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MCO-Coated Interconnects: Stack Testing and Results

机译:MCO涂层互连:堆栈测试和结果

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Coating development at FuelCell Energy (FCE) is a continuous activity looking at optimizing chemistry, application process and features of the coating for longer life of the solid oxide fuel cell (SOFC) stack in high humidity environment. Cathode interconnects surfaces are protected with manganese cobalt oxide (MCO) coatings to minimize chrome evaporation and poisoning of the fuel cell. Protecting the surface of cathode interconnects becomes necessary to extend the SOFC life. Two different coatings have been studied at FCE. MCO was either deposited as a perovskite by dip coating or formed in situ during stack operation. A direct comparison of the two methods was studied after hundreds of hours in SOFC stack testing both in dry and humid air environment. The stacks were tested in normal conditions with dry air in cathode and also in air with additional humidity. A significant improvement in degradation rate and cell stability has been observed and achieved with those stacks.
机译:燃料电能(FCE)的涂层开发是一种连续的活性,正在寻找优化的化学,涂料和涂层的特征,以便在高湿度环境中的固体氧化物燃料电池(SOFC)堆叠的更长寿命。阴极互连表面与锰钴氧化物(MCO)涂层保护,以最大限度地减少燃料电池的铬蒸发和中毒。保护阴极互连的表面变得延长SOFC寿命是必要的。 FCE研究了两种不同的涂料。 MCO通过浸涂沉积为钙钛矿或在堆叠操作期间原位形成。在干燥和潮湿的空气环境中,在SOFC堆栈测试中进行了数百小时后,研究了这两种方法的直接比较。在正常条件下测试堆,在阴极中的干燥空气,并且在空气中具有额外的湿度。已经观察到降解速率和细胞稳定性的显着改善,并用这些堆叠实现。

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