Document Rjbap7wjX35kgojOj59YzkRm7
\
THE RELATIONSHIP BETWEEN RESIDUAL VINYL CHLORIDE MONOMER (RVCM) IN
POLYVINYL CHLORIDE RESINS AND AMBIENT VINYL CHLORIDE MONOMER (AVCM)
IN TIIE WORK ATMOSPHERE
September, 1975 B.F.Goodrich Chemical Company 6100 Oak Tree Boulevard Cleveland, Ohio 44131
BFG37828
* w v ' T C 'X
TABLE OF CONTENTS
Page
I. Objectives, Conclusions, and Summary
A. Objectives ................ ...................................................................................... 1
B. Conclusions....................................................................................................... 1
C. Summary.......................................................................
1-2
II. Analytical Methods................................................................................................ 3
III.
Residual Vinyl Chloride Content of PVC Resins at the Time of Packaging in B.F.Goodrich Chemical Company Hants......................................................
4-5
IV. Field Tests During Transportation, Storage, and Processing of PVC Resins and Compounds.......................................... 6-8
V. A Physical Model for the Diffusion of Vinyl Chloride Monomer from PVC Under Various Conditions of Storage......... ................................................................................
9
BFG37829
S3
Li o
o S3
LIST OF TABLES, FIGURES. AND EXHIBITS
Table I Table II Table III
Table IV Table V Table VI
Table. VII Table VIII Table IX
Residual Vinyl Chloride (RVCM) Content of Finished PVC Resins
Residual Vinyl Chloride Content of Geon PVC Compounds and the Resin From Which Each Compound Was Made
Personal Monitoring For Exposure to Ambient Vinyl Chloride (AVCM), PPM, in B.F.Goodrich Chemical Company Compound Buildings
Personal Monitoring of Individuals Engaged in the Trans portation of PVC Resins and Compounds - 1974
Personal Monitoring of Individuals Engaged in the Trans portation of PVC Resins and Compounds - 1975
Effect of the Reduction of Residual Vinyl Chloride in PVC Resin on Ambient Vinyl Chloride Within a Closed Trailer
Summary of Ambient Vinyl Chloride Monitoring in Public Warehouses, 1974
Summary of Results of Ambient Vinyl Chloride Monitoring at Customer Plants, 1974
Summary of Results of Ambient Vinyl Chloride Monitoring at Customer Plants, 1975
Figure 1 Figure 2 Figure 3 Figure 4 Figure 5
Residual Vinyl Chloride (RVCM) Content of PVC Resin, Geon 102EP F-5
Residual Vinyl Chloride (RVCM) Content of PVC Resin, Geon 103EP
Residual Vinyl Chloride (RVCM) Content of PVC Resin, Geon 103EP F-76
Residual Vinyl Chloride (RVCM) Content of PVC Resin, Geon 92
Personal Monitoring for Exposure to Ambient Vinyl Chloride in B.F.Goodrich Chemical Company Compound Buildings
3FG3'7^30
Exhibit I
Exhibit II Exhibit III Exhibit IV Exhibit V Exhibit VI Exhibit VII Exhibit VIII
Analysis of Bendix Personnel Monitoring Collection Columns for Vinyl Chloride Monomer in Air Via the Bendix Flasher - Chromatograph System B.F.Goodrich Chemical Company Procedure 1021-T
Residual Vinyl Chloride Monomer Content of Polyvinyl Chloride Resins and Wet Cake Samples B.F.Goodrich Chemical Company Procedure 1005-T
Residual Vinyl Chloride Monomer Content of Polyvinyl Chloride Resins B.F.Goodrich Chemical Company Procedure 999-T
Residual Vinyl Chloride Monomer in Geon Compound or Rigid Geon Powder Samples B.F.Goodrich Chemical Company Proced re 937-C
Ambient Vinyl Chloride (AVCM) Monitoring Data at B.G. Warehouse, Louisville, Ky., March, April, 1975
Ambient Vinyl Chloride (AVCM) Monitoring Data at B.F.Goodrich Chemical Company Distribution Center, Avon Lake, Ohio, April, 1975
Ambient Vinyl Chloride (AVCM) Monitoring Data at B.F.Goodrich Chemical Company Distribution Center, Pedricktown, New Jersey, March, April, 1975
A Physical Model for the Diffusion of Vinyl Chloride Monomer from PVC Under Various Conditions of Storage
'O M v t
BFG37831
?0 v'J
V**4
I. OBJECTIVES, CONCLUSIONS AND SUMMARY
1. OBJECTIVE
Demonstrate that the amount of residual vinyl chloride monomer (RVCM) in Geon PVC resins and compounds is so low at the time of shipment from the BFGCC manufacturing plants that employees engaged in the transportation, storage, pro
cessing and use of these products will not be exposed to quantities of ambient vinyl chloride (AVCM) above the action level of 0.5 part per million (ppm) averaged over an 8-hour work day under normal, good work practices without special engineering controls. Under these conditions it should no longer be necessary to use the cancer-suspect label on PVC packages.
2. CONCLUSION
The testing conducted and reported herein demonstrates that personnel engaged in the transportation, storage, and processing of BFGCC resins are not exposed to vinyl chloride above the action level when resin containing a low level of RVCM is shipped. Much of the testing done outside of BFGCC manufacturing areas during 1974 was conducted on resins having much higher levels of RVCM than the same resins contain today. The significant decrease in RVCM achieved to date and the additional improvement anticipated by year end when new equip ment is installed provided further assurance that safe exposure will not be exceeded.
3. SUMMARY
During the past year, BFGCC has determined the amount of RVCM in its resins at every manufacturing plant. This was done several times per week until new analytical equip ment was installed at each location to permit analysis of every production lot. Concurrently, intensive efforts were
undertaken to minimize the amount of residual vinyl chloride in the resins. These efforts included modification of the physical structure of the resin itself to foster release of VCM as well as improvements in manufacturing techniques and in stripping process technology.
Effectiveness of the program is indicated by the con stantly decreasing levels of RVCM. Resins not responsive to these techniques have been discontinued.
Analysis of ambient vinyl chloride (AVCM), after ship >0 ment from BFGCC plants, in the transportation, storage, and C,d customer processing areas has shown that personnel are not h* exposed above the action level under normal, good work prac tices.
BFG37832
O u\
Page 2
The information in subsequent sections will show:
Section II - Analytical Methods
The methods used in obtaining the data contained in this report,
Section III - Residual Vinyl Chloride Content of PVC Resins at the Time of Packaging in B.F.Goodrich Chemical Company Plants
A. the level of RVCM in our large volume general purpose and easy processing PVC resins at the time of packaging in the five producing plants during the last quarter of 1974 and weekly during the first half of 1975,
B. the RVCM of compounds made in our . plants from resins of known RVCM content,
C. a study of personal monitoring results on personnel engaged in the manufacture of compounds at the five producing plants in 1975,
Section IV - Field Tests During Transportation, Storage, and Processing of PVC Resins and Compounds
The results of personal and static moni toring in the field during 1974 and during 1975 when lower levels of RVCM were achieved, and
Section V
- A Physical Model for the Diffusion of Vinyl Chloride Monomer from PVC Under Various Conditions of Storage
The results from large scale, laboratory modeling experiments to study the variables of temperature, RVCM content, ventilation rate, and mass/volume ratios on the diffu sion of VCM from a number of different types of PVC resins.
oA / +su
BFG37833
O o
o a
Page 3
II. ANALYTICAL METHODS The method used to determine ambient vinyl chloride
(AVCM) in the atmosphere, BFGCC Procedure No. 1021-T, is described in the appendix as Exhibit I. During 1974, glass sample tubes were used in accordance with the method approved by NIOSH at the time. During 1975, carbon tubes were used. The pump is calibrated for each sample and is operating during static samplings. The sensitivity' of the AVCM analysis is 0.01 ppm.
The method now used, starting January, 1975, to determine residual vinyl chloride (RVCM) in PVC resin is BFGCC Procedure No. 1005-T, described in the appendix as Exhibit II. The sensitivity of this analysis on resin is 0.02 ppm. In the last part of 1974, a manually operated version of this method was used (BFGCC Procedure No.999-T, Exhibit III). Prior to October, 1974, a solvent method, similar to NIOSH P&CAM #178, was used.
The method used to determine RVCM in compounds (both powder and hot mixed cubical granule types) is BFGCC' Procedure No. 937-C, described in the appendix as Exhibit IV. The sensitivity of this analysis on compound is 1.0 ppm.
How small a difference between samples the test can detect reproducibly.
BFG37834
io a o -v is z
Page 4
III. RVCM CONTENT AT THE TIME OF PACKAGING IN BFGCC PLANTS
A. Resin
Samples of each resin are taken at the time of packaging whether the container be bag, box, bulk railcar, or bulk truck. The analytical method used during most of 1974 was solvent extraction of the sample and subsequent determination of VCM content in a gas chroma tograph. Starting in October, 1974, Perkin Elmer "Head Space" units, which analyzed the gas directly in the gas chromatograph, were introduced (BFGCC Procedure No. 999-T).
