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Sorption and permeation studies for isopropanol + water mixtures using alginate based highly water selective nanocomposite membranes

机译:基于藻酸盐的高水选择性纳米复合膜对异丙醇+水混合物的吸附和渗透研究

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Nanocomposite membranes (NCMs) were prepared by using the solution casting technique by incorporating the different amounts like 6, 8, 10 wt.% of Preyssler type heteropolyacid nanoparticles to the sodium alginate. Prepared NCMs were utilized for the sorption and permeation studies for the aqueous isopropanol solutions at different concentrations. Sorption experiment enabled the study of interactions between the components of the mixture and the polymer. Flory-Huggins interaction parameters between the permeating molecules and polymer and solubility parameters were determined to explain the sorption behavior of the NCMs. Permeation properties of the NCMs were tested by applying them for pervaporation dehydration of IPA at different concentrations. Different PV parameters like separation factor, flux, Permeance and selectivity were calculated to explain the permeation behavior of the NCMs. In this study, increased sorption, permeation and selectivity was observed for the NCMs than pristine sodium alginate membrane, indicating that NCMs are efficient for PV dehydration of the IPA. Solution-diffusion model was adopted to study the mass transfer through the membrane by calculating the diffusion coefficients.
机译:通过使用溶液流延技术,通过将不同量(例如6、8、10 wt。%的Preyssler型杂多酸纳米颗粒)掺入海藻酸钠中来制备纳米复合膜(NCM)。制备的NCM用于不同浓度异丙醇水溶液的吸附和渗透研究。吸附实验使得能够研究混合物的组分与聚合物之间的相互作用。确定了渗透分子与聚合物之间的Flory-Huggins相互作用参数以及溶解度参数以解释NCM的吸附行为。通过将NCM应用于不同浓度的IPA的全蒸发脱水来测试其渗透性能。计算了不同的PV参数,如分离系数,通量,磁导率和选择性,以解释NCM的渗透行为。在这项研究中,与原始藻酸钠膜相比,NCMs的吸附,渗透和选择性增加,表明NCMs对于IPA的PV脱水有效。采用溶液扩散模型通过计算扩散系数来研究通过膜的传质。

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