready," requiring a relatively small
investmentBorden is preparing a conversion to oxygen feedstock in
oxychlorination and expansion to 450 or 600 MM pounds VCM per year in their
ethylene-feedstock plant, to ix>-rove their variable and fixed cost:?, and to
feed expanded PVC ouerai. ror.s
The Shell Norco, Louisiana, plant is
prepared for startup opcshort notice, although EPA compliance investments
are still outstanding.'B. F. Goodrich have a partially complete 1,600 MM
pounds per year VCM pl^pt in Convent, Louisiana, where construction work
was postponed in 1981. J`
The four examples above total up to 3,440 MM pounds VCM per year additional capacity in various stages of preparation. In addition, B. F. Goodrich are presently considering a 500 MM pounds VCM per year expansion at La Porte, Texas: and Formosa Plastics have d^gcussed plans for a new chlorine/EDC/VCM complex in Baton Rouge, Louisiana.
OCR 000005701
TABLE I VCM COST PROFILES
SUMMARY
Plant
Location
B. F. Goodrich Dow Conoco Shell B. F. Goodrich PPG No. 2 Georgia Pacific Dow Borden Formosa Plastics Shell PPG No. 1 Ethyl Formosa Plastics Dow Borden
La Porte, TX Plaquemine, LA Lake Charles, LA Deer Park, TX Calvert City, KY Lake Charles, LA Plaquemine, LA Oyster Creek, TX Geismar, LA Point Comfort, TX Norco, LA Lake Charles, LA Baton Rouge, LA Baton Rouge, LA Freeport, TX Geismar, LA
Total Production Weighted AA verage 4
MM LB/YR
Typical
Nameplate
Operating
Capacity
Rate
1,000 1,250
670 1,120 1,000
500 1,000
700 300 530 840 400 300 300 200 300
820 1,015
500 650 735 475 600 510 290 295 300 3152 190 125.
go2
100
10,410
7,010
870
650
MANUFACTURING COST c/LB VCM
Total
Total Cost
Cost at
at Typical
Variable
Capacity
Rate
14.94 15.14 15.08 15.22 15.44 15.81 15.81 15.14 15.54 15.32 15.42^
15.81 15.53 15.45 15.14:: 24.80J
16.19 16.60 16.68 16.53 17.08 17.60 17.04 17.17 18.29 17.14. 16.82^
18.87 18.18 18.17 18.6H 26.28J
16.46 16.94 17.23 17,47 17.67 17.69 17.85 17.92 18.38 18.58 19.35^
19.69. 19.71 21.97 22.87. 29.24J
-
15.34
17.00
-
17.64
Notes:
^Data from R. Y. Elliot, Conoco Chemicals. Based on 1983 production estimates.
^Plant was permanently shut down in 1983. Excluded from production weighted average. ^Acetylene based VCM process. Excluded from production weighted average.
Production weighted average manufacturing cost = sum [(operating rate) x (cost)] total production
Page 6
CCR 0 0 0 0 0 5 7 0 2
ASSUMPTIONS
CCR 000005703
BASES AND ASSUMPTIONS VCM COST PROFILES
Page 7
1. Unit prices for feedstocks, by-products, processing supplies, etc, are assumed to be identical for each VCM producer for this study. The price bases are the August 1983 and September 1983 Chemicals operating statements (Blue Books). No discounts are provided for captive supply or market situations.
2. Amortization, depreciation, ex-plant costs, and revenue taxes are not included in the development of manufacturing costs for each VCM producer. All references to manufacturing costs in this report include only in-plant fixed and variable costs. These costs are exclusive of business overhead, R&D, or interest costs.
3. Information for this report was obtained from:
a. Vendor-supplied confidential information. b. EPA publications. c. Publicly available literature. d. Personal contacts and correspondence both inside and outside
Conoco. e. SRI Report, "Vinyl Chloride."
When specific information was not available, costs were generally assumed to be equal to those at the Conoco VCM plant. For example, the variable cost for the Dow plants is assumed to be the same as the variable cost at the Conoco VCM Plant.
4. This study is confined to battery limits and offsites. Plant loca tion, land, storage facilities, and product transportation are not considered.
5. All royalty fees are assumed to be capital expenses. None are included in the manufacturing cost buildups.
6. All feedstock purities are identical to those for the Conoco VCM plant at Lake Charles.
7. Plant operator staffing is based on information from vendor files when available and on policies at the Conoco VCM plant. The VCM Plant has nine operators per shift plus two breakers and eight laboratory technicians. Staffing is scaled according to the number of units in each plant.8
8. Salaried labor costs are a percentage of the operating labor costs. This percentage is the proportion present at the Conoco VCM plant (considered not part of a complex). Salaried labor costs are dis counted 10 percent for the VCM producers located in a complex.
CCR 000005704-
Page 8
Bases and Assumptions Page 2
9. Maintenance labor costs are scaled from the Conoco VCM plant costs based on the number and size of process units. Maintenance rates for VCM producers using fluidized bed oxychlorination reactors take into account the process differences from the fixed bed process used at Conoco. Maintenance material costs are calculated in a similar manner (see Appendix B).
10. Contract maintenance costs are scaled from the Conoco VCM plant costs based on size and number of units. This value includes casual and roving maintenance labor costs.
11. Benefits costs are a percentage of payroll based on the Conoco VCM plant. The payroll value used includes all permanent company employees at the plant such as roving crews for turnaround maintenance work within a multiplant complex.
12. Operating supply costs are a fixed percentage of operating labor. The basis is the percentage for the Conoco VCM plant.
13. Insurance, clearances, and taxes are assumed to be equal to those at the Conoco VCM olant on a basis of cost per pound of nameplate produc tion capacity for each plant. All of the U.S. VCM plants, except B. F. Goodrich (Calvert City, Kentucky) are located in Louisiana and Texas.
14. The Conoco VCM Plant has a 600 psig to 150 psig back pressure turbine driving its propylene refrigeration compressor. Replacing this turbine with an electric motor would reduce steam consumption and increase electricity consumption with a net savings in utilities. Further analysis is required to determine the magnitude of this savings. Other Stauffer licensed plants and the Dow plants are in a similar situation. It is not known whether a similar savings could be made in other plants.
VCM PRODUCERS
V
CCR 000005706
TABLE OF CONTENTS VCM PRODUCERS
VCM COST PROFILES
Page 9
Borden (Acetylene)--Geismar, Louisiana .............................................................
Borden (Ethylene)--Geismar, Louisiana ............................................................
Conoco--Lake Charles, Louisiana ............................................................................
Dow--Freeport, Texas .......................................................................................................... Dow--Oyster Creek, Texas ................................................................................................
Dow--Plaquemine, Louisiana ...........................................................................................
Ethyl--Baton Rouge, Louisiana .................................................................................
Formosa Plastics Corp.--Point Comfort, Texas ............................................. Formosa Plastics Corp.--Baton Rouge, Louisiana .........................................
Georgia Pacific--Plaquemine, Louisiana
.....................................................
B. F. Goodrich--Calvert City, Kentucky .............................................................
B. F. Goodrich--LaPorte, Texas................................................................................. PPG No. 1--Lake Charles, Louisiana.......................................................................
PPG No. 2--Lake Charles, Louisiana................. .....................................................
Shell--Deer Park, Texas ................................................................................................
Shell--Norco, Louisiana.................................................
Page No. 10 14 19 27 32 37 42 47 53 58 63 69 75 81 86 91
qq5707 OCR 000
Page 10
VCM PRODUCERS VCM COST PROFILES PLANT INFORMATION BORDEN (ACETYLENE FEED) GEISMAR, LOUISIANA
BACKGROUND DATA Startup Year
Capacity
27 2fi Between 1957 and 1965 ' (formerly Borden-Uniroyal jont venture under the name of Monochem, Inc., Borden became sole owner in 1982).
300 MM Pounds VCM/Year^
Expansions/Modernizations None
Environmental Status
Not known. The plant is assumed to be in compliance.
MARKET POSITION
Feedstocks/Supplies Acetylene
29
Captive (Geismar, Louisiana).
The facility
has a limited supply of low price natural
gas.
Hydrochloric Acid
Probably obtained by both burning chlorine and use of captive by-product from the adjacent Borden ethylene-based VCM plant.
Product Use TECHNOLOGY/EQUIPMENT2
All product is used captively for PVC
production (Geismar, Louisiana; Illio^glis,
Illinois; Leominster, Massachusetts).
The
production rate was 33 percent of capacity
during 1983.
Acetylene hydrochlorination technology with fixed bed reactors using mercury (on carbon) catalyst. This technology is considered obsolete because of rising acetylene prices and future availability. Future existence of plant is undoubtedly related to the reginal availability of acetylene based upon low energy costs and the variable costs of incremental production.
