首页> 外国专利> Recovering lithium salts from salt solutions, comprises immersing a lithium-intercalating positive electrode and an anion capturing electrode in a lithium-containing salt solution, and replacing the salt solution by a recovery solution

Recovering lithium salts from salt solutions, comprises immersing a lithium-intercalating positive electrode and an anion capturing electrode in a lithium-containing salt solution, and replacing the salt solution by a recovery solution

机译:从盐溶液中回收锂盐,包括将嵌入锂的正极和阴离子捕获电极浸入含锂盐溶液中,并用回收液代替盐溶液。

摘要

Recovering lithium salts from salt solutions comprises: (A) immersing a lithium-intercalating positive electrode and an anion capturing electrode (negative electrode) in a lithium-containing salt solution, and adjusting a constant negative current to the positive electrode, where the lithium ion (Li +) and anions of the lithium-containing salt solution are trapped in the electrode; (B) replacing the salt solution by a recovery solution; (C) reversing the direction of current relative to the step (A); and (D) replacing the recovery solution by fresh saline. Recovering lithium salts from salt solutions comprises: (A) immersing a lithium-intercalating positive electrode and an anion capturing electrode (negative electrode) in a lithium-containing salt solution, and adjusting a constant negative current to the positive electrode, where the lithium ion (Li +) and anions of the lithium-containing salt solution are trapped in the electrode; (B) replacing the salt solution by a recovery solution; (C) reversing the direction of current relative to the step (A), where the trapped ions are discharged into the recovery solution; and (D) replacing the recovery solution by fresh saline. An independent claim is included for an apparatus for recovering lithium salts from the salt solution, comprising a desalination battery with the lithium-intercalating positive electrode and the anion capturing electrode, a first source for the salt solution with an original lithium salt concentration, a second source for the recovery solution for recording captured lithium ions, a collecting vessel for the recovery solution containing the lithium ions, and a fluid exchange device for connecting the desalination battery with the first and second source and the collecting vessel, where the apparatus is configured so that anode and cathode are at least partially immersed in the salt solution with the starting concentration of lithium during the charging of the battery and at least partially immersed in the recovery salt solution during discharge of the battery, the fluid exchange device is configured so that the salt solution with the lithium initial concentration is replaced after charging the battery through the recovery solution and the recovery solution is replaced after discharging the battery through salt solution with lithium initial concentration for transferring the recovery solution into the container with the recovery solution.
机译:从盐溶液中回收锂盐的步骤包括:(A)将嵌入锂的正极和阴离子捕获电极(负极)浸入含锂盐溶液中,并调节流向正极的恒定负电流,其中锂离子(Li +>)和含锂盐溶液的阴离子被捕获在电极中; (B)用回收溶液代替盐溶液; (C)使电流相对于步骤(A)反向。 (D)用新鲜盐水代替回收溶液。从盐溶液中回收锂盐的步骤包括:(A)将嵌入锂的正极和阴离子捕获电极(负极)浸入含锂盐溶液中,并调节流向正极的恒定负电流,其中锂离子(Li +>)和含锂盐溶液的阴离子被捕获在电极中; (B)用回收溶液代替盐溶液; (C)相对于步骤(A)反转电流方向,在步骤(A)中,将捕获的离子排放到回收溶液中; (D)用新鲜盐水代替回收溶液。包括从盐溶液中回收锂盐的设备的独立权利要求,其包括具有嵌入锂的正电极和阴离子捕获电极的脱盐电池,具有原始锂盐浓度的盐溶液的第一来源,第二盐源。用于记录捕获的锂离子的回收溶液的源,用于容纳锂离子的回收溶液的收集容器,以及用于将脱盐电池与第一源和第二源以及收集容器连接的流体交换装置,其中该装置被配置为阳极和阴极在电池充电期间至少部分浸入锂的起始浓度盐溶液中,在电池放电期间至少部分浸入回收盐溶液中,流体交换装置的构造使得充电后更换锂初始浓度的盐溶液通过回收溶液对电池进行充电,然后将电池通过初始浓度为锂的盐溶液将电池放电后进行更换,以将回收溶液与回收溶液一起转移到容器中。

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