Title of article
Hazardous air pollutant emissions from gas-fired combustion sources: emissions and the effects of design and fuel type Pages 745-764 Glenn C. England, Thomas P. McGrath, Lee Gilmer, James G. Seebold, Miriam Lev-On, Timothy Hunt Close Close preview |
Author/Authors
Glenn C. England، نويسنده , , Thomas P. McGrath، نويسنده , , Lee Gilmer، نويسنده , , James G. Seebold، نويسنده , , Miriam Lev-On، نويسنده , , Timothy Hunt، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2001
Pages
20
From page
745
To page
764
Abstract
Air emissions from gas-fired combustion devices such as boilers, process heaters, gas turbines and stationary reciprocating engines contain hazardous air pollutants (HAPs) subjected to consideration under the federal clean air act (CAA). This work presents a recently completed major research project to develop an understanding of HAP emissions from gas-fired boilers and process heaters and new HAP emission factors based on field emission tests of gas-fired external combustion devices used in the petroleum industry. The effect of combustion system design and operating parameters on HAP emissions determined by both field and research tests are discussed. Data from field tests of gas-fired petroleum industry boilers and heaters generally show very low emission levels of organic HAPs. A comparison of the emission data for boilers and process heaters, including units with and without various forms of NOx emission controls, showed no significant difference in organic HAP emission characteristics due to process or burner design. This conclusion is also supported by the results of research tests with different burner designs. Based on field tests of units fired with natural gas and various petroleum industry process gases and research tests in which gas composition was intentionally varied, organic HAP emissions were not determined to be significantly affected by the gas composition. Research data indicate that elevated organic HAP emission levels are found only under extreme operating conditions (starved air or high excess air combustion) associated with poor combustion.
Keywords
Emission factors , Process heaters , POLYCYCLIC AROMATIC HYDROCARBONS , Aldehydes , volatile organic compounds , boilers
Journal title
Chemosphere
Serial Year
2001
Journal title
Chemosphere
Record number
735361
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