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CO and CO2 methanation over Ni catalysts supported on alumina with different crystalline phases

机译:在具有不同结晶相的氧化铝上负载的Ni催化剂上的CO和CO2甲烷化

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摘要

The effect of alumina crystalline phases on CO and CO2 methanation was investigated using alumina-supported Ni catalysts. Various crystalline phases, such as alpha-Al2O3, theta-Al2O3, delta-Al2O3, eta-Al2O3, gamma-Al2O3, and kappa-Al2O3, were utilized to prepare alumina-supported Ni catalysts via wet impregnation. N-2 physisorption, H-2 chemisorption, temperature-programmed reduction with H-2, CO2 chemisorption, temperature-programmed desorption of CO2, and X-ray diffraction were employed to characterize the catalysts. The Ni/theta-Al2O3 catalyst showed the highest activity during both CO and CO2 methanation at low temperatures. CO methanation catalytic activity appeared to be related to the number of Ni surface-active sites, as determined by H-2-chemisorption. During CO2 methanation, Ni dispersion and the CO2 adsorption site were found to influence catalytic activity. Selective CO methanation in the presence of excess CO2 was performed over Ni/gamma-Al2O3 and Ni/delta-Al2O3; these substrates proved more active for CO methanation than for CO2 methanation.
机译:使用氧化铝负载的Ni催化剂研究了氧化铝结晶相对CO和CO2甲烷化的影响。利用各种晶相,例如α-Al2O3,θ-Al2O3,δ-Al2O3,η-Al2O3,γ-Al2O3和κ-Al2O3,通过湿浸渍制备了氧化铝负载的Ni催化剂。使用N-2物理吸附,H-2化学吸附,H-2程序升温还原,CO2化学吸附,CO2程序升温脱附和X射线衍射来表征催化剂。 Ni / theta-Al2O3催化剂在低温下CO和CO2甲烷化过程中均显示出最高活性。如通过H-2-化学吸附所确定的,CO甲烷化催化活性似乎与Ni表面活性位点的数量有关。在CO2甲烷化过程中,发现Ni分散和CO2吸附位点会影响催化活性。在Ni /γ-Al2O3和Ni /δ-Al2O3上,在过量CO2存在下进行选择性CO甲烷化;这些底物对CO甲烷化的活性比对CO2甲烷化的活性更高。

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