Mechanistic study on NO reduction by sludge reburning in a pilot scale cement precalciner with different CO concentrations

An experimental study on the effects of CO 2 concentration on the release of reducing gases and the NO reduction efficiency by sludge reburning was carried out in a pilot scale cement precalciner. The results indicate that sludge reburning shows an ideal NO reduction activity. The best NO reduction...

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Published inRSC advances Vol. 9; no. 4; pp. 22863 - 22874
Main Authors Xiao, Xiang, Fang, Ping, Huang, Jian-Hang, Tang, Zi-Jun, Chen, Xiong-Bo, Wu, Hai-Wen, Cen, Chao-Ping, Tang, Zhi-Xiong
Format Journal Article
LanguageEnglish
Published 24.07.2019
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Abstract An experimental study on the effects of CO 2 concentration on the release of reducing gases and the NO reduction efficiency by sludge reburning was carried out in a pilot scale cement precalciner. The results indicate that sludge reburning shows an ideal NO reduction activity. The best NO reduction efficiency of 54% is reached when the CO 2 concentration is 25 vol%. Characteristic analysis of the sludge shows that the main types of reducing gases generated by sludge reburning are HCN, NH 3 , CO and CH 4 . Among them, CO 2 concentration plays a crucial role in the release of HCN, CO and CH 4 . The mechanistic study indicates that NO reduction is dominated by homogeneous reduction during the sludge reburning process, in particular the reducing gases of CO and NH 3 have significant influences on the NO reduction. Meanwhile, the effect of CO 2 concentration on NO reduction is mainly due to the difference in CO release. The results of the present study not only provide insight into the mechanism of NO reduction by sludge reburning, but could also contribute to the development of NO X removal technology in the cement industry. The reducing gases of CO and NH 3 produced by sludge reburning make a major contribution to NO reduction.
AbstractList An experimental study on the effects of CO 2 concentration on the release of reducing gases and the NO reduction efficiency by sludge reburning was carried out in a pilot scale cement precalciner. The results indicate that sludge reburning shows an ideal NO reduction activity. The best NO reduction efficiency of 54% is reached when the CO 2 concentration is 25 vol%. Characteristic analysis of the sludge shows that the main types of reducing gases generated by sludge reburning are HCN, NH 3 , CO and CH 4 . Among them, CO 2 concentration plays a crucial role in the release of HCN, CO and CH 4 . The mechanistic study indicates that NO reduction is dominated by homogeneous reduction during the sludge reburning process, in particular the reducing gases of CO and NH 3 have significant influences on the NO reduction. Meanwhile, the effect of CO 2 concentration on NO reduction is mainly due to the difference in CO release. The results of the present study not only provide insight into the mechanism of NO reduction by sludge reburning, but could also contribute to the development of NO X removal technology in the cement industry. The reducing gases of CO and NH 3 produced by sludge reburning make a major contribution to NO reduction.
Author Xiao, Xiang
Cen, Chao-Ping
Wu, Hai-Wen
Huang, Jian-Hang
Chen, Xiong-Bo
Tang, Zi-Jun
Tang, Zhi-Xiong
Fang, Ping
AuthorAffiliation Ministry of Ecological Environment of P. R. China
The Key Laboratory of Water and Air Pollution Control of Guangdong Province
South China Institute of Environmental Science
AuthorAffiliation_xml – name: South China Institute of Environmental Science
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  givenname: Zhi-Xiong
  surname: Tang
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Title Mechanistic study on NO reduction by sludge reburning in a pilot scale cement precalciner with different CO concentrations
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