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Mixed Matrix Carbon Molecular Sieve and Alumina (CMS-Al2O3) Membranes

机译:混合基质碳分子筛和氧化铝(CMS-Al2O3)膜

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摘要

This work shows mixed matrix inorganic membranes prepared by the vacuum-assisted impregnation method, where phenolic resin precursors filled the pore of α-alumina substrates. Upon carbonisation, the phenolic resin decomposed into several fragments derived from the backbone of the resin matrix. The final stages of decomposition (>650 °C) led to a formation of carbon molecular sieve (CMS) structures, reaching the lowest average pore sizes of ~5 Å at carbonisation temperatures of 700 °C. The combination of vacuum-assisted impregnation and carbonisation led to the formation of mixed matrix of CMS and α-alumina particles (CMS-Al2O3) in a single membrane. These membranes were tested for pervaporative desalination and gave very high water fluxes of up to 25 kg m−2 h−1 for seawater (NaCl 3.5 wt%) at 75 °C. Salt rejection was also very high varying between 93–99% depending on temperature and feed salt concentration. Interestingly, the water fluxes remained almost constant and were not affected as feed salt concentration increased from 0.3, 1 and 3.5 wt%.
机译:这项工作显示了通过真空辅助浸渍法制备的混合基质无机膜,其中酚醛树脂前体填充了α-氧化铝基质的孔中。碳化后,酚醛树脂分解成几个衍生自树脂基质骨架的片段。分解的最后阶段(> 650 C)导致形成碳分子筛(CMS)结构,在700 C的碳化温度下达到最低的平均孔径〜5Å。真空辅助浸渍和碳化的结合导致在单个膜中形成CMS和α-氧化铝颗粒(CMS-Al2O3)的混合基质。对这些膜进行了全蒸发淡化测试,并在75°C的海水(NaCl 3.5 wt%)中提供了高达25 kg m -2 h -1 的非常高的水通量。根据温度和饲料盐浓度的不同,脱盐率也很高,介于93%至99%之间。有趣的是,当进料盐浓度从0.3%,1%和3.5%(重量)增加时,水通量几乎保持恒定且不受影响。

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