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Main Title Relationship between CO, POHC, and PIC Emissions from a Simulated Hazardous Waste Incinerator.
Author Staley, L. J. ; Richards, M. K. ; Huffman, G. L. ; Olexsey, R. A. ; Dellinger, B. ;
CORP Author Environmental Protection Agency, Cincinnati, OH. Risk Reduction Engineering Lab. ;Dayton Univ., OH. Research Inst.
Publisher c1989
Year Published 1989
Report Number EPA/600/J-89/258;
Stock Number PB90-185174
Additional Subjects Hazardous materials ; Incinerators ; Waste disposal ; Combustion products ; Continuous sampling ; Organic compounds ; Carbon monoxide ; Combustion efficiency ; Performance evaluation ; Reaction kinetics ; Chlorohydrocarbons ; Design criteria ; Byproducts ; Experimental design ; Concentration(Composition) ; Reprints ; Air pollution sampling ; Toxic substances
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NTIS  PB90-185174 Some EPA libraries have a fiche copy filed under the call number shown. 07/26/2022
Collation 9p
Abstract Measurements conducted on full-scale hazardous waste incinerators have occasionally shown a relationship between carbon monoxide (CO) emissions and emissions of toxic organic compounds. In the study, four mixtures of chlorinated methane (C1) and ethane (C2) hydrocarbons were diluted in commercial-grade heptane and burned in a water-cooled Turbulent Flame Reactor under two different excess air levels. No correlation between CO and organic emissions could be discerned. Reasons for this lack of observable correlations are discussed in terms of combustion and chemical reaction kinetic theory. (Copyright (c) 1989, Air and Waste Management Association.)
Supplementary Notes Pub. in Jnl. of the Air Pollution Control Association, v39 n3 p321-327 Mar 89. Prepared in cooperation with Dayton Univ., OH. Research Inst.
NTIS Title Notes Journal article.
Title Annotations Reprint: Relationship between CO, POHC, and PIC Emissions from a Simulated Hazardous Waste Incinerator.
Category Codes 68A; 68C; 81A; 99F
NTIS Prices PC A02/MF A01
Primary Description 600/14
Document Type NT
Cataloging Source NTIS/MT
Control Number 011721522
Origin NTIS
Type CAT