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Redox Catalysis for Dehydrogenation of Liquid Hydrogen Carrier Fuels for Energy Storage and Conversion

机译:氧化还原催化液氢载体燃料脱氢,以实现储能与转化

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The process of redox catalysis has been known and well studied theoretically and experimentally for several decades. Studies of redox catalysis can be instrumental in determining mechanistic aspects of electrochemical reactions and in measuring basic thermodynamic and kinetic parameters. The application of redox catalysis to the electrochemical dehydrogenation of organic molecules is of interest for a hybrid flow battery/fuel cell system for energy storage. Redox catalysis has the ability to reduce the over potential of the dehydrogenation reaction used in such a system. The mechanism of catalysis can involve an ECE-type reaction or a CEE-type reaction. In either case the acid-base chemistry of the medium is critical. Preliminary results of catalytic current measurements as a function of redox catalyst, base concentration, and base strength are described along with possible reaction mechanisms.
机译:氧化还原催化的过程已知,从理论上和实验持续几十年来看。氧化还原催化的研究可以在确定电化学反应的机制方面和测量基本热力学和动力学参数时仪器。氧化还原催化在有机分子的电化学脱氢中的应用对于能量存储的混合动力电池/燃料电池系统感兴趣。氧化还原催化具有减少这种系统中使用的脱氢反应的过潜能的能力。催化机制可涉及ECE型反应或CEE型反应。在任何一种情况下,培养基的酸碱化学是至关重要的。作为可能的反应机制,描述了作为氧化还原催化剂,基浓度和基础强度的催化电流测量的初步结果。

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