Beginning February 1, 1975, all five plants were so equipped, permitting increased frequency of testing so that results are reported on each lot of resin. The- attached graphs (Figures 1-4 inclusive) on Geon resin 102EP F-5, 103EP, 103EP F-76, and 92, starting with the average values for the fourth quarter of 1974, show these average values on a weekly basis in 1975 for each manufacturing location at which the particular resin is produced.'
A condensed summary of the 1975 data on which the graphs are based is contained in Table I. This includes the number of analytical tests used to determine i:he average value, the average of these determinations, as well as the highest single value and the lowest single value. During the Iasi quarter of 1974, 1,044 analyses were made on about 135,000,000 pounds of resin. In the first half of 1975, 2,700 analyses were made on about 175,000,000 pounds of resin.
These data show the effects of product and process tech nology improvements in reducing the RVCM content of resins during this period from 100 to 150 ppm in the last quarter of 1974 to about 20 ppm in June of 1975.
B. Compound - RVCM
The RVCM content of compounds, as well as the RVCM of the specific lot of resin used in their manufacture, is listed in Table II. All of these compounds, except 85721 and 83824, were made by hot mixing in Banbury type mixers and are supplied in the form of cubical granules. The 85721, a rigid compound, and 83824, a flexible compound, were made in powder form on a high intensity, internal mixer.
Of those compounds (48) made from resin having 20 ppm or less RVCM, 95% contained less than 1.0 ppm RVCM.
Of the 18 compounds made from resin having 20 ppm to 100 ppm RVCM, only two compounds were above 1.0 ppm RVCM.
There were three compounds made from resin containing more than 100 ppm RVCM. All three contained more than 1.0 ppm RVCM.
BFG37835
rn o n T ,T p y
Page 5
C. Compound - AVCM
As a responsible manufacture under existing regula tions a study was undertaken to determine the relationship between the level of RVCM in resin and the degree of ex posure to AVCM in compounding operations within our own plants. Thus, the entire study was made under close control.
The study involved five manufacturing locations where both resin and compound are made. The compounding operations included:
1. Mill Mixing 2. Banbury Mixing 3. Continuous Mixer 4. Sheeting, Granulating and
Packaging Operations connected with each of the above 5. High Intensity Powder Mixing, Cooling and Packaging
Products made include flexible and rigid compounds in both powder and hot mixed granule form.
After resin is manufactured, it is stored in bins and transferred in bulk to the compound lines. RVCM content of the resin is determined on a sample taken from the bin. Thus, the time lag between manufacture of resin and consumption in compound is relatively short compared to that in a customer's plant since resin must first be shipped to his location.
Personal monitoring was conducted on each of the operators involved in the compound manufacturing process, viz. the men involved in weighing, charging the mixer, tending the strip mill and packaging.
The data determined in March, April, May and June, IS75
are included in Table III and plotted in Figure 5. The data
indicate that, with resin containing less than 25 ppm (95%
confidence) or 15 ppm (99% confidence), personnel engaged in
the manufacture of PVC compounds are not exposed above the
action level in the work atmosphere. These results are con
sistent with those obtained in the modeling study discussed
later in this report (page
and Exhibit VIII).
K
C-.' H
c n:\fv:
Page 6
IV. FIELD TESTS DURING TRANSPORTATION, STORAGE, AND PROCESSING
A. Introduction
During the latter part of 1974, personal monitoring was done to determine the exposure of AVCM to personnel during transportation, storage, and processing. During this period, BFGCC did not have the capability to analyze each lot of resin for RVCM, but the data available in the previous section are sufficient to show that the levels of RVCM in the resins produced at the time of most of this testing were a great deal higher than the amounts contained in the equivalent products today, i.e., values of up to 150 ppm have been reduced to about 20 ppm. Despite the higher levels of RVCM, almost all of the personal monitoring in dicated that personnel were not exposed above the action level.
The reduction of RVCM to low levels and the commitment that resin will not be shipped or used in compound should-the RVCM exceed this level provides assurance that those engaged in the transportation, storage, and processing of these mater ials will not be exposed above the action level under normal, good work practices.
Evidence to support this conclusion has been developed in more recent testing based on low RVCM resin and compound, and additional support is provided by the VCM diffusion model ing study.
B. Transportation
Personal monitoring was conducted on men engaged in load ing and unloading bulk trucks and truckloads of bags of PVC resins and compounds. Bulk loading is done by gravity from a storage tank and unloading by air conveying under vacuum or pressure. A truckload of bags is usually loaded or unloaded with forklift trucks in 30 to 45 minutes.
In the case of bulk trucks, monitoring is done on the truck driver who may make the hose connections and operate the valves for loading and unloading. In bag or box shipments, monitoring is done on the driver of the forklift truck used to move the pallets. The presence of combustion products from some forklift trucks using propance as a fuel interferes with the analysis for VCM, giving high values part of which are caused by the combustion products.
In most recent testing, two carbon tube samples are taken so that, if the first reading is high, a second analysis can be carried out to distinguish between combustion products of propane and VCM.
BFG37837
Page 7
Table IV shows results obtained by personal monitoring during the last quarter of 1974. Per
sonal monitoring of forklift truck operators in 1975, with compounds based on lower RVCM resins, is included
in Table v.
Outside of the resin manufacturer's plant, these operations are short time and sporadic in nature. All instances were below the action level.
The effect of the reduction of RVCM in resin on the amount of AVCM which can accumulate within a closed trailer for three days is shown in Table VI.
C. Storage
Table VII summarizes the AVCM data obtained in 1974 in public warehouses which contain from 50,000 to 350,000 pounds of PVC resins and compounds. Though some values with high RVCM resin are marginally above the action level, more recent data with low RVCM resin show results below this level. Evidence of this is co: tained in Exhibit v listing results obtained from the BFGCC warehouse in Louisville, Kentucky. Special engineering controls are not used in thisbuilding for there is no forced ventilation. Monitoring results are all below the action level. The amount of PVC raw materials in this warehouse was approximately 10,000,000 pounds.
Exhibits VI and VII represent AVCM data obtained in BFGCC distribution centers at Avon Lake, Ohio, and Pedricktown, New Jersey. Both of these buildings contain in excess of 15,000,000 pounds of PVC resins and compounds. Both make use of forced ventilation. All of the results are below the action level except one at Pedricktown where the resin stored contained 69 ppm RVCM and the ventilating fans were turned
off.
D. Processing In Customer Plants
Within customer plants, resin containing low levels of
RVCM does not result in exposure of personnel above the action
level in the work space areas. Equipment in which VCM may
be released in confined areas above the action level include
internal, high intensity powder mixers, Banbury mixers, and
the various types of processing equipment such as extrusion
and molding machines, as well as calenders. Such equipment
is ventilated. Personal monitoring of operators actually
working in each of these areas in 1974, shown in Table VIII,
has never indicated exposure above the action level even with
^
resin containing up to 150 ppm of RVCM. Table VIII lists the
results of 77 anilyses of personal and static monitoring carried `
out in nine customer plants during 1974.
BFG37838
TT
Page 8
Reduction of RVCM to less than 20 ppm increases the margin on safety as shown in Table IX. This table shows the results of 75 analyses of personal and static monitoring carried out in 1975 at eleven different customer plants.
Static samples were taken in storage or processing points where AVCM would be expected to accumulate. At the same time, personal monitoring was conducted on operators working in these specific areas. In all cases, including the two where static sampling indicated a concentration above the action level, actual exposure of workers as determined by personal monitoring was below the action level.
BFG37839
C,,0 H
r-
, -*
Page 9
V. A PHYSICAL MODEL FOR THE DIFFUSION OF VINYL CHLORIDE MONOMER
FROM PVC RESINS UNDER VARIOUS CONDITIONS OF STORAGE
A model, based on large scale laboratory experimental data, has been developed to show the relationship between the amount of residual vinyl chloride monomer in PVC resins (RVCM) and the concentration of atmospheric vinyl monomer (AVCM) under various conditions of storage. The variables studied in the experimental work leading to the development of this model included temperature, time, ventilation rate, RVCM content of the resin, mass/volume ratio and resin type (varying in porosity).
The results obtained from a statistically designed series of 24 experiments show the interactions of all the variables and permit (1) the effects of the variables to be established, and (2) the derivation of a model which permits the AVCM levels to be predicted for any combination of the variables.
The developed model has been used to predict the AVCM level in BFG warehouses at Avon Lake, Louisville and Pedricktown. We have found excellent agreement between predicted and measured AVCM levels at these three locations and under a variety of stor age conditions.
Additionally, the model has been used to show that under less than the most severe storage conditions, the .OSIIA action level will not be exceeded (500 ppb AVCM) when the RVCM content of the stored resin does not exceed 18 ppm. Even under the most extreme storage conditions the OSHA action level is not exceeded when the RVCM content of the resin is 8.5 ppm or less.
