Document ZJjzG86YpLaap6QJ6aqO4BBMd
SURVEY REPORT UN I ROYAL CHEMICAL
1. DISCHARGER IDENTIFICATION
PI ant:
Uni royal Chemical Division of Uniroyal, Inc.
P. 0. Box 460 Painesville, OH 44077 AC 216-357-7574
Corporate:
Uni royal, Inc. Oxford Management and
Research Center Middlebury, CT 06749
AC 203-573-2387
Receiving Waters; Grand River
NPDES Application Number: OH 070 0X2 2 000 118
NPDES Permit Number; OH 0000353 (not issued)
Responsible Officials:
Plant: Benton R. Leach, plant Manager
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Corporate: . Robert C. Niles, Director, Environmental Control
2; DATES OF SURVEY- May 6-7, 1974
3. :PAKT-TCTPANTS
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Uniroyal Walter M. Iliff, Plant Engineer
. . Raymond W. Kenney, Utilities Engineer
Ohio EPA Notified but did not participate
US EPA Martin G. Trembly Philip E, Gehring Charles J. Beier Joseph S. Good Charles E. Ilenricks
Harold J. Henris Roland J. Hartranft
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4. DESCRIPTION OF FACILITIES
A. Description of Discharger Uniroyal's Painesville facilities produce PVC by sus
pension and emulsion polymerization, and nitrile rubber (tutadiene-acrylonitrile copolymer). Nitrile rubber and PVC are also compounded to produce an ozone-resistant rubber.
Volume of production is about 342,000 pounds of PVC and 82,000
pounds-of nitrile rubber daily.
Raw materials include butadiene, acrylonitrile, and vinyl chloride monomer, which is received by rail. Various suspend ing agents (soaps) and coagulants such as acetic acid-brine solution, alum, magnesium sulfate, and others, are also classi fied as raw materials. Process water is purchased as raw lake
water from Diamond Shamrock, and filtered, demineralized and softened at Uniroyal. Other potable water is purchased from the City of Painesville.
Present employment at Uni royal is about 450 persons,
350 of which are hourly workers. Operations are on an around-
the-clock basis.
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Sanitary wastes are treated in two trickling filter
systems, which are operated only when the accumulated volume
of sanitary wastewater warrants their use.
B. Process Description
The Uniroyal facility is divided into two separate pro
duction areas - Area 1 and Area 4, Area 1 contains 27 kettle
reactors for both emulsion and suspension polymerization of PV
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In emulsion polymerization vinyl chloride monomer, water, and
.various plasticizers and suspending agents are reacted for
8 to 10 hours and the contents are sent to concentrator tanks
wherein the volatile vinyl chloride is removed. The PVC is
then spray-dried, ground to a finer particle size, and packaged,
most frequently in bags.
Water discharges from the emulsion polymerization areas
result'from three processes; jacket cooling of the reactors,
cleaning of reactors, and zeolite regeneration. Uni royal is
presently closing the reactor cooling system such that there
is to be no cooling water discharge within a few months (June
197*0- Physical reactor cleanout is done, most often by hand,
normally after every fifth batch. The company' is also experi
menting with tetrahydrofuran (THF) dissolution of reactor
deposits. With this system, the tank is washed with THF and
the THF is flashed off from the solids and reused.
Additional waste may be expected from blowdown from
concentrator tanks and releases of faulty batches from the
kettles.
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Formerly, all wastes from Area 1 were discharged to a
ditch on the west end of Uniroyal property, directly to
Grand River along with sanitary effluent. Presently, these
wastes are sent to a combined treatment system. According
to Uni royal personnel, the only discharge directly to Grand
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River from Area 1 at present is storm runoff.
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Area 4 includes the suspension PVC polymerization and nitrile rubber processes. In suspension polymerization of PVC, vinyl chloride and water are mixed and heated until a reaction is sustained. After about ten hours, the contents of the reactor vessels are pumped to slurry tanks in which vinyl chloride monomer is pulled off. The slurry is then centrifuged, the solid PVC being air dried, while the centrifuged water is discharged to a sewer system leading to the treatment area. Reactor cleanout wastes and defective reaction mixes also go to this sewer. A closed cycle system is employed for process cooling with blowdown being discharged to a sewer leading to the treatment system.
