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首页> 外文期刊>Journal of Thermal Spray Technology >Flame-Based Technologies and Reactive Spray Deposition Technology for Low-Temperature Solid Oxide Fuel Cells: Technical and Economic Aspects
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Flame-Based Technologies and Reactive Spray Deposition Technology for Low-Temperature Solid Oxide Fuel Cells: Technical and Economic Aspects

机译:低温固体氧化物燃料电池的基于火焰的技术和反应性喷涂沉积技术:技术和经济方面

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摘要

The economic and technical breakthroughs in solid oxide fuel cell (SOFC) for commercial success still depend on high-quality manufacture, reliability, efficiency, and must have an acceptable cost when compared to competing technologies. The application of flame-based technologies as a one-step deposition technique for SOFC component manufacture has potential to reduce both cost and production time. In this article, cells produced by flame processes have been reviewed with emphases placed on the Reactive Spray Deposition Technology technique. Various experimental methods and examples for the synthesis of porous electrodes and dense electrolytes are reviewed. The studies focus on determining the range of the flame conditions under which each of the individual cell components for low temperature SOFC applications ~600 °C could be successfully deposited.
机译:固体氧化物燃料电池(SOFC)在商业上取得成功的经济和技术突破仍然取决于高质量的制造,可靠性,效率,并且与竞争技术相比必须具有可接受的成本。基于火焰的技术作为SOFC组件制造的一步沉积技术的应用具有降低成本和缩短生产时间的潜力。在本文中,对火焰过程产生的电池进行了综述,重点放在了反应喷涂技术上。综述了用于合成多孔电极和致密电解质的各种实验方法和实例。这些研究集中于确定火焰条件的范围,在该范围内,可以成功沉积约600°C的低温SOFC应用中的各个电池组件。

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