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Characteristics of Decalin Dehydrogenation Catalysis in the Superheated Liquid-Film State for Mobile Storage of Hydrogen

机译:液态液体过热状态下萘烷脱氢催化特性的研究

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Efficient hydrogen evolution from decalin by heating at 210deg C and cooling at 5deg C was attempted in a batch-wise reactor by the use of "superheated liquid-film-type catalysis".When the carbon-supported metal catalyst 0.75 g was immersed with decalin 3.0 m/under a reactive distillation conditions,a liquid-film state was realized and the catalytic conversion of decalin was remarkably enhanced in contrast to the ordinary suspended state (e.g.,0.75 g/10 ml).Active sites in the liquid-film state were superheated,being higher in temperatures than the boiling point of the substrate solution,which gave the catalytic abilities of both high reaction rates and accelerated desorption of the reaction products from the catalyst surface,as evident from the Langmuir-type analysis.In addition,scarcity of substrate in the liquid-film state improved the utilization efficiency of heat by allotting it more to the endothermic reaction rather than to inevitable evaporation.According to our repetitive reaction test with the same catalyst,reproducible activities were confirmed well.The adoption of superheated liquid-film-type catalysis for decalin dehydrogenation would make the reaction couple with naphthalene hydrogenation useful for mobile storage of hydrogen.
机译:通过使用“过热液膜型催化”,在间歇式反应器中尝试通过在210℃加热和在5℃冷却从十氢化萘高效析氢。当将0.75 g的碳载金属催化剂浸入十氢化萘中时与常规悬浮状态(例如0.75 g / 10 ml)相比,在反应蒸馏条件下3.0 m / a时,实现了液膜状态,并且十氢化萘的催化转化率显着提高。从Langmuir型分析中可以明显看出,它们是过热的,温度要高于底物溶液的沸点,从而具有高反应速率和反应产物从催化剂表面加速解吸的催化能力。液膜状态下基板的稀缺性将热量更多地分配给吸热反应而不是不可避免地蒸发,从而提高了热量的利用效率。使用相同的催化剂进行的催化试验,证实了可再现的活性。采用过热液膜型催化剂进行十氢化萘脱氢将使该反应与萘加氢反应可用于氢的移动存储。

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