The details of this study are shown in Exhibit VIII.
in J ,T P 'y
BFG31840
r-
RESIDUAL V IN Y L CHLORIDE (VCM) CONTENT
1 0 5
BFG37841
*
o
w Q
in
>
E-i o
33
f
P Ot
b'
U
O
N4 ro rin CN
--i
00 ID CN rH m
00 o\ in rH o
i--1
. oo in c a< n1 r H" CN l
o
w Q
N< . >
Bo
f--A 3
P 04 B
O
o
in m m i--i iH H 1--1
o o O rH ro co ro
m in in H CO ro ro
ID CN ro
H1
i--l
CM CJ\ VD o\ CN rH
CN
VD VO O VO CT\
o ncn oo i--i
CN < H* 1/ i--1
cn r- N' ckn
r~~ oo uo CN N*
>1 Eh fa m <d
o
H
wD CO CO
3
H1
CO CQ 1
w
fa
..--, *--<
cr e'
u P< en
>
04
'0w4'
H
K
Cl w
o3
fa
w
13 H CQ
CO p g f--f M
3Hu
Hsw
o. a
3i
fa W
o 04 w
CQ
CO O
EH B fa a
o
04
ci w Q
ro >
Bo
33
<
P 04 B
O O
o
w p
<N
> Bo
33 C 01
0< B
O O
, u
fa
Q
rH
B>
3O
3 01
04
B
O O
o 00 o rH CN
o o CN in CN ro 1--1
o ro CN CO r* m
ro o\ o 00 o m in o
00 rH CO H r- ro in ID in i--i VO
CTi H oo ro
in
*h
ro
i--1
iH 00 o ro ID
i--1
iH CT\ cn VO c\ rH ro
CN O l) rH 00 <n 00 rH cn
ro o in i--i ro cn ro ro CN rH
cn
rH O CO N* ro H* O
1--1 00 rH
VD VD CO rH <7* iH CN rH
rH
ID i--1 00 04 CN
in CN o CO 00 ro in CN ro
rH
ro a o rrH ro Cn rH i--1 CN
rH cn N1 ro O rH ro >H CN rH ro
CN rH in in r- rH IQ rH i--i H*
CO VD r- VD r- n* rH
H
H ro o in vd ro
rH CN
CN VO oo in <y\ in CN i--I in
VO o ro ro in o rH
CN O N* 00
--1 iH ro
rH rH
rH O os rH n4 r-
wm
cn cn
4J 4-> -P P
Cl 3
3
fa
H
H
-H in
H
04
01 0 m a) 0
01 0
01
0
>1 B
Cn 3 04 id G
i O'! 3 3 Pi 3
Cn 3 3 04 id
i Cn 3 3 04
fa <d
fa3 -H *H m
Vi r-i *H td
Sh -h H rd
H -rt H cd
3
a) 3 X -P
Pi a> C X P
0* 01 C X p-
01 C X 4-1
M
CN > -H <$ nS
01 K H rtf id
w > -H ctJ :d
P > -H id id
CO CTv
fWa
1 a
Q
IN O
S 3*! Q
OT r-C ;r. g a O
ro < 3 s: P o
i--1 --f 1--1
PAGE 2
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 1
WEEK ENDING: 1/3/75
RESIN TYPE
G-92 102EP F--5 103EP F-76
NO. DATA POINTS
8 9 35
AVERAGE
2.9 165.2
10.1
HIGH
10.6 722.0
42.9
LOW
0.2 1.7 0.3
WEEK ENDING: 1/10/75
G-92 102EP F-5 103EP F-76
7 3 16
19.9 0.4 5.1
35.7 0.5
10.9
12.7 0.4 1.0
WEEK ENDING: 1/17/75
G-92 102EP F-5 103EP F-76
9 10 19
146.9 10.6 6.3
271.0 20.3 52.8
3.1 0.6 0.7
WEEK ENDING: 1/24/75
G-92 102EP F-5 103EP F-76
14 24 28
5.8 1.1 5.9
33.6 6.0
17.5
0.5 0.1 0.3
WEEK ENDING: 1/31/75
102EP F-5 103EP F-76 110X400 (102EP F-5)
8 11
8
0.8 6.2 10.1
1.5 27.8 49.2
0.2 0.3 0.4
BFG37842
PAGE 3
PLANT: 2
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
WEEK ENDING: 1/3/75
RESIN TYPE
NO. DATA POINTS
102EP F-5 103EP F-76
2 4
AVERAGE
187.0 62.0
HIGH
190.0 133.0
LOW
183.0 16.0
WEEK ENDING: 1/10/75
102EP F-5 103EP F-76
1 2
15.0 82.0
15.0 152.0
15.0 12.0
WEEK ENDING: 1/17/75
102EP F-5 103EP F-76
1 2
15.0 82.0
15.0 152.0
15.0 12.0
WEEK ENDING:
102EP F-5 103EP F-76
1/24/75
8 8
41.0 24.0
120,0 43,0
0,0 0,0
WEEK ENDING:
102EP F-5 103EP F-76
1/31/75
2 9
22.0 17.0
32,0 42.0
12,0 10,0
BFG31843
PAGE 4
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT:
3
WEEK ENDING: 1/3/75
RESIN TYPE
G-92 103EP 103EP F-76
NO. DATA POINTS
1 7 3
AVERAGE
1.0 255.1
94.0
HIGH
1.0 797.0 129.0
LOW
1.0 3.0 70.0
WEEK ENDING: 1/10/75
G-92 103EP 103EP F-76
6 14
6
3,7 114.3
44.8
14.0 310.0
74.0
0.0 23.0 22.0
WEEK ENDING: 1/17/75
G-92 103EP 103EP F-76
5 20
6
0.2 181.1
42.7
1.0 4 53.0
77.0
0.0 0.0 8.0
WEEK ENDING: 1/24/75
G-92 JL03EP
4 15
1.2 206.0
3.0 538.0
0.0 3.0
WEEK ENDING: 1/31/75
G-92 103EP 103EP F-76
4 19
4
0.3 151.9 101.5
1.0 374.0 171.0
0.0 7.0 32.0
BFG37844
PAGE 5
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 4
WEEK ENDING: 1/3/75
RESIN TYPE
NO. DATA POINTS
AVERAGE
HIGH
PLANT CLOSED FOR HOLIDAY VACATION
LOW
WEEK ENDING: 1/10/75
103EP 103EP F-76
1 6
WEEK ENDING: 1/17/75
103EP 103EP F-76
1 6
WEEK ENDING: 1/24/75
103EP 103EP F-76
1 8
WEEK ENDING: 1/31/75
103EP 103EP F-76
1 11
45.0 25.0
19.0 20.0
1.0 12.0
22.0 17.8
45.0 49.0
45.0 7.0
19.0 32.0
19.0 5.0
1.0 19.0
1.0 4.0
22.0 26.0
22.0 8.0
BFG37845
PAGE 6
RESIDUAL VCM CONTENT IN FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 5
WEEK ENDING: 1/3/75
RESIN TYPE
NO. DATA POINTS
103EP
2
AVERAGE 29.0
HIGH 38.0
LOW 19.0
WEEK ENDING: 1/10/75 103EP
2
29.0
33.0
24.0
WEEK ENDING: 1/17/75 103EP
3
31.0
77.0
8.0
WEEK ENDING: 1/24/75 103EP
4
6.8 15.6 2.5
WEEK ENDING: 1/31/75
102EP F-5 103EP
1 4
0.7 7.2
0.7 15.6
0.7 2.5
BFG37846
?0 OX h*
PAGE 7
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 1
WEEK ENDING: 2/7/75
RESIN TYPE
NO. DATA POINTS
G-92 102EP F-5 103EP F-76
14 4
59
AVERAGE
11.5 0.4 5.7
HIGH
88.5 0.9
35.7
LOW
0.2 0.2 0.1
WEEK ENDING: 2/14/75
G-92 102EP F-5 103EP F-76
1 14 59
222.0 28.2 7.0
222.0 206.0
76.1
222. 0. 0.
