Destruction of Trichloroethylene in a Two Stage Molten Salt Oxidation Reactor System
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概要
- 論文の詳細を見る
The destruction of trichloroethylene (TCE) was studied in a bench-scale two-stage molten salt oxidation (MSO) reactor system under oxygen-rich conditions from 1023 to 1173 K, with varying gas residence times from 0.95–1.38 s. Traces of some chlorinated organics such as C2H4Cl2, C6H4Cl2 and C6H5Cl were found as by-products during low-temperature test runs (1023 K and 1173 K). However, the major product of an incomplete combustion (PIC) was found to be carbon monoxide (CO), of which emissions were greatly reduced by the increase in the reactor temperature. Destruction and removal efficiency (DRE) of 99.999972–99.999999% and chlorine retention efficiency (CRE) of 99.9985–99.9996% were achieved during TCE destruction. The results of this study suggest that the MSO technology is a more promising technology for the control of TCE emissions from industrial cleaning processes, when compared with other currently applicable technologies.
- 社団法人 化学工学会の論文
- 2008-07-01
著者
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Eun Hee-chul
Department Of Nuclear Fuel Cycle Process R&d Korea Atomic Energy Research Institute
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Yang Hee-chul
Department Of Nuclear Fuel Cycle Process R&d Korea Atomic Energy Research Institute
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Kang Yong
Department Of Dermatology Seoul National University College Of Medicine
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CHO Yong-Zun
Department of Nuclear Fuel Cycle Process R&D, Korea Atomic Energy Research Institute
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Kang Yong
Department Of Chemical And Biological Engineering Korea University
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Cho Yong-zun
Department Of Nuclear Fuel Cycle Process R&d Korea Atomic Energy Research Institute
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Kang Yong
Department Of Anatomy
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Kang Yong
Department Of Chemical Engineering Chungnam National University
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