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燃烧法制备固体催化剂及其催化应用研究进展 被引量:2
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作者 杜娟 王志彬 孙树英 《应用化工》 CAS CSCD 北大核心 2017年第6期1190-1193,共4页
燃烧法制备多孔固体催化剂操作简单、周期短,制备的催化剂孔道丰富、颗粒尺寸小、粒径均匀。介绍了溶液燃烧法、微波辅助燃烧法、溶胶凝胶燃烧法、浸渍燃烧法等在催化反应方面的应用,包括重整制氢反应、甲烷化反应、费托合成反应及甲醇... 燃烧法制备多孔固体催化剂操作简单、周期短,制备的催化剂孔道丰富、颗粒尺寸小、粒径均匀。介绍了溶液燃烧法、微波辅助燃烧法、溶胶凝胶燃烧法、浸渍燃烧法等在催化反应方面的应用,包括重整制氢反应、甲烷化反应、费托合成反应及甲醇合成反应等;简述了燃烧法制备固体催化剂关键影响因素,以及这些因素对催化剂结构及催化性能的影响。 展开更多
关键词 燃烧法 固体催化剂 重整制氢反应 甲烷化反应 费托合成反应
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Hydrogen generation from methanol reforming for fuel cell applications: A review 被引量:23
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作者 SUN Zhao SUN Zhi-qiang 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第4期1074-1103,共30页
Methanol is regarded as an important liquid fuel for hydrogen storage, transportation, and in-situ generation due to its convenient conveyance, high energy density, and low conversion temperature. In this work, an ove... Methanol is regarded as an important liquid fuel for hydrogen storage, transportation, and in-situ generation due to its convenient conveyance, high energy density, and low conversion temperature. In this work, an overview of state-of-the-art investigations on methanol reforming is critically summarized, including the detailed introduction of methanol conversion pathways from the perspective of fuel cell applications, various advanced materials design for catalytic methanol conversion, as well as the development of steam methanol reformers. For the section of utilization pathways, reactions such as steam reforming of methanol, partial oxidation of methanol, oxidative steam reforming of methanol, and sorption-enhanced steam methanol reforming were elaborated;For the catalyst section, the strategies to enhance the catalytic activity and other comprehensive performances were summarized;For the reactor section, the newly designed steam methanol reformers were thoroughly described. This review will benefit researchers from both fundamental research and fuel cell applications in the field of catalyzing methanol to hydrogen. 展开更多
关键词 methanol reforming hydrogen generation fuel cell CATALYST REFORMER
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