IP Library Granted Patent US 9,598,653
Granted Patent B2
US 9,598,653 · App. 14/934,459 · Granted Mar 21, 2017

Efficient volatile metal removal from low rank coal in gasification, combustion, and processing systems and methods

Inventors: Alan E. Bland (Laramie, WY); Kumar Muthusami Sellakumar (Bridgewater, NJ); Jesse D. Newcomer (Laramie, WY)
Assignee: The University of Wyoming Research Corporation
C10J3/84C10J3/02C10L5/366C10L9/08C10J2300/0903C10J2300/093C10J2300/0909C10J2300/0969C10J2300/1643C10J2300/1656C10J2300/1815Y02E20/16Y02E20/18Y10T29/49229
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 9,598,653
App. No.
14/934,459
Granted
Mar 21, 2017
Kind
B2
Abstract

Efficient coal pre-processing systems ( 69 ) integrated with gasification, oxy-combustion, and power plant systems include a drying chamber ( 28 ), a volatile metal removal chamber ( 30 ), recirculated gases, including recycled carbon dioxide ( 21 ), nitrogen ( 6 ), and gaseous exhaust ( 60 ) for increasing the efficiencies and lowering emissions in various coal processing systems.

Claims (30)

1. An efficient method for coal gasification comprising the steps of:

supplying wet coal in a coal gasification system assembly;

feeding said wet coal into at least one chamber of said coal gasification system assembly;

drying said wet coal in said at least one chamber to create a substantially dried coal having a coal temperature of up to about 300° F.;

removing volatile metals from said substantially dried coal in said at least one chamber to create a volatile metal reduced dried coal having a coal temperature of up to about 600° F.;

transferring said volatile metal reduced dried coal to a gasifier;

producing syngas from said volatile metal reduced dried coal in said gasifier;

filtering said syngas from particulate matter;

separating carbon dioxide from said syngas to create a fuel gas supply and a downstream carbon dioxide supply; and

recirculating said downstream carbon dioxide back into at least part of said coal gasification system assembly.

2. An efficient method for coal gasification according to claim 1 and further comprising the step of using said fuel gas supply to produce electricity.

3. An efficient method for coal gasification according to claim 1 and further comprising the step of using said fuel gas supply to produce chemicals.

4. An efficient method for coal gasification according to claim 1 wherein said step of recirculating said downstream carbon dioxide back into at least part of said coal gasification system assembly comprises the step of heating said downstream carbon dioxide with a heat exchanger and directing said carbon dioxide to said at least part of said coal gasification system assembly.

5. An efficient method for coal gasification according to claim 1 wherein said step of removing volatile metals from said substantially dried coal in said at least one chamber to create a volatile metal reduced dried coal comprises the step of removing up to about 87% of mercury from said coal in said at least one chamber.

6. An efficient method for coal gasification according to claim 1 and further comprising the step of removing a total of up to about 90% of mercury from said coal in said coal gasification system assembly.

7. An efficient method for coal gasification according to claim 1 wherein said step of recirculating said downstream carbon dioxide back into at least part of said coal gasification system assembly comprises the step of reacting said downstream carbon dioxide in gasification reactions of said gasification system assembly.

8. An efficient method for coal gasification according to claim 1 wherein said step of recirculating said downstream carbon dioxide back into at least part of said coal gasification system assembly comprises the step of using said downstream carbon dioxide as a heat carrier in at least part of said gasification system assembly.

9. An efficient method for coal gasification according to claim 1 wherein said step of recirculating said downstream carbon dioxide back into at least part of said coal gasification system assembly comprises the step of using said downstream carbon dioxide as a coal transporter in at least part of said gasification system assembly.

10. An efficient method for coal gasification according to claim 1 and further comprising the step of providing an air separation unit to create an output of oxygen and nitrogen from an air input.

11. An efficient method for coal gasification according to claim 1 wherein said step of feeding said wet coal into at least one chamber of said coal gasification system assembly comprises the step of feeding said wet coal into a drying chamber of said coal gasification system assembly.

12. An efficient method for coal gasification according to claim 1 wherein said step of drying said wet coal in said at least one chamber to create a substantially dried coal comprises the step of providing said substantially dried coal selected from a group consisting of at least about 90% dry, at least about 91% dry, at least about 92% dry, at least about 93% dry, at least about 94% dry, at least about 95% dry, at least about 96% dry, at least about 97% dry, at least about 98% dry, at least about 99% dry, and about 100% dry.

13. An efficient method for coal gasification according to claim 1 wherein said step of drying said wet coal in said at least one chamber to create a substantially dried coal comprises the step of pre-process drying said wet coal with recycled non-air.

14. An efficient method for coal gasification according to claim 1 and further comprising the step of recycling a first supply of recycled non-air to said at least one chamber.

15. An efficient method for coal gasification according to claim 1 wherein said step of drying said wet coal in said at least one chamber to create a substantially dried coal comprises the step of drying said wet coal for a first amount of time.

16. An efficient method for coal gasification according to claim 1 wherein said step of removing volatile metals from said substantially dried coal in said at least one chamber to create a volatile metal reduced dried coal comprises the step of removing volatile metals from said substantially dried coal in a separate volatile metal removal chamber to create a volatile metal reduced dried coal.

17. An efficient method for coal gasification according to claim 1 wherein said step of removing volatile metals from said substantially dried coal in said at least one chamber to create a volatile metal reduced dried coal having a coal temperature of up to about 600° F. comprises the step of removing volatile metals from said substantially dried coal in said at least one chamber to create a volatile metal reduced dried coal having a coal temperature of between about 275° F. and about 600° F.

18. An efficient method for coal gasification according to claim 16 and further comprising the step of recycling a second supply of recycled non-air to said separate volatile metal removal chamber.

19. An efficient method for coal gasification according to claim 1 wherein said step of removing volatile metals from said substantially dried coal in said at least one chamber to create a volatile metal reduced dried coal comprises the step of heating said substantially dried coal for a second amount of time.

20. An efficient method for coal gasification according to claim 14 wherein said step of recycling said supply of recycled non-air comprises the step of recycling a supply of heated non-air to said chamber.

21. An efficient method for coal gasification according to claim 1 wherein said step of removing volatile metals from said substantially dried coal in said at least one chamber to create a volatile metal reduced dried coal comprises the step of removing volatile metals from said coal, said volatile metals selected from a group consisting of arsenic, selenium, cadmium, lead, and mercury.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2022
From: THE UNIVERSITY OF WYOMING RESEARCH CORPORATION DBA WESTERN RESEARCH INSTITUTE
To: WESTERN RESEARCH INSTITUTE, INC.
Reel/Frame 060912/0373 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2015
From: BLAND, ALAN E.; SELLAKUMAR, KUMAR M.; NEWCOMER, JESSE D.
To: THE UNIVERSITY OF WYOMING RESEARCH CORPORATION D/B/A WESTERN RESEARCH INSTITUTE
Reel/Frame 036992/0094 →
Continuity (3)
Continuation 13321527
Provisional Application 61180750 · May 22, 2009
Related Publication 20160102260A1 · Apr 14, 2016