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Sulfur oxides emissions, control technologies

EPA, 1981. U.S. EPA, Office of Air Quality Planning and Standards, "Control Technologies for Sulfur Oxide Emission from Stationary Sources," Second Edition, Research Triangle Park, NC, April, 1981. [Pg.493]

Air Pollution. Particulates and sulfur dioxide emissions from commercial oil shale operations would require proper control technology. Compliance monitoring carried out at the Unocal Parachute Creek Project for respirable particulates, oxides of nitrogen, and sulfur dioxide from 1986 to 1990 indicate a +99% reduction in sulfur emissions at the retort and shale oil upgrading faciUties. No violations for unauthorized air emissions were issued by the U.S. Environmental Protection Agency during this time (62). [Pg.355]

U.S. Department of Energy, Clean Coal Technology Topical Reports. (1999). Technologies for the Combined Control of Sulfur Dioxide and Nitrogen Oxides Emissions from Coal-Fired Boilers. Report No. 13 (May). Washington, DC U.S. Government Printing Office. [Pg.449]

The process will adversely affect air quality by releasing nitrogen oxides, sulfur oxides, carbon monoxides and other particulates into the atmosphere. Better control of the conversion conditions and better control of emissions can make the process cleaner, yet technology cannot do anything to curb carbon emissions. Since much of the carbon in coal is converted to carbon dioxide in the synthesis process, and is not part of the synthetic fuel itself, the amount of carbon dioxide that will be released to the environment during combustion is 50 to 100 percent more than coal, and around three times more than natural gas. [Pg.1117]


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Control oxidation)

Control technology

Controlled oxidation

Controlled-emission technology

Emission control

Emission controlling

Oxidant-controlled

Oxidation technologies

Sulfur control

Sulfur emissions

Sulfur oxide

Sulfur oxides emissions, control

Sulfur oxides oxidation

Sulfur oxidized

Sulfur oxidizer

Sulfurous oxide

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