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Preparation and characterization of tubular supported ceramic microfiltration membranes from fly ash

机译:粉煤灰制备管状负载陶瓷微滤膜及其表征

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摘要

Crack-free tubular supported ceramic microfiltration membranes have been prepared by a slip-casting method using refined fly ash as the raw material. The effects of slip concentration, casting time, and withdrawal speed on the pore size distribution, weight gain, and morphology structure of the sintered membranes have been investigated. Scanning electron microscopy images showed that optimization of the slip concentration could avoid crack formation in the coating. The weight gain of the sintered membrane increased linearly with the square root of the casting time. However, the effects of casting time and withdrawal rate on the pore size distribution of the sintered membrane proved to be insignificant. Furthermore, the pore size distribution of the sintered membrane became sharp upon applying a second coating. The average pore diameter and pure water permeability of the double-coated membrane were 0.77 μm and 1.56 x 10~4 L m~(-2) h~(-1) bar~(-1), respectively, with a transmembrane pressure of 0.1 MPa at room temperature.
机译:采用精制粉煤灰为原料,通过流延法制备了无裂纹的管状支撑陶瓷微滤膜。研究了滑移浓度,浇铸时间和撤出速度对烧结膜孔径分布,重量增加和形态结构的影响。扫描电子显微镜图像显示,粉浆浓度的优化可以避免涂层中形成裂纹。烧结膜的重量增加随流延时间的平方根线性增加。然而,流延时间和撤出速率对烧结膜的孔径分布的影响被证明是微不足道的。此外,在涂覆第二涂层时,烧结膜的孔径分布变得清晰。双层膜的平均孔径和纯水渗透率分别为0.77μm和1.56 x 10〜4 L m〜(-2)h〜(-1)bar〜(-1),跨膜压力为室温下为0.1 MPa。

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