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超细煤粉燃烧氮氧化物释放特性的研究

Research on Nitrogen Oxides Release Performance of Superfine Pulverized Coal Combustion

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【作者】 金晶张忠孝李瑞阳钟海卿

【Author】 JIN Jing,ZHANG Zhong-xiao,LI Rui-yang,ZHONG Hai-qing (College of Power Engineering, Shanghai University of Science & Technology, Shanghai 200093, China)

【机构】 上海理工大学动力工程学院上海理工大学动力工程学院 上海200093上海200093上海200093

【摘要】 通过试验和数值模拟,对超细煤粉在一维热态煤粉炉内燃烧时煤粉粒度、炉膛温度、过量空气系数、煤种等因素对NOx释放特性的影响规律进行了研究。研究结果表明:超细煤粉NOx的排放浓度低于常规粒度煤粉;NOx的排放浓度,随过量空气系数的增加而明显增加;煤种不同,NOx释放规律不同,煤粉超细化后,龙口褐煤的排放量明显减少,晋城无烟煤则变化不大;NOx的排放浓度随温度的升高而升高,但温度升高到一定值后,NOx的排放浓度却呈现下降趋势。以超细煤粉作为再燃燃料,NOx的还原率将比常规粒度煤粉再燃有所提高,褐煤作为再燃燃料时,效果更明显。模拟计算与试验结果较为吻合。图6表2参2

【Abstract】 Experimental and numerical simulation study on NO_x release from superfine pulverized coal combustion and the effect factors such as particle size, temperature, stoichiometric ratio, coal sort have been done. Results show that the NO_x release concentration of superfine pulverized coal deceases compare with the normal pulverized coal size; NO_x emissions increase obviously with stoichiometric ratio increasing; .NO_x release behavior is different for different type coal, the quantity of NO_x release from superfine pulverized coal deceased obviously for longkou lignite, but deceased appreciably for jincheng anthracite; as the temperature in furnace increasing, NO_x emissions increase, but when the temperature increased to some extent, NO_x emissions reduces with the temperature increases. So that, if superfine pulverized coal as reburing fuel, the reduction efficiency of NO_x will higher than normal pulverized coal as reburing fuel, especial for longkou lignite. Overall reasonable agreement between the simulating and experimental results for NO_x release behavior is obtained. Figs 6, tables 2 and refs 2.

【基金】 上海市发展基金资助项目(F20109)。
  • 【分类号】TK227
  • 【被引频次】23
  • 【下载频次】273
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