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Review of perovskite ceramic synthesis and membrane preparation methods

机译:钙钛矿陶瓷的合成及膜的制备方法综述

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摘要

In the 25 years since the first report of mixed ionic and electronic conducting ceramics, perovskite membranes underwent both research and development phases, with the latest works entering pilot trials for oxygen separation from air. During this time a number of perovskite synthesis methods were investigated from the original solid state chemistry through the more advanced and well established sol-gel route via the Pechinni method. The advances in synthesis methods were possible due to the desirable full incorporation of cations into the A and B-sites of perovskites with a general ABO structure. In terms of membrane manufacturing, perovskite hollow fibres attracted a major research effort due to small membrane thickness and high fluxes. This led to a number of investigations by doping with other cations or by surface modification, all aiming at increasing oxygen fluxes. Recently, advanced ceramic processing by tape casting has led to the preparation of very thin dense films either on porous supports or as monoliths containing internal porous regions. All these developments in perovskite synthesis and membrane preparation methods, together with other types of methods requiring special equipment are addressed in this review, including an analysis of the state of the art. Finally, future challenges are discussed in terms of competing technologies and potential industrial design directions of perovskite membranes for oxygen separation from air.
机译:自从首次报告混合离子和电子导电陶瓷以来的25年中,钙钛矿膜经历了研发阶段,最新工作进入了从空气中分离氧气的试验性阶段。在这段时间里,通过Pechinni方法,通过更先进和完善的溶胶-凝胶路线,从最初的固态化学方法研究了许多钙钛矿合成方法。由于理想的将阳离子完全掺入具有一般ABO结构的钙钛矿的A和B位,因此合成方法的进步是可能的。在膜的制造方面,钙钛矿中空纤维由于膜厚度小和通量高而吸引了大量的研究工作。这导致通过掺杂其他阳离子或通过表面改性进行许多研究,所有这些研究均旨在增加氧气通量。近来,通过流延铸造的先进陶瓷加工导致在多孔载体上或作为包含内部多孔区域的整料的非常薄的致密膜的制备。本文综述了钙钛矿合成和膜制备方法的所有这些进展,以及需要特殊设备的其他类型方法,包括对现有技术的分析。最后,就竞争技术和钙钛矿膜用于从空气中分离氧气的潜在工业设计方向,讨论了未来的挑战。

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