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首页> 外文期刊>Angewandte Chemie >Energy-Efficient Syngas Production through Catalytic Oxy-Methane Reforming Reactions
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Energy-Efficient Syngas Production through Catalytic Oxy-Methane Reforming Reactions

机译:催化氧甲烷重整反应生产节能型合成气

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摘要

The considerable recent interest in the conversion of stranded methane into transportable liquids as well as fuel cell technology has provided a renewed impetus to the development of efficient processes for the generation of syngas. The production of syngas (CO/H2), a very versatile intermediate, can be the most expensive step in the conversion of methane to value-added liquid fuels. The catalytic oxy reforming of methane, which is an energy-efficient process that can produce syngas at extremely high space-time yields, is discussed in this Review. As long-term catalyst performance is crucial for the wide-scale commercialization of this process, catalyst-related studies are abundant. Correspondingly, herein, emphasis is placed on discussing the different issues related to the development of catalysts for oxy reforming. Important aspects of related processes such as catalytic oxy-steam, oxy-CO2, and oxy-steam-CO2 processes will also be discussed.
机译:最近,人们对将滞留的甲烷转化为可运输的液体以及燃料电池技术产生了浓厚的兴趣,这为开发合成气的高效方法提供了新的动力。合成气(CO / H2)是一种非常通用的中间体,可能是将甲烷转化为增值液体燃料中最昂贵的步骤。本综述讨论了甲烷的催化氧重整,这是一种能以极高的时空产率生产合成气的节能工艺。由于长期催化剂性能对于该方法的大规模商业化至关重要,因此与催化剂相关的研究非常丰富。相应地,在此,重点放在讨论与开发用于氧重整的催化剂有关的不同问题上。还将讨论相关工艺的重要方面,例如催化氧-蒸汽,氧-CO 2和氧-蒸汽-CO 2工艺。

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