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Synthetic natural gas production from CO_2 and renewable H_2: Towards large-scale production of Ni-Fe alloy catalysts for commercialization

机译:Co_2和可再生H_2的合成天然气生产:朝大规模生产Ni-Fe合金催化剂进行商业化

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Synthetic natural gas (SNG) is one of the promising energy carriers for the excessive electricity generated from variable renewable energy sources. SNG production from renewable H-2 and CO2 via catalytic CO2 methanation has gained much attention since CO2 emissions could be simultaneously reduced. In this study, Ni-Fe/(Mg,Al)O-x alloy catalysts for CO2 methanation were prepared via hydrotalcite precursors using a rapid coprecipitation method. The effect of total metal concentration on the physicochemical properties and catalytic behavior was investigated. Upon calcination, the catalysts showed high specific surface area of above 230 m(2) g(-1). Small particle sizes of about 5 nm were obtained for all catalysts, even though the produced catalyst amount was increased by 10 times. The catalysts exhibited excellent space-time yield under very high gas space velocity (34,000 h(-1)), irrespective of the metal concentration. The CO2 conversions reached 73-79% at 300 degrees C and CH4 selectivities were at 93-95%. Therefore, we demonstrated the potential of large-scale production of earth-abundant Ni-Fe based catalysts for CO2 methanation and the Power-to-Gas technology. (C) 2020 The Authors. Published by Elsevier Ltd.
机译:合成天然气(SNG)是从可变可再生能源产生的过量电力的有希望的能量载体之一。由于可同时降低二氧化碳排放,从可再生H-2和CO2通过催化二氧化碳甲烷化的SNG生产得到了很多关注。在该研究中,使用快速的CopRecipipation方法,通过水滑石前体制备用于CO 2甲烷化的Ni-Fe /(Mg,Al)O-X合金催化剂。研究了总金属浓度对物理化学性质和催化行为的影响。在煅烧后,催化剂显示出高于230μm(2 )g(-1)的高比表面积。为所有催化剂获得了约5nm的小粒径,即使产生的催化剂量增加10次。催化剂在非常高的气体空间速度下表现出优异的时空产量(34,000小时(-1)),无论金属浓度如何。在300摄氏度下达到73-79%的二氧化碳转化,CH4选择性为93-95%。因此,我们展示了大规模生产的基于镍氢的大规模生产的CO 2甲烷化的催化剂和能量 - 天然气技术。 (c)2020作者。 elsevier有限公司出版

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