Document 8V8O3xDoEak6bM2w3GaqGv1MZ
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Interoffice Communication
To "OSHA - Engineering and Work Control Plan" File
From
J. P. Warner
Date October, 1977
Subject
UPDATE OF ENGINEERING AND WORK PRACTICE CONTROLS PLAN
Attached is an update of this Plant's engineering and work practice controls plan for complying with the OSHA VCM Exposure Standard. This update is in the form of a Status Report keyed to the exposure sources listed in the April, 1975, plan (copy attached).
All work practice controls have been implemented and significant progress has been made on most of the engineering controls. Currently, however, we are having to rely on breathing air to limit the VCM exposure from some exposure sources.
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0. P. WARNER Process Engineer CONOCO Chemicals Oklahoma City Chemical Plant
APPROVED:
RALPH T. FERRELL Plant Manager CONOCO Chemicals Oklahoma City Chemical Plant
JPW-spt Attachment CC: (RTF-File), AWS, DEM, RAF, JAW, JWW
000010508
CCR
STATUS REPORT - OCTOBER, 1977 UPDATE OF ENGINEERING AND WORK CONTROLS PLAN FOR COMPLIANCE WITH OSHA VCM EXPOSURE STANDARD
CONOCO CHEMICALS OKLAHOMA CITY CHEMICAL PLANT
EXPOSURE SOURCE 1. Residual monomer in slurry and resin.
2. Obtaining and handling samples.
3. VCM railcar unloading. o yno o o booUi
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STATUS
1. All batches are routinely being steam stripped. The stripping operation has reduced VCM residual in the slurry to such a low level that it was possible to deregulate the dryer building. In addition, the Plant is air purging the slurry blend tanks to further reduce the VCM in the dryer feed.
2. a. After evaluation of current sampling programs, our existing lab hood space was found to be adequate.
b. Work practice controls have essentially eliminated worker exposure from this source. Several preliminary designs for a closed reactor sampling system have been tested. Design work for a permanent system has been started.
c. The advent of steam stripping of all reactor batches and air purging of the slurry blend tanks has eliminated dryer line sampling exposure problems.
3. Work practice controls have essentially eliminated employee exposure to VCM from this source. A design to significantly reduce VCM releases when unloading railcars has been completed and is being tested at one unloading site.
EXPOSURE SOURCE 4. Chem wash screener.
5. Reactor rinse after dump.
6. M-500 dryer exhaust.
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7. *A11 rotary seals, fexible hoses, pipe unions, and flanges, valve stems and swivel joints which are in low or high concentration VCM service.
STATUS
4. Steam stripping has significantly reduced exposure resulting from this source. Different steam stripping operating conditions are being investigated to determine their effect on residual VCM in the slurry and reactor vapor space. Information learned from these tests will be adopted into the Plant operating procedures.
A Plant test run on a new reactor cleaning system was completed in June, 1977. This system was no more effective than the existing cleaning system.
5. The initial rinse is now going to the sewer. This is done to minimize VCM at the slurry dump screener since the dump screener has a higher potential for VCM exposure.
6. Steam stripping has lowered the total VCM to the dryers by such a great amount that revisions to the exhaust stacks are not necessary.
7. Problems with fixed point monitor system located in the reactor area of the Plant has been greatly reduced due to a maintenance/training program set up with the manufacturer. The second fixed point monitor freed from the dryer building is in the process of being relocated to the reactor area. Both systems are being tied into a computer monitor which will allow continuous monitoring of the regulated areas. These changes will increase our capabilities to locate VCM leaks.
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*The frequency of the extensive leak check has been reduced.
This is due to finding few and small leaks during previous checks.
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EXPOSURE SOURCE
8. Opening and working on equipment or piping which may contain VCM in low or high concentrations.
STATUS
8. Specified work practices are being followed. Electropolished internals, continuous flushes of the reactor chem wash spray nozzles, and new spray nozzles have greatly reduced the need to open and clean the reactors. A system to reduce plugging in recovery systems by the injection of hydroquinone has been installed.
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jpQSURE SOURCE j Residual monomer in
slurry and resin.
