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Microstructural properties of non-supported microporous ceramic membrane top-layers obtained by the sol-gel process

机译:通过溶胶 - 凝胶法获得的非负载微孔陶瓷膜顶层的微观结构特性

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摘要

Dried and calcined non-supported membrane top-layers of SiO2, SiO2/TiO2, SiO2/ZrO2 (10, 20 and 30 mol% TiO2 and ZrO2, respectively) and SiO2/Al2O3 (10 mol% AlO1.5) were prepared using acid catalyzed hydrolysis and condensation of alkoxides in ethanol. The microstructure was determined using nitrogen physisorption. The modified Horváth-Kawazoe model for nitrogen adsorption in cylindrical pores was used for pore size assessment. SiO2 non-supported membrane top layers were 100% microporous with an average porosity of 30¿37%, depending on drying conditions. The bimodal pore size distribution shows a maximum at an effective pore diameter of 0.5 nm, and a broader tail with a weaker maximum around 0.75 nm. Microporous non-supported binary systems can be prepared with porosities between 15 and 40%. The high reactivity of the Ti, Zr, Al-alkoxides requires carefully chosen conditions. Too much water results in dense materials. The pore size distributions (PSDs) of the binary systems resemble the PSDs for silica.
机译:使用酸制备干燥和煅烧的SiO2,SiO2 / TiO2,SiO2 / ZrO2(分别为10、20和30 mol%TiO2和ZrO2)和SiO2 / Al2O3(10 mol%AlO1.5)的干燥和煅烧的非支撑膜顶层在乙醇中催化醇盐的水解和缩合。使用氮物理吸附确定微观结构。用于圆柱孔中氮吸附的改进的Horváth-Kawazoe模型用于孔径评估。 SiO2非支撑膜顶层为100%微孔,平均孔隙度为30%至37%,这取决于干燥条件。双峰孔径分布在有效孔径为0.5 nm时显示最大值,而较宽的尾部在0.75 nm附近显示较弱的最大值。可以制备孔隙率为15%至40%的微孔非支撑二元体系。 Ti,Zr,Al醇盐的高反应活性需要精心选择的条件。过多的水会导致材料致密。二元体系的孔径分布(PSD)与二氧化硅的PSD相似。

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