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    • 23. 发明公开
    • METHOD OF OPERATING REDOX FLOW BATTERY, AND REDOX FLOW BATTERY SYSTEM
    • 操作氧化还原液流电池的方法和氧化还原液流电池系统
    • EP3240083A1
    • 2017-11-01
    • EP15872693.5
    • 2015-12-07
    • Sumitomo Electric Industries, Ltd.
    • DONG, YongrongMIYAWAKI, Hideki
    • H01M8/18H01M8/04186
    • H01M8/04186H01M2/40H01M8/188Y02E60/528
    • Provided is a method of operating an RF battery in which charging and discharging are performed by circulating and supplying a positive electrode electrolyte in a positive electrode tank to a positive electrode and circulating and supplying a negative electrode electrolyte in a negative electrode tank to a negative electrode. The positive electrode electrolyte contains manganese ions and added metal ions. The negative electrode electrolyte contains at least one species of metal ions selected from the group consisting of titanium ions, vanadium ions, and chromium ions. The added metal ions are at least one selected from the group consisting of cadmium ions, tin ions, antimony ions, lead ions, and bismuth ions. The method of operating an RF battery includes a dissolution step in which, when metal precipitates, formed by reduction of the added metal ions which have moved from the positive electrode electrolyte to a circulating pathway of the negative electrode electrolyte, are contained in the circulating pathway of the negative electrode electrolyte, the metal precipitates are dissolved and ionized in the positive electrode electrolyte.
    • 本发明提供一种RF电池的操作方法,该RF电池的充放电是通过将正极槽内的正极电解液循环供给至正极,并将负极槽内的负极电解液循环供给至负极 。 正极电解质含有锰离子和添加的金属离子。 负极电解质含有选自由钛离子,钒离子和铬离子组成的组中的至少一种金属离子。 添加的金属离子是选自由镉离子,锡离子,锑离子,铅离子和铋离子组成的组中的至少一种。 操作RF电池的方法包括溶解步骤,其中当通过还原已经从正极电解质移动到负极电解质的循环路径的添加的金属离子而形成的金属沉淀时,包含在循环路径中 的负极电解质中,金属沉淀物在正极电解质中溶解并离子化。
    • 24. 发明公开
    • VERFAHREN ZUR REGENERATION DER ELEKTROLYTLÖSUNG EINES REDOX-FLOW-AKKUMULATORS
    • VERFAHREN ZUR REGENERATION DERELEKTROLYTLÖSUNGEINES REDOX-FLOW-AKKUMULATORS
    • EP3231031A1
    • 2017-10-18
    • EP15820453.7
    • 2015-12-10
    • Fraunhofer Gesellschaft zur Förderung der angewandten Forschung E.V.
    • NOACK, JensFISCHER, PeterTÜBKE, JensPINKWART, Karsten
    • H01M8/18C25B15/08
    • H01M8/188Y02E60/528
    • The present invention relates to a method for releasing oxygen from an aqueous electrolyte solution of a rechargeable redox flow battery, wherein at least two electrodes (E) are in electrically conductive contact with the electrolyte solution, at least one of the electrodes (E) is connected as an anode and at least one of the said electrodes is connected as a cathode and oxygen (O2) is formed on the anode, wherein no hydrogen or not more than 1.5 mol of hydrogen (H2) per 1.0 mol of oxygen (O2) formed is/are formed on the cathode. The invention further relates to an electrochemical cell comprising at least two electrodes (E), of which at least one is connected as a cathode and at least one is connected as an anode, wherein the electrodes (E) are located in at least one half-cell of a rechargeable redox flow battery and/or there is a fluid connection between the electrochemical cell and at least one half-cell of a rechargeable redox flow battery. The invention further relates to the use of electric current for releasing oxygen from an electrolyte solution of a rechargeable redox flow battery.
    • 本发明涉及一种从可再充电氧化还原液流电池的电解质水溶液中释放氧气的方法,其中至少两个电极(E)与电解质溶液导电接触,至少一个电极(E)是 作为阳极连接,并且所述电极中的至少一个连接为阴极,并且在所述阳极上形成氧气(O 2),其中每1.0摩尔氧气(O 2)不含氢或不多于1.5摩尔氢气(H 2) 形成在阴极上。 本发明还涉及一种电化学电池,其包括至少两个电极(E),其中至少一个连接为阴极并且至少一个连接为阳极,其中电极(E)位于至少一个电极 并且/或者在电化学电池和可再充电氧化还原液流电池的至少一个半电池之间存在流体连接。 本发明还涉及使用电流从可再充电氧化还原液流电池的电解质溶液中释放氧。