首页> 外文期刊>International journal of hydrogen energy >Co-production of hydrogen and carbon nanofibers from catalytic decomposition of methane over LaNi(1-x)Mx O3-alpha perovskite (where M = Co, Fe and X=0, 0.2, 0.5, 0.8, 1)
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Co-production of hydrogen and carbon nanofibers from catalytic decomposition of methane over LaNi(1-x)Mx O3-alpha perovskite (where M = Co, Fe and X=0, 0.2, 0.5, 0.8, 1)

机译:由LaNi(1-x)MxO3-α钙钛矿上的甲烷催化分解而联产氢和碳纳米纤维(其中M = Co,Fe和X = 0、0.2、0.5、0.8、1)

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In this work, LaNi(1-x)MxO3-alpha (where M = Co, Pe and X = 0, 0.2, 0.5, 0.8, 1) perovskite have been successfully used as catalyst precursors for catalytic decomposition of methane (CDM). LaNi0.8Fe0.2O3-alpha and LaNi0.8Co0.2O3-alpha, perovsldte exhibited better catalytic performance in terms of hydrogen and carbon nanofibers yields during CDM reaction as compared to LaNiO3 perovskite, which can be attributed to the formation of the smaller and more uniform catalyst particles. Moreover, the reduced LaNi(1-x)MxO3-alpha perovsldte also produces filamentous carbons with "chain like structure" which is different from the filamentous carbons with "tube like structure" produced from the reduced LaNiO3 and LaNi(1-x)CoxO3-alpha, perovskite. This is due to the different growth mechanisms of those filamentous carbons over the different catalysts. More particularly, chain-like structure filamentous carbons were produced through "pulse-growth mechanism" over the reduced LaNi(1-x)FexO3-alpha perovsldte, whereas tube like structure filamentous carbons were produced through "smooth growth mechanism" over the reduced LaNiO3 and LaNi(1-x)CoxO3-alpha, perovskite. Copyright 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项工作中,LaNi(1-x)MxO3-alpha(其中M = Co,Pe和X = 0、0.2、0.5、0.8、1)钙钛矿已成功用作甲烷催化分解甲烷(CDM)的催化剂前体。与LaNiO3钙钛矿相比,perovsldte在CDM反应过程中在氢和碳纳米纤维产率方面表现出更好的催化性能,这可以归因于较小和更大的LaNi0.8Fe0.2O3-alpha和LaNi0.8Co0.2O3-alpha。均匀的催化剂颗粒。此外,还原的LaNi(1-x)MxO3-alpha perovsldte也产生具有“链状结构”的丝状碳,这与由还原的LaNiO3和LaNi(1-x)CoxO3产生的具有“管状结构”的丝状碳不同。 -alpha,钙钛矿。这是由于这些丝状碳在不同催化剂上的不同生长机理。更特别地,在还原的LaNi(1-x)FexO3-αperovsldte上通过“脉冲增长机理”产生链状结构丝状碳,而在还原的LaNiO3上通过“平稳生长机理”产生管状结构丝状碳。钙钛矿和LaNi(1-x)CoxO3-alpha。 Hydrogen Energy Publications,LLC版权所有2015。由Elsevier Ltd.出版。保留所有权利。

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