Rejuvenation of automotive fuel cells
View Patent ↗A process for rejuvenating fuel cells has been demonstrated to improve the performance of polymer exchange membrane fuel cells with platinum/ionomer electrodes. The process involves dehydrating a fuel cell and exposing at least the cathode of the fuel cell to dry gas (nitrogen, for example) at a temperature higher than the operating temperature of the fuel cell. The process may be used to prolong the operating lifetime of an automotive fuel cell.
1. A process for rejuvenating a fuel cell, the process comprising:
providing a fuel cell having an anode, a cathode, and a polymer electrolyte membrane between the anode and the cathode, the cathode having an initial value of current density at a chosen cell voltage;
allowing the fuel cell to generate electricity over a chosen period of time after which the cathode has a second value of current density less than the initial value at the same chosen voltage, a difference between the initial value and the second value over the chosen period of time representing a rate of performance loss;
dehydrating the fuel cell; and thereafter
exposing the cathode to a flow of a gas having less than 5% water at a temperature of from about 80° C. to about 200° C.; and
rehydrating the fuel cell, wherein the sequence of dehydration, gas exposure, and rehydration rejuvenates the fuel cell as indicated by an increase in the current density from the second value to a third value following rehydration.
2. The process of claim 1 , wherein the cathode thickness is from 0.1 μm to 15 μm.
3. The process of claim 2 , wherein the cathode thickness is from 1 μm to 8 μm.
4. The process of claim 1 , wherein the cathode includes platinum, carbon black, and ionomer, the platinum is present at a platinum to carbon ratio of from about 40 wt % to about 1 wt %, and the cathode includes a platinum loading value of less than 0.20 mg/cm 2 .
5. The process of claim 4 , wherein the cathode includes:
a ratio of platinum to carbon of from about 20 wt % to about 5 wt %, and
a platinum loading value of less than 0.1 mg/cm 2 .
6. The process of claim 1 , wherein the temperature is in a range of 105° C. to 180° C.
7. The process of claim 4 , wherein the platinum is selected from elemental platinum or an alloy of platinum.
8. The process of claim 1 , wherein the gas having less than 5% water includes nitrogen gas, helium gas, argon gas, or air.
9. The process of claim 1 , wherein the step of exposing the cathode to the flow of the gas further includes exposing the cathode to the gas over an exposure time of from about 10 minutes to about 10 hours.
10. The process of claim 9 , wherein the exposure time is from about 30 minutes to about 3 hours.