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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >A review of catalytic issues and process conditions for renewable hydrogen and alkanes by aqueous-phase reforming of oxygenated hydrocarbons over supported metal catalysts
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A review of catalytic issues and process conditions for renewable hydrogen and alkanes by aqueous-phase reforming of oxygenated hydrocarbons over supported metal catalysts

机译:负载型金属催化剂上含氧烃的水相重整制可再生氢和烷烃的催化问题和工艺条件的综述

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We have recently developed a single-step, low-temperature process for the catalytic production of fuels, such as hydrogen and/or alkanes, from renewable biomass-derived oxygenated hydrocarbons. This paper reviews our work in the development of this aqueous-phase reforming (APR) process to produce, hydrogen or alkanes in high yields. First, the thermodynamic and kinetic considerations that form the basis of the process are discussed, after which reaction kinetics results for ethylene glycol APR over different metals and supports are presented. These studies indicate Pt-based catalysts are effective for producing hydrogen via APR. Various reaction pathways may occur, depending on the nature of the catalyst, support, feed and process conditions. The effects of these various factors on the selectivity of the process to make hydrogen versus alkanes are discussed, and it is shown how process conditions can be manipulated to control the molecular weight distribution of the product alkane stream. In addition, process improvements that lead to hydrogen containing low concentrations of CO are discussed, and a dual-reactor strategy for processing high concentrations of glucose feeds is demonstrated. Finally, various strategies are assembled in the form of a composite process that can be used to produce renewable alkanes or fuel-cell grade hydrogen with high selectivity from concentrated feedstocks of oxygenated hydrocarbons. (C) 2004 Elsevier B.V. All rights reserved.
机译:我们最近开发了一种单步低温工艺,用于从可再生生物质衍生的含氧烃催化生产燃料,例如氢气和/或烷烃。本文回顾了我们在开发这种水相重整(APR)工艺以高产率生产氢气或烷烃方面的工作。首先,讨论了构成该方法基础的热力学和动力学因素,然后介绍了乙二醇APR在不同金属和载体上的反应动力学结果。这些研究表明,基于Pt的催化剂可有效地通过APR生产氢。取决于催化剂的性质,载体,进料和工艺条件,可能发生各种反应途径。讨论了这些因素对制氢对烷烃的选择性的影响,并显示了如何控制工艺条件以控制产物烷烃物流的分子量分布。另外,讨论了导致氢包含低浓度的CO的工艺改进,并论证了用于处理高浓度葡萄糖进料的双反应器策略。最后,以复合过程的形式组装了各种策略,这些策略可用于从含氧碳氢化合物的浓缩原料中以高选择性生产可再生烷烃或燃料电池级氢。 (C)2004 Elsevier B.V.保留所有权利。

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