WEEK ENDING: 2/21/75
G-92 102EP F-5 103EP F-76
12 9
38
41.9 9.0
12.5
262.0 40.5 61.8
0.2 0.8 0.7
BFG37847
Cyl H*
o o ro
PAGE 8
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 2 WEEK ENDING: 2/7/75
RESIN TYPE
102EP P-5 103EP F-76
NO. DATA POINTS
2 2
AVERAGE
12.0 9.0
HIGH
12.0 13.0
LOW
11.0 4.0
WEEK ENDING: 2/14/75
102EP F-5 103EP F-76
6 6
0.1
0.1
0.0
3.7 13.0 0.4
WEEK ENDING: 2/21/75 102EP F-5
7
0.2 0.4 0.1
-N C*; H
PAGE 9
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Express in PPM VCM
PLANT: 3
WEEK ENDING: 2/7/75
RESIN TYPE
G-92 103EP 103EP F-76
NO. DATA POINTS
3 4 3
AVERAGE
0.3 84.0 136.0
HIGH
1.0 174.0 169.0
LOW
0.0 0.0 101.0
WEEK ENDING: 2/14/75 2/21/75
G-92 103EP 103EP F-76
9 21
8
2.0 70.0 74.0
6.0 317.0 171.0
0.0 0.0 4.0
BFG37849
PAGE 10
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 4
WEEK ENDING: 2/7/75
RESIN TYPE
102EP F-5 103EP 103EP F-76
NO. DATA POINTS
1 2 10
AVERAGE
23.0 13.5 17.6
HIGH
23.0 17.0 32.0
LOW
23.0 10.0
7.0
WEEK ENDING: 2/14/75
103EP 103EP F-76
1 10
11.0 18.1
11.0 70.0
11.0 4.0
WEEK ENDING: 2/21/75
103EP F-76
16
7.4 22.0 1.0
BFG37850
PAGE 11
RESIDUAL VCM CONENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 5
WEEK ENDING: 2/7/75
RESIN TYPE
102EP F-5 103EP
NO. DATA POINTS
1 5
AVERAGE
2.8 7.0
HIGH
2.8 11.4
LOW
2.8 3.8
WEEK ENDING: 2/14/75
103EP 103EP F-76
4 4
WEEK ENDING: 2/21/75
103EP
3
19.1 27.8
29.8 52.0
1.3 2.7
0.8
1.1
0.5
PAGE 12
RESIDUAL VCM CONTENT IN FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 1
WEEK ENDING: 3/7/75___
RESIN TYPE
NO. DATA POINTS
G-92 102EP F-5 103EP F-76 (110X401) 110X400 (102EP F-5) 110X401 (103EP F-76)
12 7
11 7
11
WEEK ENDING: 3/14/75
G-92 102EP F-5 103EP F-76 (110X401) 110X400 (102EP F-5) 110X401 (103EP F-76)
11 7
12 6
11
WEEK ENDING: 3/21/75
G-92 102EP F-5 103EP F-76 (110X401) 110X400 (102EP F-5) 100X401 (103EP F-76)
1 5 22 1 16
WEEK ENDING: 3/28/75
G-92 102EP F-5 103EP F-76 110X401 (103EP F-76)
3 6 37 1
AVERAGE
1.2 0.8 7.0 5.3 22.3
HIGH
6.1 1.9 24.0 14.0 42.6
LOW
0.2 0.2 2.8 0.2 6.7
35.1 7.3
20.2 2.6 8.1
93.4 10.7 38.7 14.1 11.5
0.0 2.3 5.1 0.1 3.9
12.1 0.5
11.3 1.4 5.9
12.1 1.8
47.6 1.4
11.4
12.1 0.1 2.9 1.4 2.2
24.1 0.4 3.1 1.5
55.1 0.6 6.4 1.5
0.0 0.2 0.2 1.5
BFG37852
PAGE 13
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 2
WEEK ENDING; 3/7/75
RESIN TYPE
NO. DATA POINTS
102EP F-5 103EP F-76 (110X401)
3 3
AVERAGE
0.1 3.4
HIGH
0.1 4.4
LOW
0.1 1.4
WEEK ENDING: 3/14/75
102EP F-5 103EP F-76 (110X401)
6 7
0.4 7.2
1.3 10.0
0.1 2.0
WEEK ENDING: 3/21/75
102EP F-5 103EP F-76 (110X401)
2 7
0.2
0.2
0.2
1.4
3.9
0.5
WEEK ENDING: 3/28/75 102EP F-5
1
0.2
0.2
0.2
BFG37853
til O
PAGE 14
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT :3
WEEK ENDING: 3/7/75
RESIN TYPE
NO. DATA POINTS
G-92 103EP 103EP F-76 (110x401)
5 23
7
WEEK ENDING: 3/14/75
G-92 103EP 103EP F-76 (110X401)
3 4 9
WEEK ENDING: 3/21/75
G-92 103EP 103EP F-76 (110X401)
3 9 8
WEEK ENDING: 3/28/75
G-92 103EP
4 10
AVERAGE
2,0 125.4
58.4
HIGH
5.0 310.0 265.0
LOW
1.0 4.0 16.0
0.3 199.5
72.6
1.0 363.0 390.0
0.0 6.0 8.0
0.0 83.2 142.8
0.0 258.0 388.0
0.0 3.0 3.0
0,3 57.7
.
1.0 152.0
0.0 2.0
BFG37854
PAGE 15
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 4
WEEK ENDING:___3/7/75
RESIN TYPE
NO. DATA POINTS
103EP F-76 (110X401) 23
103EP
1
AVERAGE
22.0 0.7
HIGH
154.0 0.7
LOW
4.0 0.7
WEEK ENDING: 3/14/75
103EP F-76 (110X401) 34
103EP
5
12.0 22.6
33.0 99.0
3.0 2.0
WEEK ENDING: 3/21/75
103EP F-76 (110X401) 15
103EP
1
16.1 7,0
44.0 7,0
3.0 7.0
WEEK ENDING: 3/28/75
103EP 103EP F-76
15 19
10,6 22.9
29.0 78.0
2.0 5.0
BFG37855
PAGE 16
RESIDUAL VCM CONTENT OP FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 5
WEEK ENDING: 3/7/75
RESIN TYPE
NO. DATA POINTS
103EP
15
AVERAGE 2.0
HIGH 11.3
LOW 0.4
WEEK ENDING: 3/14/75
103EP
19
21.2
112.3
0.4
WEEK ENDING: 3/21/75
103EP
4
WEEK ENDING: 3/28/75
103EP 103EP F-76
3 15
11,9
19.1
3.4
47.1 182,6
128.6 400.9
5.5 22.8
BFG37856
Ci
c
PAGE 17
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 1
WEEK ENDING: 4/4/75
RESIN TYPE
NO, DATA POINTS
G-92 102EP F-5 103EP F-76 110X400 (102EP F-5) 110X401 (103EP F-76)
4 10 10
1 11
WEEK ENDING: 4/11/75
G-92 102EP F-5 103EP F-76 110X400 (102EP F-5) 110X401 (103EP F-76)
5 10
6 3 17
WEEK ENDING: 4/18/75
G-92 102EP F-5 103EP F-76 110X400 (102EP F-5) 110X401 (103EP F-76)
3 25
3 3 11
WEEK ENDING: 4/25/75
G-92 102EP F-5 103EP F-76 110X400 (102EP F-5) 110X401 (103EP F-76)
7 27
8 2 10
AVERAGE
31.2 0.3 3.8 0.8 4,4
HIGH
54.9 0,6
14,9 0,8
12,6
LOW
8. 0 0. 1 0. 7 0. 8 0. 7
5,7 1.2 1.0 1.2 6.5
27,2 3.1 4,4 1.3
18.2
0. 1 0. 2 0. 2
1. 1 0. 2
1.4 1.1 3.9 0.5 4.0
3.5 7,3
5.6 0.6 20.0
0. 0 0. 1
2. 1 0. 5 0. 5
34.4 2.0
10.2 0.3 1.4
105.0 18.8 23.9 0.5 2.8
0. 1 0. 1 0. 9 0. 1 0. 1
BFG37857
PAGE 18
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT:
2
WEEK ENDING: 4/4/75
RESIN TYPE
102EP F-5 103EP F-76
NO. DATA POINTS
6 3
AVERAGE
0.2 2.1
HIGH
0.3 5.5
LOW
0.1 0.3
WEEK ENDING: 4/:1/75
102EP F-5 103EP F-76
11 3
0.1 5.0
0.3 5.6
0.0 4.5
WEEK ENDING: 102EP F-5
4/18/75
9
0.1
0.2
WEEK ENDING:
102EP F-5 103EP F-76
4/25/75
3 3
0.3 5.5
0.5 0.2 6.6 4.2
o o
BFG37858
PAGE 19
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 3
WEEK ENDING: 4/4/75
RESIN TYPE
G-92 103EP 103EP F-76
NO. DATA POINTS
4 10
9
AVERAGE
0.0 26.5 10.7
HIGH
0.0 119.0
26.0
LOW
0.0 0.0 0.0
WEEK ENDING:
103EP 103EP F-76
4/11/75
20 3
61,7 4.0
147.0 9.0
4.0 1.0
WEEK ENDING: 4/18/75
G-92 103EP 103EP F-76
3 5 5
0.0 6.1 5.2
0.0 20.0 11.0
0.0 0.3 0.7
WEEK ENDING: 4/25/75
G-92 103EP 103EP F-76
5 6 2
0.3 4,2 8.5
1.0 14.0 13.0
0,0 0.4 4.0
tV
BFG37859
PAGE 20
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Express in PPM VCM
PLANT: 4