CCR OO00570a
FIGURE 1
VC!1 COST PROFILES BLOCK FLOW DIAGRAM BORDEN (ACETYLENE FEED) CEISMAR, LOUISIANA2"
Page I I
6 0 -fS0
vca cost profilot
Page 12 25-Jun-84
HAMUFACTURIN6 COSTI Capacity*
Bxden(acityltf>#)eieart LA
300 101 lbs VCH/yeer
tfiied and variablt costs only
RAN MATERIALS Acitylono Chlorine KC1
units lb lb lb
units/ lb VCR 0.4217 0.0001 0.6172
cents/ unit
30.0000 5.B337 4.2843
HR units/ year
126.51 0.02
183.16
H 1 per year
63236.5 1.1
7932.7
cents/ ref lb VCR codes 21.0655 1 U) 0.0004 1
2.6442 1
SUBTOTAL BYPRODUCTS
Stcas Light Ends Tars
nibs
0.0000
480.4822
lb -0.0241 1.4760
lb
0.0000
-1.7500
0.00 -7.23 0.00
71190.2
0.0 -106.7
0.0
23.7301
0.0000 -0.0356 0.0000
I 1 1
SUBTOTAL PROCESSIK6 SUPPLIES
Catalyst Caustic Nitrogen
Aasonia-Aain* Sulfuric Acid Lieestone Cooling Mater Chess Vasteeater Treatint 6as Baste Treatment Carbon Rise Chea 1 Suppls
lb
0.0003
1000.0000
lb
0.0044
12.1123
NSCF
.0000
70.2443
lb
0.0000
108.8134
lb
0.0000
3.2810
U
0.0138
0.9293
lb
0.0000
108.2371
MCf
lb
0.0010
125.0000
0.15 1.32 .00 0.00 0.00 4.74 0.00 0.00
0.30 0.00
-106.7
1473.7 139.9 3.0 0.0 0.0 44.0 0.0 0.0 0.0 371.3 0.0
-0.0356
0.4919 0.0533 0.0010 0.0000 0.0000 0.0147 0.0000 0.0000 0.0000 0.1238 0.0248
2 l 1 l 1 I 1 1 l 1 2
SUBTOTAL UTILITIES
Electricity Steal Natural 5as Fuel Oil Nater
ktti 0.0430 3.7223
nibs
0.0001
480.4822
HSCF
.0000
293.6351
HSal 0.0000
0.0000
Hgal 0.0040 52.4000
13.30 0.02 .00 0.00 1.19
2033.8
502.5 72.1 2.8 0.0 623.5
0.7094
0.1675 0.0240 0.0009 0.0000 0.2078
1 1 1
1
SUBTOTAL
1200.9
0.4003
VARIABLE COST SUBTOTAL LABOR
Salaried Operating Raintenance Benefits
74338.2
BB8.0 1074.0 300.0 368.4
24.8042
0.2960 0.3580 0.1000
0.1228
l 1 i l
SU8T0TAL RISCELLANEOUS
Operating Supplies Raint Materials Contract Labor Insurance Clearances Taxes Hiscellaneout
CCR 000005710
2630.4
286.3 480.0 180.0 76.2 340.5 247.2 201.3
0.8768
0.0954 0.1600 0.0600 0.0254 0.1135 0.0624 0.0671
l i l 2 2 2 2
SUBTOTAL
1811.5
0.6038
FIXED COST SUBTOTAL
4441.8
1.4806
PLANT RANUFACTURINS COST EXCLU0IN6 OEP b AH0RT
7B780.0
26.2848
(1) Actual acetylene price for Borden is undoubtedly far Less than die value shown. Actual price is probably related to low energy prices and incremental
variable costs of an adjacent acetylene plant.
VCM PRODUCERS VCM COST PROFILES NOTES FOR MANUFACTURING COSTS BORDEN (ACETYLENE FEED) GEISMAR, LOUISIANA
1. SRI Process Economics Program, "Vinyl Chloride." 2. Same as Conoco 02--based VCM Plant.
Page 13
* CC* 005?li
VCM PRODUCERS VCM COST PROFILES PLANT INFORMATION BORDEN (ETHYLENE FEED) GEISMAR, LOUISIANA
Page 14
BACKGROUND DATA Startup Year
31,32,34 1975
Capacity
300 MM Lbs VCM/Yr
Expansions/Conversions
The plant has added organic recovery/
incineration facilitie^to meet environmental
emissions regulations.
An expansion and
conversion of oxychlorination to oxygen
feedstoc^ is planned (Stauffer technology
design).
Environmental Status
Plant igcineration of oxychlorination vent stream.
MARKET POSITION
Feedstocks/Supplies Ethylene Chlorine
Purchased (Exxon or Shell) 30 Purchased (Olin, Occidental) 30
Product Use
All piUUUCL is used C b pciveiy ror rvu production fGt i.smar, Louisiana;
Till
1 -i r- T 1 1 1
( T A Atw 1 A A
M A A A A A UII A
rate was 97 percen t of capacity during 1983.
CCR 000005712
Page 15
Plant Information Borden (Ethylene Feed)
Geismar, Louisiana
Q If) TECHNOLOGY/EQUIPMENT '
Section Direct Oxych1o rination
Technology Stauffer Stauffer
33 Oxy Vent
Jacobs/RhonePoulenc
Type
Subcooled Fixed Bed Air Feed
Wash EDC Purification
34 Cracking VCM Purification Incineration
Stauffer S tauf fer Foster Wheeler Stauffer
-
-
" -
Trains 1 1
Notes -
1 The oxychlorination vent under goes EDC recovery and incinera tion.
1-
1-
1
1-
1 These are In addition to the oxychlorination vent incinerator
CCft 000005713
FIGURE 2 VCM COST PROFILES BLOCK FLOW DIAGRAM BORDEN ( ETHYLENE FEED) GEISMAR, LOUISIANA75'33
vci cost profiles
Page 17 25-Jun-84
RAM MATERIALS Ethylene Chlorine Oxygen
MMUFACTUR1M COST! Capacity:
Borden(tftylene)8eiMr, LA
300 HN lb* VCH/year
tfixed and variable cost* only
units lb lb tb
units/ lb VCM 0.4750 4.6602
0.0000
cents/
unit 20.7440 5.8337 1.4449
MM units/ year
142.50 198.06
0.00
H 4 per
year 29560.2 11554.2 0.0
cents/ ref
lb VCM codes 9.8534 1 3.8514 1
0.0000 1
SUBTOTAL BYPRODUCTS
Steae Light Ends Tars
SUBTOTAL PROCESSES SUPPLIES
Catalyst Caustic Mitrogen Aesonia-Aeint Sulfuric Acid Lieestone Cooling Mater Chees Hasteeater Treatint Sas Haste Treatient Hydrogen Rise Chii l Suppls
SUBTOTAL UTILITIES
Electricity Steae Xatural Gas Fuel Oil Mater
SUBTOTAL
Nibs -0.0009 lb -0.0082 lb -0.0154
"*---- ----
lb 0.0001 lb 0.0167 RSCF 0.0405 lb .0000 lb 0.0005 lb 0.0132 lb 0.0003
scf lb 0.0000
480.4822 1.4740
-1.7500
579.0000 8.5013 70.2443
108.8134 3.2810 0.9293
108.2571
16.3B39
kbh 0.0820 3.7223
mb*
0.0021
480.4822
NSCF
0.0013
293.6351
HSal 0.0000
0.0000
ffgal
0.0009
22.6924
-0.26 -2.47 -4.61
0.04 5.01 0.14 .00 0.15 3.97 0.08 0.00
0.00 0.00
24.61 0.63 0.38 0.00 0.26
41114.4
-1251.3 -36.5 80.6
-1207.2
251.4 426.3 98.0
2.6 5.0 36.9 87.6 0.0 53.9 0.0 0.0
961.6
916.2 304B.5 1122.3
0.0 59.7
5146.7
13.7048
-0.4171 -0.0122 0.0269
1 l 1
"<M024"
0.0836 0.1421 0.0327 0.0009
0.0017 0.0123 0.0292 0.0000 0.1796
0.4000 0.0424
1 1 l
l
1 1 1 I 2
3 1
0.5246
0.3054
1.0162 0.3741 0.0000 0.0199
1 4 1
1
1.7156
VARIABLE COST SUBTOTAL LABOR
Salaried Operating Maintenance Benefits
SUBTOTAL MISCELLANEOUS
Operating Supplies Naint Materials Contract Labor Insurance Clearances Taxes Miscellaneous
46015.5
1227.8 1648.9 1176.6 740.2
4793.4
439.5 792.3 1340.7 76.2 340.5 247.2 201.3
15.5425
0.4093 0.5496 0.3922 0.2467
5 5 5 5
1.5778
0.1465 0.2641 0.4469 0.0254 0.1135 0.0824 0.0671
5 5
5 1 1 1 1
SUBTOTAL FIXED COST SUBTOTAL
3437.6 B231.1
1.1459 2.7437
PLANT MANUFACTURING COST EXCLUDING DEP l AMORT
54246.6
18.2862
OCR 000005715
VCM PRODUCERS VCM COST PROFILES NOTES FOR MANUFACTURING COSTS BORDEN (ETHYLENE FEED) GEISMAR, LOUISIANA
Page 18
1. Same as the Conoco air-based VCM plant.
2. The plant also incinerates the oxy vent stream, No steam or HC1 recovery.
3. No acetylene hydrogenation.
4. No recycle EDC bypass.
5. Four less operators. Maintenance factors scaled from Conoco air-based plant costs.
000005716 CCR
VCM PRODUCERS VCM COST PROFILES PLANT INFORMATION
CONOCO LAKE CHARLES, LOUISIANA
Page 19
BACKGROUND DATA
Startup Year Capacity
1968 (originally a Stauffer-Conogo joint venture with Stauffer operators)
670 MM Lbs VCM/Yr
Expansions/Modernizations
Conversion of oxychlorination section to oxygen feedstock in 1983. Plans for expan sion to 1,000 MM pounds ^r year were canceled September 1981.
Environmental Status
Met through oxychlorination conversion to oxygen feedstock process.
MARKET POSITION
Feedstocks/Supplies
Ethylene
The plant uses a captive source (Lake Charles, Louisiana) .^The ethylene is lower than pipeline grade.
Chlorine
Contract with PPG (Lake Charles, Louisiana) Negotiating a contract with Diamond Shamrock (Deer Park, Texas).
Oxygen
Obtained by contract with Big Three.
