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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Performance of ceramic membrane in vacuum membrane distillation and in vacuum membrane crystallization
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Performance of ceramic membrane in vacuum membrane distillation and in vacuum membrane crystallization

机译:真空膜蒸馏中陶瓷膜的性能及真空膜结晶

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摘要

Membrane crystallization (MCr) is emerging as an interesting candidate to extract additional freshwater and raw materials from high-concentrated solutions. Traditionally, MCr has been carried out by using polymeric membranes that have limited chemical and mechanical stability. These shortcomings can be overcome by using ceramic membranes. The current study describes the preparation and testing of two hydrophobic ceramic membranes synthesized trough sol-gel process, and combined phase-inversion and sintering method. The first membrane (CM-L) was synthesized by coating hydrophobic polymethylsilsesquioxane aerogels on alumina membrane supports via a sol-gel process. The membrane showed stable hydrophobic character in membrane distillation and crystallization tests but very low flux. To obtain high flux, a second type (CM-S) membrane was prepared by applying Fluoroalkylsilanes (FAS) (1H, 1H, 2H, 2H-perfluorooctyltriethoxysilane) hydrophobic agent at the relatively thin and more porous as-sintered alumina hollow fibers. The suitability of both membranes for MCr process was analyzed by crystallizing NaCl and LiCl. By using 1 M NaCl and 13 M LiCl aqueous solutions, and under the same operative conditions, CM-S membrane exhibited average flux higher than CM-L membrane. The performance of both the membranes, in terms of hydrophobic character, remained stable throughout the performed tests.
机译:膜结晶(MCR)作为一种有趣的候选者,以从高浓度的溶液中提取额外的淡水和原料。传统上,MCR通过使用具有有限的化学和机械稳定性的聚合物膜进行。可以通过使用陶瓷膜来克服这些缺点。目前的研究描述了两个疏水性陶瓷膜的制备和测试合成槽溶胶 - 凝胶工艺,以及组合的相反转和烧结方法。通过溶胶 - 凝胶工艺在氧化铝膜载体上涂覆疏水的聚甲基硅氧烷气凝胶来合成第一膜(CM-1)。膜在膜蒸馏和结晶试验中显示出稳定的疏水性,但通量非常低。为了获得高通量,通过将氟代烷基硅烷(Fas)(1H,1H,2H,2H,2H,2H-全氟辛基三氧基硅烷)疏水剂在相对薄的更络合的烧结氧化铝中空纤维中涂抹第二型(CM-S)膜。通过结晶NaCl和LiCl来分析两种膜的适用性MCR工艺。通过使用1M NaCl和13M LiCl水溶液,在相同的操作条件下,CM-S膜表现出高于Cm-L膜的平均助熔剂。在疏水性质方面,膜的性能在整个执行的测试中保持稳定。

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