IP Library Granted Patent US 8,168,684
Granted Patent B2
US 8,168,684 · App. 12/226,312 · Granted May 1, 2012

Carbon efficiencies in hydrocarbon production

Assignee: University of the Witwatersrand, Johannesburg
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Quick Facts
Patent No.
US 8,168,684
App. No.
12/226,312
Granted
May 1, 2012
Kind
B2
Abstract

This invention relates to a method of producing liquid hydrocarbons, preferably internal combustion engine fuels, using feedstocks of coal or methane. Depending on the nature of the feedstock it is subjected to a gasification and/or reforming process and/or water gas shift process which produces a syngas that is rich in carbon dioxide and hydrogen rather than carbon monoxide and hydrogen as in the conventional process. The carbon dioxide and hydrogen are combined in a Fischer Tropsch process to produce desired hydrocarbons and water. The energy requirements of the gasification/reforming process to produce a syngas that is rich in carbon dioxide and hydrogen is considerably less than the energy requirements for gasification/reforming process for producing the conventional carbon monoxide rich syngas. This reduction in energy consumption reduces considerably the quantities of carbon dioxide released into the atmosphere compared to conventional processes that are based on carbon monoxide rich syngas. Unreacted CO2-rich syngas can be recirculated or can also be used, in molten carbonate fuel cells, or to generate energy or steam in turbine processes such as IGCC.

Claims (21)

1. A process for producing hydrocarbons comprising the steps of:

producing a syngas which is rich in CO 2 from a suitable feedstock; and

reacting the CO 2 -rich syngas and H 2 therein in a Fischer Tropsch process to produce hydrocarbons according to the overall process mass balance:

CO 2 +3H 2 —CH 2 -+2H 2 O

thereby reducing CO 2 emissions and energy consumption and increasing carbon efficiency of known Fischer-Tropsch processes.

2. The process as claimed claim 1 which includes using a water gas shift process, where necessary, to modify the CO 2 -rich syngas and achieve a desired CO 2 concentration.

3. The process as claimed in claim 1 in which CO in the CO 2 -rich syngas is also used to produce hydrocarbons according to the process:

CO+2H 2 CH 2 —+H 2 O.

4. The process as claimed in claim 1 in which the feedstocks are coal and natural gas or methane.

5. The process as claimed in claim 1 in which the syngas is produced by gasifier processes only where a solid feedstock is used.

6. The process as claimed in claim 5 in which the solid feedstock is coal.

7. The process as claimed in claim 1 in which the syngas is produced by reforming processes only where a natural gas is used.

8. The process as claimed in claim 7 in which the gas is methane.

9. The process as claimed in claim 8 in which the methane is sourced from a natural gas reservoir.

10. The process as claimed in claim 8 in which the methane is produced by microbial degradation of waste products.

11. The process as claimed in claim 1 in which unreacted carbon dioxide, carbon monoxide and hydrogen are recirculated to the gasifier or reformer.

12. The process as claimed in claim 1 in which unreacted carbon dioxide and hydrogen are used to produce electricity.

13. The process as claimed in claim 1 in which unreacted carbon dioxide, carbon monoxide and hydrogen are used to generate steam.

14. The process as claimed in claim 12 in which unreacted carbon dioxide and hydrogen are used in fuel cells to produce electricity.

15. The process as claimed in claim 14 in which the fuel cells are molten carbonate fuel cells.

16. The process for producing electricity from carbon dioxide and hydrogen produced by a process as claimed in claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2009
From: HILDEBRANDT, DIANE; GLASSER, DAVID; PATEL, BILAL; HAUSBERGER, BRENDON PATRICK
To: UNIVERSITY OF THE WITWATERSRAND, JOHANNESBURG
Reel/Frame 023018/0163 →
Priority Claims (1)
ZA 2006/03239 · Apr 24, 2006 · national
Continuity (1)
Related Publication 20090317669A1 · Dec 24, 2009