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Pore former induced porosity in LSM/CGO cathodes for electrochemical cells for flue gas purification

机译:孔隙成形器在Lsm / CGO阴极中诱导孔隙,用于烟道气净化的电化学电池

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摘要

In this study the effect of the characteristics of polymethyl methacrylate (PMMA) pore formers on the porosity, pore size distribution and the air flow through the prepared lanthanum strontium manganate/gadolinium-doped cerium oxide (LSM/CGO) cathodes was investigated. Porous cathodes were obtained and the highest porosity measured was 46.4% with an average pore diameter of 0.98 μm. The air flow through this cathode was measured to 5.8 ml/(min mm2). Also the effect of exposure time to the solvent was tested for the most promising PMMA pore former and it was found that the average pore diameter decreases as a result of elongated exposure. Also prolong milling of the LSM powder was found to decrease the porosity of the final cathode and milling time should be highly controlled in order to obtain as porous cathodes as possible.
机译:在这项研究中,研究了聚甲基丙烯酸甲酯(PMMA)造孔剂的特性对制备的锰酸镧锶/掺杂oxide的氧化铈(LSM / CGO)阴极的孔隙率,孔径分布和气流的影响。获得多孔阴极,测得的最高孔隙率为46.4%,平均孔径为0.98μm。经测量,通过该阴极的空气流量为5.8 ml /(min mm2)。还针对最有希望的PMMA成孔剂测试了暴露于溶剂的时间的影响,并且发现由于延长的暴露,平均孔径减小。还发现长时间研磨LSM粉末会降低最终阴极的孔隙率,应严格控制研磨时间,以便获得尽可能多的多孔阴极。

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