IP Library Granted Patent US 7,272,934
Granted Patent B2
US 7,272,934 · App. 11/189,459 · Granted Sep 25, 2007

System integration of a steam reformer and gas turbine

Assignee: Manufacturing and Technology Conversion International, Inc.
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,272,934
App. No.
11/189,459
Granted
Sep 25, 2007
Kind
B2
Abstract

A novel process and apparatus for power generation from biomass and other carbonaceous feedstocks are provided. The process integrates a pulse combustor steam reformer with a gas turbine to generate electricity such that (i) efficiency is higher than those of conventional and current advanced power systems, (ii) emissions are lower than those proposed in the new environmental regulations, and (iii) performance is comparable to that of combined cycle, even though a bottoming cycle is not included here. The pulse combustor steam reformer generates a hydrogen-rich, medium-Btu fuel gas that is fired in a gas turbine to generate electricity. The apparatus may be configured to produce only power or combined heat and power.

Claims (52)

1. A process for producing electricity from carbonaceous materials comprising the steps of:

providing a fluidized bed containing a particulate material and a fluidizing medium, said fluidizing medium comprising steam;

combusting a fuel source in a combustion device to form a combustion stream, said combustion stream indirectly heating said fluidized bed, said combustion device comprising a pulse combustion device;

feeding a carbonaceous material to said fluidized bed, said fluidized bed being at a temperature sufficient for said carbonaceous material to endothermically react with said steam to form a product gas stream;

feeding said product gas stream to a gas turbine, said gas turbine combusting said product gas stream in order to rotate a turbine and generate electricity, said gas turbine producing a flue gas stream;

feeding at least a portion of said flue gas stream exiting said gas turbine to said combustion device for combustion with said fuel source; and

wherein prior to said gas turbine, the product gas stream is fed to a heat exchanger for heating steam fed to said fluidized bed.

2. A process as defined in claim 1 , wherein said steam to said carbonaceous material have a weight ratio of from about 0.75:1 to about 3:1.

3. A process as defined in claim 1 , further comprising the step of using said combustion stream to preheat an air stream that is fed to said combustion device for combusting said fuel source.

4. A process as defined in claim 1 , wherein after indirectly heating said fluidized bed, said combustion stream is fed to a steam generator for generating steam fed to said fluidized bed.

5. A process as defined in claim 1 , further comprising the step of using the combustion stream to heat the flue gas stream prior to being fed to the combustion device.

6. A process for producing electricity from carbonaceous materials comprising the steps of:

providing a fluidized bed containing a particulate material and a fluidizing medium, said fluidizing medium comprising steam;

combusting a fuel source in a combustion device to form a combustion stream, said combustion stream indirectly heating said fluidized bed, said combustion device comprising a pulse combustion device;

feeding a carbonaceous material to said fluidized bed, said fluidized bed being at a temperature sufficient for said carbonaceous material to endothermically react with said steam to form a product gas stream;

feeding said product gas stream to a gas turbine, said gas turbine combusting said product gas stream in order to rotate a turbine and generate electricity, said gas turbine producing a flue gas stream;

feeding at least a portion of said flue gas stream exiting said gas turbine to said combustion device for combustion with said fuel source; and

wherein after indirectly heating the fluidized bed, the combustion stream is fed to a steam generator for generating steam fed to the gas turbine.

7. A process as defined in claim 6 , further comprising the step of using said combustion stream to preheat an air stream that is fed to said combustion device for combusting said fuel source.

8. A process as defined in claim 6 , wherein prior to said gas turbine, said product gas stream is fed to a heat exchanger for heating steam fed to said fluidized bed.

9. A process as defined in claim 6 , further comprising the step of using the combustion stream to heat the flue gas stream prior to being fed to the combustion device.

