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Carbon supports for the catalytic dehydrogenation of liquid organic hydrides as hydrogen storage and delivery system

机译:碳载体用于液态有机氢化物的催化脱氢,作为储氢和输送系统

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The use of liquid organic hydrides as hydrogen carriers is a promising storage and delivery system due to the advantages of using liquid-based infrastructures and its economic feasibility compared to other conventional systems. The reversible dehydrogenation/hy-drogenation of liquid organic hydrides is a key point for the development of highly performance reactors. In this study different carbon materials have been investigated as platinum supports, including carbon nanofibers, carbon black, carbon xerogel, activated carbon and ordered mesoporous carbon. To individuate the effect of the carbon support on the catalytic activity, platinum particles were synthesized by a microemulsion procedure. The analysis of the hydrogen evolution curves indicate that the support BET surface area plays a very important role on the initial catalytic activity, obtaining a maximum rate of 220 mmol gpt~1 min ~1 when using an ordered mesoporous carbon with a surface area of 930 m~2 g ~1. Nevertheless, the analysis of catalytic activity at prolonged duration indicates a better behavior toward deactivation for supports characterized by wide pores and low graphitization degree like carbon black or carbon xerogel, despite their lower initial dehydrogenation rate (100-140 mmol gpt~1 min ~1). The ultimate use in the dehydrogenation reactor as well as the operation conditions will define the best catalyst structure from the point of view of the carbon support.
机译:液态有机氢化物作为氢载体的使用是一种有前途的存储和输送系统,这是因为与其他常规系统相比,使用液态基础设施的优势及其经济可行性。液态有机氢化物的可逆脱氢/氢化是开发高性能反应器的关键。在这项研究中,已经研究了不同的碳材料作为铂载体,包括碳纳米纤维,炭黑,碳干凝胶,活性炭和有序介孔碳。为了区分碳载体对催化活性的影响,通过微乳化程序合成了铂颗粒。析氢曲线的分析表明,载体BET表面积对初始催化活性起着非常重要的作用,当使用表面积为930的有序介孔碳时,其最大吸附速率为220 mmol gpt〜1 min〜1。 m〜2克〜1。尽管如此,长时间的催化活性分析表明,尽管具有较低的初始脱氢速率(100-140 mmol gpt〜1 min〜1),但具有宽孔和低石墨化度的载体(如炭黑或碳干凝胶)具有更好的失活性能。 )。从碳载体的角度来看,脱氢反应器的最终用途以及操作条件将确定最佳的催化剂结构。

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