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Preparation of gamma-Al2O3 membranes for ultrafiltration by reverse micelles-mediated sol-gel process

机译:反转胶束介导的溶胶 - 凝胶工艺制备γ-Al2O3膜用于超滤

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Sol-gel process was modified by reverse micelles (RMs) for the preparation of gamma-Al2O3 ultrafiltration (UF) membranes and their applications in the efficient rejection of methyl blue and bovine serum albumin were explored. The optimized boehmite sol with a narrower particle size distribution and better sphericity was synthesized by using cetyltrimethyl ammonium bromide RMs as microreactors and was dip-coated on alpha-Al2O3 microfiltration substrates to prepare gamma-Al2O3 UF membranes. It was found that not only the sol particle size, it's distribution and morphology had also an important effect on the pore size, pore size distribution, porosity and pore volume of the membrane. Additionally, the as-prepared membranes with a MWCO of 8 kDa exhibited a narrow pore size distribution (4.8-6.8 nm), relatively high pure-water flux (30.4 L/(h m(2) bar)) and excellent rejection for bovine serum albumin and methyl blue with the maximum rejection rate of 96.2% and 96.8% respectively.
机译:通过反转胶束(RMS)改性溶胶 - 凝胶方法,用于制备γ-Al2O3超滤(UF)膜及其在有效排斥甲基蓝和牛血清白蛋白中的应用。 通过使用甲酰基三甲基溴化铵RMS作为微反应器,合成具有较窄粒度分布和更好球形度的优化勃姆石溶胶,并在α-Al2O3微滤基板上浸涂以制备γ-Al2O3 UF膜。 结果发现,不仅是溶胶粒径,它的分布和形态也对孔径,孔径分布,膜的孔隙率和孔隙体积的重要作用也是重要的。 另外,具有8kDA的MWCO的AS制备的膜表现出窄的孔径分布(4.8-6.8nm),相对高的纯水通量(30.4L /(HM(2)条))和对牛血清的优异排斥反应 白蛋白和甲基蓝的最大排斥率分别为96.2%和96.8%。

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