EP3551730A1

Process for oxidative desulfurization and sulfone management by gasification

Abstract

This record has no abstract on file.

Term

Projected expiry 24 January 2038.

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29 claims: 23 independent, 6 dependent

  1. 1
    Claims of equivalent WO 2018140503 A1 That which is claimed is:1. A method of upgrading a hydrocarbon feedstock, the method characterized by the steps of: supplying the hydrocarbon feedstock to an oxidation reactor, the hydrocarbon feedstock comprising sulfur compounds;contacting the hydrocarbon feedstock with an oxidant in the presence of a catalyst in the oxidation reactor under conditions sufficient to selectively oxidize sulfur compounds present in the hydrocarbon feedstock to produce an oxidized hydrocarbon stream that comprises hydrocarbons and oxidized sulfur compounds;separating the hydrocarbons and the oxidized sulfur compounds in the oxidized hydrocarbon stream by solvent extraction with a polar solvent to produce an extracted hydrocarbon stream and a mixed stream, the mixed stream comprising the polar solvent and the oxidized sulfur compounds, wherein the extracted hydrocarbon stream has a lower concentration of sulfur compounds than the hydrocarbon feedstock;separating the mixed stream using a distillation column into a first recovered polar solvent stream and a first residue stream;supplying the first residue stream to a gasifier to produce a syngas stream and a hydrogen sulfide stream;supplying the extracted hydrocarbon stream to a stripper to produce a second recovered polar solvent stream and a stripped oil stream;supplying the stripped oil stream to an adsorption column, the adsorption column being charged with an adsorbent suitable for the removal of oxidized compounds present in the stripped oil stream, the adsorption column producing a high purity hydrocarbon product stream a second residue stream, the second residue stream containing a portion of the oxidized compounds, and a spent adsorbent stream, the spent adsorbent stream containing another portion of the oxidized compounds;and supplying the spent adsorbent stream to the gasifier to produce additional syngas for the syngas stream, thereby disposing of the adsorbent.
  2. 3
    The method of any one of claims 1-2, wherein the adsorbent comprises one of a carbon-based adsorbent or a non-carbon based adsorbent.
  3. 6
    The method of any one of claims 1-5, further characterized by the step of:recycling the first recovered polar solvent stream and the second polar solvent stream to an extraction vessel for the step of separating the hydrocarbons and the oxidized sulfur compounds in the oxidized hydrocarbon stream.
  4. 7
    The method of any one of claims 1-6, wherein the oxidant is selected from the group consisting of air, oxygen, ozone, nitrous oxide, peroxides, hydroperoxides, organic peracids, and combinations thereof.
  5. 8
    The method of any one of claims 1-7, wherein the oxidation reactor catalyst is a metal oxide having the formula M x O y , wherein M is an element selected from Groups IVB, VB, and VIB of the periodic table.
  6. 9
    The method of any one of claims 1-8, wherein the oxidation reactor is maintained at a temperature of between about 20 and 150°C and at a pressure of between about 1-10 bars.
  7. 10
    The method of any one of claims 1-9, wherein the ratio of the oxidant to sulfur compounds present in the hydrocarbon feedstock is between about 4:1 and 10: 1.
  8. 11
    The method of any one of claims 1-10, wherein the polar solvent has a Hildebrandt value of greater than about 19.
  9. 12
    The method of any one of claims 1-11, wherein the polar solvent is selected from the group consisting of acetone, carbon disulfide, pyridine, dimethyl sulfoxide, n-propanol, ethanol, n-butanol, propylene glycol, ethylene glycol, dimethlyformamide, acetonitrile, methanol and combinations of the same.
  10. 13
    The method of any one of claims 1-12, wherein the polar solvent is acetonitrile.
  11. 14
    The method of any one of claims 1-13, wherein the polar solvent is methanol.
  12. 15
    The method of any one of claims 1-14, wherein the solvent extraction is conducted at a temperature of between about 20°C and 60°C and at a pressure of between about 1-10 bars.
  13. 16
    The method of any one of claims 1-15, further characterized by the step of:supplying the second residue stream to the gasifier.
  14. 17
    The method of any one of claims 1-16, wherein the adsorbent is selected from the group consisting of activated carbon, silica gel, alumina, natural clays, and combinations of the same.
  15. 18
    The method of any one of claims 1-17, wherein the adsorbent is a polymer coated support, wherein the support has a high surface area and is selected from the group consisting of silica gel, alumina, and activated carbon, and the polymer is selected from the group consisting of polysulfone, polyacrylonitrile, polystyrene, polyester terephthalate, polyurethane and combinations of the same.
  16. 19