By-Products
Lisht ends are sold to Vulcan Materials (Geismar. Louisiana). Tars are shipped to PPG (we pay them to dispose)(Lake Charles, Louisiana). Some anhydrous HC1 is used in production of MeCl. Aqueous HC1 (muriatic acid) is sold as reagent.
Product Use
All VCM is used captively for PVC production (Aberdeen, Mississippi, and Oklahoma City, Oklahpma). The plant production rate was 75 percent of capacity during 1983.A The plant was shut down two months during 1983 for conversion of the oxychlorination section to oxygen feedstock.
CCR 000005717
Page 20
Plant Information Conoco Lake Charles, Louisiana
TECHNOLOGY/EQUIPMENT
Section
Technology
Direct 12
Oxychlorinacion
Stauffer Stauffer
Mash EDC Purification
Stauffer Stauffer
37 Cracking VCM Purification
12 Incineration
Selas Stauffer Conoco
^2^2 Hydrsenacion
Secondary Waste ^ Water Treatment
BFC Conoco
Type Suhcooled Fixed Bod Oxygen Feed
-
-
-
Trains 1 1
1 1
2 1 2
1 1
Notes
Fixed speed recycle ethylene compressor. Oxy EDC bypasses acid wash. Recycle EDC bypass of light ends column (approximately 80 percent).
Caustic VCM dryer. Recover steam, muriatic acid. One serves as standby.
pH, BOD, and solids controlled.
CCR 000005718
FIGURE 3 VCM COST PROFILES BLOCK FLOW DIAGRAM
CONOCO " LAKE CHARLES, LOUISIANA
Page 21
vet cost profilis
Page 22 23-Jun-M
MANUFACTURING COSTI Capacity!
Caiweo(o2based) Lake Charles,LA
670 IW lbi VCH/year
Mixed and variable costs only
RAN MATERIALS Ethylene Chlorine Oxygen
units lb lb lb
units/ lb vcr 0.4430 0.4127 0.1301
cents/ unit 20.7440
5.8337 1.444?
nit units/ year 311.53 410.31 100.37
If t per year
64427.9 23947.? 1433.1
cents/ ref lb VCR codes
9.0400 1 3.3743 l 0.2109 1
SUBTOTAL BYPRODUCTS
Steae Light Ends Tars
nib
*0.0008
480.4822
lb -0.0033 1.4740
lb
-0.0129
*1.7300
-0.52 -3.57 *8.44
90028.9
-2492.0 -52.7 151.4
13.4371
-0.3719 -0.0079 0.0226
7 1 1
SUBTOTAL PROCESSING SUPPLIES
Catalyst Caustic Nitrogen Aieonia-Aiine Sulfuric Acid Lieestone Cooling Mater Chens Mastenater Treatent Sas Maste Treatment Hydrogen Rise Chen l Suppls
SUBTOTAL UTILITIES
Electricity Steae Natural Sas Fuel Oil Mater
-2393.1
lb 0.0001 ib 0.0060 N5CF 0.0007 lb .0000 lb 0.0004 lb 0.0043 lb 0.0002
MCf
lb 0.0002
------.........----
487.BOOO 12.1123
0.07 4.04
70.2443 108.8134
3.2810 0.9293 108.2571
0.44 0.02 0.28 2.84 0.15 0.00
14.3838
574.00 0.11 0.00
------------ --
495.8 489.4 324.8 23.4
9.0 26.4 147.4
0.0 6.8 17.6 0.0
rsrr
m 0.0818 3.7223
Ribs
0.0021
480.4822
MSCF
0.0014
293.4351
H6al 0.0000
0.0000
Ngal 0.0008 22.4924
54.84 1.40 0.92 0.00 0.56
2041.2 6713.7 2707.9
0.0 128.1
-0.3572
0.0740 0.0730 0.0485 0.0035 0.0013 0.0040 0.0250 0.0000
0.0102 0.0026 0.0248
-------
6 1
1 l 1 1 1 9
8 1 1
0.3047 1.0020 0.4042 0.0000 0.0191
1 7 J
l
SUBTOTAL
VARIABLE COST SUBTOTAL LABOR
Salaried Operating Maintenance Benefits
SUBTOTAL MISCELLANEOUS
Operatinq Supplies Hamt Materials Contract Labor Insurance Clearances Taxes Miscellaneous
.....
11590.9 --...------------ ---
-ioowT
1444.8 1773.0 1146.4 687.3
5073.3
472.4 1352.4 1918.8 149.9 760.6 552.2 449.4
1.7300 15^0769*
0.2189 0.2646 0.1711 0.1026
0.7572
0.0705 0.2019 0.2864 0.0254 0.1135 0.0824 0.0671
1 1 3 2
1 3 3 1 3 4 5
SUBTOTAL
5675.8
0.8471
FUED COST SUBTOTAL
10749.3
1.6044
PLANT MANUFACTURIN6 COST EXCLUDING DEP fc ARORT
111537.0
16.6813
CCR 000005720
VCM PRODUCERS VCM COST PROFILES NOTES FOR MANUFACTURING COSTS CONOCO (OXYGEN-BASED) LAKE CHARLES, LOUISIANA
Page 23
1. The actual value was taken from the September 1983 operating statement.
2. The September 1983 operating statement shows benefits are 15.67 percent of permanent payroll.
3. Manufacturing costs were prorated for 48 weeks at the September 1983 rate and four weeks at the turnaround rate. Turnaround maintenance costs were obtained from J. R. Holcomb and J. H. Brunson, Lake Charles VCM Plant.
4. Based on the average of August and September 1983 operating statement values.
5. From the July 1983 operating statement.
6. Catalyst requirements and price from S. J. Reynolds, Lake Charles VCM Plant.
7. The total steam consumption. Includes the purchased steam value from the September 1983 operating statement, the incinerator steam production of 14,000 pounds per hour, and the oxychlorination steam production rate of 0.0007741 M pounds per pound VCM from "Process Flow Diagrams--VCM Modernization Project," A. G. Loudon, December 3, 1982.
8. The value was calculated from the September 1983 operating statement, including credit for 14,000 pounds per hour of steam production. The effective recovered HC1 value is zero.
9. The secondary waste water treatment chemicals costs were included in the operating supplies fixed costs. They should be valued at approxi mately 0.0060 cent per pound VCM, according to J. H. Brunson, Lake Charles VCM Plant.
CCR 000005721
FIGURE 4 VCM COST PROF ILES BLOCK FLOW DIAGRAM CONOCO (A IR-BASED) LAKE CHARLES, LOUISIANA
o -4 ro M
Page 24
vc* cest prefile*
Page 25 25-Jn-S4
MANUFACTURING COSTI Capacity:
ConocoiairbastdlLake Charles, LA
670 AH lbs VCH/year
tfixed and variablt costs only
RAH MATERIALS Ethylene Chlorine Oxygen
units
lb
lb
lb
units/
ib ven
0.4720
0.6602
0.0000
cents/ unit
20.7440 2.8337 1.4449
NN units/ year 318.23 442.33
0.00
H * per year
66017.8 25104.4
0.0
cents/ ref
lb ven cedes
9.8534 1
3.8314 1
0.0000 l
SUBTOTAL BYPRODUCTS
Steae
Light Ends Tirs
91822.2
13.7048
Nib
-0.0009
4B0.4822
-0.58
-2794.6
-0.4171 2
lb
-0.0062
1.4760
-5.52
-81.5
-0.0122 1
lb
-0.0154
-1.7300
-10.29
180.0
0.0269 1
SUBTOTAL PROCESSING SUPPLIES
Catalyst Caustic Nitrogen Aaaonia-Aairte Sulfuric Acid Liaestone Cooling Water Chess Hasteuater Treatmt 6as Haste Treatment Hydrogen
disc Che* t Supple
lb
0.0001
379.0000
lb
0.0167
8.3013
HSCF 0.0005 70.2443
lb
.0000
109.0134
lb
0.0005
3.2810
lb
0.0132
0.9293
lb
0.0003
108.2571
scf
lb
0.0002
16.3838
0.10 11.20 0.31 0.01 0.34 8.87 0.18 0.00
o.n
0.00
-2696.1
561.4 952.1 218.8
3.8 11.3 82.4 195.6 0.0 -18.3 17.6 0.0
-0.4024
0.0838 0.1421 0.0327 0.0009 0.0017
0.0123 0.0292
0.0000
-0.0273 0.0026 0.0424
3
1 i I 1
1
l
6
4
1
1
SUBTOTAL UTILITIES
Electricity Steal Natural Gas Fuel Oil Hater
fcHh 0.0820 3.7223
Klbs
0.0020
480.4822
RSCF
0.0013
293.6351
MGal 0.0000
0.0000
Mgal 0.0009 22.6924
54.97 1.33 0.83 0.00 0.59
2026.6
2046.2 6411.2 2506.4
0.0 133.3
0.3203
0.3034 0.9569
0.3741
0.0000
0.0199
1 3
1
1
SUBTOTAL
11097.0
1.6563
VARIABLE COST SUBTOTAL LABOR
Salaried Operating Haintenance Benefits
102249.8
1466.0 1773.0 1146.4 687.3
15.2790
0.2189 0.2646 0.1711 0.1026
2
2
2
2
SUBTOTAL MISCELLANEOUS
Operating Supplies Maint Materials Contract Labor Insurance Clearances Taxes Miscellaneous
3073.5
472.6 1352.4 1918.8 169.9 760.6 532.2 449.4
0.7372
0.0703 0.2019 0.2864 0.0254 0.1133 0.0824 0.0671
2
2
2
2
2 2
2
SUBTOTAL
3673.8
0.8471
FIXED COST SUBTOTAL
10749.3
1.6044
PLANT MANUFACTURING COST EXCLUDING DEP 1 AMORT
112999.1
16.8B34
CCR 000005723
VCM PRODUCERS VCM COST PROFILES NOTES FOR MANUFACTURING COSTS CONOCO CAIR-BASED1 LAKE CHARLES, LOUISIANA
Page 26
1. Based on Che 1980 operating statement cumulative value.
2. Based on the Conoco oxygen-based value and an IOC by J. G. Cole, "Variable Cost--Oxychlorination Revamp," April 16, 1982.
