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Partial Regeneration of Ni-Based Catalysts for Hydrogen Production via Methane Cracking

机译:通过甲烷裂解制氢的镍基催化剂的部分再生

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Methane cracking has the potential to produce high purity, carbon monoxide-free hydrogen suitable for application in PEM fuel cells. The 2 products of the reaction are molecular hydrogen and solid carbon. The carbon appears in the form of carbon filaments whose growth is hindered by carbon encapsulation leading to total deactivation of the catalyst. Several attempts have been made to regenerate the catalyst, mainly by gasifying the carbon filament in air or steam. Our work on 5-wt% Ni/γ — Al2O3 indicated that after complete gasification of the carbon the catalyst lost nearly all its activity toward methane cracking. However, if the gasification proceeds to only a certain extent, it is possible to recover significant activity of the catalyst. This technique, also known as partial regeneration, is a promising strategy to overcome the challenge of catalyst deactivation in catalytic decomposition of methane. Optimization of the partial regeneration method is presented here, in particular the extent to which the gasification should take place. Activity of the catalyst and the extent of gasification have been monitored through thermogravimetric analysis. Regeneration of catalyst is still a much-questioned field to maintain not only a continuous and also an economical process. That is why this experimental study focused on regeneration of nickel supported on alumina. As an overview of this study: The effects of percentage of nickel, application of reduction, reaction temperature, and the amount of gasified carbon on weight gain are stated as the rate of carbon formation per gram of nickel present in catalyst.
机译:甲烷裂解有可能产生适用于PEM燃料电池的高纯度,不含一氧化碳的氢气。反应的两种产物是分子氢和固体碳。碳以碳丝的形式出现,碳丝的生长阻碍了碳丝的生长,导致催化剂完全失活。已经进行了几种尝试来再生催化剂,主要是通过在空气或蒸汽中气化碳丝来进行的。我们对5-wt%Ni /γ-Al2O3的研究表明,在碳完全气化后,催化剂几乎失去了所有的甲烷裂解活性。但是,如果气化仅进行到一定程度,则可以恢复催化剂的显着活性。该技术也称为部分再生,是一种有前途的策略,可以克服甲烷催化分解中催化剂失活的挑战。此处介绍了部分再生方法的优化,特别是应进行气化的程度。催化剂的活性和气化程度已通过热重分析进行了监测。催化剂的再生仍然是一个备受质疑的领域,不仅要保持连续而且经济的过程。因此,本实验研究的重点是氧化铝上负载的镍的再生。作为这项研究的概述:镍的百分比,还原的应用,反应温度和气化碳的量对重量增加的影响表示为催化剂中每克镍中碳的形成速率。

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