Nitrile rubber is formed by mixing butadiene and acrylo nitrile in 10,000 gallon reactors, along with various emulsifiers, for about 20 Hours. The resultant product is an emulsion containing crumb rubber, which Is pumped to 20,000 gallon blowdown tanks, the added capacity being necessary to accommodate large quantities of foam generated in the pumping process. Butadiene is flashed off in the 'blowdown tanks, and acrylonitrile is recovered using steam in a packed column and reused. Recovered ] butadiene is shipped out of the plant by rail for repurification.
The emulsion is pumped to blend tanks for equalization and then to a finishing line, in which coagulants are added to increase crumb size. The most common coagulants used are "salt acid" (brine-acetic), alum, magnesium sulfate, calcium chloride, and barium chloride. The choice of coagulant depends on the char acteristics of the rubber being made.' Wastewater originates
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in the finishing line and from boiler blowdown, zeolite re
generation, reactor cleanout, and raw material or product
spills. Reactor cleanout occurs approximately once per year.
Storm water drainage from Area 4 is directed to the 48"
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sewer which.runs along the eastern boundary of Uni royal
property. According to the company, there is no other water
discharge to the 48" sewer, except the sanitary effluent from
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this Area.
Procfess water from both Areas 1 and 4 flows through sumps
in the respective areas, which act as primary solids traps.
Partially polymerized defective batches which'are dumped are
effectively caught in these traps and removed manually by
laborers and hauled away to landfill. Process wastewaters
from Areas 1 and 4 combine and flow to the treatment system.
C. Waste Treatment Facilities
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The process waste treatment system was started up.in August
1971. V/astes enter an equalization lagoon at a rate of about
' J .5 mgd and a pH of 4 to 5X The capacity of the lagoon is be
tween 20 and 25 million gallons, although the water level is
held at about 5 million gallons under normal operation. Accord-
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ing to Uni royal, the equalization lagoon will provide about two
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weeks of holding capacity should the rest of the treatment system be shut down.
Three pipes laid lengthwise in the pond pick up equalized
liquid waste at various points in the lagoon and direct this
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water to a chemical addition facility in which lime is added 8 6ENC 012<593
to bring the pH to the range of 9 to 10, and then alum and
polyelectrolyte are added in four mix tanks to facilitate settling. The mixture is pumped to a flocculator-clarificr at a
rate of 800 to 1,000 gpm at normal operation. Higher flow-
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through rates may be expected if the system has been shut down and must handle additional accumulated wastewater.
Clarifier sludge is continuously pumped to one of a pair of sludge lagoons (sand beds), both with-overflow drains for super natant water, which discharge to the same ditch to Grand River
which receives clarifier effluent. However,problems in sludge settling and collection in the clarifier are evident. The company is experimenting v/ith different chemicals and/or dosing
rates to aid settling in the clarifier, but due to the low density of the sludge, it ?s extremely difficult to achieve adequate settling. Clarifier sludge and some other solid wastes are disposed of in a private disposal area across Route 535
`\ * from Uniroyal. Other PVC-containing solid wastes are hauled to a landfill near Kirtland, Ohio by Geauga Disposal Company.
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Separate trickling filter systems treat sanitary wastes
v from Areas 1 and 4. Neither effluent is disinfected. * The
sanitary system discharge from Area 1 enters the west drainage ditch, while the effluent from Area 4 is discharged to the 48" sewer. 5. DESCRIPTION OF SAMPLING PROGRAM A. Sampling Locations
Composite samples from 1130 EDST on Hay 6 to 0930 EDST on
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Hay 7, 1974, were obtained from Outfalls 001 (Plant 1 drainage
ditch), and 002 (main outfall), and the intake pump house.
Samples were withdrawn every two hours and composited accord
ing to flow at Outfall 002, and equal-volume composited at
the intake and Outfall 001. In addition, a grab sample of
water overflowing from a clarifier sludge holding lagoon was
obtained. *
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, Solid waste samples were obtained as follows:
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1. Clarifier sludge from south sludge holding lagoon.
2. Clarifier sludge and other solid wastes in a company
disposal area across Route 535 from the plant.
3. Sample of "off-grade PVC, reactor scale, and other
solid PVC wastes from a disposal bin in Area 1 of
the plant. These wastes are removed by Geauga Dis
posal Co. and hauled away to a landfill near Kirtland,
Ohio. The.sample was dry upon collection.
