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Separation of aqueous salt solution by pervaporation through hybrid organic-inorganic membrane: effect of operating conditions

机译:通过杂化有机 - 无机膜渗透蒸发分离盐​​水溶液:操作条件的影响

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摘要

Hybrid polymer-inorganic membranes were prepared by crosslinking poly(vinyl alcohol) (PVA), maleic acid\ud(MA) and silica via an aqueous sol–gel route. Membrane characterisation results revealed silica nanoparticles\ud(b10 nm) were well dispersed in the polymer matrix and significantly reduced swelling of the membrane. The\udmembranes were tested for pervaporation separation of aqueous salt solution with NaCl concentrations of\ud0.2–5.0 wt% at temperatures 20–65 °C, feed flowrates 30–150 mL/min and permeate pressures 2–40 Torr. The salt rejection remained high (up to 99.9%) under all operating conditions. A high water flux of 11.7 kg/m2 h could be achieved at a feed temperature of 65 °C and a vacuum of 6 Torr. The effect of operating conditions on water flux is discussed in relation to diffusion coefficients of water and fundamental transport mechanism through the membrane. The activation energy for water permeation was found to vary from 23.8 to 20.1 kJ/kmol when the salt concentration in the feed was increased from 0.2 to 5.0 wt%.
机译:通过水溶胶-凝胶途径交联聚乙烯醇(PVA),马来酸\ ud(MA)和二氧化硅来制备聚合物-无机杂化膜。膜表征结果表明,二氧化硅纳米颗粒\ ud(b10 nm)很好地分散在聚合物基质中,并显着降低了膜的溶胀。在20–65°C的温度,进料流量30–150 mL / min和渗透压力2–40 Torr下,测试了\ udmbranes膜对NaCl浓度为\ ud0.2–5.0 wt%的盐水溶液的全蒸发分离。在所有操作条件下,脱盐率都很高(高达99.9%)。在进料温度为65°C和真空度为6 Torr的情况下,可以实现11.7 kg / m2 h的高水通量。讨论了操作条件对水通量的影响,涉及水的扩散系数和通过膜的基本传输机制。当进料中的盐浓度从0.2重量%增加至5.0重量%时,发现用于水渗透的活化能在23.8至20.1kJ / kmol之间变化。

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