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Dehydrogenation characteristics of lean methane in a thermal reverse-flow reactor

机译:热逆流反应器中贫甲烷的脱氢特性

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In order to study the dehydrogenation reaction mechanism of ultra-low concentration methane in a thermal reverse-flow reactor, the effects of the cyclic period (120s-240s), the lean methane volume flow (90 Nm(3)/h to 180 Nm(3)/h), and the methane concentration (0.2 vol% to 0.8 vol%) on the dehydrogenation performance were studied systematically by using a thermal reverse-flow experimental system. When the methane concentration is 0.2 vol%, the reactor can achieve self-heat maintaining operation. With the increase in the methane concentration, the width of the high-temperature zone, the exhaust gas temperature, the methane conversion rate, and the maximum temperature of the heat accumulator bed increase. With the increase in the lean methane volume flow, the width of the high-temperature zone, the distance between the center of the high temperature zone and the center of the reactor, the maximum temperature, the exhaust gas temperature, and the methane conversion rate increase. With the increase in the cyclic period, the exhaust gas temperature and the deviation of the high-temperature zone increase, but the methane conversion rate and the maximum temperature decrease slightly. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:为了研究超低浓度甲烷在热逆流反应器中的脱氢反应机理,循环周期(120s-240s),稀甲烷体积流量(90 Nm(3)/ h至180 Nm)的影响(3)/ h),并使用热逆流实验系统系统地研究了甲烷浓度(0.2 vol%至0.8 vol%)对脱氢性能的影响。当甲烷浓度为0.2体积%时,反应器可以实现自保温操作。随着甲烷浓度的增加,高温区的宽度,废气温度,甲烷转化率和蓄热器床的最高温度增加。随着稀甲烷体积流量的增加,高温区的宽度,高温区中心与反应器中心之间的距离,最高温度,废气温度和甲烷转化率增加。随着循环周期的增加,排气温度和高温区的偏差增加,但是甲烷转化率和最高温度略有下降。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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