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Methane-to-aromatics in a gas recycle methane reactor/hydrogen membrane separator

机译:气体再循环甲烷反应器/氢膜分离器中的甲烷 - 芳烃

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Direct non-oxidative methane conversion (DNMC) is one of the most promising options to convert methane (CH4) in natural gas in remote extraction sites to liquid aromatics, which is easier to transport compared to CH4 gas. The main constraint of the DNMC is low CH4 conversion, and thus aromatics product yield due to thermodynamic limitation. This work reports a gas recycle CH4 reactor/hydrogen (H2) membrane separator to achieve high CH4 conversion and aromatics yield by circumventing the thermodynamic limitation. The DNMC took place over an iron/silica (Fe/SiO2) catalyst in a packed-bed reactor to produce C2 (i.e. ethane, ethylene and acetylene) and aromatics, along with reaction product H2. The product stream passed through a condenser to collect aromatic products and then a H2-permeable membrane separator to remove H2. The unreacted CH4, C2 products and H2 residual in the product stream were sent to the recycle loop for the next round of DNMC reaction and H2 removal. The results demonstrated that >90 % product selectivity toward aromatics and >50 % aromatics yield are achieved in the gas recycle CH4 reactor/ H2 membrane separator system.
机译:直接非氧化甲烷转化(DNMC)是将偏远采掘场天然气中的甲烷(CH4)转化为液态芳烃的最有前景的选择之一,与CH4气体相比,液态芳烃更容易运输。DNMC的主要限制是CH4转化率低,因此由于热力学限制,芳烃产品产量低。本工作报告了一种气体循环CH4反应器/氢气(H2)膜分离器,通过绕过热力学限制实现高CH4转化率和芳烃产率。DNMC在填充床反应器中的铁/二氧化硅(Fe/SiO2)催化剂上进行,产生C2(即乙烷、乙烯和乙炔)和芳烃,以及反应产物H2。产品流通过冷凝器收集芳烃产品,然后通过H2渗透膜分离器去除H2。产物流中未反应的CH4、C2产物和残余H2被送入循环回路,用于下一轮DNMC反应和H2去除。结果表明,在气体循环CH4反应器/H2膜分离器系统中,芳烃产品选择性>90%,芳烃收率>50%。

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