CA2968373C

Fuel cell system with waste heat recovery for production of high pressure steam

Abstract

A fuel cell system includes at least one high temperature fuel cell stack having an anode side and a cathode side and configured to generate electrical power; and a gas oxidizer/high level heat recovery assembly including: an oxidizer configured to oxidize exhaust output from the at least one high temperature fuel cell stack and/or a gas derived from the exhaust, and to generate high level heat, and a high level heat recovery system configured to recover the high level heat generated in the oxidizer.

CA2968373C, drawing sheet 1
Sheet 1 of 3

Term

9.2 yearsleft in the term

Expires 19 November 2035.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

15 claims: 4 independent, 11 dependent

  1. 1
    A fuel cell system comprising:at least one high temperature fuel cell stack having an anode side and a cathode side and configured to generate electrical power;a gas oxidizer/high level heat recovery assembly comprising an oxidizer configured to oxidize one or more of anode exhaust output from the anode side of the at least one high temperature fuel cell stack and a gas derived from the anode exhaust, and to generate high level heat, and a high level heat recovery system configured to recover the high level heat generated in the oxidizer;and an exhaust recuperator configured to cool the anode exhaust output from the anode side of the at least one fuel cell stack before the anode exhaust or the gas derived from the anode exhaust is provided to the oxidizer, and to pre-heat input oxidant gas using heat in the anode exhaust before the pre-heated oxidant gas is provided to the oxidizer, wherein the gas oxidizer/high level heat recovery assembly is coupled with the at least one high temperature fuel cell stack such that, after the input oxidant gas is pre-heated in the exhaust recuperator, the pre-heated oxidant gas is further heated in the oxidizer to produce high temperature oxidant gas, and after the pre-heated oxidant gas is further heated in the oxidizer, the high temperature oxidant gas is output from the gas oxidizer/high level heat recovery assembly to the cathode side of the at least one high temperature fuel cell stack.
  2. 11
    A method of generating electrical power and high level heat using a fuel cell system, the method comprising:operating at least one high temperature fuel cell stack having an anode side and a cathode side so as to generate electrical power;and oxidizing one or more of anode exhaust output from the anode side of the at least one high temperature fuel cell stack and a gas derived from the anode exhaust in an oxidizer of a gas oxidizer/high level heat recovery assembly, while generating high level heat as a result of the oxidizing process;recovering the high level heat generated as a result of the oxidizing process, using a high level heat recovery system of the gas oxidizer/high level heat recovery assembly;and cooling the anode exhaust output from the anode side of the at least one fuel cell stack before the anode exhaust or the gas derived from the anode exhaust is oxidized in the oxidizing step, and pre-heating input oxidant gas using at least heat in the anode exhaust and providing the pre-heated oxidant gas for use in the oxidizing step, wherein the gas oxidizer/high level heat recovery assembly is coupled with the at least one high temperature fuel cell stack such that, after the input oxidant gas is pre-heated, the pre-heated oxidant gas is further heated in the oxidizer to produce high temperature oxidant gas, and after the pre-heated oxidant gas is further heated in the oxidizer, the high temperature oxidant gas is output from the gas oxidizer/high level heat recovery assembly to the cathode side of the at least one high temperature fuel cell stack.
  3. 14
    The method in accordance with claim 13, further comprising pre-hcating the water-separated anode exhaust using the heat in the anode exhaust while pre-heating the input oxidant gas using the heat in the anode exhaust, and providing the heated water-separated anode exhaust for use in the oxidizing step.
  4. 15
    The method in accordance with claim 12, further comprising processing input fuel before supplying processed fuel to the at least one high temperature fuel cell stack, the processing step including humidifying the input fuel using one or more of water and a first portion of the high pressure high temperature steam generated in the generating step and preheating humidified fuel using waste heat from oxidant exhaust output by the at least one high temperature fuel cell stack.