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Novel lithium selective composite membranes: synthesis, characterization and validation tests in dialysis

机译:新型锂选择性复合膜:透析中的合成,表征和验证试验

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摘要

With the general growing demand for Lithium compounds, notably for use in Lithium ion batteries, the selective extraction of this metal from various different sources is generating a lot of attention. A number of different methods have been used to recover and/or separate this element, often involving membranes technologies. In an attempt to overcome issues raised by the high rigidity of ceramic membranes and the poor selectivity performance of polymer membranes, we have tried to combine the Li selectivity of Lithium Ion Conducting Glass Ceramic (LICGC) and the flexibility of polymers. We are therefore proposing new malleable composite membranes made using a blending technique where the LICGC powder is incorporated into a flexible copolymerized anion-exchange membrane. We have attempted to demonstrate the homogeneity of the inorganic particle dispersion in the six prepared Lithium Composite Membranes (LCMs) as well as their thermal stability and mechanical properties. We have also investigated the effects of membrane composition on the physicochemical characteristics (water sorption, contact angle and conductivity) of the membranes. The selectivity of these LCMs for Li(+)was tested under dialysis conditions using Na(+)and K(+)as the competitive cations, and the results were compared to those obtained with control membranes containing no LICGC particles. For the best membrane LCM5, the Li+/Na+ selectivity coefficient reaches 376 when using only Na+ as competitive ion. Whilst, when using both Na+ and K+, this selectivity (Li+/Na+) decrease to 278 and the Li+/K+ selectivity coefficient is found to be 364. Graphic abstract
机译:随着对锂化合物的一般需求,特别是在锂离子电池中使用,从各种不同来源的选择性提取这种金属产生很多关注。已经使用许多不同的方法来恢复和/或分离该元素,通常涉及膜技术。为了克服陶瓷膜的高刚性提出的问题和聚合物膜的选择性性能差的问题,我们尝试结合锂离子传导玻璃陶瓷(LICGC)的LI选择性和聚合物的柔韧性。因此,我们采用使用混合技术制备的新型可延展复合膜,其中LiCGC粉末掺入柔性共聚的阴离子交换膜中。我们试图证明在六种制备的锂复合膜(LCMS)中无机颗粒分散体的均匀性以及它们的热稳定性和机械性能。我们还研究了膜组合物对膜的物理化学特性(吸水,接触角和电导率)的影响。使用Na(+)和K(+)作为竞争性阳离子的透析条件下测试这些LCMS的Li(+)的选择性,并将结果与​​含有LiCGC颗粒的对照膜获得的结果进行比较。对于最佳膜LCM5,仅使用Na +作为竞争离子时,Li + / Na +选择性系数达到376。虽然使用Na +和k +时,这种选择性(Li + / Na +)减小到278,并且发现Li + / K +选择性系数为364.图形摘要

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  • 来源
    《Journal of Materials Science》 |2020年第34期|共18页
  • 作者单位

    Fac Sci Tunis Lab Chim Analyt &

    Electrochim Dept Chim Campus Univ Tunis 2092 Tunisia;

    Univ Paris Est Inst Chim &

    Mat Paris Est ICMPE UMR 7182 CNRS 2 Rue Henri Dunant F-94320 Thiais France;

    Univ Paris Est Inst Chim &

    Mat Paris Est ICMPE UMR 7182 CNRS 2 Rue Henri Dunant F-94320 Thiais France;

    Univ Paris Est Inst Chim &

    Mat Paris Est ICMPE UMR 7182 CNRS 2 Rue Henri Dunant F-94320 Thiais France;

    Fac Sci Tunis Lab Chim Analyt &

    Electrochim Dept Chim Campus Univ Tunis 2092 Tunisia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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