    A method of providing a desulfurized hydrocarbon stream, and a syngas stream, from a sulfur-containing hydrocarbon feedstock, the method characterized by the steps of:supplying the hydrocarbon feedstock to an oxidation reactor, the hydrocarbon feedstock comprising sulfur compounds;catalytically oxidizing the sulfur compounds present in the hydrocarbon feedstock in the oxidation reactor with an oxidant in the presence of a catalyst under conditions sufficient to selectively oxidize at least a portion of the sulfur compounds present in the hydrocarbon feedstock to sulfones and produce an oxidized hydrocarbon stream comprising hydrocarbons and sulfones;selectively extracting the oxidized hydrocarbon stream with a polar solvent to produce an extracted hydrocarbon stream and a mixed stream, the mixed stream comprising the polar solvent and the sulfones, wherein the extracted hydrocarbon stream has a lower sulfur concentration than the hydrocarbon feedstock;separating the mixed stream using a distillation column into a first recovered polar solvent stream and a first residue stream comprising the sulfones;supplying the extracted hydrocarbon stream to a stripper, the stripper being operable to separate the extracted hydrocarbon stream into a stripped oil stream and a second recovered polar solvent stream;recycling at least one of the first recovered polar solvent stream and the second recovered polar solvent stream to the extraction step;supplying the residue stream comprising sulfones to a gasifier and oxidizing the residue stream with an oxidant to produce a syngas stream and a hydrogen sulfide stream;supplying the stripped oil stream to an adsorption column, the adsorption column being charged with an adsorbent suitable for the removal of oxidized compounds present in the stripped oil stream, the adsorption column producing a high purity hydrocarbon product stream a second residue stream, the second residue stream containing a portion of the oxidized compounds, and a spent adsorbent stream, the spent adsorbent stream containing another portion of the oxidized compounds;and supplying the spent adsorbent stream to the gasifier to produce additional syngas for the syngas stream, thereby disposing of the adsorbent.
  17. 21
    The method of any one of claims 19-20, further characterized by the step of:supplying the hydrogen sulfide stream to a Claus unit, wherein the hydrogen sulfide is contacted with a catalyst at elevated temperatures to produce a solid elemental sulfur product.
  18. 22
    The method of any one of claims 19-21, wherein the oxidant supplied to the oxidation reactor and the gasifier are oxygen.
  19. 23
    The method of any one of claims 19-22, wherein the spent adsorbent stream is one of continuously or intermittently supplied to the gasifier.
  20. 24
    The method of any one of claims 19-23, wherein the adsorbent comprises one of a carbon-based adsorbent or a non-carbon based adsorbent.
  21. 27
    The method of any one of claims 19-26, wherein the polar solvent is acetonitrile.
  22. 28
    The method of any one of claims 19-27, wherein the polar solvent is methanol.
  23. 29
    A method of providing a desulfurized hydrocarbon stream, and a syngas stream, from a sulfur-containing hydrocarbon feedstock, the method characterized by the steps of:supplying the sulfur-containing hydrocarbon feedstock and an oxidant to an oxidation reactor, said oxidation reactor being charged with a catalyst;catalytically oxidizing the sulfur compounds present in the hydrocarbon feedstock under conditions sufficient to selectively oxidize at least a portion of the sulfur compounds present in the hydrocarbon feedstock to sulfones and produce an oxidized hydrocarbon stream comprising hydrocarbons and sulfones;selectively extracting the oxidized hydrocarbon stream with a polar solvent to produce an extracted hydrocarbon stream and a mixed stream, the mixed stream comprising the polar solvent and the sulfones, wherein the extracted hydrocarbon stream has a lower sulfur concentration than the hydrocarbon feedstock;separating the mixed stream using a distillation column into a first recovered polar solvent stream and a first residue stream comprising the sulfones;supplying the extracted hydrocarbon stream to a stripper, the stripper being operable to separate the extracted hydrocarbon stream into a stripped oil stream and a second recovered polar solvent stream;recycling at least one of the first recovered polar solvent stream and second recovered polar solvent stream to the extraction step;supplying the stripped oil stream to an adsorber charged with an adsorbent to produce a high purity hydrocarbon product stream, a second residue stream comprising a portion of the oxidized compounds, and a spent adsorbent stream, the spent adsorbent stream containing another portion of the oxidized compounds, the adsorbent being suitable for the removal of oxidized compounds present in stripped oil stream;supplying the residue stream comprising sulfones to a gasifier and oxidizing the residue stream with an oxidant to produce a syngas stream and a hydrogen sulfide stream;supplying the hydrogen sulfide to a catalytically charged Claus reactor to produce elemental sulfur;and supplying the spent adsorbent stream to the gasifier to produce additional syngas for the syngas stream, thereby disposing of the adsorbent.
Independent claims23