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A green process for high-concentration ethylene and hydrogen production from methane in a plasma-followed-by-catalyst reactor

机译:等离子催化反应器中甲烷甲烷高浓度生产乙烯和氢气的绿色工艺

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摘要

A green process for the oxygen-free conversion of methane to high-concentration ethylene and hydrogen in a plasma-followed-by-catalyst (PFC) reactor is presented. Without any catalysts and with pure methane used as the feed gas, a stable kilohertz spark discharge leads to an acetylene yield of 64.1%, ethylene yield of 2.5% and hydrogen yield of 59.0% with 80.0% of methane conversion at a methane flow rate of 50 cm3/min and a specific input energy of 38.4 kJ/L. In the effluent gas from a stable kilohertz spark discharge reactor, the concentrations of acetylene, ethylene and hydrogen were 18.1%, 0.7% and 66.9%, respectively. When catalysts Pd-Ag/SiO2 were employed in the second stage with discharge conditions same as in the case of plasma alone, the PFC reactor provides an ethylene yield of 52.1% and hydrogen yield of 43.4%. The concentrations of ethylene and hydrogen in the effluent gas from the PFC reactor were found to be as high as 17.1% and 62.6%, respectively. Moreover, no acetylene was detected in the effluent gas. This means that a high concentration of ethylene and oxygen-free hydrogen can be co-produced directly from methane in the PFC reactor.
机译:提出了在等离子催化(PFC)反应器中甲烷无氧转化为高浓度乙烯和氢的绿色工艺。在没有任何催化剂的情况下,使用纯甲烷作为进料气,稳定的千赫兹火花放电可产生64.1%的乙炔收率,2.5%的乙烯收率和59.0%的氢气收率,且甲烷的转化率为80.0%。 50 cm3 / min,比输入能量为38.4 kJ / L。在稳定的千赫兹火花放电反应器的废气中,乙炔,乙烯和氢气的浓度分别为18.1%,0.7%和66.9%。当第二阶段使用催化剂Pd-Ag / SiO 2且其放电条件与仅使用等离子体的情况相同时,PFC反应器的乙烯产率为52.1%,氢产率为43.4%。发现来自PFC反应器的废气中的乙烯和氢的浓度分别高达17.1%和62.6%。此外,在废气中未检测到乙炔。这意味着可以在PFC反应器中直接从甲烷中联产高浓度的乙烯和无氧氢。

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