3. The catalyst loading and price were obtained from S. J. Reynolds, Lake Charles VCM Plant, and the 1980 operating statement.
4. The value was calculated using the 1980 operating statement (Blue Book), and a value for waste heat boiler steam recovery of 14,000 pounds per hour. No net value for HC1 was recovered.
5. Based on 1980 operating statement figure adjusted for a credit for the 80 percent recycle EDC bypass steam.6
6. The secondary waste water treatment chemicals costs was included in the operating supplies fixed costs. It was valued at approximately 0.0060 cents per pound VCM according to J. H. Brunson, Lake Charles VCM Plant.
000005724 CCR
Page 27
VCM PRODUCERS VCM COST PROFILES PLANT INFORMATION
DOW FREEPORT, TEXAS
BACKGROUND DATA Startup Year Capacity
27,42 Between 1950 and 1957 200 MM Lbs VCM/Yr6
Expansions/Modernizations
The plant initially produced EDC only by
direct chlorination. HC1 by-product from
cracking was used in chlorinated hydrocarbon
production^or sold to acetylene-feedstock VCM
producers. Considerable EDC capacity along
with oxychlorination have been added since
startup.
The oxychlorination system has
probablygbeen converted to oxygen feedstock
process.
Environmental Status
Probably met through conversion of the oxychlorination process to oxygen feedstock.
MARKET POSITION
Feedstocks/Supplies
Ethylene Chlorine Caustic
Captive Captive Captive
(Freeport, (Freeport, (Freeport,
30 Texas) 30 Texas) Texas)
By-Products
1,300 MM pounds per year of additional EDC capacity are available for captive use and merchant sales. EDC production continued after VCM was shut down. Chlorinated hydrocarbon and HC1 by-products can be used captively in solvent production.
Product Use
No major captive use for VCM. 30 Plant production was at 45 percent of capacity the first three quuaarrters of 1983. VCM production was shut down September 1983. This shutdown is probably permanent.
CCR 000005725
Page 28
Plant Information Dow Freeport, Texas
TECHNOLOGY/EQUIPMENT6
Section Direct
8 Oxychlorination
Technology
Stauffer or Dow
Dow
Wash 10
EDC Purification 9
VCM Purification
37 Cracking
41 Incineration
Stauffer or Dow
Stauffer or Dow
Stauffer or Dow
Selas
40 C H Hydrogenation
22
Dow
Type Subcooled
Fixed Bed Oxygen Feed
Trains 1
Notes
I May have originally been Stauffer oxy technology. Oxygen feedstock conversion is Dow technology.
1 Hydrogenation of chloroprene over palladium catalyst.
1 Aluminum chloride reactor and separation column for removal of butadiene.
2
2 Freeport has several interchange able incinerators present. Steam and HC1 recovery.
1 Actually use a noncatalytic process with oxygen addition, converting C H to VCM. 22
CCR 000005726
FIGURE 5 VCM COST PROFILES BLOCK FLOW DIAGRAM
D O W 2-5
FREEPORT, TEXAS
Page 29
vci cot profiIn
Page 30 25-Jun-B4
NAMffACTURIM COSTS Capecityi
9om Freeport, TI
200 HR lbs VCH/ytar
Ifixtd ud variable costs only
Mi MATERIALS Ethylene Chlorine Oxygen
units
lb lb lb
units/ lb VCH 0.4630 0.6127
O.lSOl
cents/ unit
20.7440 5.8337 1.4449
HH units/ year
93.00 122.54 30.02
H 1 per year
19291.9 7148.6
433.8
cents/ ref lb VCK codes
9.6460 1 3.5743 1 0.2169 1
SUBTOTAL BYPRODUCTS
Still
Light Ends Tvs
Nibs -0.0008 480.4622
lb -0.0053 1.4760
lb
-0.0129
-1.7500
-0.13 -1.07 -2.59
26674.3
-743.9 -15.7
45.3
13.4371
-0.3719 -0.0079
0.0226
1 1 1
SUBTOTAL PROCESSING SUPPLIES
Catalyst Caustic litroqen Aaaonia-Aeine Sulfuric Acid Lieestone Cooling Natar CHms Nasteuater Treatent 6as baste Triatamt Hydrogen Rise Chen t Suppls
lb
0.0001
687.8000
lb
0.0060
12.1123
NSCF 0.0007 70.2443
lb
.0000
106.8134
lb
0.0004
3.2810
lb
0.0043
0.9293
lb
0.0002
108.2571
esef
lb
0.0002
16.3838
-714.4
-0.3572
0.02
148.0
0.0740 1
1.21
146.1
0.0730 1
0.14 96.9 0.0485 1
0.01 7.0 0.0035 1
0.08 2.7 0.0013 l
0.85 7.9 0.0040 l
0.05 50.0 0.0250 l
0.00 0.0 0.0000 l
2.0 0.0102 1
0.03 5.2 0.0026 1
0.00 0.0 0.0248 1
SUBTOTAL UTILITIES
Electricity Sttaa Natural Sas Fuel Oil Natlr
kHh 0*0018 3.7223
Nibs
0.0022
480.4822
NSCF
0.0014
293.6351
NGal 0.0000 0.0000
Ngal 0.000B 22.6924
16.37 0.44 0.28 0.00 0.17
466.0
609.3 2122.7
BOB. 3 0.0 36.2
0.2670
0.3047
1.0613
0.4042
0.0000
0.0191
1 2 1 1 1
subtotal
3578.6
t.7B93
VARIABLE COST SUBTOTAL LABOR
Salaried Operating Maintenanci Benefits
30204^5
1011.9 1359.1 1089.5 640.9
TzViuz
0.5060 0.6795 0.5448 0.3205
3 3 3 3
SUBTOTAL MISCELLANEOUS
Operating Supplies Naint Materials Contract Labor Insurance Clearances Taxes
Miscellaneous
4101.4
379.0 640.9 1258.9 SO.B 227.0 164.8 134.2
2.0507
0.1B95 0.3204 0.6295 0.0254 0.1135 0.0824
0.0671
3 3
3
1 1
1
1
SUBTOTAL FIXED COST SUBTOTAL
2855.7 6957.1
1.4278 3.47BS
PLANT MANUFACTURING COST EJCLU0IN6 OEP \ AMORT
37161.5
18.6147
CCR 000005728
VCM PRODUCERS VCM COST PROFILES NOTES FOR MANUFACTURING COSTS
DOW FREEPORT, TEXAS
Page 31
1. Same as the Conoco oxygen-based VCM plant.
2. No recycle bypass steam.
3. Thirteen less operators. Maintenance costs were scaled from the Conoco VCM Plant.
CCR 0OOOO5729
VCM PRODUCERS VCM COST PROFILES PLANT INFORMATION
DOW OYSTER CREEK, TEXAS
Page 32
BACKGROUND DATA
Startup Year Capacity Expansions/Modernizations
Environmental Status
MARKET POSITION Feedstocks/Supplies Ethylene Chlorine
1969' 700 MM Lbs VCM/Yr' The oxychlorination system was modernizedg ^ from air-based to oxygen-based feedstock. * Compliance was met through the oxychlorina tion conversion to the oxygen feedstock process.
30 Captive (Freeport, Texas) Captive-. (Oyster Creek, Texas, and Freeport, Texas)J
Caustic
Captive (Oyster Creek, Texas)
By-Products
The plant produces chlorinated hydrocarbon by-products which are used captively in solvent production.
Product Use
They have no major captive use for VCM. 30 73 percent of plant capacity.'
The 1983 production rate was
CCR 000005730
Page 33
Plant Information Dow Oyster Creek, Texas
TECHNOLOGY/EQUIPMENT6
Section
Direct 3
Oxychlorination
Technology Dow Dow
Mash 10
EDC Purification
9 VCM Purification
37 Cracking Incineration
Dow Dow
Dow
Selas -
40 ^2^2 HydroSenaCion
Dow
Type Subcooled Fixed Bed Oxygen Feed
-
-
-
Trains 2 2
Notes
1 or 2 1 or 2 1 or 2
4 2+
1 or 2
Hydrogenation of chloroprenc over palladium catalyst.
Aluminum chloride reactor for removal of butadiene.
Oyster Creek has several interchangeable incinerators present. Steam and HC1 recovery.
