Literature DB >> 12831044

Application of pulsed corona induced plasma chemical process to an industrial incinerator.

Yong-Hwan Lee1, Won-Suk Jung, Yu-Ri Choi, Jong-Seok Oh, Sung-Duck Jang, Yoon-Gyu Son, Moo-Hyun Cho, Won Namkung, Dong-Jun Koh, Young-Sun Mok, Jae-Woo Chung.   

Abstract

Pulsed corona induced plasma chemical process (PPCP) has been investigated for the simultaneous removal of NO(x) (nitrogen oxides) and SO2 (sulfur dioxide) from the flue gas emission. It is one of the world's largest scales of PPCP for treating NO(x) and SO2 simultaneously. A PPCP unit equipped with an average 120 kW modulator has been installed and tested at an industrial incinerator with the gas flow rate of 42 000 m3/h. To improve the removal efficiency of SO2 and NO(x), ammonia (NH3) and propylene (C3H6) were used as chemical additives. It was observed that the pulsed corona induced plasma chemical process made significant NO(x) and SO2 conversion with reasonable electric power consumption. The ammonia injection was very effective in the enhancement of SO2 removal. NO removal efficiency was significantly improved by injecting a C3H6 additive. In the experiments, the removal efficiencies of SO2 and NO(x) were approximately 99 and 70%, respectively. The specific energy consumption during the normal operation was approximately 1.4 Wh/m3, and the nanopulse conversion efficiency of 64.3% was achieved with the pulsed corona induced plasma chemical process.

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Year:  2003        PMID: 12831044     DOI: 10.1021/es0261123

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  2 in total

1.  Removal dynamics of nitric oxide (NO) pollutant gas by pulse-discharged plasma technique.

Authors:  Lianshui Zhang; Xiaojun Wang; Weidong Lai; Xueliang Cheng; Kuifang Zhao
Journal:  ScientificWorldJournal       Date:  2014-03-05

2.  Simultaneous Removal of NO x and SO2 by MgO Combined with O3 Oxidation: The Influencing Factors and O3 Consumption Distributions.

Authors:  Yang Zou; Xiaolong Liu; Tingyu Zhu; Mengkui Tian; Maoyu Cai; Ziwei Zhao; Heng Wu
Journal:  ACS Omega       Date:  2019-12-04
  2 in total

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