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    • 21. 发明申请
    • SOLID ELECTROLYTE PRODUCING ASSEMBLY AND METHOD
    • 固体电解液生产组装及方法
    • US20110042232A1
    • 2011-02-24
    • US12544617
    • 2009-08-20
    • Wei CaiRihua XiongChang WeiRobert Lee SolomonRengarajan Ramesh
    • Wei CaiRihua XiongChang WeiRobert Lee SolomonRengarajan Ramesh
    • B01D59/40C25B15/08H01G9/00
    • C02F1/4691C02F1/001C02F1/008C02F1/38C02F1/385C02F1/44C02F1/444C02F1/4604C02F9/00C02F2001/007C02F2001/5218C02F2103/08C02F2201/46195C02F2301/08Y02A20/131
    • A solid electrolyte producing system includes a supercapacitor desalination device comprising a power supply and a supercapacitor desalination unit. The supercapacitor desalination unit includes a pair of electrodes electrically coupled to the power supply and operable in a charging mode of operation and a discharging mode of operation. A feeding source is configured to provide a feed liquid to the supercapacitor desalination unit when the supercapacitor desalination unit is in the charging mode of operation. The feed liquid comprises at least one determined electrolyte. A crystallization device is providing for receiving a concentrated liquid from the supercapacitor desalination device in the discharging mode of operation, the concentrated liquid being a saturated liquid or supersaturated liquid of the at least one determined type of electrolyte. The at least one determined type of electrolyte precipitates in the crystallization device as solid electrolyte. The system further comprises a separation device for separating the solid electrolyte from the liquid of the crystallization device as a solid electrolyte product.
    • 一种固体电解质生产系统,包括包括电源和超级电容器脱盐单元的超级电容器脱盐装置。 超级电容器脱盐单元包括电耦合到电源并可在充电操作模式和放电操作模式下操作的一对电极。 供电源被配置为当超级电容器脱盐单元处于充电操作模式时,向超级电容器脱盐单元提供进料液体。 进料液体包含至少一种确定的电解质。 结晶装置提供在排放操作模式中从超级电容器脱盐装置接收浓缩液体,浓缩液体是至少一种确定类型的电解质的饱和液体或过饱和液体。 所述至少一种确定类型的电解质在所述结晶装置中沉淀为固体电解质。 该系统还包括用于将固体电解质与作为固体电解质产物的结晶装置的液体分离的分离装置。
    • 28. 发明申请
    • Supercapacitor desalination devices and methods of making the same
    • 超级电容器脱盐装置及其制造方法
    • US20080105551A1
    • 2008-05-08
    • US11300535
    • 2005-12-14
    • Shengxian WangChang WeiLei CaoRihua XiongWei CaiYu Du
    • Shengxian WangChang WeiLei CaoRihua XiongWei CaiYu Du
    • B01D61/42
    • C02F1/4691C02F1/441C02F2001/46133C02F2103/08Y02A20/131
    • A supercapacitor desalination cell is provided. The cell includes electrodes formed of conducting materials that are configured to adsorb ions in a charging state of the cell and desorb the ions in a discharging state of the cell. The conducting materials comprise conducting composites. An insulating spacer is disposed between the two electrodes and is configured to electrically isolate one electrode from the other. Further, the cell includes a first current collector coupled to the first electrode, and a second current collector coupled to the second electrode. Further, an energy recovery converter may be operatively associated with the cell and configured to recover energy released by the cell while transforming from a charging state to a discharging state. The converter is configured to transfer at least a portion of the recovered energy to a grid in the discharging state of the cell.
    • 提供超级电容器海水淡化池。 电池包括由导电材料形成的电极,其被配置为在电池的充电状态下吸附离子并且在电池的放电状态下解吸离子。 导电材料包括导电复合材料。 绝缘间隔件设置在两个电极之间,并且被配置为将一个电极与另一个电极电隔离。 此外,电池包括耦合到第一电极的第一集电器和耦合到第二电极的第二集电器。 此外,能量回收转换器可以与电池操作地相关联并且被配置为在从充电状态转换到放电状态的同时恢复由电池释放的能量。 转换器被配置为在电池的放电状态下将恢复的能量的至少一部分转移到电网。
    • 30. 发明申请
    • WATER TREATMENT DEVICE AND METHOD
    • 水处理装置和方法
    • US20110210069A1
    • 2011-09-01
    • US12850475
    • 2010-08-04
    • Rihua XiongWei CaiAndrew Jon Zaske
    • Rihua XiongWei CaiAndrew Jon Zaske
    • C02F1/469
    • C02F1/44C02F1/441C02F1/442C02F1/4691C02F1/4693C02F1/52C02F1/66C02F2103/32Y02A20/131Y02A20/134
    • A water treatment device comprises: a membrane desalination unit; a first conduit transporting a first stream of feed water to the membrane unit; a second conduit transporting a first stream of product water from the membrane desalination unit; an electrical separation unit; a third conduit transporting a first stream of reject water from the membrane desalination unit to the electrical separation unit; a fourth conduit transporting a second stream of product water from the electrical separation unit; a precipitation unit; a fifth conduit transporting a second stream of reject water from the electrical separation unit to the precipitation unit; a sixth conduit transporting a second stream of feed water from the precipitation unit to the electrical separation device; a seventh conduit releasing a discharge stream of water; and a chemical injection unit communicating with at least one of the electrical separation device and the precipitation unit. Associated method is provided.
    • 水处理装置包括:膜脱盐单元; 将第一供水流输送到膜单元的第一导管; 输送来自所述膜脱盐单元的第一产物水流的第二管道; 电分离单元; 第三导管,将第一排废水从所述膜脱盐单元输送到所述电分离单元; 输送来自所述电分离单元的第二产物水流的第四导管; 降水单位 将第二排废水从电分离器输送到沉淀单元的第五管道; 第二导管,其将第二供水流从所述沉淀单元输送到所述电分离装置; 释放出水流的第七管道; 以及与所述电气分离装置和所述沉淀单元中的至少一个连通的化学喷射单元。 提供相关方法。