Have patented a noncatalytic process with oxygen addition, converting C2H2 to VCM`
000005731 CCR
FIGURE 6 VCM COST PROFILES BLOCK FLOW DIAGRAM
DOW*5 OYSTER CREEK, TEXAS
v/l UJ l\>
Page 34
vca cost profiIt*
Page 35 23-Jun-84
RAMIFACTURIM8 COST! Capacity*
Dm Oyotor Crook, TX
700 Ml lb* VCH/year
(fixed and variable cost* only
RAH MATERIALS Ethylene Chlorine Oxygen
units !b lb lb
units/ lb VCR 0.4490 0.4127 0.1501
cents/ unit 20.7440
3.8337 1.4449
RH units/ yaar 325.50 428.89 105.07
R S per year
67521.7 23020.2 1318.2
cents/ ref lb VCR codes
9.6460 1 3.3743 l<m 0.2169 1
SUBTOTAL BYPRODUCTS
Sttaa Light End* Tars
Ribs -0.0008 4B0.4B22
lb -0.0053 1.4740
lb
-0.0129
-1.7300
-0.54 -3.73 -9.05
94060.0
-2603.6 -53.1 138.4
13.4371
-0.3719 -0.0079 0.0226
1 1 1
SUBTOTAL PR0CESS1M6 SUPPLIES
Catalyst Caustic Nitrogen Aeaonia-Aaine Sulfuric Acid Liaastone Coolinq Hater Cheas Hasteuater Treatant 6as Haste Treataent Hydrogen Rise Chea It Suppls
lb
0.0001
687.8000
lb
0.0040
12.1123
RSCF 0.0007 70,2443
lb
.0000
106.8134
lb
0.0004
3.2810
lb
0.0043
0.9293
lb
0.0002
108.2571
asef
lb
0.0002
16.3B38
0.08 4.22 0.48 0.02 0.29 2.99 0.16 0.00
0.11 0.00
-2300.3
518.1 511.3 339.3
24.6 9.4 27.B 174.9 0.0 7.1 18.3 0.0
-0.3372
0.0740 0.0730
0.0485 0.0035 0.0013 0.0040 0.0250 0.0000
0.0102 0.0026 0.0248
1 l
l 1 l 1 1 1 1 1 l
SUBTOTAL UTILITIES
Electricity Steaa Natural Sas Fuel Oil Hater
m Ribs RSCF H6al Rgal
0.081B 0.0022 0.0014
0.0000 0.0006
3.7223 480.4822 293.6351
0.0000 22.6924
57.29 1.35 0.96 0.00 0.59
1630.9
2132.6 7429.4 2829.1
0.0 133.9
0.2670
0.3047 1.0613 0.4042 0.0000 0.0191
1 2 1 1 1
SUBTOTAL
12324.T"
U7893
VARIABLE COST SUBTOTAL LABOR
Salaried Operating Maintenance
Benefits
105715.6
1609.3 2161.2 2267.0 1151.3
15.1362
0.2299 0.3087 0.3239 0.1645
3 3 3 3
SUBTOTAL HISCELLANEOUS
Operating Supplies Haint Materials Contract Labor Insurance Clearances Taxes Miscellaneous
7188.8
696.3 1694.3 2619.6
177.8 794.5 576.8 469.7
1.0270
0.0995 0.2420 0.3742 0.0234 0.1135 0.0824 0.0671
3 3 3 1 1 l I
SUBTOTAL
7029.0
1.0041
FIXED COST SUBTOTAL
14217.8
2.0311
PLANT MANUFACTURING COST CXCLUDXN6 HP l AMORT
119933.4
17.1673
CCR 000005733
VCM PRODUCERS VCM COST PROFILES NOTES FOR MANUFACTURING COSTS
DOW OYSTER CREEK, TEXAS
Page 36
1. Same as the Conoco oxygen-based VCM plant. 2. No recycle bypass steam. 3. Maintenance costs were scaled from the Conoco VCM Plant.
CCR 000005734
VCM PRODUCERS VCM COST PROFILES PLANT INFORMATION
DOW PLAQUEMINE, LOUISIANA
Page 37
BACKGROUND DATA Startup Year
Between 1957 and 1965. 27,28
Capacity Expansions/Conversions
Environmental Status MARKET POSITION
1,250 MM Lbs VCM/Yr, expanded From 250 MM ., /v 2,30,7 Lbs/Yr
The original plant sold by-product HC1 to^an acetylene-based VCM producer in the area. An oxvchlorination section was added, and VCM capacity was 4n<?r^4se;i Co 450 MM pounds per year by 1978.J,,,"" Expansion to 1.250 MM pounds VCM per year and conversion of oxychlorination to ojfy^n feedstock also occurred in 1978.This expansion included partial completion of an additional 400 MM pounds per year of VCM capacity to be^rought on stream "when the market is right.M'1''
Met through conversion of^oxychlorination to oxygen feedstock process.
Feedstocks/Supplies
Ethylene
Captive (Plaquemine, Louisiana)
Chlorine
Captive (Plaquemine, Louisiana)
Caustic
Captive (Plaquemine, Louisiana)
Captive feedstocks are^glso available for the additional 400 MM pounds VCM per year capacity.
By-Products
EDC is produced for captive use (PCE/TCE, vinylidine chloride) 30 and merchant sales. Chlorinated hydrocarbon by-products are also used captively in solvent production.
0005735 CCA 00
Page 38
Plant Information Dow
Plaquemine, Louisiana
Product Use
30 They have no major captive u^e for VCM. percent of capacity in 1983."
/ 79 TECHNOLOGY/EQUIPMENT ' ' *
The production rate was 83
Section
Technology
Type
Trains
Notes
Direct 8
Oxychlorination
Dow Dow
Subcooled
Fixed Bed Oxygen Feed
3 3
-
Wash 10
EDO Purification 9
VCM Purification
,,Crac,king34,37
Dow Dow
Dow
Selas/Foster Wheeler
39,41 Incineration
Dow
40
Hydrogenation
Dow
-2
-
- 2 Hydrogenation of chloroprene over palladium catalyst.
- 2 Aluminum chloride reactor for removal of butadiene.
7 Selas built five cracking furnaces in 1964, 1965, and 1967. Foster Wheeler built two furnaces for 1978 expansion
- 3 or 4 All units are interchangeable between steam and HC1 recovery.
- 2 Steam and HC1 recovery have
patented a noncatalytlc
process wleh oxygen addition,
converting
to VCM.
CCR 000005736
FIGURE 7 VCM COST PROFILES BLOCK FLOW DIAGRAM
DOW'*'5
PLAQUEMINE( LOUISIANA
Page 39
vca cast profiles
Page 40 23-Jyn-04
MNUFACTURIJK C08TI Capacity!
Don PlaoBteiae.U
1290 Ml lbt VCM/year
Mixed and variable costs only
RAH MATERIALS Ethylene Chlarin* Oxyqen
SUITOTAL BYPRODUCTS
Stiu Light Ends Tars
units lb lb II
units/ lb VCN 0.4430 0.4127 0.1501
nibs -0.0008
lb -0.0053 lb -0.0129
cents/ unit 20.7440
S.B337 1.4449
480.4822 1.4740
-1.7500
III units/ year 581.25 745.88 187.63
M * per year 120574.5
44478.8 2711.0
167964.3
-0.97
-4.67 -16.16
-4*49.3 -98.4 282.8
cents/ ref lb ven codes 9.6460 1 3.5743 1 0.2169 1
13.4371
-0.3719 -0.0079 0.0226
1 1 I
SUBTOTAL PROCESS!* SUPPLIES
Catalyst Caustic Nitrogen Aaeonia-Aeint Sulfuric Acid Liosstonc Cooling Hattr Chaos Hastanatar Traatont 6as Haste Trsataant Hydrogen Rise Chao 4 Suppls
SUBTOTAL UTILITIES
Electricity Stoat natural Sas Fuel Oil Hatar
SUBTOTAL
lb lb HSCF lb lb lb lb
scf lb
lci nibs
nscf
H6al Hgal
0.0001 0.0040 0.0007 .0000 0.0004 0.0043 0.0002
0.0002
487.8000 12.1123 70.2443
108.8134 3.2BI0 0.9293
I OB.2571
14.383B
0.0818 0.0022 0.0014 0.0000 0.0009
3.7223 480.4822 293.4351
0.0000 22.6924
0.13 7,54 0.86 0.04 0.51 5.34 0.29 0.00
0.20 0.00
102.31 2.76 1.72 0.00 1.05
*4464.8
925.1 913.1 605.9 44.0 16.0 49.7 312.3
0.0 12.8 32.8 0.0
2912.3
3808.2 13264.7 5052.0
0.0 239.0
22344.0
-0.3372
0.0740 0.0730 0.0483 0.0035 0.0013 0.0040 0.0250 0.0000 0.0102 0.0026 0.0248
1 I 1 1 1 1 1 1 l 1 1
0.2670
0.3047 1.0613 0.4042 0.0000 0.0191
I 2 1 1 1
1.7893
VARIABLE COST SUBTOTAL LABOR
Salaried Operating Maintenance Benefits
IBB777.8
1903.3 2554.1 2435.B 1350.4
15.1362
0.1323 0.2045 0.2109 0.1080
3 3 3 3
SUBTOTAL MISCELLANEOUS
Operating Supplies Maint Materials Contract Labor Insurance Clearances Taxes Miscellaneous
SUBTOTAL
8445.6
481.3 2507.0 3045.7
317.3 1418.8 1030.0 838.B
9838.9
0.6736
0.0345 0.2006 0.2437 0.0254 0.1135 0.0824 0.0671
3 3 3 I 1 1 1
0.7871
FIXED COST SUBTOTAL
18284.3
1.462B
PLANT HAMUFACTUR1NS COST EICLUDIN6 DEP % AMORT
707062.3
16.5990
CCR 000005738
VCM PRODUCERS VCM COST PROFILES NOTES FOR MANUFACTURING COSTS
DOW PLAQUEMINE, LOUISIANA
Page 41
1. Same as the Conoco oxygen-based VCM plant. 2. No recycle bypass steam. 3. Maintenance costs were scaled from the Conoco VCM Plant.
CCR 000005739
VCM PRODUCERS VCM COST PROFILES PLANT INFORMATION
ETHYL BATON ROUGE, LOUISIANA
Page 42
BACKGROUND DATA Startup Year
1948
Capacity
300 MM Lbs VCM/Yr
Expansions/Modernizations Environmental Status MARKET POSITION
EDC production began in 1948 through direct chlorination. An EDC expansion and the start of VCM production began In 1958. Another EDC expansion (oxychlorination gtartup) and VCM expansion occurred in 1966.
