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Development and testing of a PEM SO2-depolarized electrolyzer and an operating method that prevents sulfur accumulation

机译:PEM SO2去极化电解器的开发和测试及其防止硫积累的操作方法

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The hybrid sulfur (HyS) cycle is being developed as a technology to generate hydrogen by splitting water, using heat and electrical power from a nuclear or solar power plant. A key component is the SO2-depolarized electrolysis (SDE) cell, which reacts SO2 and water to form hydrogen and sulfuric acid. SDE could also be used in once-through operation to consume SO2 and generate hydrogen and sulfuric acid for sale. A proton exchange membrane (PEM) SDE cell based on a PEM fuel cell design was fabricated and tested. Measured cell potential as a function of anolyte pressure and flow rate, sulfuric acid concentration, and cell temperature are presented for this cell. Sulfur accumulation was observed inside the cell, which could have been a serious impediment to further development. A method to prevent sulfur formation was subsequently developed. This was made possible by a testing facility that allowed unattended operation for extended periods. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:混合硫(HyS)循环正被开发为一种利用核能或太阳能发电厂的热量和电力通过分解水产生氢的技术。关键组件是SO2去极化电解(SDE)电池,该电池使SO2和水反应形成氢和硫酸。 SDE还可以用于一次性操作中以消耗SO2并产生氢气和硫酸进行出售。制作并测试了基于PEM燃料电池设计的质子交换膜(PEM)SDE电池。给出了该电池的测量电势与阳极电解液压力和流速,硫酸浓度和电池温度的关系。在电池内部观察到硫的积累,这可能是进一步发展的严重障碍。随后开发了防止硫形成的方法。这是通过允许长时间无人值守运行的测试设施实现的。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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