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ENGINEERING AND WORK PRACi*0E CONTROLS PLAN FOR COMPLIANCE WITH OSHA VCM EXPOSURE STANDARD
CONOCO CHEMICALS OKLAHOMA CITY CHEMICAL PLAINT
April, 1975
WORK PRACTICE CONTROLS
ENGINEERING CONTROLS
1.' Design and install equipment re quired for steam stripping the slurry. Essentially all processing equipment downstream of the poly merization reactors is designed for atmospheric pressure and there fore open to the atmosphere.
# Processing slurry or resin in this equipment causes the emission of unreacted VCM which can lead to exposures above lppm. Plant tests have shown that steam stripping before dumping -to the blend tanks substantially reduces the concen tration .vof VCM in the slurry. Thus, the amount of VCM available for emission from the open proc essing equipment will be greatly reduced by steam stripping and
./ exposure problems will be minimized. In particular, exposures at the
dump screener, chemical wash screener: blend tanks-, centrifuges, dryers; resin screeners and resin loading areas will be decreased and residual VCM';in rosin product leaving the plant will be decreased.
EXPOSURE
P.. Obtaining and handling
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, VCM rail car unloading
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WORK PRACTICE CONTROLS 2. Wear personnel protection
equipment wich meets OSHA * standards when sampling reactors, slurry, wet cake, or resin.'
3. Wear personnel protection equipment which meets OSHA
standards while at the un loading rack during car hook up and disconnect.
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ENGINEERING CONTROLS
2. a) Install a new laboratory hood t provide more work and storage space for slurry and reactor samples.
b) Prepare an engineering design' for a closed reactor sampling system. Samples obtained durir the early part of reaction contain high concentrations of VCM. By enclosing the reactor sampling system, exposure in th reactor area will be decreased
because VCM will not be emitted from the sample in the working area.
c) Prepare an engineering design for an improved resin sampling system at the M-500 dryer.
3. Prepare an engineering design to install glasses in unloading lines and rearrange valving at the un loading racks. Installation of sight glasses will eliminate venting to the atmosphere when determining liquid to vapor transition < at.the end of un loading. Rearrangement of valving will minimize the volume vented
during disconnect.
{EXPOSURE SOURCE 14, Chemical wash screener
WORK PRACTICE CONTROLS
ENGINEERING CONTROLS
4, Design and install an enclosure and vent system for the chemical wash screener similar to the system on the dump screener.
5. Reactor rinse after dump.
5. Transfer the effluent' from the initial water rinse after reactor dump to the dump system and eliminate transfer to the sewer.
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3, 11-500 dryer exhaust. i
6, Prepare an engineering design to elevate the stack for the M-500
* dryer exhaust, currently, M-500 exhausts at the loading rack level which leads to exposure problems under certain wind conditions. Stack elevation will eliminate this problem.
r, All .rotary seals, . flexible-.-. hoses, pipe unions and flanges, valve stems and swivel joints which are in low or high concentration VCM service.
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7. At least once per month,
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measure VCM concentrations at
all hoses, flanges, unions,
seals, valve stems and swivel
joints in low or high concen-
tration VCM service. Repair or
replace leakers on-the-spot,
where necessary. List other
leakers for repair or replace
ment on the maintenance schedule.
The fixed point monitor will detect the occurrence of relatively Large
leaks which will be attended
immediately.
jrPOSURE SOt'Rud
,.
j, Opening and working on | equipment or piping which ; may contain VCM in lov; or ; high concentrations.
WORK PRACTICE CONTROLS
ENGINEERING CONTROLS
8. a) Before opening/ remove VCM from equipment or
8. Install electropolished internals in all reactors. Plant experience
piping to the lowest practical level by flushing,
has shown that the frequency of reactor entries for cleaning is
purging and/or evacuation# where possible,
decreased when electropolishcd internals are used. This is due to a decrease in polymer build
b) Wear personnel protection
up on electropolished internals
equipment which meets OSHA
as compared to the build-.up on
standards when opening equip other internals. The plant has
ment or piping which may contain VCM. c) Before commencing repair work, measure the VCM concentration in or near opened equipment
five sets of internals. Two sets are electropolished and installed. One set is at the shop for electropolishing. The other two sets will be electropolished
or piping to determine what
when they can be switched out.
protective equipment is
required and if further VCM
removal should be attempted.
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