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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Hydrogen production over molybdenum loaded mesoporous carbon catalysts in microwave heated reactor system
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Hydrogen production over molybdenum loaded mesoporous carbon catalysts in microwave heated reactor system

机译:在微波炉加热反应器系统中氢化钼负载介孔碳催化剂

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Ammonia decomposition reaction to produce COx free hydrogen over molybdenum incorporated mesoporous carbon based catalysts was studied in a microwave heated reactor system. Mesoporous carbon is acting as the catalyst support as well as the microwave receptor in the reaction medium. While the highest conversion value was 49% in conventionally heated reaction system at 600 degrees C, total conversion value was achieved over the same catalyst at 400 degrees C in microwave heated system with a GHSV of 36,000 ml/hg(cat). Transfer of microwave energy directly to the active particles, volumetric heating and hot spot formation are the main reasons of this great enhancement. While molybdenum nitride was observed under conventional heating, molybdenum carbide was formed in case of microwave application which could be another improving effect on catalytic activity of molybdenum incorporated mesoporous catalysts. (C) 2017 Elsevier B.V. All rights reserved.
机译:在微波加热的反应器系统中研究了在钼掺入的钼碳基催化剂上产生COX游离氢的氨分解反应。 中孔碳作为催化剂载体以及在反应介质中的微波受体。 虽然在600℃的常规加热反应系统中最高转化值为49%,但在与36,000ml / hg(猫)的GHSV中,在400℃的400℃下在相同的催化剂中实现总转化值。 将微波能量直接转移到活性颗粒,体积加热和热点形成是这种巨大增强的主要原因。 虽然在常规加热下观察到氮化钼,但在微波施用的情况下形成碳化钼,这可能是对钼掺入的介孔催化剂的催化活性的另一个改善作用。 (c)2017 Elsevier B.v.保留所有权利。

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