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Development and characterization of tubular composite ceramic membranes using natural alumino-silicates for microfiltration applications

机译:使用天然硅铝酸盐的管状复合陶瓷膜的开发和表征,用于微滤应用

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摘要

Abstract The preparation and characterization of porous tubular ceramic composite microfiltration membranes, using kaolins and calcium carbonates, were reported. The porous gehlenite (2CaO·Al2O3·SiO2) and anorthite (CaO·Al2O3·2SiO2) based ceramics were obtained by a solid state reaction. A ceramic support, sintered at 1250 C, within an average pore size of about 8 μm, a porosity of about 47% and a compression strength around 40 MPa, was prepared. The microfiltration active top layer was added on the support by a slip casting from clay powder suspensions. The novel microfiltration membrane layer has a thickness of 40 μm and an APS value of about 0.2 μm. This average pore size value was improved and considerably lower than those reported in the literature (0.5 μm). The performance of the novel microfiltration ceramic membrane was determined for evaluating both the water permeability and rejection. This proved the potentiality of the membrane produced in the microfiltration field. Moreover, the good adhesion, between the support and the active microfiltration layer membranes, was also proved. A correlation between microstructures of used powders and physicochemical properties was discussed. Finally, the origin of the unique two powder order membrane depositions was also proposed.
机译:摘要报道了用高岭土和碳酸钙制备多孔管状陶瓷复合微滤膜及其表征。通过固相反应,得到多孔钙铝石(2CaO·Al2O3·SiO2)和钙长石(CaO·Al2O3·2SiO2)基陶瓷。制备在约50μm的平均孔径,约47%的孔隙率和约40MPa的压缩强度下在1250℃下烧结的陶瓷载体。通过泥浆悬浮液的粉浆浇铸将微滤活性顶层添加到载体上。新型微滤膜层具有40μm的厚度和约0.2μm的APS值。该平均孔径值得到了改善,并且大大低于文献报道的平均孔径值(0.5μm)。确定了新型微滤陶瓷膜的性能,以评估其透水性和拒水率。这证明了在微滤领域中生产膜的潜力。此外,还证明了载体与活性微滤层膜之间的良好粘附性。讨论了用过的粉末的微观结构与理化性质之间的相关性。最后,还提出了独特的两种粉末级膜沉积的起源。

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