This plant is not in hydrocarbon emission compliance. Incineration of oxychlorination vent is required.'' This may have been a factor in their decision to shut down.
Feedstocks/Supplies
Ethylene Chlorine Caustic
By-Products
30 Purchased from Exxon or Shell. ^ Captive (Baton Rouge, Louisiana) Captive (Baton Rouge, Louisiana)
Anhydrous HC1 is used for methyl i^loride and tetraethyl lead produc
tion (oxy unit does not operate).
Chlorinated hydrocarbons are uged
in solvent production. Merchant EDC sales continue after shutdown.
Product Use
Formerly had 275 MM pounds per year of captive VCM use. 175 MM pounds per year Baton Rouge PVC Plant (S/n November 1983) and 100 MM pounds per year DelawarnCitv, Delaware plant (sold to Georcia Pacific September 1983).Production was at 65 percent of capacity until,it was shut down November 1983. This shutdown is probably permanent.1
0005 CCR 00
Page 43
Plant Information Ethyl Baton Rouge, Louisiana
TECHNOLOGY/EQUIPMENT3
Section
Direct 30
Oxychlorination
Technology Ethyl Ethyl
Type
Subcooled
Fluidized Bed Air Feed
Wash EDC Purification
39 VCM Purification
34 Cracking
Incineration
Ethyl
Ethyl
Ethyl Foster-
Wheeler
CH Hydrogenation 22
Trains
Notes
2
2 This unit does not normally operate. HC1 from cracking is used in MeCl/TEL produc
tion. The oxy vent stream is not in compliance with EPA emissions regulations.
1 2 None
Alumina VCM drying.
May be using CC1 or other 4
cracking reaction promoter.
Probably run two incinerators with one as a standby.
CCR 000005741
HCL to TEL, MECL
FIGURE 8
VCM COST PROFILES BLOCK FLOW DIAGRAM ETHYL--BATON ROUGE, LOUISIANA3
Page 44
vet cost profiles
Page 45 25-Jun-M
MANUFACTURING COSTI Capacityi
ethyl
Raton Rouge,LA
300 RA lb VCR/yer
Ifixed ant variable costs only
RAN HATERIALS Ethyl wo
Chlorine Oxygen
units lb
lb lb
units/ lb VCR 0.4133
0.4123 0.0000
cents/ unit 20.7440
3.8337 1.4449
HH units/ year 143.03
183.73 0.00
N 1 per year
30009.2
10719.4 0.0
cents/ ref lb ven codes 10.0297 1
3.3731 1 0.0000
SUBTOTAL BYPRODUCTS
Stcan Light Ends Tars
SUBTOTAL PROCESSING SUPPLIES
Catalyst Caustic Nitrogen Aanania-Aeine Sulfuric Acid Limtonc Cooling Rater Chens Rasteuater Tnatint 6as Raste Treateent Hydrogen Rise Chit l Supple
Ribs -0.0010 480.4822
lb -0.0211 1.4740
lb
-0.0222
-1.7500
lb
0.0001
414.3333
lb
0.005$
10.4720
RSCF 0.000? 70.2443
lb
.0000
108.8134
lb
0.0004
3.2610
lb
0.0000
0.9293
lb
0.0003
108.2571
0.4124
lb
0.0000
17.3800
-0.29 -4.33 -4.44
0.04 1.43 0.21 0.01 0.12 0.00 0.08 123.72 0.00 0.00 0.00
40808.4
-1404.4 -93.4 114.4
-1381.3
172.9 174.1 145.4
9.8 4.0 0.0 87.7 14.9 2.0 0.0 0.0
13.6029
-0.4681 -0.0311 0.0389
1 1 l
-0.4604
0.0576 0.0587
0.0485 0.0033 0.0013 0.0000 0.0292 0.0496 0.0066 0.0000 0.0458
5 1 1 1 l 1 1 3 1 1 l
SUBTOTAL UTILITIES
Electricity Stcae
Natural Sas Fuel Oil Rater
kRh 0.0403 3.7223
Mlfas
0.0023
480.4822
RSCF
0.0021
293.4331
HGal 0.0000
0.0000
Hqal 0.0010 22.4924
27.15 0.49 0.43 0.00 0.30
412.8
1010.4 3331.2 1838.7
0.0 48.1
0.3006
0.3349 1.1104 0.6196 0.0000 0.0227
1 1 I
1
SUBTOTAL
4248.6
2.0895
VARIABLE COST SUBTOTAL LABOR
Salaried Operating Maintenance Benefits
46308.6
941.2 1259.9 1438.4 635.5
15.5326
0.3137 0.4200 0.4861 0.2118
4 4 4 4
SUBTOTAL MISCELLANEOUS
Operating Supplies Paint Materials Contract Labor Insurance Clearances Taxes Miscellaneous
SUBTOTAL
FIXED COST SUBTOTAL
4295.0
340.2 927.0 1584.3 76.2 340.5 247.2 133.6
3650.9
7945^9
1.4317
0.1134 0.3090 0.5281 0.0234 0.1135 0.0824 0.0452
4 4 4 3 5 5 5
1.2170
2~6486
PLANT MANUFACTURING COST EICLUDIN6 DEP l AMORT
54234.5
18.1812
CCR 00000574-3
VCM PRODUCERS VCM COST PROFILES NOTES FOR MANUFACTURINGS COSTS
ETHYL BATON ROUGE, LOUISIANA
Page 46
1. Same as the BFG plant in Calvert City. 2. The steam stripper runs basic. No limestone is required. 3. No steam recovery system.
Factored from the BFG plant in LaPorte, Texas. Same as the Conoco VCM Plant.
i CCR 00000574-4
VCM PRODUCERS VCM COST PROFILES PLANT INFORMATION
FPC POINT COMFORT, TEXAS
Page 47
BACKGROUND DATA Startup Year Capacity
aa 1982 530 MM Lbs/Yr19
Expansions/Modernizations
A chlorine/EDC/VCM cg^plex in Baton Rouge is under consideration.
Environmental Status
Compliance is provided by incineration of vent gas streams and waste water stripping.
MARKET POSITION 30
Feedstocks/Supplies
Ethylene
Purchased from Arco for the oxychlorination process only.
EDC
Purchased from Arco to supplement captive EDC from the Baton Rouge plant.
Caustic
Captive source for process and waste neutralization.
Product Use
All VCM is used captively at Point Comfort and Delaware City, Delaware. The VCM plant operated at 55 percent of nameplate capacity in 1983.'
CCR 000005745
Page 48
Plant Information FPC Point Comfort, Texas
tq 20 TECHNOLOGY/EQUIPMENT *
Section 30
Direct Chlorination
Technology Mitsui Toacsu
Oxychlorination
Mitsui Toatsu Oxygen
EDC Wash
Mitsui Toatsu
EDO Purification EDC Cracking VCM Purification Incineration
Mitsui Toatsu
Mitsui Toatsu Trane
Water Treatment
Tvoe BLR
Fluidized Bed
Oxygen Bed Caustic
Trains 1 1
1
1
1 1
Notes This unit did not operate in 1983.
Only oxy EDC is washed. Washed EDC is dried by azeotrope distillation before purification.
Can bum No. 2 fuel oil.
No waste heat or HC1 recovery. One of the steam plant boilers is set up as a backup incinerator. Primary treatment consists of catalyst precipitation and steam stripping. Secondary treatment facili ties Include biological treatment.
CCR 00000574-6
FIGURE S VCM COST P R O F ILE S
BLOCK FLOW DIAGRAM FPC
PO INT COMFORT, TEXAS
Page 49
<
c7
vci cost profiles
Page 50 23-Jun-M
MANUFACTURING COSTS Capacity
FORMOSA PLASTICS Point Cohort, TI
330 HP lbs VCR/year
tfiied Md variable costs only
RAM MATERIALS Ethylene Chlorine Oiygen
units lb lb lb
units/ lb VCR
0.4494 0.4002 0.1428
cents/ unit
20.7440 5.B337 1.4449
RH units/ year
248.78 318.11
73.48
R 1 per year
S1407.3 18557.3
1093.4
cents/ ref lb VCR codes
9.7372 l 3.3014 1 0.2043
SUBTOTAL BYPRODUCTS
Steal Light Ends Tars
Ribs -0.0010 480.4B22
lb -0.0121 1.4740
lb
-0.0134
-1.7500
-0.34 -4.42 -7.21
71238.2
-2372.0 -94.8 124.1
13.4450
-0.4833 -0.0179 0.0238
2 3 3
SUBTOTAL PROCESSING SUPPLIES
Catalyst Caustic Nitrogen AMonia-Anine Sulfuric Acid Liustone Cooling Mater Chess Nastenater Traatint Gas Haste Trsatient Hydrogen Rise Chei fc Suppls
lb
0.0001
345.7000
lb
0.0153
7.BIOS
HSCF 0.0007 70.2443
lb
.0000
108.8134
lb
0.0004
3.2B10
lb
0.0000
0.9293
lb
0.0002
10B.2571
0.0000
0.0000
lb
0.0000
14.3B3B
0.03
a.ii
0.37 0.02 0.22 0.00 0.12
0.00 0.00 0.00 0.00
-2540.7
193.8 433.4 254.9
17.3 7.1 0.0 132.0 0.0 0.0 0.0 0.0
-0.4794
0.0344 0.1195 0.0485 0.0033 0.0013 0.0000 0.0249 0.0000 0.0000 0.0000 0.0248
4 5 4 4 4
4 7 3 6 9
SUBTOTAL
UTILITIES Electricity Steaa Natural Gas Fuel Oil Mater
kHh Ribs HSCF Mai Ngal
0.0793 0.0025 0.0020 0.0000 0.0009
3.7223 460.4822 293.4351
0.0000 22.4924
42.04 1.33 1.0S 0.00 0.48
1240.5
1545.0 4344.4 3081.4
0.0 108.2
9.2588
0.2953 1.2012 0.3814 0.0000 0.0204
10 1 1
t
SUBTOTAL
VARIABLE COST SUBTOTAL LABOR
Salaried Operating Maintenance Benefits
11121.1
"sisn
1433.1 1724.4 1222.7 484.7
2.0983 15*3227"
0.2704 0.32SB 0.2307 0.1294
11 12 13 14
SUBTOTAL NISCELLANEOUS
Operating Supplies Raint Raterials Contract Labor Insurance Clearances Taies Riscellaneous
3049.1
444.2 1134.0 1334.8
134.4 401.4 434.7 432.5
0.9544
0.0880 0.2143 0.2340 0.0254 0.1135 0.0824 0.0814
19 15 14 17 17 17 18
SUBTOTAL
4344.4
0.8412
FIXED COST SUBTOTAL
9433.5
1.B174
PLANT MANUFACTURING COST EXCLUDING DEP 1 ARORT
90712.4
17.1404
CCR 000005748
Notes for Manufacturing Costs FPC Point Comfort, Texas
Page 52
16. Includes $938,000 yearly maintenance costs, $277,000 casual turnaround labor, and $197,000 for turnaround contract costs.