4. Floating residue from a settling pit for reactor clean
out and cooling water in Area 1.- This residue goes
partly to the treatment system and partly to a landfill
via Geauga Disposal Co.
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5- Sample from a waste bln containing nearly dry ."off-
grade PVC resin at Area 4, This is also hauled away
by Geauga Disposal,
6. Clarifier sludge from the north sludge holding lagoon.
Data ore presented in this order in Table 1.
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B. Methods Statement
Throughout this survey, standard USEPA Region V sampling,
preservation, and custody methods v/ere followed. Analyses
were performed by the Region V' Central Regional Laboratory.
C. Discharger Participation
Una*royal chemical personnel were very cooperative in
directing the MODO sampling crews to the proper sampling loca
tions. The company did not obtain split samples for purposes
of comparison.
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6. GENERAL CONDITIONS
Plant operations during this survey were normal. At Cleveland
Hopkins Airport, approximately 38 miles southwest of the plant site,
weather conditions for the survey dates are summarized below;
High Temp.
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Low Temp.
Precipitation (inches)
5/6/74
hi
33. ' 0.48
5/7/74 49
. 30 0.01
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Strong northwest winds predominated during the survey. Rain-
fall on these dates may be expected to have diluted plant waste-
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waters in Outfall 001, as storm drains are connected to this dischargeV fr
. point. However, the main treatment system outfall (002) was not
appreciably affected by the precipitation.
7. DISCUSSION OF RESULTS
A. Wastewater
, As expected, the background level of vinyl chloride in
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Lake Erie Intake water was undetectable. Based on the waste-
water analysis results (Table 1), it appears that significant
amounts of vinyl chloride are entrained in water which has been
in contact with finished resin. Outfall 001, which contains
Indirect cooling water, shows no detectable VC, whil'e Outfall 002,
which discharges treated reactor cleanout and centrifuge wastes,
contains a significant concentration of vinyl chloride. On
Hay 6-7, about 34 pounds of monomer were discharged. It is not
possible, however, to determine whether this VC is dissolved in
water or contained within suspended solids particles. If further
sampling is to be done, this should be evaluated by analyzing both
filtered and not filtered samples,
* . A'significant concentration of VC is also discharged at the
sludge holding lagoons. This is not surprising since fine PVC
particles make up the bulk of the clarifier sludge contained in
the lagoons. However, the loading is relatively low compared to
Outfall 001 based upon flow rates.
B.7, Sol Id Wastes
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Fresh residue from the reactor cleanout process and from floor
washings yielded the highest concentration of vinyl chloride.
Relatively high concentrations were also found in "old" solid
waste taken from a company landfill area, and in dry waste which
is hauled away by private contractor to an outside landfill. Negli
gible amounts appeared in this company's treatment system sludge. It should be noted, however, that Uniroyal Chemical has experienced
chronic, problems with adequate sludge settling in their clarifier
system.
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Generally, these data indicate that "old" solid wastes generated by this PVC facility are not necessarily innocuous. Landfilling of these wastes may not be an acceptable final disposal method, as vinyl chloride continues to be given o^f for weeks or months.
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DISCHARGER: UNI ROYAL CHEMICAL PAIHESVILLE, OHIO
TABLE 1
Source
Sample Type
Sample Date Sample Time(EDST) - Flow (MGD)
Vinyl Chloride Concentration Loading
V.'a s t cwa t er
Intake Outfall 001 Outfall 002 (main) Sludge lagoon overflow
24C 24 C 24C
G
5/6-7/74 5/6-7/74 5/6-7/74
5/6/74
1130-0930 1130-0930 1130-0930
1400
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0.288(est)
1.103 -
<200 yg/1 <200 yg/1 3700 yg/1 1100 yg/1
#/day
v-n
Sol id Wastes
South sludge lagoon (2) Company dtsposal area (3) Area 1 waste bin (2) Area 1 settlIng pit (1) Area 4 waste bin (2) North sludge lagoon (2)
G G G
G G G
5/6/74 5/6/74 5/6/74 5/6/74 5/6/74 5/7/74
14 yg/g 2140 yg/g
620 yg/g 3520 yg/g 1340 yg/g
9 yg/g
00LZW H39
Notes: 1. Composite types - 24C = 24-hcur composite
G = Grab
.2 Relative solid waste ages
1. Fresh (Two hours or less)
.2 Intermediate (Several hours to several, days)
3. Old (Several weeks to several months)