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A Short Review on Ni Based Catalysts and Related Engineering Issues for Methane Steam Reforming

机译:基于Ni的催化剂及甲烷蒸汽重整的相关工程问题近综述

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Hydrogen is an important raw material in chemical industries, and the steam reforming of light hydrocarbons (such as methane) is the most used process for its production. In this process, the use of a catalyst is mandatory and, if compared to precious metal-based catalysts, Ni-based catalysts assure an acceptable high activity and a lower cost. The aim of a distributed hydrogen production, for example, through an on-site type hydrogen station, is only reachable if a novel reforming system is developed, with some unique properties that are not present in the large-scale reforming system. These properties include, among the others, (i) daily startup and shutdown (DSS) operation ability, (ii) rapid response to load fluctuation, (iii) compactness of device, and (iv) excellent thermal exchange. In this sense, the catalyst has an important role. There is vast amount of information in the literature regarding the performance of catalysts in methane steam reforming. In this short review, an overview on the most recent advances in Ni based catalysts for methane steam reforming is given, also regarding the use of innovative structured catalysts.
机译:氢是化学工业中重要的原料,光碳氢化合物(如甲烷)的蒸汽重整是其生产的最常用方法。在该方法中,使用催化剂是强制性的,如果与贵金属基催化剂相比,Ni的催化剂可以确保可接受的高活性和更低的成本。例如,通过现场型氢气站的分布氢生产的目的仅是可到达的,如果开发了一种新颖的重整系统,具有一些独特的特性,这些特性在大规模的重整系统中不存在。这些属性包括(i)每日启动和关闭(DSS)操作能力,(ii)对负载波动的快速响应,(iii)设备的紧凑性,(iv)优异的热交换。从这个意义上讲,催化剂具有重要作用。关于甲烷蒸汽重整催化剂性能的文献中存在大量信息。在这篇短暂的审查中,还给出了基于Ni基于Ni的甲烷蒸汽重整催化剂的最新进展的概述,还关于使用创新的结构催化剂。

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