CA2393475C

Hydrogen-selective metal membrane modules and method of forming the same

Abstract

Membrane modules that contain one or more hydrogen-selective membranes, methods for preparing the same, and hydrogen purification systems, fuel processors and devices containing the same. In some embodiments, the membrane modules include one or more hydrogen-selective membranes supported on a screen structure, of which a variety of embodiments are disclosed. In some embodiments, the membrane or membranes are adhesively mounted on the screen structure during assembly. In some embodiments, the screen structure includes a plurality of screen members adhesively mounted together during assembly. In some embodiments, the screen structure includes a coating.

CA2393475C, drawing sheet 1
Sheet 1 of 17

Term

Term ended

Expired 22 March 2021, 5.5 years ago.

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

45 claims: 27 independent, 18 dependent

  1. 1
    CA 02393475 2002-0Θ-19 -22THE EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE PROPERTY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS:1. A hydrogen purification assembly, comprising: a membrane module adapted to receive a mixed gas stream containing hydrogen gas and other gases, a product output through which a product stream is removed from the membrane module, and a byproduct output through which a byproduct stream is removed from the membrane module, wherein the product stream contains at least substantially hydrogen gas and further wherein the byproduct stream contains at least a substantial portion of the other gases;and at least one membrane envelope comprising: a pair of hydrogen-selective membrane regions, wherein each membrane region has a feed side and a permeate side, wherein the membrane regions are spaced-apart from each other with their permeate sides facing each other and defining a harvesting conduit extending therebetween, wherein the harvesting conduit is in fluid communication with the product output to enable gas passing through the membrane regions into the harvesting conduit to be withdrawn from the membrane module through the product output, and further wherein the feed sides are in fluid communication with the mixed gas stream;and a support within the harvesting conduit and adapted to support the permeate sides of the membrane regions, wherein the support includes a pair of generally opposed contact surfaces that are adapted CA 02393475 2002-11-19 -23to respectively support the permeate sides of the pair of membrane regions, and further wherein the contact surfaces are selected from the group consisting of contact surfaces that include a coating adapted to prevent intermetallic diffusion between the contact surfaces and the membrane regions and contact surfaces that are formed from an expanded metal material.
  2. 5
    The assembly of any one of claims 2-4, wherein the coating is adapted to be thermodynamically stable with respect to decomposition in the presence of hydrogen at pressures less than approximately 1000 psi.
  3. 7
    The assembly of any one of claims 1-6, wherein the coating is formed from at least one of the group consisting of oxides, nitrides, carbides, and intermetallic compounds. CA 02393475 2002-11-19 -24S. The assembly of claim 7, wherein the coating is selected from the group consisting of aluminum oxide, tungsten carbide, tungsten nitride, titanium carbide, titanium nitride, and mixtures thereof,
  4. 8
    9. The assembly of any one of claims 1-8, wherein the coating is applied to the surfaces by at least one of chemical vapor deposition, sputtering, thermal evaporation, thermal spraying, and deposition followed by oxidation.
  5. 9
    10. The assembly of any one of claims 1 -9, wherein the support is adapted to permit flow of gas both parallel and transverse to the permeate sides of the membrane regions.
  6. 10
    11. The assembly of any one of claims 1-10, wherein the support defines a gas stream path through the harvesting conduit, with the stream path extending parallel and transverse to the permeate sides of the membrane regions.
  7. 11
    12. The assembly of any one of claims 1-11, wherein the support is formed from a porous material.
  8. 12
    13. The assembly of any one of claims 1-12, wherein the contact surfaces are formed from an expanded metal material.
  9. 13
    14. The assembly of any one of claims 1-13, wherein the membrane regions are adhesively bonded to the contact surfaces during fabrication of the membrane envelope and thereafter subjected to oxidizing conditions to remove the adhesive after fabrication of the membrane envelope. CA 02393475 2002-11-19
  10. 14
    15. The assembly of any one of claims 1-14, wherein the support includes a plurality of screen members.
  11. 16
    17. The assembly of any one of claims 15 and 16, wherein the plurality of screen members includes an inner screen member and a pair of outer screen members that form the generally opposed surfaces to which the hydrogen-selective membrane regions are adhesively mounted during fabrication of the membrane envelope.
  12. 18
    19. The assembly of any one of claims 15-18, wherein at least one of the screen members is formed of expanded metal.
  13. 19
    20. The assembly of any one of claims 1-19, wherein each hydrogen-selective membrane region is formed from at least one of palladium and a palladium alloy.
  14. 21
    22. The assembly of any one of claims 1-21, wherein the membrane module includes a plurality of membrane envelopes.
  15. 24
    25. The assembly of any one of claims 22-24, wherein each membrane envelope includes an input through which at least a portion of the mixed gas stream is delivered to the feed sides of the membrane regions, a byproduct output through which the portion of the mixed gas stream that does not pass through the hydrogenselective membrane regions is removed from the membrane envelope, and a product output through which the portion of the mixed gas stream that permeates through the hydrogen-selective membrane regions is removed from the harvesting conduit.
  16. 26
    27. The assembly of any one of claims 1-26, in combination with a hydrogen-producing device adapted to produce the mixed gas stream.
  17. 29
    30. The assembly of any one of claims 27-29, wherein the hydrogen-producing device includes a hydrogen-producing region that is adapted to receive a feed stream and to produce the mixed gas stream therefrom.
  18. 31
    32. The assembly of any one of claims 1-31, in combination with a polishing catalyst bed that includes a methanation catalyst and which is adapted to receive the product stream.
  19. 32
    33. The assembly of any one of claims 1-32, in combination with a hydrogen-consuming device adapted to receive at least a portion of the product stream.
  20. 34
    35. The assembly of any one of claims 33-34, wherein the hydrogen-consuming device includes a burner.
  21. 35
    36. A method for forming a hydrogen-selective membrane module, the method comprising:providing a pair of hydrogen-selective metal membranes having feed sides and permeate sides;CA 02393475 2002-11-19 -28providing a support including outer surfaces through which hydrogen gas may flow;adhesively mounting the permeate side of one of the hydrogen-selective metal membranes to one of the outer surfaces of the support and adhesively mounting the permeate side of another of the hydrogen-selective metal membranes to the other of the outer surfaces of the support to form a membrane envelope having a harvesting conduit extending between the permeate sides of the hydrogen-selective metal membranes;placing the membrane envelope in a membrane module having a pair of end plates;and subjecting the membrane module to oxidizing conditions to remove at least a substantial portion of the adhesive.
  22. 37
    38. The method of any one of claims 36-37, wherein the subjecting step includes maintaining the feed sides of the membranes at a greater pressure than the permeate sides.
  23. 38
    39. The method of any one of claims 36-38, wherein the subjecting step includes heating the membrane module at a first temperature for a first time interval and then heating the membrane module at a second temperature for a second time interval, and further wherein the second temperature is greater than the first temperature. CA 02393475 2002-11-19
  24. 39
    40. The method of any one of claims 36-39, further comprising repeating the providing and adhesively mounting steps a plurality of times prior to the subjecting step.
  25. 40
    41. The method of any one of claims 36-40, wherein the support includes a plurality of screen members.
  26. 42
    43. The method of any one of claims 41-42, wherein at least one of the screen members is formed from an expanded metal material.
  27. 43
    44. The method of any one of claims 36-43, wherein prior to the adhesively mounting step, the method further includes applying to the outer surfaces of the support a coating that is adapted to prevent intermetallic diffusion between the outer surfaces and the membranes.
  28. 45
    46. A membrane module produced according to the method of any one of claims 36-44.
Independent claims28