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煤再燃过程中燃料特性对NO还原的影响 被引量:22
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作者 钟北京 施卫伟 傅维标 《燃烧科学与技术》 EI CAS CSCD 2001年第2期115-119,共5页
在小型流动反应器中研究了不同煤粉及其煤焦对富燃料再燃区 NO异相还原的影响。实验中选用的再燃燃料为小龙潭褐煤、富拉尔基褐煤和大同烟煤及其煤焦 ,以及添加不同催化剂的大同烟煤焦。实验在初始 NO浓度为 10 0 0× 10 - 6 、反... 在小型流动反应器中研究了不同煤粉及其煤焦对富燃料再燃区 NO异相还原的影响。实验中选用的再燃燃料为小龙潭褐煤、富拉尔基褐煤和大同烟煤及其煤焦 ,以及添加不同催化剂的大同烟煤焦。实验在初始 NO浓度为 10 0 0× 10 - 6 、反应温度分别为 90 0℃和 110 0℃条件下完成。实验结果表明 ,褐煤及褐煤焦对 NO的还原能力明显强于烟煤和烟煤焦 ,煤粉挥发分含量、煤焦颗粒的比表面积和煤灰中的金属氧化物含量都对 NO还原有重要的影响。在煤再燃中异相机理对 展开更多
关键词 再燃过程 燃料特性 一氧化氮还原
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Experimental Research and Mathematical Modelling for Coal Reburning in Furnace
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作者 XIANG Jun SU Sheng +3 位作者 SUN Lu-shi SUN Xue-xi ZHANG Zhong-xiao ZHU Ji-mu 《Journal of China University of Mining and Technology》 EI 2006年第3期301-307,共7页
Reburning technology is one of the most cost-effective NOx reduction strategies for coal combustion systems. In this paper, a nitric oxide submodel incorporated into a comprehensive coal combustion model was developed... Reburning technology is one of the most cost-effective NOx reduction strategies for coal combustion systems. In this paper, a nitric oxide submodel incorporated into a comprehensive coal combustion model was developed for predicting NOx reduction in a 93 kW laboratory-scale coal combustion furnace by reburning. This NO submodel, including reburning mechanism, requires the solution of only two transport equations to model the behavior of NO reduction in the reburning process. A number of experiments have been performed in the same furnace, and the experimental data obtained from the optimized reburn configuration was used to validate the model. Measurements and predictions both show above 50% reduction of NO emissions for the optimized reburning process. Profile comparisons show that the predicted temperature and oxygen concentration match well with the measurements, and the general trend of predicted NO concentration is very similar to that measured. The results of this study show that the present nitric oxide submodel depicts quite well the observed behaviour of NO annihilation in the reburning process. It is expected that this usable and computationally economic model represents a useful tool to simulate the gaseous fuel reburning process for the researchers concerned with practical combustors. 展开更多
关键词 coal combustion nitric oxide REBURNING experimental research mathematical modeling
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