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Sintering Effect on Material Properties of Electrochemical Reactors Used for Removal of Nitrogen Oxides and Soot Particles Emitted from Diesel Engines

机译:用于除去柴油发动机发射的氮氧化物和烟灰颗粒的电化学反应器材料性能的烧结作用

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摘要

In the present work, 12-layered electrochemical reactors (comprising five cells) with a novel configuration including supporting layer lanthanum strontium manganate (LSM)-yttria stabilised zirconia (YSZ), electrode layer LSM-gadolinia-doped cerium oxide (CGO) and electrolyte layer CGO were fabricated via the processes of slurry preparation, tape casting and lamination and sintering. The parameters of porosity, pore size, pore size distribution, shrinkage, flow rate of the sintered reactors and the electrical conductivities of the supporting layer and the electrode in the sintered reactors were characterised. The effect of sintering temperature on microstructures and properties of the sintered samples was discussed, and 1,250 °C was determined as the appropriate sintering temperature for reactor production based on the performance requirements for applications. Using the present ceramic processing route, porous, flat and crack-free electrochemical reactors were successfully achieved. The produced electrochemical reactors have the potential application in the removal of NOx and soot particles emitted from the diesel engines.
机译:在本作工作中,12层电化学反应器(包含五个细胞),具有新的构造,包括支撑层锰酸镧锰酸盐(LSM) - 核稳定的氧化锆(YSZ),电极层LSM-掺杂铈氧化物(CGO)和电解质通过浆料制备,胶带铸造和层压和烧结的方法制造层CgO。表征了孔隙率,孔径,孔径分布,收缩,烧结层和烧结反应器中电极的电导率的参数。讨论了烧结对组织和烧结样品的特性温度的影响,和1250℃被确定为基于用于应用的性能要求适当的烧结温度的反应器生产。使用本陶瓷加工途径,成功实现了多孔,平坦和无裂缝的电化学反应器。所生产的电化学反应器具有在去除从柴油发动机发射的NOx和烟灰颗粒中的潜在应用。

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