10. A process for producing electricity from carbonaceous materials comprising the steps of:

providing a fluidized bed containing a particulate material and a fluidizing medium, said fluidizing medium comprising steam;

combusting a fuel source in a combustion device to form a combustion stream, said combustion stream indirectly heating said fluidized bed;

feeding a carbonaceous material to said fluidized bed, said fluidized bed being at a temperature sufficient for said carbonaceous material to endothermically react with said steam to form a product gas stream;

feeding said product gas stream to a gas turbine, said gas turbine combusting said product gas stream in order to rotate a turbine and generate electricity, said gas turbine producing a flue gas stream;

feeding at least a portion of said flue gas stream exiting said gas turbine to said combustion device for combustion with said fuel source;

wherein prior to said gas turbine, the product gas stream is fed to a heat exchanger for heating steam fed to said fluidized bed; and

using the combustion stream to preheat an air stream that is fed to the combustion device for combusting the fuel source.

11. A process for producing electricity from carbonaceous materials comprising the steps of:

providing a fluidized bed containing a particulate material and a fluidizing medium, said fluidizing medium comprising steam;

combusting a fuel source in a combustion device to form a combustion stream, said combustion stream indirectly heating said fluidized bed;

feeding a carbonaceous material to said fluidized bed, said fluidized bed being at a temperature sufficient for said carbonaceous material to endothermically react with said steam to form a product gas stream;

feeding said product gas stream to a gas turbine, said gas turbine combusting said product gas stream in order to rotate a turbine and generate electricity, said gas turbine producing a flue gas stream;

feeding at least a portion of said flue gas stream exiting said gas turbine to said combustion device for combustion with said fuel source;

wherein prior to said gas turbine, the product gas stream is fed to a heat exchanger for heating steam fed to said fluidized bed; and

using the combustion stream to heat the flue gas stream prior to being fed to the combustion device.

12. A process for producing electricity from carbonaceous materials comprising the steps of:

providing a fluidized bed containing a particulate material and a fluidizing medium, said fluidizing medium comprising steam;

combusting a fuel source in a combustion device to form a combustion stream, said combustion stream indirectly heating said fluidized bed;

feeding a carbonaceous material to said fluidized bed, said fluidized bed being at a temperature sufficient for said carbonaceous material to endothermically react with said steam to form a product gas stream;

feeding said product gas stream to a gas turbine, said gas turbine combusting said product gas stream in order to rotate a turbine and generate electricity, said gas turbine producing a flue gas stream;

feeding at least a portion of said flue gas stream exiting said gas turbine to said combustion device for combustion with said fuel source;

wherein after exiting the fluidized bed, the combustion stream is fed to a steam generator for generating steam fed to the gas turbine; and using said combustion stream to preheat an air stream that is fed to said combustion device for combusting said fuel source.

13. A process for producing electricity from carbonaceous materials comprising the steps of:

providing a fluidized bed containing a particulate material and a fluidizing medium, said fluidizing medium comprising steam;

combusting a fuel source in a combustion device to form a combustion stream, said combustion stream indirectly heating said fluidized bed;

feeding a carbonaceous material to said fluidized bed, said fluidized bed being at a temperature sufficient for said carbonaceous material to endothermically react with said steam to form a product gas stream;

feeding said product gas stream to a gas turbine, said gas turbine combusting said product gas stream in order to rotate a turbine and generate electricity, said gas turbine producing a flue gas stream;

feeding at least a portion of said flue gas stream exiting said gas turbine to said combustion device for combustion with said fuel source;

wherein after exiting the fluidized bed, the combustion stream is fed to a steam generator for generating steam fed to the gas turbine; and

using the combustion stream to heat the flue gas stream prior to being fed to the combustion device.

Assignments (3)
SECURITY INTEREST Recorded Sep 12, 2023
From: THERMOCHEM RECOVERY INTERNATIONAL, INC.
To: THE ABELL FOUNDATION, INC.
Reel/Frame 064881/0214 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 23, 2009
From: MANUFACTURING AND TECHNOLOGY CONVERSION INTERNATIONAL, INC.
To: THERMOCHEM RECOVERY INTERNATIONAL, INC.
Reel/Frame 022150/0291 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2009
From: CHANDRAN, RAVI; MANSOUR, MOMTAZ N
To: MANUFACTURING AND TECHNOLOGY CONVERSION INTERNATIONAL, INC.
Reel/Frame 022118/0035 →
Continuity (4)
Division 1072778400 · Dec 4, 2003
Continuation 0964213700 · Aug 18, 2000
Provisional Application 6014987000 · Aug 19, 1999
Related Publication 20070012045A1 · Jan 18, 2007