Abstract:
An apparatus for removal of ions from water having: a carbon coated first current collector; a second current collector; a spacer in between the first and second current collectors to allow water to flow in between the first and second current collectors; a first charge barrier in between the first carbon coated current collector and the spacer to selectively allow anions or cations to flow through the first charge barrier. The apparatus may have a second charge barrier coated on the carbon coated first current collector and in contact with the first charge barrier to improve contact. A third charge barrier functioning as a membrane may be provided in between the second current collector and the spacer.
Abstract:
An apparatus for removal of ions from water, the apparatus includes: a first functional layer system including a carbon coated first current collector and optionally a first charge barrier layer; a second functional layer system including a carbon coated second current collector and optionally a second charge barrier; and a spacer between the first and second functional layer systems to allow water to flow in between the first and second functional layer systems. An ionomer is provided to the first functional layer system and/or second functional layer system.
Abstract:
An evaporative recirculation cooling water system, the system having a recirculation loop to recirculate water through the system, a construction with a space to cool the water in the recirculation loop by evaporation, and a water entry point to allow water into the recirculation loop. The system has a charge barrier flow through capacitor constructed and arranged to remove ions from the water and a dosing system whereby a scale inhibitor is continuously dosed into the inlet flow into the flow through capacitor.
Abstract:
An apparatus to remove ions, the apparatus including a capacitive electrode stack. The capacitive electrode stack has a first electrode that includes a first current collector, a second electrode, and a spacer between the first and second electrodes to allow water to flow in between the first and second electrodes. The apparatus has a connector to connect the current collector inside the housing with an electrical source outside the housing, and the connector includes a closing off portion to close an opening in the housing and to form a boundary for the water in the housing.
Abstract:
A method of operating an apparatus to remove ions, the method including allowing water to flow in between a first and a second electrode of a capacitor, charging the capacitor with an electrical charge via a controller in order to attract ions into the electrodes; and releasing ions from the electrodes by releasing electrical charge from the capacitor via the controller. During a subsequent charging step, charging of the capacitor may be controlled with the controller by applying an electrical charge which does not substantially exceed a quantity of electrical charge released from the capacitor during the releasing of ions to keep the capacitor in balance.
Abstract:
An apparatus to remove ions including a plurality of capacitive electrode stacks. Each capacitive electrode stack may have: a plurality of first electrodes including a plurality of first current collectors; a plurality of second electrodes including a plurality of second current collectors; and a spacer between the first and second electrodes to allow water to flow in between the electrodes. The second current collectors of a first of the plurality of capacitive electrode stacks may be connected to the first current collectors of a second of the plurality of capacitive electrode stacks.
Abstract:
A method to prepare a coated current collector electrode of a flow through capacitor. The method includes preparing a coating paste includes: 10-50 weight % of carbon having a specific surface area of at least 500 m2/g; 0.3-5 weight % of a binder; 10-50 weight % based on the total paste of a first solvent having a first boiling point; and 10-50 weight % based on the total paste of a second solvent having a second boiling point. The method further includes applying the coating paste on a current collector; and allowing the second solvent in the coating paste applied on the current collector to evaporate at a temperature lower than the first boiling point.