17. Same as Conoco VCM Plant.'
18. Conoco miscellaneous charge minus the difference in turnaround rental charges.
19. Twenty-seven percent of operating labor based on the Conoco plant (in cludes 0.006 cent per pound for secondary waste water treatment).
CCS 0O0Q5 750
VCM PRODUCERS VCM COST PROFILES PLANT INFORMATION
FPC BATON ROUGE, LOUISIANA
Page 53
BACKGROUND DATA
Startup Year Capacity
1968 300 MM Lbs/Yr6
Expansions/Modernizations Environmental Status
This plant was buii.t in 1968 by Allied
Chemical Company using BFG technology. gl
purchased the plant from Allied in 1976.
ICI was planning a modernization for 1981
until, 1980/
old the plant to FPC in
This plant may st:L 11 be out of compliance regarding.hydrocarbon emission regulations.''*'* During the first quarter in 1983, $25 MM of improvements were made at the Baton Rouge complex.This work may have included improvements for pollution control.
MARKET POSITION
Feedstocks/Supplies Ethylene Chlorine
Purchased from -Exxon. 30 30
Captive (Baton Rouge, Louisiana)
Caustic
Captive (Baton Rouge, Louisiana)
Product Use
Excess EDC is transferred to the Point Comfort plant. All product VCM is used captively.
CCR 000005751
FIGURE 10 VCM COST P R O F ILE S
BLOCK FLOW DIAGRAM
FPC 5 0
BATON ROUGE, LO U IS IA N A
Page 55
Page 57
VCM PRODUCERS VCM COST PROFILES i [ NOTES for manufacturing costs , FPC
I
BATON ROUGE, LOUISIANA
1. These values were taken from the BFG Calvert City cost buildup unless noted otherwise.
2. Based on BFG "Oxy Process: Standard Economic Data," August 1979, and Norsk Hydro VCM Evaluation, March 1974.
3. Neutralization Cost: 0.0009 Lb 100 percent NaOH at 7.5 Cents/Lb. 4. Assumed no vent gas incineration. 5. Subtracted 0.0064 KWH per pound VCM from Calvert City rate for no
catoxid process. 6. Eighty-three percent of operating labor. 7. Based on seven 0SBL/ISBL operators, three miscellaneous personnel, and
two lab analysts per shift. 8. Based on thirty 0SBL/ISBL maintenance men (82 percent of Conoco
maintenance labor). 9. 15.67 percent of payroll. Includes benefits for 75 percent of casual
turnaround labor for roving crew benefits. 10. Twenty-seven percent of operating labor. Subtracted 0.005 cent per
pound VCM for not having biological treatment facilities. 11. Fifty-nine percent of Conoco maintenance material. 12. Includes $820,000 yearly maintenance, $243,000 turnaround labor, and
$129,000 contract labor. 13. Based on the Conoco plant. 14. Subtracted 0.09 pound steam per pound VCM from the Calvert City
buildup for not having a waste water stripper. 15. Conoco miscellaneous charge minus the difference in turnaround rental
costs.
CCR 000005755
VCM PRODUCERS VCM COST PROFILES
PLANT INFORMATION
GEORGIA PACIFIC PLAQUEMINE, LOUISIANA
Page 58
BACKGROUND DATA Startup Year Capacity Expansions/Modernizations Environmental Status
MARKET POSITION Feedstocks Ethylene Chlorine
Supplies Caustic
Fuel Gas
Utilities
By-Products Heavy Organics
1981 1,000 MM Lbs/Yr
None
Compliance is provided by incineration of vent gas streams and waste water stripping.'
Purchased from Shell and Dow.^
Captiv^source from the Plaquemine chlorine plant.
Captive source of caustic for process and waste neutralization.
Georgia Pacific posgjbly has long-term low
price gas contract.
This will
significantly reduce steam costs.
The Plaquemine complex contains chlorine, caustic, VCM, PVC, methanol, phenol, acetone, and ammonia operatiog^.^Utilities ate common among various units. 9
PPG is pa^d to dispose of tars from Georgia Pacific."^
CCR 000005756
Plant Information Georgia Pacific Plaquemine, Louisiana
Page 59
Product
At full PVC production, 70 percent of the VCM is used caotjAvelv for PVC
feedstock. The remainder is sold in the merchant marker.'
Tn 1983,
Georgia Pacific controlled 10.5 percent of the VCM merchant market
share while operating at 60 percent of plant capacity/
TECHNOLOGY/EQUIPMENT 54
Section
6 Technology
Type
Trains
Notes
Direct Chlorination^
PPG
BLR
1 High alloy construction.
Oxychlorination 51 52
EDC Wash '
51,52 EDC Purification EDC Cracking *
PPG PPG
PPG -
Fluidized Bed
Oxygen Feed Caustic
-
2 Reactors are of inconel construction. Recycle ethylene is caustic scrubbed.
2 Only oxy EDC is washed. Washed EDC is dried by azeo trope distillation before purification.
1-
b Have four cracking furnaces and two quench columns.
VCM Purification
PPG
-
1 HCl is removed by a two column absorber-stripper system.
Incineration
--
2 One vent gas and one liquid waste incinerator.
Primary Water Treating
-
-
- Water is neutralized before steam stripping.
CCS 00005757
FIGURE 11 VCM COST PROFILES
BLOCK FLOW DIAGRAM GEORGIA PACIFIC57
PLAQUEMINE, LOUISI ANA
CP
Page 60
Page 61
vet cost profiles
25-Jun-04
MANUFACTURING COST!
Cipicityi
GEORGIA PACIFIC Plaqueeine, LA
1000 m lbs VCK/ynr
(fixed ind wiiDli coits wily
RAH MATERIALS Ethylene Chlorine Oiygtn
units lb lb lb
units/ lb VCH 0.4754
0.6326 0.1367
cents/ unit 20.7440
5.8337 1.4449
HH units/ year 475.40
632.60 136.70
M * per year
98617.0 36904.0
1975.2
cents/ ref lb VCM codes 9.8617 1
3.6904 1
0.1975
SUBTOTAL BYPRODUCTS
Steae Light Ends Tars
Nibs -0.0010 480.4822
lb -0.0208 1.4760
lb
-0.012S
-1.7300
-0,99 -20.80 -12.60
137496.1
-4736.8 -307.0 220.3
13.7496
-0.4757 -0.0307 0.0221
1 1 1
SUBTOTAL PROCESSING SUPPLIES
Catalyst Caustic Nitrogen AMonia-Aiini Sulfuric Acid Lieestone Cooling Hater Che#* Histeeater Treatent Sas Haste Treatment Calciue Chloride Disc Chee t Suppls
-4843.3
-0.4843
lb
0.0007
72.3000
0.70
lb
0.0031
B.B431
5.10
HSCF 0.0007 70.2443
0.69
lb
.0000
108.0134
0.03
lb
0.0004
3.2810
0.41
lb
0.0000
0.9293
0.00
lb
0.0002
108.2571
0.20
0.24S7
243.70
0.0234
23.60
lb
0.0013
17.3800
1.30
0.00
507.3 451.0 484.7 32.6 13.3
0.0 216.3
39.0 77.3 225.9
0.0
0.0508 0.0451 0.0485 0.0033 0.0013 0.0000 0.0217 0.0390 0.0773 0.0226 0.0248
1 1 i 1 1
I 1 1 1 1
SUBTOTAL UTILITIES
Electricity Steae Natural 6a< Fuel Oil Hater
kNh Mlbs NSCF Rfial Ngal
0.0737 0.002B 0.0019 0.0000 0.0008
3.7223 480.4822 293.6351
0.0000 22.6924
75.73 2.82 1.90 0.00 0.84
2048.0
2818.9 13549.6 5579.1
0.0 190.6
0.3343
0.2819 I.35S0 0.5579 0.0000 0.0191
1 1 1
1
SUBTOTAL
22138.2
2.2138
VARIABLE COST SUBTOTAL LABOR
Salaried Operating
Maintenance Benefits
136839.1
1433.1 1726.6 1474.6 764.4
15.8134
0.1433 0.1727
0.1475 0.0764
2 3 4 5
SUBTOTAL MISCELLANEOUS
Operating Supplies
Maint Materials Contract Labor Insurance Clearances Taies Miscellaneous
3398.7
466.2 1738.1 1927.3 234.0 1133.0 824.0
432.4
0.5399
0.0466
0.1758 0.1928 0.0254 0.1135 0.0824 0.0452
6 7 8 9 9 9 10
SUBTOTAL FIXED COST SUBTOTAL PLANT HAMUFACTUfttNS COST EXCLUDING DEP l AMORT
6617.2 12213.9 um* n
0.6817 1.2216
17 nw
CCR 000005759
VCM PRODUCERS
VCM COST PROFILES
PLANT INFORMATION B. F. GOODRICH
CALVERT CITY, KENTUCKY
Page 63
BACKGROUND DATA
Startup Year
1964
Capacity
1,000 MM Lbs/Yr
Expansions/Modernizations
Integrated EDC/VCM production began at Calvert City in 1964. The original plant oroduced 280 MM oounds oer vear VCM. TTrf s plant was expanded in 1966. 1968, and 1975 give a current capacity of 1,000 MM pounds per year VCM.J-v/ A modernization of EDC/VCM facilities was scheduled for 1983.
to
In 1981, BFG completed chlorine and EDC plants at Convert, Louisiana, This was the first phase of a chlorine/VCM/PVC complex. In 1983, the VCM and PVC facilities were postponed ^definitely during initial con struction.
