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An experimental study of heterogeneous NO reduction by biomass reburning

机译:生物质再燃烧还原异质NO的实验研究

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The effects of different kinds of biomasses and their chars, as well as the effects of rebuming zone stoichiometry (SR2), reaction temperature, initial NO concentration and gas residence time in the reburning zone on NO reduction were systematically investigated in a one-dimensional dropping-tube furnace. The influences of inlet CO, SO2 and H2O with various concentrations on the NO reductions of sawdust and its chars were also evaluated to improve the understanding of the heterogeneous NO reduction mechanisms. The results showed that NO reductions of biomass and its chars increased with decreasing SR2, and with increasing volatile content, reaction temperature, initial NO concentration and gas residence time. The char contribution to the total NO reduction was enhanced with decreasing reaction temperature, and with increasing volatile content, SR2, initial NO concentration and gas residence time. After short residence times, homogeneous NO reduction process was the main mechanism. After long residence times, heterogeneous NO reduction process became dominated. For sawdust reburning, the char contribution to the total NO reduction was in the range of 56-79% at the SR2 = 0.6-1.05. The char contribution was found to be enhanced by the introduction of several gaseous species (e.g., CO, SO2 or water vapor). (C) 2014 Elsevier B.V. All rights reserved.
机译:一维滴落系统地研究了不同种类的生物质及其炭,以及再沸区化学计量(SR2),反应温度,初始NO浓度和再燃区中气体停留时间对NO还原的影响。管炉。还评估了不同浓度的入口CO,SO2和H2O对锯末及其焦炭NO还原的影响,以增进对异质NO还原机理的理解。结果表明,随着SR2的降低,挥发物含量,反应温度,初始NO浓度和气体停留时间的增加,生物量及其焦炭的NO还原量增加。随着反应温度的降低,挥发物含量,SR2,初始NO浓度和气体停留时间的增加,焦炭对总NO还原的贡献增加。在短停留时间后,均匀的NO还原过程是主要机理。长时间停留后,异质NO还原过程开始占主导地位。对于木屑再燃,在SR2 = 0.6-1.05时,焦炭对总NO减少的贡献在56-79%的范围内。发现通过引入几种气态物质(例如,CO,SO 2或水蒸气)增强了炭的贡献。 (C)2014 Elsevier B.V.保留所有权利。

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