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    • 3. 发明申请
    • Regeneration of a Capacitive Deionization System
    • 电容去离子系统的再生
    • US20130105324A1
    • 2013-05-02
    • US13283285
    • 2011-10-27
    • David J. AverbeckRebecca M. TallonBrett A. Boedeker
    • David J. AverbeckRebecca M. TallonBrett A. Boedeker
    • B03C5/00B03C5/02
    • C02F1/4691C02F2201/4614C02F2209/005C02F2209/006C02F2209/05C02F2303/16
    • Embodiments of the invention provide a method of regenerating a capacity of a flow-through capacitor. A target value for a water property concentration in a discharge water stream exiting the flow-through capacitor is established. A feed value for the water property concentration in a feed water stream entering the flow-through capacitor is measured. An amount of the water property concentration to be added to the feed water stream is calculated based on the feed value to achieve the target value for the water property concentration in the discharge water stream. An amperage of the flow-through capacitor and a flow rate through the flow-through capacitor is controlled to add ions to the feed water stream to achieve the target value for the water property concentration in the discharge water stream. In some embodiments, the amperage can be set and the flow rate controlled to achieve the target concentration.
    • 本发明的实施例提供了一种再生流通电容器的容量的方法。 建立了离开流通电容器的排出水流中的水质浓度的目标值。 测量进入流通电容器的给水流中的水性浓度的进料值。 基于进料值计算添加到给水流中的水性浓度的量,以达到排出水流中的水性浓度的目标值。 控制流通电容器的电流强度和通过流通电容器的流量,以将离子添加到给水流中,以实现排放水流中的水性浓度的目标值。 在一些实施方案中,可以设置电流强度并控制流速以实现目标浓度。