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Flux-enhanced alpha-alumina tight ultrafiltration membranes for effective treatment of dye/salt wastewater at high temperatures

机译:助焊剂增强α-氧化铝密封膜,用于在高温下有效处理染料/盐废水

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摘要

alpha-Alumina tight ultrafiltration (UF) membranes maintain high thermal and chemical resistances and show great potential for application to the treatment and reuse of dye/salt in wastewater under harsh conditions. However, the development of alpha-alumina UF membranes with small pores is challenging. In this study, alumina nanoparticles (AlNPs) were added to boehmite sol as seeds to promote the formation of a single phase alpha-alumina membrane at low sintering temperature while maintaining a small pore diameter of similar to 4.6 nm. The prepared ultra-high purity alpha-alumina membranes could withstand harsh conditions in the pH range 1-14. Furthermore, this AlNPs doping method increased the porosity and filtration areas of the alpha-alumina UF membranes, significantly enhancing their permeability. The alumina UF membrane displayed a high rejection of the dye molecules and passage of salts. This would allow the reuse of the salts and dyes present in the dye wastewater. When the temperature of the dye wastewater reached 60 degrees C, the permeability of the UF membrane could be greatly enhanced while maintaining a stable separation efficiency. Overall, this study offers a tight LTF membrane (containing ultra-high purity alpha-alumina) that allows the reuse of the salts and dyes present in wastewater, thereby promoting a sustainable chemical process.
机译:α-氧化铝密封超滤(UF)膜保持高热和化学抗性,并在恶劣条件下施加到废水中染料/盐的处理和再利用的潜力。然而,具有小毛孔的α-氧化铝UF膜的发展是挑战性的。在该研究中,将氧化铝纳米颗粒(AlNP)加入到Bohmite溶胶中作为种子,以在低烧结温度下促进单相α-氧化铝膜的形成,同时保持与4.6nm类似的小孔径。制备的超高纯度α-氧化铝膜可以承受pH范围1-14的苛刻条件。此外,该AlNP掺杂方法增加了α-氧化铝UF膜的孔隙率和过滤区域,显着提高了它们的渗透性。氧化铝UF膜显示出高抑制染料分子和盐的通过。这将允许重复使用染料废水中存在的盐和染料。当染料废水的温度达到60摄氏度时,可以大大提高UF膜的渗透性,同时保持稳定的分离效率。总体而言,该研究提供紧密的LTF膜(含有超高纯度α-氧化铝),允许重复使用废水中存在的盐和染料,从而促进可持续的化学过程。

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