Nova Patents
EP2417664B1

Fuel system using redox flow battery

Abstract

This record has no abstract on file.

EP2417664B1, drawing sheet 1
Sheet 1 of 11

Term

3.5 yearsleft in the term

Expires 6 April 2030.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

18 claims: 7 independent, 11 dependent

  1. 1
    A method of operating a power system housed within a device, comprising:providing a plurality of flow cells, each flow cell comprising: a positive electrode current collector (200), a negative electrode current collector (220), an ion-permeable membrane (240) separating said positive (200) and negative (220) current collectors;wherein said positive electrode current collector (200) and said ion-permeable membrane (240) define a positive electroactive zone for accommodating a positive electroactive material;wherein said negative electrode current collector (220) and said ion-permeable membrane (240) define a negative electroactive zone for accommodating a negative electroactive material;wherein at least one of said positive and negative electroactive materials comprises a flowable redox composition in said electroactive zone;wherein said flowable redox composition comprises a flowable semi-solid or condensed liquid ion-storing redox composition capable of taking up and releasing said ions during operation of the cell, the ion-storing redox composition remaining as a semi-solid or condensed liquid during operation of the cell;at least one dispensing vessel (510, 520;610, 610';710, 720) for dispensing a flowable redox composition into one of the positive or negative electroactive zone;wherein said dispensing vessel (510, 520;610, 610';710, 720) is connected with said plurality of flow cells and in fluidic communication with said electroactive zone and the dispensing vessel (510, 520;610, 610';710, 720) is capable of being connected and disconnected from said flow cell;and at least one receiving vessel (530, 540;620, 620';750, 760) for receiving flowable redox composition from one of the positive or negative electroactive zone, wherein said receiving vessel (530, 540;620, 620';750, 760) is connected with said flow cell and in fluidic communication with said electroactive zone and the receiving vessel (530, 540;620, 620';750, 760) is capable of being connected and disconnected from said flow cell;introducing said flowable redox composition from said dispensing vessel (510, 520;610, 610';710, 720) into at least one of the electroactive zones to cause the flow cell to discharge to provide electric energy to operate the device;and receiving the discharged redox composition in the receiving vessel (530, 540;620, 620';750, 760).
  2. 8
    The method of any of previous claims, further comprising reconditioning said flowable semi-solid or condensed liquid ion-storing redox composition, wherein said reconditioning comprises sequestering residual water from the said redox composition;adding additional salt to improve ion conductivity;adding solvents or electrolyte additives;adding additional solid phases including active materials used for ion storage, or conductive additives;separating solid phases from the liquid electrolyte;adding coagulation aids;replacing the liquid electrolyte;or any combination thereof.
  3. 9
    A power system, comprising:a plurality of flow cells, each flow cell comprising: a positive electrode current collector (200), a negative electrode current collector (220), an ion-permeable membrane (240) separating said positive (200) and negative (220) current collectors;wherein said positive electrode current collector (200) and said ion-permeable membrane (240) define a positive electroactive zone for accommodating said positive electrode;wherein said negative electrode current collector (220) and said ion-permeable membrane (240) define a negative electroactive zone for accommodating said negative electrode;wherein at least one of said positive and negative electrode comprises a flowable semi-solid or condensed liquid ion-storing redox composition in said electroactive zone which is capable of taking up and releasing said ions during operation of the cell, the ion-storing redox composition remaining as a semi-solid or condensed liquid during operation of the cell;at least one dispensing storage vessel (510, 520;610, 610';710, 720) for dispensing said flowable semi-solid or condensed liquid ion-storing redox composition into one of the positive or negative electroactive zone;wherein said dispensing storage vessel (510, 520;610, 610';710, 720) is connected with said plurality of flow cells and in fluidic communication with said electroactive zone and the dispensing vessel (510, 520;610, 610';710, 720) is capable of being connected and disconnected from said flow cell;and at least one receiving storage vessel (530, 540;620, 620';750, 760) for receiving flowable redox composition from one of the positive or negative electroactive zone, wherein said receiving vessel (530, 540;620, 620';750, 760) is connected with said flow cell and in fluidic communication with said electroactive zone and the receiving vessel (530, 540;620, 620';750, 760) is capable of being connected and disconnected from said flow cell.
  4. 13
    The power system of any of claims 9-12, wherein said plurality of flow cells form a stack of flow cells, wherein each flow cell comprises at least one electrode comprising a flowable semi-solid or condensed liquid ion-storing redox composition which is capable of taking up or releasing said ions during operation of the cell;and said dispensing (510, 520;610, 610';710, 720;1102, 1104) and receiving (530, 540;620, 620';750, 760;1102, 1104) vessels are reversibly connected with the flow cell stack.
  5. 16
    The power system of claim any of claims 9-15, further comprising a cooling system for circulating a coolant in said plurality of flow cells.
  6. 17
    The power system of claim any of claims 9-16, further comprising a level meter (1008) connected to said power storage vessel for monitoring the state of charge of the flowable semi-solid or condensed liquid ion-storing redox composition.
  7. 18
    A land, water, or air vehicle comprising the power system of any of claims 9-17.