METHOD OF OPERATING A FUEL CELL STACK AT LOW PRESSURE AND LOW POWER CONDITIONS
A method of operating a low pressure drop fuel cell stack comprising a plurality of low pressure drop fuel cells wherein during low pressure and low power operation, a heat transfer rate of a cathode flow field plate of each fuel cell is greater than a heat transfer rate of an anode flow field plate of the same fuel cell. Thus, a temperature gradient is created between an anode electrode and a cathode electrode of each fuel cell, as well as reactant fluids in at least one anode flow field and at least one cathode flow field of the same fuel cell.
1 . A method of operating a solid polymer electrolyte fuel cell stack having a plurality of fuel cells, the method comprising the steps of:
a) supplying a fuel at a pressure of less than 0.21 barg to at least one anode flow field of an anode flow field plate of each fuel cell;
b) supplying an oxidant at a pressure of less than 0.21 barg to at least one cathode flow field of a cathode flow field plate of each fuel cell; and
c) supplying a coolant to at least one coolant flow field;
wherein during fuel cell stack operation at a current density of less than 0.5 A/cm 2 , the temperature of the anode flow field plate of each fuel cell is greater than the temperature of the cathode flow field plate of the same fuel cell.
2 . The method of claim 1 wherein the fuel and oxidant are supplied by means of a blower or fan.
3 . The method of claim 1 wherein during fuel cell stack operation at a current density of less than 0.5 A/cm 2 , the temperature of the anode flow field plate of one fuel cell is greater than the temperature of the cathode flow field plate of an adjacent fuel cell.