The invention is a hydrogen passivation shut down system for a fuel cell
power plant (10). An anode flow path (24) is in fluid communication with
an anode catalyst (14) for directing hydrogen fuel to flow adjacent to
the anode catalyst (14), and a cathode flow path (38) is in fluid
communication with a cathode catalyst (16) for directing an oxidant to
flow adjacent to the cathode catalyst (16) of a fuel cell (12). Hydrogen
fuel is permitted to transfer between the anode flow path (24) and the
cathode flow path (38). A hydrogen reservoir (66) is secured in fluid
communication with the anode flow path (24) for receiving and storing
hydrogen during fuel cell (12) operation, and for releasing the hydrogen
into fuel cell (12) whenever the fuel cell (12) is shut down.