JOURNAL ARTICLE

Oxidation‐separation kinetics of nitric oxide from flue gas using ferrate (VI) reagent in a spraying reactor

Wei YangYangxian LiuWen XuQian WangZhao LiangJianfeng Pan

Year: 2017 Journal:   The Canadian Journal of Chemical Engineering Vol: 95 (7)Pages: 1364-1372   Publisher: Wiley

Abstract

Oxidation‐separation kinetics of nitric oxide (NO) from flue gas using ferrate (VI) reagent in a spraying reactor was studied. Effects of several key parameters on NO absorption rate were studied, and the results show that increasing ferrate (VI) concentration, solution pH, and NO concentration increases the NO absorption rate. Increasing reaction temperature and SO 2 concentration decrease NO absorption rate. The results of kinetic studies show that when < = 0.16 mol/L, the oxidation‐absorption process of NO can be seen as a pseudo‐2.28 order reaction (the reaction order is higher and the effect of reactant concentrations on reaction rate will become more obvious) and a pseudo‐1.0 order reaction when > 0.16 mol/L. The oxidation‐absorption process of NO is a fast reaction, which shows that the mass transfer process is the key rate control step of the whole NO absorption process. When > 0.16 mol/L, the mass transfer coefficient of gas phase and interfacial area play an important role for the oxidation‐absorption process of NO.

Keywords:
Chemistry Flue gas Reagent Absorption (acoustics) Mass transfer Kinetics Reaction rate Inorganic chemistry Oxide Mass transfer coefficient Chemical kinetics Catalysis Chromatography Materials science Organic chemistry

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2
Cited By
0.42
FWCI (Field Weighted Citation Impact)
48
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0.59
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Citation History

Topics

Industrial Gas Emission Control
Physical Sciences →  Engineering →  Mechanical Engineering
Catalytic Processes in Materials Science
Physical Sciences →  Materials Science →  Materials Chemistry
Atmospheric chemistry and aerosols
Physical Sciences →  Earth and Planetary Sciences →  Atmospheric Science

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