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化学链小分子转化研究进展 被引量:10
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作者 段一菲 陈存壮 +2 位作者 张军社 王新赫 魏进家 《中国科学:化学》 CAS CSCD 北大核心 2020年第3期337-365,共29页
化学链将一个化学反应分解成在同一反应器依次进行或在不同反应器同时进行的两个或多个独立的反应.反应物之间物质和能量的传递通过一个固体媒介实现,媒介中某一元素的价态在两个值之间循环变化.相比于传统化学反应过程,化学链反应过程... 化学链将一个化学反应分解成在同一反应器依次进行或在不同反应器同时进行的两个或多个独立的反应.反应物之间物质和能量的传递通过一个固体媒介实现,媒介中某一元素的价态在两个值之间循环变化.相比于传统化学反应过程,化学链反应过程具有效率高、安全性能高和操作灵活等优点.化学链曾经被用于商业化生产氧气、氢气和二氧化碳.进入21世纪以来,化学链用于小分子化学转化受到了研究人员的广泛关注.本文介绍了近年来这一领域的研究进展,重点总结了太阳能热化学分解H2O和CO2、化学链甲烷干/湿重整、晶格氧选择烧氢耦合脱氢和化学链合成氨的发展现状,并对化学链小分子化学转化面临的挑战进行了讨论. 展开更多
关键词 化学链 CO2/H2O热分解 甲烷重整 晶格氧选择性烧氢 合成氨
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Reduction kinetics of SrFeO_(3−δ)/CaO∙MnO nanocomposite as effective oxygen carrier for chemical looping partial oxidation of methane
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作者 Xinhe Wang Liuqing Yang +4 位作者 Xiaolin Ji Yunfei Gao Fanxing Li junshe zhang Jinjia Wei 《Frontiers of Chemical Science and Engineering》 SCIE EI CSCD 2022年第12期1726-1734,共9页
Chemical looping reforming of methane is a novel and effective approach to convert methane to syngas,in which oxygen transfer is achieved by a redox material.Although lots of efforts have been made to develop high-per... Chemical looping reforming of methane is a novel and effective approach to convert methane to syngas,in which oxygen transfer is achieved by a redox material.Although lots of efforts have been made to develop high-performance redox materials,a few studies have focused on the redox kinetics.In this work,the kinetics of SrFeO_(3−δ)–CaO∙MnO nanocomposite reduction by methane was investigated both on a thermo-gravimetric analyzer and in a packed-bed microreactor.During the methane reduction,combustion occurs before the partial oxidation and there exists a transition between them.The weight loss due to combustion increases,but the transition region becomes less inconspicuous as the reduction temperature increased.The weight loss associated with the partial oxidation is much larger than that with combustion.The rate of weight loss related to the partial oxidation is well fitted by the Avrami–Erofeyev equation with n=3(A3 model)with an activation energy of 59.8 kJ∙mol^(‒1).The rate law for the partial oxidation includes a solid conversion term whose expression is given by the A3 model and a methane pressure-dependent term represented by a power law.The partial oxidation is half order with respect to methane pressure.The proposed rate law could well predict the reduction kinetics;thus,it may be used to design and/or analyze a chemical looping reforming reactor. 展开更多
关键词 chemical looping reforming SrFeO_(3−δ) CaO·MnO nanocomposite reduction kinetics Avrami–Erofeyev model pressure-dependent term
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