EP2219772B1

Systems and methods for supplying auxiliary fuel streams during intermittent byproduct discharge from pressure swing adsorption assemblies

Abstract

This record has no abstract on file.

EP2219772B1, drawing sheet 1
Sheet 1 of 4

Term

2.2 yearsleft in the term

Expires 2 December 2028.

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

13 claims: 6 independent, 7 dependent

  1. 1
    A method for supplying a fuel stream having at least a threshold combustion fuel value to a heating assembly (71) adapted to receive such a fuel stream to produce a heated exhaust stream (88) therefrom, the method comprising:producing a mixed gas stream (74) containing hydrogen gas, as a majority component, and other gases, in a heated hydrogen-producing region (70) of a fuel processing system (64);delivering at least a portion of the mixed gas stream (74) to a pressure swing adsorption assembly (73);separating the mixed gas stream (74) delivered to the pressure swing adsorption assembly (73) into a product stream containing a greater concentration of hydrogen gas than the mixed gas stream (74) and a byproduct stream (76) containing a substantial portion of the other gases;and intermittently discharging from the pressure swing adsorption assembly (73) the byproduct stream (76) and delivering at least a portion of the byproduct stream (76) discharged from the pressure swing adsorption assembly (73) to the heating assembly (71);characterised in that the method further comprises: supplying an auxiliary fuel stream to the heating assembly (71) when the byproduct stream (76) is not discharged, by redirecting to the heating assembly (71) a portion of the mixed gas stream (74) that is not delivered to the pressure swing adsorption assembly (73);generating the heated exhaust stream (88) by combusting at least portions of any of the byproduct stream (76) and the auxiliary fuel stream delivered to the heating assembly (71);and heating at least the hydrogen-producing region (70) with the heated exhaust stream (88) to maintain the hydrogen-producing region (70) within a predetermined hydrogen-producing temperature range.
  2. 4
    The method of any preceding claim, wherein the supplying an auxiliary fuel stream further includes regulating the auxiliary fuel stream supplied by using an amount of the auxiliary fuel stream sufficient, when combined with the byproduct stream (76), that the resulting supplied streams have a combined combustion fuel value at least as great as the corresponding, predetermined threshold value.
  3. 5
    The method of any preceding claim, wherein the delivering the byproduct stream (76) to the heating assembly (71) at least partially overlaps in time with the supplying an auxiliary fuel stream to the heating assembly (71).
  4. 6
    The method of any preceding claim, wherein the separating includes adsorbing the other gases from the mixed gas stream (74) to produce the product stream and depressurizing and purging an adsorbent bed (100) to desorb the other gases therefrom and thereby produce the byproduct stream (76), wherein the producing includes producing the mixed gas stream (74) via a steam reforming reaction of water and at least one carbon-containing feedstock, and further wherein the method includes continuously supplying the heating assembly (71) with at least one of the auxiliary fuel stream, the mixed gas stream (74), and the byproduct stream (76).
  5. 7
    A hydrogen-generation assembly, comprising:a fuel processing system (64) having a hydrogen-producing region (70) adapted to receive a feed stream and to produce a mixed gas stream (74) containing hydrogen gas and other gases therefrom, wherein hydrogen gas forms a majority component of the mixed gas stream (74);a heating assembly (71) adapted to receive and combust one or more streams having a combined combustion fuel value at least as great as a corresponding, predetermined threshold value and thereby produce a heated exhaust stream (88) sufficient to heat and maintain at least the hydrogen-producing region (70) within a predetermined temperature range for producing the mixed gas stream (74);a pressure swing adsorption assembly (73) adapted to separate at least a portion of the mixed gas stream (74) into streams forming a product stream and a byproduct stream (76), the product stream containing at least substantially pure hydrogen gas and having a reduced concentration of the other gases than the mixed gas stream (74), and the byproduct stream (76) containing at least a substantial portion of the other gases, wherein the pressure swing adsorption assembly (73) is adapted to intermittently discharge a byproduct stream (76) having at least a predetermined threshold fuel value;and a combustion fuel stream supply system adapted to selectively supply the byproduct stream (76) to the heating assembly (71) characterized in that the combustion fuel stream supply system is further adapted to also selectively supply, when the byproduct stream (76) having at least a predetermined threshold fuel value is not discharged from the pressure swing adsorption assembly (73), an auxiliary fuel stream to the heating assembly (71), such that the one or more streams supplied to the heating assembly (71) have a combined combustion fuel value at least as great as the corresponding, predetermined threshold value, wherein the combustion fuel stream supply system is further adapted to selectively redirect at least a portion of the mixed gas stream (74) produced by the fuel processing system (64) prior to delivery to the pressure swing adsorption assembly (73), and to use at least a portion of the redirected mixed gas stream (74) when supplying the auxiliary fuel stream, wherein the auxiliary fuel stream includes at least a portion of the mixed gas stream (74) that is redirected by the combustion fuel stream supply system prior to delivery to the pressure swing adsorption assembly (73).
  6. 11
    The hydrogen-generation assembly of any of claims 7-10, wherein the pressure swing adsorption assembly (73) includes a plurality of adsorbent beds (100), each bed including an adsorbent region containing adsorbent adapted to adsorb at least one of the other gases;wherein the pressure swing adsorption assembly (73) is adapted to cycle through an equalization step in which at least two of the plurality of adsorbent beds (100) are fluidly interconnected for gas flow between the beds;and wherein a byproduct stream (76) having at least a predetermined threshold fuel value is not discharged from the pressure swing adsorption assembly (73) during the equalization step.