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Charging a Liquid Organic Hydrogen Carrier with Wet Hydrogen from Electrolysis

机译:用电解用湿氢气对液体有机氢载体充电

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In this contribution we explore the combination of hydrogen production via electrolysis with subsequent storage of the hydrogen via catalytic hydrogenation of the LOHC compound dibenzyltoluene (H0-DBT) without hydrogen drying. The objective is to investigate the influence of water on the performance of Pt, Pd, Rh, and Ru (all alumina-supported) catalysts in the hydrogenation of H0-DBT. Our study shows that H0-DBT can be readily and fully hydrogenated even in the presence of a large excess of water, i.e., through the use of a water-saturated LOHC-phase. The hydrogenation activity of the ruthenium catalyst is hardly affected by water, while a slight decrease in hydrogenation activity was found in the presence of water for the applied Rh, Pt, and Pd catalyst. We conclude that wet hydrogen may be utilized in charging the LOHC compound H0-DBT, and thus, energy and drying equipment for producing dry hydrogen can be saved in the production of the hydrogen-rich carrier perhydro dibenzyltoluene (H18-DBT).
机译:在这种贡献中,我们通过电解通过电解通过电解通过催化氢化的LOHC化合物二苄基甲苯(H0-DBT)的储存来探讨氢气产生的组合而没有氢干燥。目的是研究水对H0-DBT氢化中Pt,Pd,Rh和Ru(所有氧化铝载体)催化剂的性能的影响。我们的研究表明,即使在存在大量的水中,即通过使用水饱和的LOHC相,即使在大量过量的水存在下,也可以容易地氢化H0-DBT。钌催化剂的氢化活性几乎不受水影响,而在施加的RH,Pt和Pd催化剂的水存在下发现氢化活性的略微降低。我们得出结论,湿氢可用于充电LOHC化合物H0-DBT,因此,用于生产干氢的能量和干燥设备可以省去富氢载体perhydro二苄基甲苯(H18-DBT)的生产中。

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