Nova Patents
EP0147111A2

Production of aromatic hydrocarbons.

Abstract

This invention relates to a process for producing aromatic hydrocarbon from a feedstock comprising C3/C4 hydrocarbons mixed with C2 hydrocarbons, especially ethane. The mixed feedstock is contacted at a temperature below 580°C with a catalyst composition comprising an aluminosilicate in which the molar ratio of silica to alumina is at least 5:1. The product is rich in aromatics and can be used as a gasoline blending component.

Term

Term ended

Projected expiry passed 6 December 2004, 21.8 years ago.

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10 claims: 7 independent, 3 dependent

  1. 1
    A process for producing aromatic hydrocarbons comprising bringing into contact at a temperature below 580°C a mixed hydrocarbon feedstock containing at least 50% w/w of C 3 and/or C 4 hydrocarbons and from 10 to 50% w/w of ethane with a catalyst composition comprising an aluminosilicate in which the molar ratio of silica to alumina is at least 5:1.
  2. 4
    A process according to any one of the preceding claims wherein the hydrocarbon feedstock contains more than 50% w/w of C 3 and/or C 4 hydrocarbons and less than 45% w/w of ethane.
  3. 5
    A process according to any one of the preceding claims wherein the molar ratio of silica to alumina in the gallium loaded aluminosilicate is from 20:1 to 150:1.
  4. 6
    A process according to any one of the preceding claims 3-5 wherein the catalyst composition has a gallium content of 0.05 to 10% w/w of the total aluminosilicate in said composition.
  5. 7
    A process according to any one of the preceding claims wherein conversion of the mixed hydrocarbon feedstock to aromatics and/or gasoline blending components is carried out in the gas phase at a temperature from 475 to 575°C.
  6. 8
    A process according to any one of the preceding claims wherein conversion of the mixed hydrocarbon feedstock is carried out at a pressure from 1 to 20 bar absolute.
  7. 9
    A process according to any one of the preceding claims wherein the catalyst composition is partially deactivated by treatment with steam or by high temperature dry calcination prior to contact with the mixed hydrocarbon feedstock.