WEEK ENDING: 4/4/75
RESIN TYPE
103EP 103EP F-76
NO. DATA POINTS
3 13
AVERAGE
6.3 16.6
HIGH
12,0 41.0
LOW
3.0 5.0
WEEK ENDING:
103EP 103EP F-76
4/11/75
2 21
16.0 33.2
18,0 78.0
14.0 15.0
WEEK ENDING: 4/18/75
102EP F-5 103EP F-76
4 15
18.0 40.9
21.0 90,0
2,0 14.0
WEEK ENDING: 4/25/75
103EP 103EP F-76
9 11
21.1 9,1
55.0 17.0
3.0 0.5
PAGE 21
1
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 5
WEEK ENDING: 4/4/75
RESIN TYPE
103EP 103EP F-76
NO. DATA POINTS
9 2
AVERAGE
9.1 74.5
HIGH
16.8 79.6
LOW
2.3 69.3
WEEK ENDING: 4/11/75
103EP
19
16,2
49,2
1.1
WEEK ENDING: 4/18/75 NO DATA AVAILABLE THIS WEEK ------ PLANT SHUTDOWN
WEEK ENDING: 4/25/75
103EP
14
5.2
25.0
Q.5
BFG37861
i >0 . i wl *
4'i
' O
ao
f : 01
PAGE 22
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT:___1
WEEK ENDING: 5/2/75
RESIN TYPE
NO. DATA POINTS
G-92 102EP F-5 103EP F-76 110X400 (102EP F-5)
4 5 3 1
WEEK ENDING: 5/9/75
G-92 102EP F-5 110X400 (102EP F-5)
4 21
4
AVERAGE
20.7 4.3 2.9 1.1
8.4 0.7 9.1
HIGH
52.1 14.4
5.4 1.1
30.3 7.8
72.3
LOW
1.9 0.2 1.2 1.1
0.1 0.1 0.2
WEEK ENDING: 5/16/75
G-92 102EP F-5 103EP F-76 110X400 (102EP F-5) 110X401 (103EP F-76)
9 14 29
5 5
8.2 1.9 1.0 2.4 5.1
20.7 16.8
3.9 5.8 13.4
0.1 0.1 0.1 0.1 0.8
WEEK ENDING: 5/23/75
G-92 102EP F-5 103EP F-76 110X400 (102EP F-5) 110X401 (103EP F-76)
8 10 14
2 8
0.1 0.5 1.8 0.1 2.3
0.2 2.1 3.5 0.1 4.2
0.1 0.1 0.2 0.1 0.1
WEEK ENDING: 5/30/75
G-92 102EP F-5 103EP F-76 110X400 (102EP F-5) 110X401 (103EP F-76)
6 6 14 7 3
26.6 0.8 1.0 4.5
1,0
159.0 1.2 3.1
24.6
1.7
0.0 0.2 0.2 0.1 0.2
B?G31862
PAGE 23
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 2
WEEK ENDING: 5/2/75
RESIN TYPE
NO, DATA POINTS
102EP F-5 103EP F-76
10 6
AVERAGE
0,7 4.3
HIGH
2.3 5.8
LOW
0.0 3.2
WEEK ENDING: 5/9/75 103EP F-76
5
00
14.1
3.3
WEEK ENDING: 103EP F-76
5/16/75
6
5.9
11.9 '
2.3
WEEK ENDING: 5/23/75
102F.P F-5 103EP F-76
2 2
1BEP 2BEP
1 1
0.6
0,8
0.4
3.9 4.9 2.9
0.0
0.0
0.0
6.4
6.4
6.4
WEEK ENDING: 5/30/75
102EP F-5 103EP F-76
1C
2 6
1
CO
o
00
00
o
2.0 3.2
3.6 7.5
0.4 1.2
BFG37863
PAGE 24
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT:
3
WEEK ENDING:
RESIN TYPE G-92 103EP
5/2/75
NO, DATA POINTS
3 4
AVERAGE
0.4 3.8
HIGH
0.5 10.0 -
LOW
0. 1 1. 0
WEEK ENDING: 5/9/75
G-92 103EP 103EP F-76
5 22
3
WEEK ENDING: 5/16/75
G-92 103EP 103EP F-76
6 13
3
0.8 25.0
0.5
0.1 7,3 0,9
2.0 211.0
0.8
*
0.2 21.0
1.0
0. 0 0. 1 0. 1
0. 0 0. 0 0. 8
WEEK ENDING: 5/23/75
G-92 103EP 103EP F-76
6 14
4
2BEP 92B
1 1
WEEK ENDING: 5/30/75
G-92 103EP
5 12
0,0 3.3 3.6 1,0 0.3
0.0 3.2
0.1 20,9 13.0
1.0 0.3
0.1 19.0
0. 0 0. 1 0, 1 1. 0 0. 3
0.0 0,4
PAGE 25
RESIDUAL VCM CONNTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT:
4
WEEK ENDING: 5/2/75
RESIN TYPE
102EP F-5 103EP 103EP F-76
NO, DATA POINTS
1 7 22
AVERAGE
2,0 14.3 13,9
HIGH
2.0 24,0 35.0
LOW
2. 0 9. 0 1. 0
WEEK ENDING:
103EP 103EP F-76
5/9/75
8 31
9.0 25.6
15.0 76.0
6. 0 3. 0
WEEK ENDING:
103EP 103EP F-76
5/16/75
4 26
5,8 20.1
8.0 50.0
4, 0 4. 0
WEEK ENDING:
103EP 103EP F-76
5/23/75
22 5
23.9 12.2
72.0 47.0
5. 0 2. 0
WEEK ENDING: 5/30/75
103EP 103 F-76
2 19
16.5 55.7
29.0 292.0
4. 0 3. 0
BFG37865
PAGE 26
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS
Data Expressed in PPM VCM
PLANT: 5
WEEK ENDING: 5/2/75
RESIN TYPE
NO. DATA POINTS
103EP
9
AVERAGE 2,3
HIGH 5.0
LOW 1.3
WEEK ENDING: 5/9/75 103EP
18
1.3 3.3 0.6
WEEK ENDING: 5/16/75 103EP 2B
6 1
3.4 13.2 0.4
0.3
0.3
0.3
WEEK ENDING: 5/23/75
103EP
17
3.8 10.6 1.2
WEEK ENDING: 5/30/75
103EP
26
4,5 23,8 0.4
BFG3166
PAGE 27
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT:
1
WEEK ENDING: 6/6/75
RESIN TYPE
NO. DATA POINTS
G-92 102EP F-5 103EP F-76 110X400 (102EP F-5) 110X401 (103EP F-76)
11 3 6 3 9
AVERAGE
0.3 3.7 6.4 0.3 8.0
HIGH
1,4 10.8 10.2
0.3 10.6
LOW
0.0 0.1 0.4 0.2 0.1
WEEK ENDING: 6/13/75
G-92 102EP F-5 103EP F-76 110X400 (102EP F-5) 110X401 (103EP F-76)
3 2 5 6 15
0.1 3.8 1.7 0.3 20.4
0.1 4.6 3.9 0.7'
65.2
0.1 3.1 0.1 0.0 4.2
WEEK ENDING: 6/20/75
G-92 102EP F-5 110X400 (102EP F-5) 110X401 (103EP F-76)
11 7
13 22
11.6 0.1 1.5
12.7
34.8 0.1 4.8
47.1
0.0 0.1 0.2 2.5
WEEK ENDING: 6/27/75
G-92 102EP F-5 103EP F-76 110X400 (102EP F-5) 110X401 (103EP F-76)
7 13
1 10
5
4.1 1.4 1.2 4.8 9.1
20.9 4.6 1.2
15.3 15.5
0.1 0.2 1.2 0.4 2.9
BFG37867
PAGE 28
RESIDUAL VCM CONTENT IN FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT:
2
WEEK ENDING; 6/6/75
RESIN TYPE
102EP F-5 103EP F-76
1C
NO. DATA POINTS
3 9
3
AVERAGE
0,1 27.4
2.5
HIGH
0.2 54.7
6.4
LOW
0.0 8.6
0.1
WEEK ENDING:
102EP F-5 103EP F-76
2BEP
6/13/75
1 9
2
0.1 34.9
3.9
0.1 56.9
6.4
0.1 18.9
1.4
WEEK ENDING: 6/20/75
102EP F-5 103EP F-76
15 1
0.4 3.2 0.0 3.3 3.3 3.3
WEEK ENDING:
102EP F-5 103EP F-76
6/27/75
6 8
0.3 10.2
0.5 18.1
0.0 3.3
BFG37868
PAGE 29
RESIDUAL VCM CONNTENT IN FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 3
WEEK ENDING: 6/6/75
RESIN TYPE
NO. DATA POINTS
G-92
103EP 103EP F-76
5
12 3
AVERAGE
0.0 3.5 4.8
HIGH
0.0 20.0
5.9
LOW
0.0 0.0 4.2
WEEK ENDING: 6/13/75
G-92 103EP 103EP F-76
7 9 2
0.1 2.0 2.8
0.4 0.0 7.4 0.2 3.6 2.0
WEEK ENDING: 6/20/75
G-92 102EP F-5 103EP F103EP F-76 103EP B
7 1 6 4
1
WEEK ENDING: 6/27/75
G-92 103EP 103EP F-76
103EP B
5 7 3
1
0.0 11.0
5.0 5.4 11.0
0.1 5.8 12,5
117.0
0.0 11.0 10.0
9.7 11.0
0.2 24.9 17.3
117.0
0.0 11.1
1.1 0.1 11.0
0.0 0.2 3.0
117.0
BFG31869
PAGE 30
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 4
WEEK ENDING: 6/6/75
RESIN TYPE
NO. DATA POINTS
102EP F-5 103EP 103EP F-76
2 5 23
AVERAGE
17.0 38.0 72.0
HIGH
18.0 70.0 231.0
LOW
16.0 28.0
5.0
WEEK ENDING: 6/13/75
102EP F-5 103EP 103EP F-76
3 6 42
WEEK ENDING: 6/20/75
102EP F-5 103EP 103EP F-76
2 10 32
1C F-76 Tailings
1
25.6 57.5 32.9
