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Plasma chemical reaction for nitric oxide and sulfur dioxide removal in corona discharge reactor

机译:电晕放电反应器中的一氧化氮和二氧化硫去除血浆化学反应

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x Application of plasma chemistry for gas cleaning is gaining prominence in recent years, mainly from the energy consideration point of view. Normally, the gas treatment is carried out at or above room temperature by the conventional dry-type corona reactor. However, this treatment is still inadequate for the removal of certain stable gases present in the flue gas mixture. In this work, a wet-type corona reactor is presented that can simultaneously remove NO and SO{sub}2 at low temperatures and at atmospheric pressure. The experimental results show both removal rate of NO and SO{sub}2 are improved in wet-type reactor than that of dry-type reactor. NO is mostly oxidized into NO2 by the reaction with O and O{sub}3 and NO{sub}2 is change into HNO{sub}3 by the reaction with OH, which is generated from H{sub}2 O. Most of the SO{sub}2 removal is attributed to the absorption into the water film and the enhancement by the discharge plasma is small.
机译:X近年来突出的气体清洁等血浆化学的应用,主要来自能源考虑的观点。通常,气体处理通过常规的干式电晕反应器在室温或高于室温下进行。然而,这种处理仍然不足以去除烟道气混合物中存在的某些稳定的气体。在这项工作中,提出了一种湿式电晕反应器,其可以在低温和大气压下同时去除不等于{sub} 2。实验结果表明,在湿式反应器中,湿式反应器中的不含率的除去率和所以{sub} 2的含量。通过与O和O} 3的反应,NO和O和O} 3的反应不会被与OH的反应变为HNO {Sub} 3的NO 2,从H {SUB} 2 O.产生所以{sub} 2去除归因于吸收水膜,放电等离子体的增强很小。

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