IP Library Granted Patent US 8,614,364
Granted Patent B2
US 8,614,364 · App. 12/575,305 · Granted Dec 24, 2013

Renewable electricity conversion of liquid fuels from hydrocarbon feedstocks

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Quick Facts
Patent No.
US 8,614,364
App. No.
12/575,305
Granted
Dec 24, 2013
Kind
B2
Abstract

A method for converting renewable energy source electricity and a hydrocarbon feedstock into a liquid fuel by providing a source of renewable electrical energy in communication with a synthesis gas generation unit and an air separation unit is described. Oxygen from the air separation unit and a hydrocarbon feedstock is provided to the synthesis gas generation unit, thereby causing partial oxidation reactions in the synthesis gas generation unit in a process that converts the hydrocarbon feedstock into synthesis gas. The synthesis gas is then converted into a liquid fuel.

Claims (37)

1. A method for converting energy from a renewable energy source and a hydrocarbon feedstock into a liquid fuel comprising:

using energy from a renewable energy source to power an air separation unit in communication with a synthesis gas generation unit;

supplying oxygen from the air separation unit to the synthesis gas generation unit;

feeding hydrocarbon feedstock to the synthesis gas generation unit;

producing synthesis gas in the synthesis gas generation unit using the oxygen from the air separation unit for partial oxidation of the hydrocarbon feedstock; and

converting the synthesis gas into a liquid fuel.

2. The method of claim 1 further comprising providing the hydrocarbon feedstock as municipal waste.

3. The method of claim 1 further comprising supplementing electricity to the air separation unit, the synthesis gas generation unit or both from a second electrical source in response to a decrease in available power from the renewable energy source to maintain liquid fuel production at a predetermined level.

4. The method of claim 3 wherein the second electricity source is selected from the group of an engine generator, a gas turbine, a fuel cell, and combinations thereof.

5. The method of claim 3 wherein the second electricity source is fueled with a hydrocarbon fuel.

6. The method of claim 3 wherein the renewable energy source, the synthesis gas generation unit, the air separation unit, and the second electricity source are co-located.

7. The method of claim 1 further comprising powering plasma generation unit of the synthesis gas generation unit using energy from the renewable energy source.

8. The method of claim 1 further comprising powering a joule heated melter of the synthesis gas generation unit using energy from the renewable energy source.

9. The method of claim 8 further comprising reducing electricity provided to the joule heated melter a disproportionately smaller amount than the electricity provided to the synthesis gas generation unit in response to a decrease of electricity input from the renewable energy source to the synthesis gas generation unit.

10. The method of claim 1 further including storing at least a portion of the oxygen for use at a later time.

11. The method of claim 1 wherein the air separation unit is a cryogenic separation unit.

12. The method of claim 1 further comprising storing oxygen produced in the air separation unit cryogenically.

13. The method of claim 1 further comprising using DC current to transmit power from the renewable energy source to the synthesis gas generation unit.

14. The method of claim 1 wherein the synthesis gas generation unit includes a plasma generation unit and a joule heated melter.

15. The method of claim 14 further comprising reducing or increasing relative amounts of plasma heating, melter heating, oxygen production and steam provided in the synthesis gas generation unit in response to a decrease or an increase, respectively, of an amount of available energy from the renewable energy source.

16. The method of claim 1 wherein said using energy from a renewable energy source to power an air separation unit includes using wind power.

17. The method of claim 1 wherein said using energy from a renewable energy source to power an air separation unit includes using solar power.

18. A method of storing energy from a renewable energy source, comprising:

sourcing energy from a renewable energy source;

using the energy from the renewable energy source to electrically power a electrolysis unit in communication with a synthesis gas generation unit;

providing oxygen from the electrolysis unit to the synthesis gas generation unit;

providing hydrocarbon feedstock to the synthesis gas generation unit; converting the hydrocarbon feedstock into synthesis gas in the synthesis gas generation unit at least in part by causing partial oxidation reactions with the oxygen from the electrolysis unit;

converting the synthesis gas into a liquid fuel; and

storing at least a portion of the liquid fuel.

19. The method of claim 18 further comprising providing the hydrocarbon feedstock as municipal waste.

20. The method of claim 18 further comprising storing at least a portion of the oxygen produced in the electrolysis unit for use at a later time.

21. The method of claim 18 further comprising storing oxygen produced in the electrolysis unit cryogenically.

22. The method of claim 18 where said converting the synthesis gas into a liquid fuel includes reacting CO 2 generated from the hydrocarbon feedstock with hydrogen produced in the electrolysis unit.

23. The method of claim 18 further comprising using energy from the renewable energy source to compress CO 2 .

24. The method of claim 18 further comprising providing at least some of the electricity from the renewable energy source to a transmission system for use by a downstream user.

25. The method of claim 18 wherein the electrolysis unit, the gas synthesis generation unit, or both are co-located with the renewable energy source.

26. The method of claim 18 further comprising varying an amount of liquid fuel production in response to an increase or decrease of available energy from the renewable energy source.

Assignments (3)
SECURITY AGREEMENT Recorded May 13, 2025
From: INENTEC INC.
To: SURMA, JEFFREY E.
Reel/Frame 071276/0892 →
SECURITY INTEREST Recorded Oct 7, 2021
From: INENTEC INC.
To: GLENN J. KREVLIN, TRUSTEE OF THE GLENN J. KREVLIN REVOCABLE TRUST DATED JULY 25, 2007
Reel/Frame 057725/0623 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 15, 2013
From: COHN, DANIEL R.; SURMA, JEFFREY E.; BROMBERG, LESLIE
To: INENTEC INC.
Reel/Frame 031021/0183 →