42.0 79.0 117.0
7.0 16.0
2.0
25.0 30.2 30.4
39.0
35.0 73.0 54.0
39,0
15.0 15.0
1.0
39.0
WEEK ENDING: 6/27/75
102EP F-5 103EP 103EP F-76
2 12 26
10.0 32.0 44,0
18.0 58.0 108.0
2.0 20.0 11.0
BFG37870
PAGE 31
RESIDUAL VCM CONTENT OF FINISHED PVC PRODUCTS Data Expressed in PPM VCM
PLANT: 5
WEEK ENDING: 6/6/75
RESIN TYPE
NO. DATA POINTS
103EP
26
AVERAGE 2.0
HIGH 15.4
LOW 0.3
WEEK ENDING: 6/13/75
103EP
16
1,4 3.9 0.4
WEEK ENDING: 6/20/75
103EP
26
4.1
13.8
0.4
WEEK ENDING: 6/27/75
103EP
22
15.9
114.1
0.5
BFG37871
TABLE II
RESIDUAL VINYL CHLORIDE CONTENT OF GEON PVC COMPOl AND THE RESIN FROM WHICH EACH COMPOUND WAS MAD
RESIDUAL VINYL CHLORIDE (RVCM) IN GEON RESIN AND FLEXIBLE COMIH
1. Hot Mixed Cubical Granules
Date
Time on Shift
Type Resin
Resin RVCM ppm
Compound
4/4/75 4/4/75 4/4/75 4/4/75 4/4/75 4/4/75 4/4/75 4/8/75 4/8/75 4/8/75 4/8/75 4/9/75 4/8/75 4/8/75 4/9/75 4/9/75 4/9/75
4/9/75 4/10/75 4/10/75 4/10/75 4/10/75 4/10/75 4/10/75 4/11/75 4/11/75 4/11/75 4/12/75 4/12/75 4/12/75 4/12/75 4/12/75 4/15/75 4/15/75 4/15/75 4/14/75 4/15/75 4/15/75 4/16/75 4/16/75 4/17/75 4/17/75 4/18/75 4/18/75 4/18/75
12 :25P 2:10P
12:45P 2: OOP 5: OOP 5:45P 1:30A
12-8 12-8
3:10A 10:30A
12:45P 10:45P
8:00P 7 :30? 10:15A 12-8 1:40P 4:30P 6: OOP 9:10P 9: OOP 11:00P 4:50A
8:20P 12:20A
2:20 12:40P
5:15P 10:30P
3:50A 9: OOP 2 :30A 4-12 4:15P 2:20 10:45 9:40A 3:25A 1:40P 12:40 3:20P 7 :20P
103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103 103
103 103 103 103 103 103 103 103 103 103 103 102 F5 103 103 103 103 103 102 F5
103 103 102 103 103 103 103 103 103 103
118 74
4 4 2
<1 104
2 3 26 10
37 48
1 39
1.8 2
1 10 10
Oa 22 59 45 33 21 39
<1 19.5 16.4 26 21 11
<1 8
66 70
2 15 '8
8 36 25 26
8801 Blk 288 ir ti it
8812 Blk 288 II II II
8815 Blk 288 II 1! II
80755 Blk 299
8815 White 132
JL 10 -- X
8815 White 132
115-2
83794 Nat 012 II II II
112-1 113-7
83714 Trans 004
35-18
8800 Nat 021
987-3
8814 White 132
133-1
83714 Trans
37
8884 Nat 021 ii n ii
380-10 380-6
8814 White 132
135-2
80456 Trans 004 * 66-Bx. 16
80456 Trans 001 67-Bx. 6
83974 Gr 248
13-Bx, 4
83974 Gr 248
13-Bx. 8
83823 Gr Trns524 113-Bx. 4
83823 Gr Trns524 113-Bx. 14
8813 Nat 021
98-11
8813 Nat 021
99-10
8898 Nat 021
58-10
8898 Nat 021
59-18
80801 Nat 025
113-Bx. 27
83700 Brown 366 1-2
83700 Brown 366 1-4
82718 Blk 289
43-1
80801 Nat 025
114 Bx. 26
8830 Nat 021
248-1
8862 Nat 021
1-1
8882 Blk 288
1-1
83718 Nat 021
90-6
83741 White 132 74-4
83937 Wht Trns014 107-6
8804 Blk 288
924-9
80755 Blk 292
ACFX 54635
8804 Blk 288
926-4
8730 Nat 021
298-14
2042 Gray 249
256-24
2042 Gray 249
258-7
J.
<1 <1 Cl Cl
1
Cl 1
Cl Cl Cl Cl NR
Cl NR
<1
<1
Cl a <1 <1 Cl <1 <1 <1 <1 Cl C1 Cl <1 Cl Cl
Cl <1 ! Cl
.NR - Not. run
Continued..................... .. ,
i'
BFG37872
I :m
a; Cv H
Page 2
1
I. RESIDUAL VINYL CHLORIDE (RVCM) IN GEON RESIN AND FLEXIBLE COMPOUNDS (continued)
I. Hot Mixed Cubical Granules
(
Time
Type
Resin RVCM
Date
on Shift
Resin
ppm
Compound
Lot Compound RVCM No. ppm
4/19/75 4/19/75 4/19/75 4/19/75 4/19/75 4/19/75 4/19/75 4/19/75 4/19/75 4/22/75 4/22/75 4/22/75 4/22/75 4/22/75 4/22/75
11:15A 12:10P
2:45P 9:15P 12:00A 5:35 U:00A 6:40P 7 :30P 6: OOP 4:20P
11:00?
103 103 103 103 103 103 103 103 103 103 103 103 103 G-92 103
<Tl
<1 26 32 25
3
Cl 12
Cl
Cl <1 26 24
Cl 25
8800 Blk 288 8800 Blk 288
83718 Gray 250 * 83718 Gray 250 83718 Gray 250 83741 Blk 288 80457 Red 762 8896 Gray 250 80457 Red 262 8801 Gray 243 8801 Gray 243 83008 Nat 021 83008 Nat 021 84280 White 132 83741 Nat 021
208-2 208-6 254-4 254-8 255-4 130-4 1-2 160-6 1-1 52-1 52-1 140-11 140-5 21-1 102-4
<1 Cl <1
Ci
<i <i <i <i
1.2 Ci <1
2. Powder Compound
Date
Time on Shift
4/11/75 4/11/75
10:30A
Type Resin
G-92 G-92
Resin RVCM ppm
<1 2
Compound
Lot No.
83824 Nat 021 83824 Nat 021
68-12 68-6
Compound RVCM PPm
CI c1
\
BFG37873
' A lb
a
Page 3
RESIDUAL VINYL CHLORIDE (RVCM) IN GEON RESIN AND RIGID COMPOUNDS 1. Hot Mixed iCubical Granules (Use: Rigid Profiles)
Date
Time (hrs)
5/5/75 1110
5/7/75 1115
5/8/75 1310
5/9/75 1045
5/13/75 0900
Type Resin
Resin RVCM PPm
102 F5 102 F5
<1
102 F5
1.70
102 F5
102 F5
9.05
Time ..(hrs ) 1130 1130 1330 1100 0915
Compound 7082-138 7082-138 7082-138 7082-138 8700A-640A
Compound RVCM ppm
o <1 <1 <1
2. Powder Compound (Use: Pipe - 85707, Profile - 85721)
Date
Time
Type Resin
Resin RVCM ppm
Time (hrs)
Compound
4/8/75
2:55P
103 F76
85721 Nat 021 Lot 440-1
4/8/75
3: OOP
103 F76
<1
85721 Nat 021 Lot 440-2
4/9/75 11:20A
103 F-76 127
85721 Nat 021 Lot 442-2
5/6/75 1315
110X401
3.19
1335
85707-025 Pwd
5/7/75 1330
110X401
<1
1345
85707-025 Pwd
5/8/75 1600
110X401
4.70
1620
85707-025 Pwd
5/9/75 1400
110X401
4.90
1400
85707-025 Pwd
5/15/75 1540
110X401 \
1.69
1600
85707-025 Pwd
Compound RVCM ppm
O
<1
6
<1
a <i
>N CJ ;h
" '>
.'.1
6/4/75
BFG31874
TABLE III PERSONAL MONITORING FOR EXPOSURE TO AVCM, PPM,
IN BFGCC COMPOUND BUILDINGS ALL SAMPLES OVER 4 HOURS
1975
Plant #1 438 441
Plant #2
741 Plant #3
2 20
Plant #4
814 Plant #5
541
TOTAL
Plant #1 438 441
Plant #2 741
Plant #3 2
20 Plant #4
814 Plant #5
541
TOTAL
AVE. RVCM OF RESIN USED
No.* Mon.
AVCM
PPM AVG.
MARCH
PPM MAX.
PPM MIN.
AVE.
RVCM
OF RESIN No.*
USED
Mon.
10.3 10.3
2.5
84.0 84.0
16.6
48.7
28.0
35 16
6
83 14
25
4
183
0.03 0.06
0.03
0.55 0.26
0.29 0.25
0.32
MAY
0.09 0.25
0.10
9.60 1.10
1.30
0.38
9.60
0.01 0.02
0.00
0.00 0.00
0.01
0.15
0.00
4.9 4.9
1.1
22.8 22.8
24.9
11.4
11.7
58 27
7
7
8
13
13
133
3.3 3.3
3.5
7.4 7.4
23.8
4.0
9.1
8
0.01
0.04
0.00
5.5
9
0.05
0.12
0.01
5.5
1
0.08
0.08
0.08
11.7
8
0.10
0.40
0.00
4.8
6
0.03
0.10
0.00
4.8
15
0.52
1.60
0.01
40.3
20
0.07
0.92
0.01
12.6
67
0.16
1.60
0.00
16.6
40 14
1
6 4
6
8
79
AVCM
PPM AVG.
