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燃煤锅炉SNCR脱硝对于SO_3生成的研究 被引量:3
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作者 胡建根 李文华 +3 位作者 韩高岩 吕洪坤 肖海平 王磊 《锅炉技术》 北大核心 2018年第2期75-80,共6页
利用化学反应动力学计算研究燃煤锅炉的选择性非催化还原(SNCR)对于气相中SO_3生成过程的影响,并进一步考虑喷氨位置、氨氮比与SO_3脱除率的关系。结果表明:SNCR对于SO_3具有一定脱除作用,这主要是由于喷氨后,通过相关基元反应使得自由... 利用化学反应动力学计算研究燃煤锅炉的选择性非催化还原(SNCR)对于气相中SO_3生成过程的影响,并进一步考虑喷氨位置、氨氮比与SO_3脱除率的关系。结果表明:SNCR对于SO_3具有一定脱除作用,这主要是由于喷氨后,通过相关基元反应使得自由基H和HO_2的浓度变大,进而抑制或分解SO_3的缘故。随着氨氮比增加,SO_3脱除率升高,当氨氮比为1.2,在烟气温度约1 000℃位置处喷氨时SO_3脱除效果最佳。 展开更多
关键词 化学反应动力学计算 燃煤锅炉 选择性非催化还原 SO3 基元反应
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Modeling of Soot Formation in Gas Burner Using Reduced Chemical Kinetics Coupled with CFD Code 被引量:4
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作者 ZHANG Yindi ZHOU Huaichun XIE Mingliang FANG Qingyan WEI Yan 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2010年第6期967-978,共12页
A computational study of soot formation in ethylene/air coflow jet diffusion flame at atmospheric pres-sure was conducted using a reduced mechanism and soot formation model. A 20-step mechanism was derived from the fu... A computational study of soot formation in ethylene/air coflow jet diffusion flame at atmospheric pres-sure was conducted using a reduced mechanism and soot formation model. A 20-step mechanism was derived from the full mechanism using sensitivity analysis,reaction path analysis and quasi steady state(QSS) approximation. The model in premixed flame was validated and with computing savings in diffusion flame was applied by incor-porating into a CFD code. Simulations were performed to explore the effect of coflow air on flame structure and soot formation. Thermal radiation was calculated by a discrete-ordinates method,and soot formation was predicted by a simple two-equation soot model. Model results are in good agreement with those from experiment data and detailed mechanism at atmospheric conditions. The soot nucleation,growth,and oxidation by OH are all enhanced by decrease in coflow air velocity. The peak soot volume fraction region appears in the lower annular region be-tween the peak flame temperature and peak acetylene concentration locations,and the high soot oxidation rate due to the OH attack occurs in the middle annular region because of high temperature. 展开更多
关键词 modeling chemical kinetics sensitivity analysis soot formation
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