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Composite Membranes Containing Nanoparticles of Inorganic Ion Exchangers for Electrodialytic Desalination of Glycerol

机译:含无机离子交换剂纳米颗粒的甘油电渗析淡化复合膜

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摘要

Composite membranes were obtained by modification of heterogeneous polymer cation and anion-exchange membranes with nanoparticles of zirconium hydrophosphate and hydrated zirconium dioxide, respectively. The ion-exchange materials were investigated with the methods of electron microscopy, potentiometry, voltammetry, and impedance spectroscopy. Single nanoparticles, which were precipitated in aqueous media, form aggregates, when the composites are in a contact with polar organic solvent. Both single nanoparticles (up to 10 nm) and their aggregates (up to 200 nm) were precipitated in ion-exchange polymers in glycerol media. Non-aggregated nanoparticles improve electrical conductivity of the ion-exchange materials, the aggregates are barriers against fouling. The membranes were applied to NaCl removal from highly concentrated glycerine-water mixture containing organic additives (byproduct of biodiesel production). As opposite to pristine materials, the composites demonstrate stability against fouling.
机译:复合膜是通过分别用氢磷酸锆和水合二氧化锆的纳米粒子修饰非均质聚合物阳离子和阴离子交换膜而获得的。用电子显微镜,电位法,伏安法和阻抗谱法研究了离子交换材料。当复合材料与极性有机溶剂接触时,在水性介质中沉淀的单个纳米颗粒会形成聚集体。单个纳米颗粒(最大10 nm)及其聚集体(最大200 nm)都在甘油介质中的离子交换聚合物中沉淀。非聚集的纳米颗粒改善了离子交换材料的电导率,聚集体是防止结垢的屏障。将该膜用于从含有有机添加剂(生物柴油生产的副产品)的高浓度甘油-水混合物中去除NaCl。与原始材料相反,复合材料显示出抗结垢的稳定性。

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