APRIL
PPM MAX.
PPM MIN.
0.05 0.03
0.27 0.28
0.07
0.16
0.14 0.31
0.40 2.50
0.55
1.90
0.11
0.31
0.12
2.50
JUNE
0.00 0.00
0.01
0.00 0.00
0.00
0.03
0.00
0.09 0.07
0.01
0.02 0.05
0.59
0.07
0.11
0.77 0.30
0.01
0.10 0.20
1.10
0.23
1.10
0.00 0.01
0.01
0.00 0.00
0.02
0.01
0.00
*Number of personal monitoring samples.
BFG37875
` Vt r 1 k `i
a c EH* f3St
e
TToc3d* oV o Sc3
u0 u4)
>> -tM 'ri UU
aa
tE4am41 tsqM4i|
O O OCM CM CM
o in
CM O />
oo
CM O
<n o
H CM
oV o U UCM CM
41 4) >>
aTqu4 Tu*
p0> t0Vji 0ao P O firl Cd <0
O4H
CM CM
uu *4>H) -4>H) OP QU
P CMu
4) 4>) tM
QP aU
uCM
41 >
H P
a
JJ MM
<l3
sa| > --i Tl
Hg
Om v
in v
m inOm
CM
mm
CM CM
CM CM
Vv
Vv
VV
o
2H
69 <d
(0*
3 -3 PQ
60 60 60 60 <4 <4 <4 <4
* *PQ rt
.-3 -3 HHHH
PERSONAL MONITORING OF INDIVIDUALS ENGAGED
IN THE TRANSPORTATION OF PVC RESINS AND OOMPOUNDS - 1974 (4 /4 /7 5 )
Pwi
WPm
CO o
< 3 83
Pm rPMi ft-lMM O 1-M
Cr-M r-%
ooCO oo co
00
Vi 33 0o a o U (4 CO CJ iJ 3 Pi VJ o M0
*H
CJ Vi
Pi <4
rt 2
33 O
0
0
O CJ C oo Pi > FP <
r- ps.
'-n.
<o \rM
CM
u,
n 0 rM r-4 rl > CJ CJ *rl O3 P4 O PQ r4
&
0 i--1 rM rl > CJ 0 CJ *rl O3 Pi O PQ m3
60 CJ H
O0 3P u r* H {3
p U. 0 OH
CJ CJ
O P< PQ
vf r- r>.
**s.
vO o d
0P
W
U
P0
po
VMi
O
o
2
u
r3a
o
Pi
CM
BFG37876
PERSONAL MONITORING OF INDIVIDUALS ENGAGED
IN THE TRANSPORTATION OF PVC RESINS AND COMPOUNDS - 197
6cH0 0)
t-M B
Pr6tf4-HH
CO
CM CM
Oo
O Oo VV
O'* Crs
CM CM CM
o o V
o> Mj*
d ctf O H 4J Ttf rl <D co Sg S rl
PS M
O H
H0)
4J rl
cd ctf
dM
0) <U
d
O <1) CO
dM
d 4J O O O
O o M U
M-l T3 ctf ctf
4J O U Pi
C H
bO O PS
<U fX
a) CX
o CO rl O o
PM o c
c <L> M 4J
0) CM CM
H at O rl M
d rM H
TO
*rl PS (0 O
u Xu
a d. o o
W 2 Pm Pm
HH
va->t a)
Ctf Ctf a a PS
dd B> 3H CO
H o o
4J ctf
CO u
CO d
AJ at as
m CO Px di
so >
P`5
as
d
r--1
Ctf H M 0) 4J ctf
s
CM
a
d
ctf
in r--
co
o r--1 X r-C O =te PQ
0) *x >> H d CU 0) S 60 o ctf 4-1 CD CO AJ CJ 3 ctf Ctf O P Pm
o H
V
CM CO 1--1 r\
1 0) r-t H
CO H r^. r-- rl CO O > 00 O w
O rl a o 4J Q a> o *4 e>
o u CO d ,d) d O U >4-1 A r-4 AS d o Pd
M cd PS o CO d CD
m PM
CM
O
S
m
co
rl CM H V*
* o
=S}= TO
0)
d X H d o 41 B 00 o CO 4J 0) AS CO AJ O 3 ctf CO U Q dc
o
r-I
v
o r4 o AS CM O O 1A H a) CM CT\ AS r- <t ctf mo 00 VO
c CM a o O AJ > <u o
BFG37877
c,,q
a o
C; w
CM
Q> 6(d0 pH
(
60 G rl CD
^0 P.M-1
BccJ H
c/i
co
<d
P3
G
S
o
V m in in
m mm
OCM CCMO
o ON
r>. h'
CM r4 r-4 O
oo
V
in m
'd <1) Pi o u
H
0 O a o r"l
P
G
p CD P
O
P
o
p
c l^ o PH
CD
r-4
a a cd w
t--IDI Q) p0. P>4
GH to
So i-i a) u cd
rl
0) B *rl
H 0) H
rl
cUd u
a> C0
Xp
Pt
44 O o O
O 44 44
44 rd cd cd
O Pi u
60 CD
<u
a> e u r4
o0
(oX
CU o
d CD 4J 4J
a 44
44
<D o r4 rl
t-4 H
H d
(0 o da
p
o
op
M 0 fn (p
r4 i--i cd G U aG rl O O 44 CO CO
cd Pi P 4J 0) CD 00 P< Pi
au 0 p Pi p
rl cd rl
u
(D 44 cd
to f-.
ON CM CM 60 r-4 **< cd == PQ
ID
CX
, H
Pi
CD 0)
a
o
60 cd
44 CD X
CO 44 O
0 cd cd
U Q CU
ts r4
CM
O 1O
r4 r4
<t r-4 r4
r4 rl
co r4 >
00 o CO
o rl
c3
o 44 O
<D
O
Q 3
'PwI'
o 3 P
P
O0
o I--c
P H
4-C CO
g CD
r4 60 CO cd <D P Pi O
P
60 10 d rl ip r4 o a e p, cd o wp
0c cd o
r4
O 60 r4 G 0 H XG o id <D P, HO
1--1 cd Go o r4 co 4J P cd <0 4J Pc CO
o
to u H
oX
co CO r-4 r4 3 =s= PQ
<D P-
H
p
CD CD
0
O
60 cd
P CD
CO 44 O 3 cd cd O Q Ph
in co
o
*p
X!
0o
rl to
.
CD (0 X 00 vM
oo cd
CM o >J ON r4
CM C dO oP > CD O C O PI ^
*-4 0) 4J cd rl *d 0) g g rl
f4
H H cd
>4
44
<D CO si p 44 o
o p id o 60 Q> G (0 p OG 0 <0
p, <0 O 'O H G CO O 0 P. H3
4 o
4J
cud 0) ex o
4J
44
r4 rl A5 U O p4
1-4
o
r4
co0d
4J to
CO Pi
4J CD
CO P4
o
V
to r^
s^- vO 60 r4 cd =fts tO M
(D
P.
5n H
Pi
CD P
O
0) 60
G
44 0)
CO 44 O
0 cd G CJ Q Pm
o
p
Si
do
rl CO ft
<D G
X CO CTn G
CM
CM
CCMO
i-J
CM G
dO
oP > CD O <
a^
BFG37878
CO
AVCM
(ppm)
0to <o rrH O O
mH
vO
O
o oo
o
Oo
V
ccoo ccoo mON
ON
co CO
S a m p lin g Time
(M inutes)
Sample P o in t o r O p e ra tio n M o n ito re d
Sample Type
>> H 0 4J 0
'd 0 2 g vH
0)
rH
H 0 n 4J
a> co
pn
4-> o
M
O
uo
o 4J JJ
<4H *0 0 cd
O
60 0
0
a> 0
10 iH
O0
ao ao
00
w
fX
0) o
UH rH
(U
TJ rH d
rH 0 CO O
*M
u U
aa o
md
a
wX
u 0O r*HH
0
.X
m TJ 0 0
CM in rH X rH o
m CQ
a)
a
>*
H Vj
<0 0)
60
o M0 u 0) rX CO 4J o
d a
cd
P
0
a
T--1
cd
4oH- XcdJ CO
0O 0CO a) a
OO
vV
tX O
O 9* 1 ID
rH
rH rH
*rl
co >
CO rH CO CO
iH
0o
4J
4J
d o
0 0 OP
oPP
fH
rt Goto Ga)
CM
Go
JJ
tGt)
<u
CoM
4J <4-4 'H rH
G
O Pm
iH
is tGoo G4) CM
CGQ
m rd
n* 0
0
VO
NO rH rH \
X o
=*= in a
0
a
to H
u
00
oa
*
60 0
4-J 0 rX
CO U 0
ud
P0
0
a
V
00
rH
in t
/*N
CM o rH
o rH H
00 in
ion
co
m
On
to U
00
o 4J 0
0
o
o
p
X
rXt
0)
-0u
H TJ 0
g
H
0 r-1 H 0 *-r U
V co Xu U0
o
uh *a
o
W -H
OG
c <u p.
