EP1526596A1

Direct methanol fuel cell with pressure recycling device

Abstract

Improvements to non-acid fuel methanol fuel cells (10) include new formulations for the materials used therein. The anode (14) includes platinum and rithenium uniformly mixed together. Other materials may be substituted for these metals. The cathode (16) is made of platinum particles, and is bonded to a side of the solid polymer electrolyte membrane (18). The backing material for the fuel electrode is treated to improve its characteristics. An extremely porous electrode made by sputtering is also disclosed.

EP1526596A1, drawing sheet 1
Sheet 1 of 16

Term

Term ended

Projected expiry passed 9 December 2016, 9.8 years ago.

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44 claims: 17 independent, 27 dependent

  1. 1
    A fuel cell (10) system, comprising:a fuel cell (10) stack comprising an anode (14), a cathode (16), and a solid polymer electrolyte membrane (18) between said anode (14) and cathode (16), said anode (14) and cathode (16) being each in contact with fluid, wherein the fluid in contact with said anode (14) includes a methanol fuel which is substantially free of acid electrolyte;and a turbine (946), driven by pressure of one of said fluids, and recycling pressure in said one of said fluids;or a pressure recycling device (930, 946), operating to recycle pressure in at least one fluid which is in contact with said fuel cell (10) stack;or a fluid feed system (920) including a methanol source, in contact with said fuel cell (10) stack, and providing methanol to said fuel cell (10) stack, and a gas source, providing gas to said cathode (16) for an electrochemical reaction and a pressure device (930, 946), coupled to said fluid feed system (920), and using pressure from said fluid in said fluid feed system (920) in another system.
  2. 4
    A fuel cell (10) system as in any of the preceding claims, wherein said polymer electrolyte membrane (18) is a proton conducting, solid polymer electrolyte membrane (18).
  3. 5
    A fuel cell (10) system as in any of the preceding claims, wherein said anode (14) includes an electrochemical catalyst thereon.
  4. 9
    A fuel cell (10) system as in any of claims 6 to 8, wherein said pressure recycling device (930, 946) is coupled to gases in contact with said anode (14).
  5. 10
    A fuel cell (10) system as in any of claims 6 to 9, further comprising a water/air separator, also coupled to gases in contact with said anode (14), operating to separate air from water.
  6. 13
    A fuel cell (10) system as in any of claims 6 to 10, further comprising a water recycling part, operating to recycle water from a cathode (16) back to an anode (14).
  7. 16
    A fuel cell (10) system as in any of claims 6 to 15, further comprising at least one fan, driven by said pressure recycling device (930, 946).
  8. 21
    A fuel cell (10) system as in any of claims 18 to 20, further comprising a valve (954), which vents excess water if too much water has been recycled.
  9. 22
    A fuel cell (10) system as in any of claims 18 to 21, further comprising a pressure recycling system, in contact with said fluid feed system (920), and operating to recycle pressure within the fluid feed system (920) by receiving pressure therefrom, and providing recycling pressure to carry out another operation in the fuel cell (10).
  10. 27
    A system as in any of claims 23 to 26, further comprising a gas/liquid separator, coupled to said gas source part of said fluid feed system (920).
  11. 29
    A system as in any of claims 23 to 28, further comprising a pressure driven device, driven to receive its pressure from said pressure device (930, 946).
  12. 31
    A method, comprising:operating a direct fed methanol fuel cell (10) which operates with an organic alcohol containing fuel;and using a pressure from one portion in said fuel cell (10) to drive at least one pressure-driven device.
  13. 36
    A method as in any of claims 31 to 35, further comprising using the pressure to carry out another operation in the fuel cell (10).
  14. 37
    A method as in any of claims 31 to 36, wherein said operating comprises carrying out an electrochemical reaction on the methanol fuel cell (10) using a methanol fuel which is substantially free of free acid electrolytes.
  15. 38
    A method, comprising:supplying fluids to a direct fed methanol fuel cell (10) stack, which includes an anode (14), a cathode (16), and a proton conducting solid polymer electrolyte membrane (18) between said anode (14) and cathode (16);carrying out an electrochemical reaction using fluids;and recovering pressure from the fluids fed by said supplying.
  16. 41
    A method as in any of claims 38 to 40, further comprising recovering fluids after the electrochemical reaction has been carried out, so that at least part of the fluids after the electrochemical reaction are fed back for a subsequent electrochemical reaction.
  17. 43
    A method of operating a direct feed methanol fuel cell (10), comprising:receiving pressurized gas on an input side of the fuel cell (10);feeding liquid methanol directly to an anode (14) of the fuel cell (10);operating the fuel cell (10) using the pressurized gas;receiving output gas from the fuel cell (10);and recovering pressure from the output gas.