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High Electrochemical Seawater Desalination Performance Enabled by an Iodide Redox Electrolyte Paired with a Sodium Superionic Conductor

机译:通过碘化物氧化还原电解质与钠化学性导体配对的高电化学海水淡化性能

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摘要

In recent years, a wealth of new desalination technologies based on reversible electrochemical redox reactions has emerged. Among them, the use of redox-active electrolytes is highly attractive due to the high production rate and energy efficiency. Yet, these technologies suffer from the imperfect permselectivity of polymer membranes. Our present work demonstrates the promising desalination performance of a sodium superionic conductor (NASICON) for selective removal of sodium against iodide in a half-cell configuration consisting of an activated carbon electrode in aqueous 600 mM NaI solution. For feedwater with aqueous 600 mM NaCl, the desalination cell exhibited a stable performance over a month with more than 400 operation cycles with the aid of high sodium permselectivity of the NASICON membrane against iodide (99.9–100%). The cell exhibited a maximum sodium removal capacity of 69 ± 4 mg/g (equivalent to the NaCl salt uptake capacity of 87 ± 4 mg/g) with a charge efficiency of 81 ± 3%.
机译:近年来,出现了一种基于可逆电化学氧化还原反应的新的脱盐技术。其中,由于高生产率和能量效率,使用氧化还原活性电解质的使用具有高度吸引力。然而,这些技术患有聚合物膜的不完美渗滤性。我们现在的作品显示了钠表面导体(NASICON)的脱盐性能,用于在半电池构型中选择性地除去碘化钠,其由600mM N NaI溶液中的活性炭构型组成。对于具有600mM NaCl水溶液的给水,脱盐电池借助于碘化物的高钠渗透率(99.9-100%),脱盐电池具有超过400个操作循环的稳定性。该细胞显示出69±4mg / g(相当于87±4mg / g)的最大钠去除能力,充电效率为81±3%。

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