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Generation of hydrogen and light hydrocarbons for automotive exhaust gas purification:Conversion of n-hexane in a PACT(plasma and catalysis integrated technologies)reactor

机译:用于汽车尾气净化的氢和轻烃的产生:PACT(等离子体和催化集成技术)反应器中正己烷的转化

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Conversion of a model hydrocarbon(n-hexane)was carried out over iron and nickel electrodes in an alternating current(AC)discharge plasma and catalysis integrated technologies(PACT)reactor to instantly produce hydrogen and light alkanes and alkenes,at room temperature and atmospheric pressure,for possible application in automotive exhaust gas purification.Catalytic effects of metal electrodes are involved in the reactions,with iron electrodes showing obviously higher catalytic activity on addition reactions compared with nickel electrodes.Cracking of carbon-carbon bonds is the dominant reaction.Catalytic dehydrogenation of hexane is the source of hydrogen.Compared with space velocity,applied voltage has dominant effects on power consumption.Energy efficiency will increase as the residence time of feed molecules decreases and decrease as applied voltage increases.A maximum of 38% of the energy consumed by the PACT reactor was used for cracking single carbon-carbon bonds.
机译:在交流电(AC)放电等离子体和催化集成技术(PACT)反应器中,在铁和镍电极上进行模型碳氢化合物(正己烷)的转化,可在室温和大气压下立即生产氢,轻质烷烃和烯烃该反应涉及金属电极的催化作用,其中铁电极对加成反应的催化活性明显高于镍电极。碳-碳键的断裂是主要反应。己烷的脱氢是氢的来源。与空速相比,施加电压对功率消耗有显着影响。能量效率将随着进料分子的停留时间的减少而增加,并随着施加电压的增加而降低。最大为能量的38% PACT反应器消耗的碳被用于裂解单个碳碳键。

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