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Optimization and control of NOx in coke oven vertical flue under flue gas recirculation

机译:Optimization and control of NOx in coke oven vertical flue under flue gas recirculation

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The orthogonal experimental design with CFD simulation was carried out to simulate combustion in the coke oven vertical flue at external flue gas recirculation.The control of nitrogen oxides(NOx)generation was analysed by different factors such as air excess coefficient,oxidant preheating temperature,flue gas recirculation and oxidizer inlet cross-sectional area ratio.The simulation results showed that the the orthogonal experimental design with CFD had a significant effect on the combustion process.The flue gas recirculation ratio effectively improved the temperature distribution uniformity in the vertical flue,and had a significant effect on NOx production in the vertical flue.Within the parameters of the orthogonal design,when the air excess coefficient was 1.1,the oxidant preheating temperature was 1200 K,the flue gas recirculation ratio was 30%,and the oxidant inlet cross-sectional area ratio was 0.5,the NOx production in the coke oven vertical flue was the smallest,lower than the industry emission standard.
机译:采用CFD模拟的正交试验设计方法,对焦炉竖直烟道外烟气再循环燃烧进行了模拟。通过空气过剩系数、氧化剂预热温度、烟气再循环和氧化剂入口横截面积比等不同因素分析了氮氧化物(NOx)生成的控制。模拟结果表明,CFD正交试验设计对燃烧过程有显著影响。烟气再循环率有效地改善了垂直烟道内的温度分布均匀性,并对垂直烟道内的NOx生成产生显著影响。在正交设计的参数范围内,当空气过剩系数为1.1、氧化剂预热温度为1200 K、烟气再循环率为30%、氧化剂进口截面积比为0.5时,焦炉垂直烟道中的NOx生成量最小,低于行业排放标准。

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