微孔陶瓷支架的过滤性能

Aissa Belouatek , Abdellah Ouagued , Mustapha Belhakem , Ahmed Addou
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引用次数: 19

摘要

无机膜在污染处理中的应用实际上受到这种膜的成本的限制。无机膜的优点在于其化学、热学和pH值特性。本工作的目的是开发用于液体废物处理的粘土微孔陶瓷材料。制备具有各种组合物的支撑或陶瓷过滤器,并在1100℃下进行热处理。结果表明,在研究温度下,孔隙率随支架组成的不同而变化,双层(陶瓷)支架的孔隙率为12%,活性炭填充支架的孔隙率为47%,平均孔径在0.8 ~ 1.3 μm之间。体积为5l的蒸馏水在3.5和5.5 bar的压力下切向过滤3小时。用不同大小的分子(埃文斯蓝、NaCl和蔗糖糖)测试所制备的管状支架的保留率。液体在这些载体中的过滤和流动研究表明,截留率取决于载体的组成、孔径和溶质分子量。S1支架(barbotine和1% (w/w)活性炭的混合物)对蒸馏水的通量为68 L/m2 h,而双层支架在3.5 bar压力下对相同溶液的通量为8 L/m2 h。在5.5巴的压力下,观察到蒸馏水通过各种支撑物的流量有所增加。对于S1支撑(230 L/m h)来说,这是显著的。
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Filtration performance of microporous ceramic supports

The use of inorganic membranes in pollution treatment is actually limited by the cost of such membranes. Advantages of inorganic membranes are their chemical, thermal and pH properties. The purpose of this work was the development of microporous ceramic materials based on clay for liquid waste processing. The supports or ceramic filters having various compositions were prepared and thermally treated at 1100 °C. The results show that, at the temperature studied, porosity varied according to the support composition from 12% for the double-layered (ceramic) support to 47% for the activated carbon- filled support with a mean pore diameter between 0.8 and 1.3 μm, respectively. Volumes of 5 l of distilled water were filtered tangentially for 3 h under an applied pressure of 3.5 and 5.5 bar. The retention of tubular supports prepared was tested with molecules of varying size (Evans blue, NaCl and Sacharose). The study of the liquid filtration and flow through these supports showed that the retention rate depends on support composition and pore diameter, and solute molecular weight. The S1 support (mixture of barbotine and 1% (w/w) activated carbon) gave a flux for distilled water of 68 L/m2 h while the double-layered support resulted in a flux of 8 L/m2 h for the same solution at the pressure of 3.5 bar. At a pressure of 5.5 bar an increase in the distilled water flux through the various supports was observed. It was significant for the S1 support (230 L/m h).

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