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首页> 外文期刊>Journal of the European Ceramic Society >MgO as a non-pyrolyzable pore former in porous membrane supports
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MgO as a non-pyrolyzable pore former in porous membrane supports

机译:MgO作为多孔膜支撑件的不可原成的孔前剂

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The gas permeability of Y0.03Zr0.97O2 (3Y-TZP) porous supports from thermoplastic feedstocks has been improved by adding MgO as a non-pyrolyzable pore former. Common pyrolyzable pore formers such as graphite often produce tortuous and narrow pore channels with low gas permeability, limiting the performance of oxygen transport membranes or other membranes relying on gas transport to the active membrane surface. Thermoplastic feedstocks for extrusion of tubular 3Y-TZP supports were prepared with four different amounts of pyrolyzable pore formers and/or MgO as non-pyrolyzable pore former. The MgO was removed after sintering by leaching in acetic acid. With this technique we obtained porosities above 70 vol% and gas permeabilities above 3.10(-14) m(2). Compared to samples with only pyrolyzable pore formers, the non-pyrolyzable pore former increases the gas permeability and reduces the tortuosity.
机译:通过加入MgO作为一种不可溶解的孔前,通过加入MgO来改善来自热塑性原料的Y0.03ZR0.97O2(3Y-TZP)多孔载体的透气性。 常见的可热解体孔隙甲板如石墨经常产生具有低气体渗透性的曲折和窄的孔通道,限制氧气转运膜或依赖于气体输送到活性膜表面的其他膜的性能。 用于挤出管状3Y-TZP支撑件的热塑性原料是用四种不同量的可原化的孔成型剂和/或MgO制备,作为不可溶解的孔剂。 通过在乙酸中浸出后烧结后除去MgO。 利用这种技术,我们获得了70体积%的孔隙率和高于3.10(-14)m(2)的气体渗透率。 与仅可原化的孔隙夹板的样品相比,不可原液孔隙以前增加了透气性并减少了曲折性。

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