首页> 外文会议>The 16th International Conference on Solid State Ionics(第十六届国际固态离子学会议) >Remote control of the activity of a Pt catalyst supported on a mixed ionic electronic conducting membrane
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Remote control of the activity of a Pt catalyst supported on a mixed ionic electronic conducting membrane

机译:远程控制混合离子电子导电膜上负载的Pt催化剂的活性

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A novel configuration for the in situ control of the catalytic activity of a polycrystalline Pt catalyst supported on a mixed ionic electronic conducting (MIEC) substrate is investigated. The modification of the catalytic activity is achieved by inducing the reverse spillover of oxygen promoting species from the support onto the catalyst surface, thus modifying the chemisorptive bond energy of the gas phase adsorbed reactants. This phenomenon is known as Electrochemical Promotion of Catalysis (EPOC). In this work we investigate the use of a wireless system that takes advantage of the mixed ionic electronic conductivity of the catalyst support (internally short-circuiting the system) in a dual chamber reactor. In this wireless configuration, the reaction takes place in one chamber of the membrane reactor while introduction of the promoting species is achieved by the use of an appropriate sweep gas (and therefore control of the oxygen chemical potential difference across the membrane) on the other chamber.Experimental results have shown that the catalytic rate can be enhanced by using an oxygen sweep, while a hydrogen sweep can reverse the changes. Total rate enhancement ratios of up to 3.5 were measured.
机译:研究了一种原位控制负载在混合离子电子导电(MIEC)衬底上的多晶Pt催化剂的催化活性的新型结构。催化活性的改变是通过促使氧促进物质从载体反向溢出到催化剂表面上来实现的,从而改变了气相吸附反应物的化学吸附键能。这种现象称为电化学催化促进(EPOC)。在这项工作中,我们研究了无线系统的使用,该系统利用了双室反应器中催化剂载体(内部使系统短路)的混合离子电子电导率。在这种无线配置中,反应发生在膜反应器的一个腔室中,而促进物质的引入是通过在另一腔室中使用适当的吹扫气体(并因此控制跨膜的氧化学势差)来实现的。实验结果表明,使用氧气扫描可以提高催化速率,而氢气扫描可以逆转这种变化。测量的总速率增强比高达3.5。

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