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Hydrocarbon pyrolysis with a methane focus: A review on the catalytic effect and the coke production

机译:以甲烷为代表的碳氢化合物热解:催化作用和焦炭生产的综述

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Hydrocarbon pyrolysis has been widely studied since the 1900s for applications in aerospace as a fuel and/or coolant or for use with fuel cells and hydrogen production with a catalyst. In this context, the role of heterogeneous reactions with homogeneous phase chemistry is unclear despite the fact that it is obviously at the heart of coupled physico-chemical phenomena. In addition, the thermal formation of solid carbon particles - coke, which can be deposited on the structure, impacts the heterogeneous reactions. The aim of this work is to review the available literature on hydrocarbon pyrolysis involving reactions with solid surfaces and coke particles. The influent parameters such as the nature of the fluid, the temperature (up to 2000 K), the pressure (up to 100 bars), the residence time (mu s order to min order), the reactor type (plug flow, batch, and perfectly stirred reactor) and the type of catalyst (metallic or more complex such as zeolites) are discussed. Then, a link between catalicity and coke production is addressed. This literature survey focuses in particular on methane because of the growing interest regarding the potential for hypersonic applications. (C) 2014 Elsevier B.V. All rights reserved.
机译:自1900年代以来,对烃类热解进行了广泛的研究,用于航空航天中作为燃料和/或冷却剂,或与燃料电池一起使用,以及用催化剂制氢。在这种情况下,尽管均相化学是耦合物理化学现象的核心,但均相化学的作用尚不清楚。此外,固体碳颗粒(焦炭)的热形成会沉积在结构上,从而影响异质反应。这项工作的目的是回顾有关涉及与固体表面和焦炭颗粒反应的烃热解的现有文献。进水参数,例如流体的性质,温度(最高2000 K),压力(最高100 bar),停留时间(μs到min order),反应器类型(活塞流,批处理,并讨论了完全搅拌的反应器)和催化剂的类型(金属或更复杂的化合物,例如沸石)。然后,讨论了灾难性和焦炭生产之间的联系。这项文献调查特别关注甲烷,因为人们对高超声速应用的潜力越来越感兴趣。 (C)2014 Elsevier B.V.保留所有权利。

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