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The Effect of Oxygen Staging on Nitrogen Conversion in Oxy-Fuel CFB Environment

机译:氧气分流CFB环境中氧气分级对氮转化的影响

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This paper presents a study on nitrogen conversion in oxy-fuel coal combustion in a pilot scale CFB 0.1 MWth facility. The paper is focused on fuel-N behaviour in the combustion chamber when the combustion process is accomplished under oxy-fuel CFB conditions. The analysis is based on infurnace sampling of flue gas and calculations of the conversion ratios of fuel-nitrogen (fuel-N) to NO, NO2, N2O, NH3 and HCN. For the tests, O2/CO2 mixtures with the oxygen content of 21 vol.% (primary gas) and with the oxygen content varied from 21 to 35 vol.% (secondary gas), were used as the fluidising gas. Measurements were carried out in 4 control points located along the combustion chamber: 0.43 m, 1.45 m, 2.50 m and 4.88 m. Results presented below indicate that an increased oxygen concentration in the higher part of the combustion chamber has strong influence on the behaviour of fuel based nitrogen compounds.
机译:本文介绍了中试规模CFB 0.1 MWth设施中氧燃料煤燃烧中氮转化的研究。本文着眼于在含氧燃料CFB条件下完成燃烧过程时燃烧室中燃料的N行为。该分析基于烟气的炉内采样以及燃料氮(燃料-N)向NO,NO2,N2O,NH3和HCN的转化率的计算。为了进行测试,使用氧气含量为21体积%(一次气体)且氧气含量为21至35体积%(二次气体)的O2 / CO2混合物作为流化气体。在沿着燃烧室的4个控制点进行测量:0.43 m,1.45 m,2.50 m和4.88 m。下面显示的结果表明,燃烧室较高部分中氧气浓度的增加对基于燃料的氮化合物的行为有很大影响。

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