<u o
T3
H G (0 O G P-
MG
M
cod
u
1-1
u
uo
0 rH 0)
60 0 H U cd M
0ao
a) rH T3 0 cd X
rH cd H
U -<U0 <d
rH
it)
CJ
4J
Gtoo
4cJd CO
CGHMI
o V m
r^ 60 rH 0
ma
0
&
H
G
<U 0
6 o
60 0
4J <U rX
<0 G o
G O
<d O
a0
-N
& rH
CM
OA
10 On rH
CO vD rH
f-x rH rl
co CM >
00 O
0
O
iH
d
Ou Q
0 oP
o p S-/
BFG37879
:63 C/T
; k>
1
/'
O o
1 0-'
' xJ
1l
i
RVCM
(ppm)
M a te r ia l______
AVCM
(ppm)
oon4>o oo oo VV
vO Csl CO
Sam pling T im e
(M inutes)
Sample P o in t o r O p e ra tio n M o n ito re d
Sample Type
crol <D
r<-U4 CHO
4J
<U W
U Oo
4-4
o
<D oCCO
CD
0eH0 <aau o
Cr-O4 c
ocs p3<
o
4J
Iuaaod)
IW
r-4 afuon:
o
4J id
W4J
rm-
i0--04 ==
Hon m
m0id0
<a0
M<U
H a)
uVo6)
4<Ju
0id0 Xo
C3P
<0 Q
id Pi
o
r-l
V
x-s
oON
>> *v
ooonmio-
CVCOO'J
Hi--0H4) r>C*O4
oC<u o
4J PQ
vPQ3/
i3omd Pa>
Pi
m o
mr~-
IO--Nl ==
Cv| vO
w0d0
H(pU.
a) uo(00 O3
40J) 0 Q
<0U0 Sioiddi Pn
VC1---1O044 00
Vor-Ovx
o ro--1
o>
oc0)
u 0
op
RVCM
(ppm)
M a te ria l
BFG37880
ua
O ,o
GD
(
TABLE VI
EFFECT OF THE REDUCTION OF RESIDUAL VINYL CHLORIDE IN PVC RESIN ON AMBIENT VINYL CHLORIDE WITHIN A CLOSED TRAILER
rest Date 11/18/74
Resin 103EP
Lot Number
L2106 (bags) 1 skid 2 skids 4 skids 9 skids
L2107 1 skid 2 skids 4 skids 9 skids
AVCM PPm
4 15 29 12 and
6 26 35 16 and
RVCM ppm
144
Test Conditions
49F. unheatfed trailers Louisville
119
4/11/75
103EP
02195 9 skids
02195 02194 4 skids
02195 02194 4 skids
30 55F. unheated 1.5 trailers
Louisville 30 49 0
30 49
(5/8/75)
BFG37881
> <600
1f% I1 4OJ Cl
co
u40HO1*
1
-d
!u *o*
O 4J O (4 sf .-4
(4
Vi
d
>4)
I <"'
O CO O sf
m-t-
O
4)
o o <0 00 C vf M
O
o
mco
St r4 CO *-4
d d o oo
*4 OO
*d *oa 4c) Oo 40O) .0
>4 ~ f4n>4> C*>
T3 AJ
dm
M4(4)
St
<44
HO
Uo3 (4 40)
H 02
ao *d
*4 V
Sc3 4o4
J3 4O4
>N
IS
(A >
0c0 WV
rJ Vl d
*rdtf 4M1
ri-C-44d
>a 4) .Q> HOu
'4O4J) O
Th43)
4C0<3O00
Vi 4C<1dU
41 O 44
.np
O.
Om 4<40 35
co o sf 00
do
11 p>s &* &1
oo
o in m m m CM r* r*s V V VV
Of OF AVCM MONITORING IN PUBLIC WAREHOUSES. 1974
Dup
o o
sg
s&
n m N CM
o o
o o
Vv
m
00 CM
X o
o m
mo
0w4 cWu
COO COM COO
o as
5S
co 1*4
yo
o hJ
m ON
ON St
o CM
O H
mm
St st
n m
r* O o o
c:
o3 ^
Q0o .O<PU6
do ao O4 O41
ao3.
m
3
00
(9 >4 r4 <U
II
CO ^
ON
r4 00
St
00
44 Q.
44
Og
O
um
m
CX 53 3 2C 00
o. 3
3
<5 GO
00 m
44 fn o
a w
CM O H
m CO H r4 00 CM CM
44 CM O O 0
ON Sf NO O St O a CM vO 00 3 st O 00 o CO CO
CM co *t m CO
ON m
vO r-4
kJ M
O &0 o H 33 CJ
4) U
O<d Hu(a0>
<u 00 <d H V. O <U AJ aj CO to
4) CJ o Vi aj O co
sr-t
00
<4
d
H
rOH a i
0 c 4> H
<ti X
r4 d
<X
14-4)
H 3
o AJ O
(. (0
.
U
5S
UCO 4co)
fli B
3 O
> V4
3 42 o
co 41 .X
Co
o <tf i4
CJ 3 P2
sf IS.
BFG37882
L o t No. ____________ ppm____________ ______ ppm______ ______ ppm_____________ T e s t C o n d itio n s
S to ra g e
AVCM
Compound
RVCM
a
o
3
a V*
o>d 0i 4-1
p. .X <0 VS
d
o
U
4
ED 4)
ao
H 44
O O CM
3a* 0u (0 0J
O O
oo
0) OO
d
00 O Vi
n ,0 rM
>N 44
*o (0 >> H
<u 0 C X O t4
u
*r4
do
u3
O V >
4 r4
wO 44
44 4J
4J d
d uC
a r-4
4)
4) (A 4)
v4 (0
00 0. O >
p4 4J Vi
oU
O M r-l
C0
oO O
o 4)
A CM (4 <0
vO >
r- r*- o r-l O oo 00 V0
O o o oo
oo CM
r4 H
OH r-4 O H i-4
CM CM CO CO
OO
in m m r> r> n VW
mm r- rVV
m r>. \/
m in r. VV
in in r- r\/ V
mm r- r>. VV
o oom mm w r-4 r-l v
w,
i im
04 04 fl4 ww CO CO pL4 oow r*4 r-4 *-4
o
oo in m i--4 r-l
VV
11
P-. 04 wu CO CO oo i--4 r-4
o
in H
V
1
fu w CO o r4
-4 r-l O CM Ol
OO
Oo <m*
o
CO r-4
r*- ov
oo o <* o in
CO r-*
o o o
H CO CO CM 00 O CM CM
111 00 a\ <t
r-4 O CO
co cm in
CO 4 O CO CO
CM
*H H
CM CM
44 O O O1 1
NO rM
.oo
0.00 00
a3 oo 00
-
CM
44 O
O1 vO
o
0. 00
3 00 Q
cm <o m
o
m r-l
V"
1
cu
w CO o H
o m r-l
\/
1
04 w CO o i-4
oo
mm i--4 H
\/ V
m 1 1 CM
CU 04 \y ww CO CO oo i--4 H
oo in m
r-4 H
V N/
m 1 CM 1
V(S| 04 (tl w CO CO Oo H r-l
rs
CO
CM vO
CO r-
o o
OO
coo
M>
CO
o
CM CO
Oo
o
vO
r-* o ON
H
m -d* m oo
r-* co vf m ^
H lO
HN
CO <f fO fO O
r- m cm
o
sON
vO
H oo O CO
o CM
11
CO M*
00 ON
CO r*-
CO CO
CO
r4 co m
=*
44 O
i--l
O CM
1
00
co
CM
t
00 CM r-l
44 O
1--4 rH O f-ucMr*. O r-4 CM O CM
1 vt H 1
44
o
r--4 nn h -4 r-4
<NH <f
r-4 CM
vf
c a x
0. r-
ON r*
d o
CM x C H d 0. <t O O 00 o
0. o o o
fl) H) N3 CO co <u 3 CO CM 4) 00 41 3
OUHP
00
co
O
Q
00 r-l CD
O
Q
CM cO
<t m
vO CN
R e s in
RVCM
Compound
or
R esin______
Sample Number
Warehouse
Test Date
*3
a) a>
os 3
3S O *r4
J3 4J
a> d V4 o
du
rs ^
d <c
i-4 a> CJ
C os
ou
44
3 O
do
rl 0) d
i--1 Vi Vi
>d d 41
o
o
BFG37883
CO 41
t<o9
04
Test C onditions
AVCM
Storage
ppm
RVCM
Compound ppm
RVCM
R e s in
ppm
CO vO CO sfr
oo
m in
r* r-
VV
oin o>
H i--4
VV
II
w w04 04
<o o oo
m rco
o CM O CO
o r*.
.-4 f- CotM Oot
r-4 CO
ON CO <1* CO CM CO
00
Ol
o
o. 3 a
oco
L o t No.
Compound
or R e s in
Sample Number
Warehouse
T e s t Date
SIMMARY OF RESULTS OF AVCM MONITORING AT CUSTOMER PLANTS, 1974