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Development of spinel forming alloys with improved electronic conductivity for MCFC applications

机译:开发用于MCFC应用的具有改善的电子电导率的尖晶石成形合金

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The molten carbonate fuel cells (MCFC), as an alternative power source, present one of the most promising and environmental cleanest processes. As a high temperature fuel cell, problems arise due to corrosion of the metallic current collectors and voltage drop by formation of insulating corrosion products. The aim of this work is to develop Fe-Cr stainless steels, alloyed with different amounts of Mn, Co, Si, Ni, Mo, in order to obtain an acceptable thin corrosion scale with a low electrical resistivity by spinel formation. The formation of spinel layers as corrosion products, containing multivalent elements like Mn, Co and Mo is expected to give satisfactory results. In situ conductivity measurements and corrosion tests have been performed in the presence of a (Li, K) carbonate melt at 650 deg C under an oxidizing gas atmosphere (15 vol. percent CO_2 and synthetic air) up to 5000 h. Investigations of the corrosion scales on the hot rolled alloys indicated a solubility of Co and Mn in the spinel layer, formed under the simulated MCFC conditions. Outward diffusion of Mn and Co was observed after longer reaction times. An inner oxidation zone was also measured and connection between conductivity behaviour and the composition of this layers is found.
机译:熔融碳酸盐燃料电池(MCFC)作为替代动力源,是最有前途和最环保的工艺之一。作为高温燃料电池,由于金属集电器的腐蚀和由于绝缘腐蚀产物的形成而引起的电压降而引起问题。这项工作的目的是开发与不同含量的Mn,Co,Si,Ni,Mo合金化的Fe-Cr不锈钢,以便通过尖晶石形成获得具有低电阻率的可接受的薄腐蚀垢。尖晶石层作为腐蚀产物的形成,预期包含令人满意的结果,其中所述尖晶石层包含锰,钴和钼等多价元素。在氧化性气体气氛(15%体积的CO_2和合成空气)下,在长达5,000h的氧化碳气氛下,在650摄氏度下(碳酸锂)熔体存在下,进行了电导率测量和腐蚀测试。对热轧合金腐蚀垢的研究表明,在模拟MCFC条件下形成的尖晶石层中Co和Mn的溶解度。在更长的反应时间后观察到Mn和Co的向外扩散。还测量了内部氧化区,并且发现了电导率行为与该层的组成之间的联系。

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