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Preparation processes and characterizations of alumina-coated alumina support layers and alumina-coated natural material-based support layers for microfiltration

机译:用于微滤的氧化铝涂覆的氧化铝载体层和基于氧化铝涂覆的天然材料的载体层的制备方法和表征

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Recently, porous ceramic membranes have become a subject of significant interest due to their outstanding thermal and chemical stability. To reduce the high manufacturing costs of these porous ceramic membranes, recent research has focused on the utilization of inexpensive natural materials. However, there have not been any well-established direct comparisons of the membrane properties between typical alumina-based membranes and novel natural material-based membranes. Therefore, we compared alumina-coated alumina support layers (with average pore sizes ranging from 0.10 mu m similar to 0.18 mu m), alumina -coated diatomite-kaolin composite support layers (with an average pore size of 0.12 mu m), and alumina-coated pyrophyllite-diatomite composite support layers (with an average pore size of 0.11 gm) via the dip-coating method and subsequent heat treatment ranging from 1200 degrees C-1400 degrees C for 111. The pure water permeability of the alumina-coated diatomite-kaolin composite support layer and the alumina -coated pyrophyllite-diatomite composite support layer was found to be approximately 2.0 X 10(2) L m(-2)h(-1) bar(-1), which is similar to that of an alumina-coated alumina support layer. Therefore, we suggest that the average pore size of an alumina-coated natural material-based support layer can be effectively controlled while exhibiting acceptable water permeability. (C) 2016 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:近来,多孔陶瓷膜由于其优异的热和化学稳定性而已成为人们关注的主题。为了降低这些多孔陶瓷膜的高制造成本,最近的研究集中在廉价的天然材料的利用上。然而,在典型的基于氧化铝的膜和基于新型天然材料的膜之间,尚未对膜的性质进行任何公认的直接比较。因此,我们比较了氧化铝涂层的氧化铝载体层(平均孔径在0.10微米至0.18微米之间),氧化铝涂层的硅藻土-高岭土复合载体层(平均孔径为0.12微米)和氧化铝浸涂法制备的叶蜡石-硅藻土复合支撑层(平均孔径为0.11 gm),随后在1200℃至1400℃的温度范围内进行111的热处理。氧化铝涂层的硅藻土的纯净水渗透性-高岭土复合支撑层和氧化铝包覆的叶蜡石-硅藻土复合支撑层的厚度约为2.0 X 10(2)L m(-2)h(-1)bar(-1)。氧化铝涂覆的氧化铝载体层。因此,我们建议可以有效控制氧化铝涂覆的基于天然材料的支撑层的平均孔径,同时表现出可接受的透水性。 (C)2016 Elsevier Ltd和Techna Group S.r.l.版权所有。

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