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Advancing electrodeionization with conductive ionomer binders that immobilize ion-exchange resin particles into porous wafer substrates

机译:使用导电离聚物粘合剂进行电流,使离子交换树脂颗粒固定到多孔晶片基板中

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Electrodeionization (EDI) is an electrically driven separations technology that employs ion-exchange membranes and resin particles. Deionization occurs under the influence of an applied electric field, facilitating continuous regeneration of the resins and supplementing ionic conductivity. While EDI is commercially used for ultrapure water production, material innovation is required for improving desalination performance and energy efficiency for treating alternative water supplies. This work reports a new class of ion-exchange resin-wafers (RWs) fabricated with ion-conductive binders that exhibit exceptional ionic conductivities—a 3–5-fold improvement over conventional RWs that contain a non-ionic polyethylene binder. Incorporation into an EDI stack (RW-EDI) resulted in an increased desalination rate and reduced energy expenditure compared to the conventional RWs. The water-splitting phenomenon was also investigated in the RW in an external experimental setup in this work. Overall, this work demonstrates that ohmic resistances can be substantially curtailed with ionomer binder RWs at dilute salt concentrations.
机译:电脱硫(EDI)是一种电驱动的分离技术,其采用离子交换膜和树脂颗粒。去离子发生在施加的电场的影响下,促进树脂的连续再生并补充离子电导率。虽然EDI商业用途用于超纯水生产,但材料创新需要提高脱盐性能和用于治疗替代供水的能源效率。该工作报告了具有离子导电粘合剂制造的新类别离子交换树脂晶片(RWS),其表现出具有非离子聚乙烯粘合剂的常规RW的特异性离子导电性-3-5倍的改善。与传统RWS相比,将加工速率提高并降低了能量消耗。在这项工作的外部实验设置中还研究了水分裂现象。总的来说,这项工作表明,在稀盐浓度下,可以基本上用离聚物粘合剂rws基本缩减欧姆电阻。

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