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High-Performance Ni-Fe Redox Catalysts for Selective CH4 to Syngas Conversion via Chemical Looping

机译:高性能Ni-Fe氧化还原催化剂,用于通过化学循环选择性CH4至合成气转化

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In traditional steam reforming of CH4, the CH4 conversion and its selectivity to CO and H-2 are thermodynamically limited. In this work, we designed a series of Ni Fe redox catalysts with varying Ni/Fe ratios. The Ni Fe redox catalysts could function as oxygen carriers to selectively convert CH4 to syngas via chemical looping. The selectivity to CO was dramatically enhanced via a selective conversion route of CH4 to C and H-2 in the reduction, followed by C gasification to syngas with hot steam. Taking the advantages of the highly reactive Ni species for CH4 activation and Fe species for water splitting, together with the resulting NiFe alloy in the reduced catalyst for catalytic CH4 decomposition, high CH4 conversion up to 97.5% and CO selectivity up to 92.9% were achieved at 900 degrees C with productivity of CO and H-2 of 9.6 and 29.0 mol kg(catalyst)(-1), respectively, on equimolar Ni-Fe catalyst.
机译:在CH4的传统蒸汽重整中,CH 4转化及其对CO和H-2的选择性是热力学上的限制。 在这项工作中,我们设计了一系列具有不同Ni / Fe比率的Ni Fe Redox催化剂。 Ni Fe氧化还原催化剂可以用作氧载体,以通过化学环化选择性地将CH 4转化为合成气。 通过减少的CH4至C和H-2的选择性转化途径显着增强了CO的选择性,然后用热蒸汽对合成气的C气化。 采用高反应性Ni种类的优点对于CH4活化和Fe种水分裂,与所得的NiFe合金一起在催化CH4分解的降低的催化剂中,高达97.5%的高CH 4转化,CO选择性高达92.9%达到92.9% 在900℃下,在等摩尔Ni-Fe催化剂上分别在900℃和9.6和29.0mol kg(催化剂)( - 1)的生产率。

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