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    • 1. 发明申请
    • BATTERIES FOR EFFICIENT ENERGY EXTRACTION FROM A SALINITY DIFFERENCE
    • 电池从有效的能量提取从海洋差异
    • WO2012061429A2
    • 2012-05-10
    • PCT/US2011/058839
    • 2011-11-01
    • LA MANTIA, FabioPASTA, MauroDESHAZER, Heather DawnCUI, Yi
    • LA MANTIA, FabioPASTA, MauroDESHAZER, Heather DawnCUI, Yi
    • H01M6/32H01G9/00
    • H01M14/00H01M6/34Y02E60/12
    • An electrochemical system includes: (1) a battery including an anode and a cathode; (2) a first source of a first electrolyte having a first concentration of ions; (3) a second source of a second electrolyte having a second concentration of the ions, wherein the second concentration is greater than the first concentration; and (4) a fluid conveyance mechanism connected between the battery and each of the first source and the second source. During charging of the battery, the anode and the cathode are at least partially immersed in the first electrolyte, and, during discharging of the battery, the anode and the cathode are at least partially immersed in the second electrolyte. The fluid conveyance mechanism exchanges the first electrolyte with the second electrolyte between charging and discharging of the battery, and exchanges the second electrolyte with the first electrolyte between discharging and charging of the battery.
    • 电化学系统包括:(1)包括阳极和阴极的电池; (2)具有第一离子浓度的第一电解质的第一源; (3)具有第二浓度离子的第二电解质的第二源,其中第二浓度大于第一浓度; 和(4)连接在电池与第一源和第二源中的每一个之间的流体输送机构。 在电池充电期间,阳极和阴极至少部分地浸没在第一电解质中,并且在电池放电期间,阳极和阴极至少部分地浸没在第二电解质中。 流体输送机构在电池的充放电之间与第二电解质交换第一电解质,并且在电池的放电和充电之间与第一电解质交换第二电解质。
    • 2. 发明申请
    • BATTERIES FOR EFFICIENT ENERGY EXTRACTION FROM A SALINITY DIFFERENCE
    • 从盐度差异中有效提取能量的电池
    • WO2012061429A3
    • 2012-07-12
    • PCT/US2011058839
    • 2011-11-01
    • LA MANTIA FABIOPASTA MAURODESHAZER HEATHER DAWNCUI YI
    • LA MANTIA FABIOPASTA MAURODESHAZER HEATHER DAWNCUI YI
    • H01M6/32H01G9/00
    • H01M14/00H01M6/34Y02E60/12
    • An electrochemical system includes: (1) a battery including an anode and a cathode; (2) a first source of a first electrolyte having a first concentration of ions; (3) a second source of a second electrolyte having a second concentration of the ions, wherein the second concentration is greater than the first concentration; and (4) a fluid conveyance mechanism connected between the battery and each of the first source and the second source. During charging of the battery, the anode and the cathode are at least partially immersed in the first electrolyte, and, during discharging of the battery, the anode and the cathode are at least partially immersed in the second electrolyte. The fluid conveyance mechanism exchanges the first electrolyte with the second electrolyte between charging and discharging of the battery, and exchanges the second electrolyte with the first electrolyte between discharging and charging of the battery.
    • 电化学系统包括:(1)包括阳极和阴极的电池; (2)具有第一离子浓度的第一电解质的第一源; (3)具有第二浓度的离子的第二电解质的第二源,其中第二浓度大于第一浓度; 和(4)连接在电池与第一源和第二源中的每一个之间的流体输送机构。 在电池充电期间,阳极和阴极至少部分浸入第一电解质中,并且在电池放电期间,阳极和阴极至少部分地浸入第二电解质中。 流体输送机构在电池的充电和放电之间交换第一电解质与第二电解质,并且在电池的放电和充电之间交换第二电解质与第一电解质。