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首页> 外文期刊>Journal of the European Ceramic Society >Processing of thin film ceramic membranes for oxygen separation
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Processing of thin film ceramic membranes for oxygen separation

机译:用于氧气分离的薄膜陶瓷膜的加工

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Processing of dense and thin ceramic membrane layers for high temperature selective oxygen separation is addressed in this study. Mixed oxygen-ionic and electronic conducting perovskite oxide system based on La_(0.2)Sr_(0.8)Fe_(0.8)Ta_(0.2)O_(3-δ) composition is employed for processing of structural and functional layers. Special focus is aimed at obtaining thin layer and final microstruclure with particle size in the sub-micron range. Thin layer deposition is performed by dip coating technique using stable colloidal suspension of perovskite particles dispersed within ethanol media. Two polymer based surfactants were screened for their effect on particle agglomeration and rheological response. By using optimum quantity of 2.5 wt.% addition of selected surfactant it is possible to obtain dense 15-60 μm thick functional layers. The thermal cycle applied resulted in final particle sizes within sub-micron range. By employing suspension with pore former it was possible to significantly increase the surface area of the functional layer.
机译:在这项研究中解决了用于高温选择性氧分离的致密和薄陶瓷膜层的处理。基于La_(0.2)Sr_(0.8)Fe_(0.8)Ta_(0.2)O_(3-δ)组成的混合氧离子和电子导电钙钛矿氧化物体系用于处理结构层和功能层。特别关注的目标是获得粒径在亚微米范围内的薄层和最终的微结构。通过浸涂技术使用分散在乙醇介质中的钙钛矿颗粒的稳定胶体悬浮液进行薄层沉积。筛选了两种基于聚合物的表面活性剂对颗粒团聚和流变响应的影响。通过使用最佳量的2.5重量%的所选表面活性剂添加,可以获得致密的15-60μm厚的功能层。施加的热循环导致最终粒度在亚微米范围内。通过使用具有成孔剂的悬浮液,可以显着增加功能层的表面积。

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