首页> 外文期刊>Journal of the European Ceramic Society >Comparison of low and high pressure infiltration regimes on the density and highly porous microstructure of ceria ecoceramics made from sustainable cork templates
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Comparison of low and high pressure infiltration regimes on the density and highly porous microstructure of ceria ecoceramics made from sustainable cork templates

机译:低压渗透制度对可持续软木模板(可持续软木模板)密度和高度多孔微观结构的低压渗透制度

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摘要

Cork templates were used to produce lightweight bulk biomimetic ecoceramic (environmentally conscious ceramic) monoliths. Bulk/monolithic ceramics are vital for many applications, i.e. energy materials and fuel cells. Using simple and flexible, aqueous green-chemistry procedures, for the first time the influence of infiltration regime, number of infiltration cycles and sintering temperature on ecoceramic density and microstructure was studied. This lightweight three-dimensionally ordered macroporous (3DOM) CeO2 preserved the hexagonal cellular structure of cork, but unlike the wood, the rear cell walls were open, greatly increasing open porosity. Higher sintering temperatures (1600 instead of 1000 degrees C) were required to produce cm size monolithic ecoceramics mechanically strong enough to be handled. The infiltration regime and number of infiltration cycles affected density and porosity. Lower infiltration pressure led to higher porosity ecoceramics (3.3-5.7%), which may favour catalytic performance, showing the possibility of tailoring porosity and specific surface area by modifying the number of infiltration cycles.
机译:软木模板用于生产轻质散装生物仿生杂种(环保陶瓷)整料。散装/单片陶瓷对于许多应用至关重要,即能量材料和燃料电池。研究了使用简单灵活的水化学水化学程序,首次研究了渗透制度的影响,渗透循环的数量和烧结温度对生物烧色密度和微观结构进行了影响。这款轻量级三维订购的大孔(3Dom)CEO2保留了软木塞的六边形细胞结构,但与木材不同,后电池壁打开,大大增加开放孔隙率。需要较高的烧结温度(1600代替1000℃),以生产足够强大的机械强度的CM尺寸整体杂种。渗透制度和渗透循环影响的密度和孔隙率。降低渗透压力导致孔隙率高(3.3-5.7%),可能有利于催化性能,显示通过改变渗透循环的数量来定制孔隙率和比表面积的可能性。

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