首页> 外文期刊>IEEE Transactions on Industry Applications >Reduction of NO/sub x/ from natural gas combustion flue gases by corona discharge radical injection techniques [thermal power plant emissions control]
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Reduction of NO/sub x/ from natural gas combustion flue gases by corona discharge radical injection techniques [thermal power plant emissions control]

机译:通过电晕放电自由基注入技术降低天然气燃烧烟道气中的NO / sub x / [火电厂排放控制]

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摘要

An experimental investigation has been conducted to reduce NO/sub x/ in natural gas combustion flue gases by means of corona-discharge-activated ammonia/methane radical injection methods. Multihole-type corona radical injectors are used in the present investigation. Experiments were conducted for the simulated natural gas combustion flue gas (N/sub 2/:O/sub 2/:CO/sub 2/:NO=83.96:8:8:0.04) flow rate from 1 to 200 L/min, the activation voltage (DC or pulse) from 0 to 40 kV, and the Ar-ammonia or Ar-methane mixture gases flow rate from 0 to 200 mL/min. The results show that the NO/sub x/ reduction increases with increasing activation voltage and nonmonotonically depends on ammonia/methane stoichiometry.
机译:已经进行了实验研究,以通过电晕放电活化的氨/甲烷自由基注入方法减少天然气燃烧烟道气中的NO / sub x /。在本研究中使用了多孔型电晕自由基注入器。对模拟天然气燃烧烟道气(N / sub 2 /:O / sub 2 /:CO / sub 2 /:NO = 83.96:8:8:0.04)的流量从1升至200 L / min进行了实验,激活电压(DC或脉冲)为0到40 kV,Ar-氨或Ar-甲烷混合气体流量为0到200 mL / min。结果表明,NO / sub x /的还原量随活化电压的增加而增加,并且非单调取决于氨/甲烷的化学计量。

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