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首页> 外文期刊>Angewandte Chemie >Unraveling the Homologation Reaction Sequence of the Zeolite-Catalyzed Ethanol-to-Hydrocarbons Process
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Unraveling the Homologation Reaction Sequence of the Zeolite-Catalyzed Ethanol-to-Hydrocarbons Process

机译:解开沸石催化乙醇 - 烃处理的同源反应序列

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摘要

Although industrialized, the mechanism for catalytic upgrading of bioethanol over solid-acid catalysts (that is, the ethanol-to-hydrocarbons (ETH) reaction) has not yet been fully resolved. Moreover, mechanistic understanding of the ETH reaction relies heavily on its well-known "sister-reaction" the methanol-to-hydrocarbons (MTH) process. However, the MTH process possesses a C-1-entity reactant and cannot, therefore, shed any light on the homologation reaction sequence. The reaction and deactivation mechanism of the zeolite H-ZSM-5-catalyzed ETH process was elucidated using a combination of complementary solid-state NMR and operando INNis diffuse reflectance spectroscopy, coupled with online mass spectrometry. This approach establishes the existence of a homologation reaction sequence through analysis of the pattern of the identified reactive and deactivated species. Furthermore, and in contrast to the MTH process, the deficiency of any olefink-hydrocarbon pool species (that is, the olefin cycle) during the ETH process is also noted.
机译:虽然工业化,但在固酸催化剂上催化升级生物乙醇的机制(即,乙醇 - 烃(Eth)反应)尚未完全解决。此外,对Eth反应的机械理解严重依赖于其众所周知的“姐妹反应”甲醇 - 烃(MTH)方法。然而,MTH过程具有C-1实体反应物,因此不能在同源反应序列上脱光。使用互补固态NMR和Operando Innis弥漫反射光谱分子的组合阐明了沸石H-ZSM-5催化乙烯方法的反应和失活机理,耦合在线质谱。该方法通过分析鉴定的反应性和失活的物种的图案来建立同源反应序列的存在。此外,还注意到,与MTH过程相比,还注意到在乙烯过程中缺乏任何烯烃 - 烃池(即烯烃循环)。

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