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    • 7. 发明授权
    • Zinc-bromine battery
    • 锌溴电池
    • US4663251A
    • 1987-05-05
    • US813952
    • 1985-12-27
    • Torahiko SasakiKyoichi TangeMasahiro OkawaYoshihiro Suzuki
    • Torahiko SasakiKyoichi TangeMasahiro OkawaYoshihiro Suzuki
    • H01M12/08H01M10/36H01M8/08
    • H01M12/085Y02E60/128
    • A zinc-bromine battery is disclosed which includes anode and cathode reaction tanks separated from each other by a separator membrane for preventing self-discharge, and an electrolyte storage tank storing an electrolyte with a bromine complexing agent added thereto. Catholytes and anolytes are circulated between the cathode reaction tank and the anode reaction tank, respectively, and the electrolyte storage tank. The bromine produced in the catholyte is complexed by a complexing agent and is stored. A first connection pipe and a second connection pipe are provided for the purpose of forcibly mixing part of the anolyte and catholyte with each other therethrough. The first connection pipe receives part of the catholyte which has flowed from the cathode reaction tank to the catholyte storage tank from a position which is remote from an inlet for the catholyte, and supplies it to the anolyte storage tank. The second connection pipe, on the other hand, supplies part of the anolyte to the catholyte.
    • 公开了一种锌 - 溴电池,其包括通过用于防止自放电的隔膜彼此分离的阳极和阴极反应罐,以及储存电解质与其中添加有溴络合剂的电解质储存罐。 阴极电解液和阳极电解液分别在阴极反应槽和阳极反应槽之间以及电解质储罐中循环。 在阴极电解液中产生的溴由络合剂络合并储存。 提供了第一连接管和第二连接管,用于将部分阳极电解液和阴极电解液彼此强制混合。 第一连接管接收从远离阴极电解液入口的位置从阴极反应罐流向阴极电解液储罐的一部分阴极电解液,并将其供应到阳极电解液储罐。 另一方面,第二连接管将部分阳极电解液供应到阴极电解液。