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Materials for IT-SOFC stacks 35 years R&D: the inevitability of gradualness? [Review]

机译:用于IT-SOFC烟囱的材料35年的研发:渐进性的必然性? [评论]

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A personal view is presented of developments over the period 1964-1999 that have gradually made possible the fabrication of IT-SOFC stacks operating at 500 degreesC. Although conceptual IT-SOFC designs were available in the early 1960s, their implementation had to await a much better understanding of various topics including: selection of optimal dopant type and concentration for solid electrolytes; the influence of microstructure on ionic conduction in ceramics; and the mechanism of oxygen ion formation and injection into solid electrolytes. The latter two topics have benefited immeasurably by the introduction of relevant instrumental techniques involving the use of frequency response analysers, and dynamic SIMS equipment to measure O-18/O-16 profiles in oxide electrolytes and mixed conductors. The parallel development of hydrocarbon reforming technology has also stimulated interest in IT-SOFC systems as syngas can now be effectively produced from natural gas at intermediate temperatures. With deregulation stimulating the introduction of distributed (embedded) electric power generation, the commercial future of micro-CHP units incorporating IT-SOFC stacks appears assured with entry into the market expected early in the next millennium. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 123]
机译:本文介绍了1964-1999年间的发展情况,这些发展逐渐使在500摄氏度下工作的IT-SOFC电池组的制造成为可能。尽管IT-SOFC的概念设计可在1960年代初期获得,但它们的实施必须等待对各个主题的更好的理解,这些主题包括:选择固体电解质的最佳掺杂剂类型和浓度;微观结构对陶瓷离子传导的影响;以及氧离子形成和注入固体电解质的机理。通过引入相关的仪器技术(包括使用频率响应分析仪和动态SIMS设备来测量氧化物电解质和混合导体中的O-18 / O-16轮廓),后两个主题将无可估量地受益。烃重整技术的并行发展也激发了人们对IT-SOFC系统的兴趣,因为现在可以在中间温度下有效地从天然气中生产合成气。随着放松管制刺激了分布式(嵌入式)发电的引入,装有IT-SOFC烟囱的微型热电联产装置的商业未来似乎得到了保证,并有望在下一个千年初进入市场。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:123]

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