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STATEMENT BEFORE PUBLIC HEARING OF
WAYNE COUNTY AIR POLLUTION CONTROL AGENCY
REGARDING INCINERATION OF LIQUID PCBS -
AT PEERLESS CEMENT COMPANY ---
DETROIT, MICHIGAN
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AUGUST 2, 1977
xMy name is Alan S. Corson. I'm a Program Manager in
the Office of Solid Waste, U.S. Environmental Protection
Agency. Our office is responsible for providing guidance
for effective management of solid wastes and, under the
recently adopted Resource Conservation and Recovery Act,
establishing a regulatory program for the management of
hazardous wastes. Also, I am a member of the Agency's
working group on PCBs, and chaired the disposal subcommittee
of that group. ' - Polychlorinated biphenyls (PCBs) are chlorinated aro
matic organic compounds which give rise to concern because
of their chronic toxicity, their pervasiveness and per
sistence in the environment, and their tendency to accumulate
in food chains. It is the combination of these characteristics which
cause the present and continuing concern over the dispos
ition of PCBs to the environment.
The chemical properties that make PCBs desirable 0
industrial materials are their excellent thermal stability,
their strong resistance to both acidic and basic hydrolysis,
and their general inertness. They are quite resistant to
oxidation. Unfortunately, soma of the characteristics
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2 (stability, nondegradability) which make PCBs so valuable-"
in industrial applications also make them' highly persistent
in the environment.
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PCBs are not intended to get into the environment, but they do because their unique chemical properties pre
vent them from being destroyed by usual waste treatment
methods. Thus, they inadvertently escape and become widely
dispersed.
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As part of our ongoing activities in the Office of Solid
Waste, we have been investigating incineration and other
treatment methods for effective control or neutralization of bothersome (or potentially hazardous) wastes. We have also conducted some full-scale demonstrations of incineration
techniques for various wastes. Based on these investigations
we consider high temperature incineration to be the primary disposal method for PCBs. This disposal method is the only
technique that will result in the destruction of PCBs and
prevent the eventual esdape Of the chemical to-the environment.
Proper incineration of PCBs involves a suitable balance
among combustion temperatures in the incinerator, dwell time of the waste materials and combustion products in the fir
ing chamber, and oxygen exposure. Investigations into
incineration requirements by industry and government repre
sentatives under the auspices of the American National
Standards Institute (ANSI) resulted in ANSI recommendations
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for the incineration of liquid PCB chemical substances and mixtures. These recommendations have been adopted in the proposed regulation for disposal of PCBs, issued by EPA in the Federal Register on May 24, 1977. Previously these had been issued by EPA on April 1, 1976, as guidance. The recommended requirements, based on the use of commercial industrial incinerators, are: 2-second dwell time at 1100 C (2000 F) and 3 percent excess oxygen in the stack: or 1-1/2 second dwell time at 1500 C (2700 F) and 2 percent excess oxygen in the stack gas. Open hearth and other incinerators used for municipal refuse incineration are not normally suitable; the relatively low operating temperature of such equipment would only volatilize the PCBs and pollute the atmosphere. In addition, instrumentation and handling equipment are usually not sufficient for managing hazardous materials. Therefore, PCB-containing waste should not be sent to such municipal incinerators for disposal.
However, we have recognized that other techniques for incineration might be equally effective in accomplishing our dual objective--destruction-of the PCBs-and protection of the environment. This leads to a brief disucssion of the program (in which we participated) conducted by the Environmental Protective Service in Canada.
Chlorinated hydrocarbon wastes were burned in a care fully controlled experimental trial as a partial fuel at
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the St. Lawrence Cement. Co., Mississauga, Ontario. - The experiment was conducted to determine whether chlorinated hydrocarbon wastes could be burned in a cement kiln without adverse effects on air pollution levels.
The wastes used included a variety of chlorinated hydrocarbons in the series of program phases designed to progress from easily combusted chlorinated hydrocarbons to those which are combusted only with difficulty. The last phase consisted mainly of polychlorinated biphenyl wastes.
Atmospheric emission measurements were made before, during and after the burning of each blend of chlorinated waste. Two methods of emissions sampling were used during each phase, the method normally used for measuring emissions of particulate matter, and a sampling train designed specially for determining emissions of organic material. All samples from both systems were analyzed for unburned chlorinated hydrocarbons. It was concluded that the combustion efficiency was at least 99.986 percent for the chlorinated hydrocarbons. Approximately 50 ppb of volatile.low molecular weight com pounds were found in the emission samples. There were no detectable quantities of high molecular weight chlorinated compounds in the stack gases.
A mass balance was carried out on chlorine and potassium. This showed that the chlorine input as chlorinated hydro carbon was completely reacted with the process solids.
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The alkali content of the clinker showed a reduction ? which corresponded exactly with the quantity of chlorine^'^
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input to the system. This agreement further confirms the
data from emission testing and the mass balance.
While burning chlorinated hydrocarbons with approxi- '
mately 40 percent chlorine, a decrease in oil consumption
equivalent to 65 percent of the BTU content of the chlorin
ated hydrocarbons was obtained.
The only differences in the quality of--clinker produced
while burning chlorinated hydrocarbons were the beneficial
effects which were expected through the reduction in alkali
content.
It was concluded that chlorinated hydrocarbon wastes
may be used in cement kilns, replacing other forms of chlorine
used for reduction of alkali content. A small proportion
of fossil fuel required for cement manufacture is conserved
through use of these materials. Burnina chlorinated hydro
carbon wastes is considered a valuable means of destroying
persistent and toxic forms of pollutants while recovering
useful heat values.
In summary, our position at EPA may be stated as:
.1) PCBs should be destroyed whenever practical.
.2) Incineration is the only demonstrated technique
for destruction of PCBs.
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.3) operating characteristics for incineration have
been established and verified.
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^ -l .4) A cement kiln operates, and can be controlled to
maintain operation, with the required character
istics to destroy PCBs without the introduction
of increased PCBs to the environment.
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