Environmental Status
MARKET POSITION 30
Feedstocks/Supplies Ethylene Chlorine Caustic EDC
Vent pasJU and liauld are catalvticallv incinerated. water is steam stripped.
wastp. streams Process waste
Captive (Calvert City, Kentucky) 30 Captive (Calvert City, Kentucky) 30
Captive (Calvert City, Kentucky)
up to
percent is imported captlvel from
the Convent, Louisiana, EDC Plant.
000S76l
FIGURE 12 VCM COST P R O FILE S
BLOCK FLOW DIAGRAM B. F. GOODRICH10
CALVERT C IT Y . KENTUCKY
RECYCLE HCI
Page 65
vet CMt profiles
Page 66 25-Jen-94
RANUFACTUMM COSTI Capacity!
B. F. Goodrich Calvert City, KY
1000 m lbs VCH/year
Ifixed mi variable coats only
MV MATERIALS Ethylene Chlorine Oiygen
SUBTOTAL BYPRODUCTS
Stew Light Ends Tars
SUBTOTAL PROCESSING SUPPLIES
Catalyet Caustic Nitrogen Aeaoma-Aaine Sulfuric Acid Liaestone Cooling Voter Cheat Hasteeater Treatent 6as Haste Treataent Hydrogen Rise Chea l Suppls
units lb lb lb
units/ lb VCR
0.4804 0.4092 0.0000
Ribs lb lb
-0.0013 0.0000 0.0000
lb lb HSCF lb lb lb lb
lb
0.0001 0.0043 0.0007 0.0001 0.0004 0.0000
0.0003 0.4124 0.7182 0.0003
cents/ unit
20.7440 5.8337 1.4449
480.4822 1.4740
-1.7300
414.5833 10.4720 70.2443
10B.B134 3.2810 0.9293
108.2371
14.3838
MM units/ year
480.40 409.20
0.00
R * per year
99454.2 35938.9
0.0
139193.1
-1.27 0.00 0.00
-4102.1 0.0 0.0
0.14 4.25 0.49
0.05 0.41 0.00 0.27 412.40 718.20 0.28 0.00
-4102.1
374.3 447.0 484.7 34.4
13.5 0.0 292.3 4.4 154.2 45.9 0.0
ceets/ ref lb VCR codes
9.9454 1 3.5539 1 0.0000
13.5193
-0.4102 0.0000 0.0000
2 3 3
-0.4102
0.0574 0.0447 0.0485
0.0054 0.0013 0.0000
0.0292 0.0044 0.1542 0.0044 0.0458
4 5 6 6 6
6 7 8 4 9
SUBTOTAL UTILITIES
Electricity Steae Natural 6as Fuel Oil Hater
SUBTOTAL
Wh
Nibs HSCF M6al Mgal
0.0970
0.0023 0.0021 0.0000 0.0010
VARIABLE COST SUBTOTAL LABOR
Salaried Operating Haintenance Benefits
SUBTOTAL HISCELLANEOUS
Operating Supplies Haint Materials Contract Labor Insurance Clearances Taxes Miscellaneous
SUBTOTAL
FIXED COST SUBTOTAL
PLANT MANUFACTURING COST E1CLU0TM6 SEP l AMORT
3.7223
480.4822 293.4351
0.0000 22.4924
94.99
2.31 2.11 0.00 1.00
2294.8
3410.3 11099.1 4195.7
0.0 224.9
21132.0
152519.8
2204.8 2454.4 2302.0 1183.0
8344.2
457.0 2143.6 2534.4 254.0 1135.0 824.0 444.7
8014.9
14341.1
14B8B0.9
0.4220
0.3410 1.1099 0.4194 0.0000 0.0227
10 1 1
1
2.1132
15.4443
0.2205 9.2454 0.2302 0.1183
11 12 13 14
0.8344
0.0457 0.2144
0.2537 0.0254 0.1135 0.0B2I 0.0445
19 15
14 17 17 17 IB
0.8015
1.4341
17.0604
a oooo^1
VCM PRODUCERS VCM COST PROFILES NOTES FOR MANUFACTURING COSTS
B. F. GOODRICH CALVERT CITY, KENTUCKY
Page 67
1. Values obtained from the Norsk Hydro evaluation (March 1974) and Badger Design (May 1974) unless noted otherwise. Chlorine conversion includes recycle HC1 from Catoxid Unit.
2. Includes 0.974 pound steam from oxy, 0.118 pound from catoxid, and 0.18 pound returned to battery limits.
3. All chlorinated hydrocarbon waste are sent to Catoxid for HC1 recovery and recycle to the oxy reactors. Catoxid yield for HC1 recovery equals 67 percent.
4. Includes 0^00013 pound oxy catalyst at 365.7 cents per pound plus 8.71 x 10 pounds dehydrogenation catalyst at $11.95 per pound.
5. 0.005 pound 100 percent solution at 7.501 cents per pound plus 0.00125 pound flake at 23.35 cents per pound.
6. Usage based on the Conoco plant.
7. Caustic Cost for Neutralization: 0.0009 Pound 100 Percent Caustic at 7.501 Cents/Pound.
8. Includes 0.0038 cents per pound VCM for CaCO^ neutralization, 0.0676 cent per pound VCM for incinerator operating cost, and 0.0848 cent per pound VCM for fuel gas. Incinerators do not have waste heat recovery.
9. Solvent for Vent Gas Absorber/Stripper System: 0.00014 Gallon Aromatic Solvent at 150 Cents/Gallon plus 0.0248 Cent/Pound VCM for Conoco Miscellaneous Costs.
10. Includes 0.0064 KWH for catoxid process, 0.0186 KWH for cooling water tower offsites, and 0.0085 KWH for lighting and building utilities. BFG has large refrigeration duty on vent condensers due to air-based process.
11. Eighty-three percent of operating labor.
12. Based on twelve ISBL, three OSBL, and three miscellaneous operators per shift plus two lab analysts per shift.
13. One-hundred Seventy-four percent of Conoco maintenance labor due to multiple trains.
CCR 000005765
Page 68 Notes for Manufacturing Costs B. F. Goodrich Calvert City, Kentucky 14. Includes 15.67 percent of the turnaround labor under contract mainte
nance as benefits for a roving crew. 15. One-hundred fifty-nine percent of Conoco's maintenance material. 16. Includes $1,745.7 M yearly maintenance, $516.8 M casual turnaround
labor, and $274.1 M for turnaround contract costs. 17. Based on cents per pound VCM from Conoco plant. 18. Includes turnaround rentals.
CCR 000005766
VCM PRODUCERS VCM COST PROFILES
PLANT INFORMATION
B. F. GOODRICH LaPORTE, TEXAS
Page 69
BACKGROUND DATA Startup Year Capacity
1978u 1,000 MM Lbs/Yrft
Expansions/Modernizations
BFG purchased thig-,plant from Diamond-
Shamrock in 1981.
Expansion to 1,500 MM
poundscpgp ygar is under considera-
t:.on.
Environmental Status
Compliance is provided bv vent eas incineration and waste water stripping.
MARKET POSITION Feedstocks 30
Ethylene
Purchased from Phillips.
Chlorine
Supplied by Diamond-Shamrock.
By-Products
Heavy Organics
PPG is pa4 for disposing of heavy organics.''*'
Product Use
Merchant sales account for 30 percent of,the VCM product use. The
plant operated at 82 percent of capacity^-in 1983 prior to a November-
December shutdown for inventory control.
They are negotiating toll
processing for other companies.
CCR ^00005767
VCM PRODUCERS
VCM COST PROFILES
NOTES FOR MANUFACTURING COSTS GEORGIA PACIFIC
FLAQUEMINE, LOUISIANA
Page 62
1. Variable costs are the same as for the 1981 PPG 500 MM pound per year plant.
2. Eight-three percent of operating labor, based on the Conoco plant.
3. Based on eight ISBL/OSBL operators, three miscellaneous personnel, and two lab analysts per shift.
4. Based on 41 maintenance men.
5. 15.67 percent of payroll, plus benefits for 75 percent of the casual turnaround labor for roving crew.
6. Twenty-seven percent of operating labor plus 0.006 cent per pound VCM for secondary waste water treatment facilities.
7. One-hundred-thirty percent of Conoco maintenance materials.
8. Includes $1,429,000 yearly maintenance, $325,000 for casual turnaround labor, and $173,000 for turnaround contract costs.
9. Based on the Conoco plant.
10. Conoco miscellaneous charge minus the difference in turnaround rental charges.
CCR 000005760