Nova Patents
EP1360145A2

A catalyst and method of steam reforming

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 15 February 2022, 4.6 years ago.

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50 claims: 8 independent, 42 dependent

  1. 1
    Claims of equivalent WO 02066371 A2 CLAIMS We claim:1. A method of steam reforming, comprising: passing steam and hydrocarbon through a reaction chamber;wherein the reaction chamber comprises a spinel-containing catalyst that has surface active sites comprising a material selected from the group consisting of rhodium, iridium, nickel, palladium, platinum, ruthenium, carbide of group IVb and combinations thereof;wherein the rate of said passing steam and hydrocarbon is controlled such that residence time in the reaction chamber is less than 0.1 seconds;wherein the temperature in the reaction chamber is in the range of 500 °C to 1000 °C;wherein, after passing through the reaction chamber, at least 60% of said hydrocarbon has been converted to products.
  2. 8
    A catalyst, comprising:(a) a first porous structure with a first pore surface area and a first pore size of at least about 0.1 μm;(b) a porous interfacial layer that comprises a spinel with a second pore surface area and a second pore size less than said first pore size, said porous interfacial layer having a thickness less than 4 mm disposed upon said porous structure;(c) a steam reforming catalyst selected from the group consisting of rhodium, iridium, nickel, palladium, platinum, ruthenium, carbide of group IVb and combinations.thereof disposed upon the second pore surface area.
  3. 12
    A catalyst comprising:an alumina layer;a metal exposed on the surface of the catalyst;a spinel layer disposed between the alumina layer and the metal;wherein the spinel layer is in direct contact with the alumina layer;and wherein the metal comprises a metal selected from the group consisting of: rhodium, iridium, nickel, platinum, palladium, and ruthenium.
  4. 19
    A method of steam reforming, comprising:passing steam and hydrocarbon through a reaction chamber;wherein the reaction chamber comprises a spinel-containing catalyst that has surface active sites comprising a material selected from the group consisting of rhodium, iridium, nickel, palladium, platinum, ruthenium, carbide of group Vlb and combinations thereof;wherein the rate of said passing steam and hydrocarbon is controlled such that residence time in the reaction chamber is less than 0.1 seconds;wherein the temperature in the reaction chamber is in the range of 500 °C to 1000 °C;and wherein at least 0.5 mmol of hydrogen gas is produced per second per cubic centimeter of reaction chamber volume.
  5. 30
    A method of steam reforming, comprising:passing steam and hydrocarbon through a reaction chamber;wherein the reaction chamber comprises a spinel-containing catalyst that has surface active sites comprising a material selected from the group consisting of rhodium, iridium, nickel, palladium, platinum, ruthenium, carbide of group Vlb and combinations thereof;wherein the rate of said passing steam and hydrocarbon is controlled such that residence time in the reaction chamber is less than 0.1 seconds;wherein the temperature in the reaction chamber is in the range of 500 °C to 1000 °C;wherein, after passing through the reaction chamber, at least 50% of said hydrocarbon has been converted to products.
  6. 31
    A method of steam reforming, comprising:passing steam and hydrocarbon through a reaction chamber;wherein the reaction chamber comprises a catalyst that has surface active sites comprising a material selected from the group consisting of rhodium, iridium, nickel, palladium, platinum, ruthenium, carbide of group Vlb and combinations thereof;wherein the rate of said passing steam and hydrocarbon is controlled such that residence time in the reaction chamber is less than about 0.1 seconds;wherein, after passing through the reaction chamber, the hydrocarbon conversion has reached at least 50% of equilibrium conversion.
  7. 42
    A method of steam reforming, comprising:passing steam and hydrocarbon through a reaction chamber;wherein the reaction chamber comprises a catalyst;wherein the catalyst comprises: a first porous structure with a first pore surface area and a first pore size of at least 0.1 μm;a porous interfacial layer with a second pore surface area and a second pore size that is less than the first pore size;and a catalyst metal.
  8. 46
    A method of steam reforming, comprising:passing steam and hydrocarbon through a reaction chamber;wherein the reaction chamber comprises a catalyst;wherein the catalyst comprises: catalyst has a pore volume of 30 to 95% and at least 50% of the catalyst's pore volume is composed of pores in the size range of 0.3 to 200 microns;and a catalyst metal.