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Fabrication-microstructure-performa'nce relationships of reversible solid oxide fuel cell electrodes-review

机译:可逆固体氧化物燃料电池电极的制备-微观结构-性能关系-综述

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摘要

A reversible solid oxide fuel cell system can act as an energy storage device by storing energy in the form of hydrogen and heat, buffering intermittent supplies of renewable electricity such as tidal and wave generation. The most widely used electrodes for the cell are lanthanum strontium manganate-yttria stabilised zirconia and Ni-yttria stabilised zirconia. Their microstructure depends on the fabrication techniques, and determines their performance. The concept and efficiency of reversible solid oxide fuel cells are explained, along with cell geometry and micro-structure. Electrode fabrication techniques such as screen printing, dip coating and extrusion are compared according to their advantages and disadvantages, and fuel cell system commercialisation is discussed. Modern techniques used to evaluate microstructure such as three-dimensional computer reconstruction from dual beam focused ion beam-scanning electron microscopy or X-ray computed tomography, and computer modelling are compared. Reversible cell electrode performance is measured using alternating current impedance on symmetrical and three electrode cells, and current/voltage curves on whole cells. Fuel cells and electrolysis cells have been studied extensively, but more work needs to be done to achieve a high performance, durable reversible cell and commercialise a system.
机译:可逆固体氧化物燃料电池系统可以通过以氢和热的形式存储能量,缓冲间歇性的可再生电力供应(例如潮汐和波浪发电)来充当能量存储设备。电池使用最广泛的电极是锰酸锶锶-氧化钇稳定的氧化锆和镍-氧化钇稳定的氧化锆。它们的微观结构取决于制造技术,并决定其性能。解释了可逆固体氧化物燃料电池的概念和效率,以及电池的几何形状和微观结构。根据它们的优缺点比较了电极制造技术,例如丝网印刷,浸涂和挤压,并讨论了燃料电池系统的商业化。比较了用于评估微观结构的现代技术,例如从双束聚焦离子束扫描电子显微镜或X射线计算机断层扫描技术进行三维计算机重建,以及计算机建模。可逆电池的电极性能是使用对称和三个电极电池上的交流阻抗以及整个电池上的电流/电压曲线来测量的。燃料电池和电解电池已经得到了广泛的研究,但是要实现高性能,耐用的可逆电池并使系统商业化,还需要做更多的工作。

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