IP Library Granted Patent US 8,685,236
Granted Patent B2
US 8,685,236 · App. 12/544,812 · Granted Apr 1, 2014

Methods and systems for treating sour water

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Quick Facts
Patent No.
US 8,685,236
App. No.
12/544,812
Granted
Apr 1, 2014
Kind
B2
Abstract

A method of removing contaminates from sour water is provided. The method includes producing raw sour water within a syngas production system, and removing the contaminates from the raw sour water using a chemical reaction within a treatment unit to produce treated sour water. The treatment unit is in flow communication with the syngas production system.

Claims (33)

1. A sour water treating system comprising:

a condensate stripper configured to produce liquid raw sour water and sour gas;

a sour gas line coupled to said condensate stripper and configured to channel the sour gas from said condensate stripper;

a condensate stripper cooler coupled in flow communication with said condensate stripper, said condensate stripper cooler configured to receive the raw sour water from said condensate stripper;

an outlet line configured to channel the raw sour water from said condensate stripper cooler; and

a treatment unit coupled in flow communication between said condensate stripper cooler and said outlet line, said treatment unit configured to substantially remove contaminates from the raw sour water via a chemical reaction before the sour water and at least one by-product are discharged to at least one of a recycled solids tank, a grinding mill, a syngas scrubber, and a vent treatment unit.

2. A sour water treating system in accordance with claim 1 wherein said outlet line channels the raw sour water from said condensate stripper cooler to at least one of a storage tank and a syngas scrubber.

3. A sour water treating system in accordance with claim 1 wherein said treatment unit comprises an ozone contactor configured to react the raw sour water and ozonated air to substantially remove the contaminates from the raw sour water.

4. A sour water treating system in accordance with claim 3 wherein said treatment unit further comprises an ozone generator configured to produce the ozonated air from air.

5. A sour water treating system in accordance with claim 1 wherein said treatment unit comprises an ultraviolet (UV) contactor configured to react the raw sour water with UV light to substantially remove the contaminates from the raw sour water.

6. A sour water treating system in accordance with claim 5 wherein said treatment unit further comprises a UV light generator configured to generate the UV light, said UV contactor comprises:

at least UV light tube optically coupled to said UV light generator such that the UV light is transmitted through said at least one UV light tube; and

at least one sour water tube coupled proximate to said at least one UV light tube such that the raw sour water and the UV light react to substantially remove the contaminates from the raw sour water.

7. A sour water treating system in accordance with claim 1 wherein said treatment unit comprises a hydrogen peroxide contactor configured to react the raw sour water with hydrogen peroxide to substantially remove the contaminates from the raw sour water.

8. A sour water treating system in accordance with claim 7 wherein said treatment unit further comprises a metering pump configured to meter a predetermined amount of the hydrogen peroxide to said hydrogen peroxide contactor.

9. A syngas generation system comprising:

a gasifier configured to produce syngas and at least one by-product;

a condensate stripper configured to produce liquid raw sour water and sour gas from the at least one by-product;

a sour gas line coupled to said condensate stripper and configured to channel the sour gas from said condensate stripper;

a condensate stripper cooler coupled in flow communication with said condensate stripper, said condensate stripper cooler configured to receive the raw sour water from said condensate stripper;

a liquid outlet line configured to channel the raw sour water from said condensate stripper cooler; and

a treatment unit coupled in flow communication between said condensate stripper cooler and said liquid outlet line, said treatment unit configured to substantially remove contaminates from the raw sour water via a chemical reaction before the sour water and at least one by-product are discharged to at least one of a recycled solids tank, a grinding mill, a syngas scrubber, and a vent treatment unit.

10. A syngas generation system in accordance with claim 9 wherein said treatment unit comprises:

an ozone generator configured to produce the ozonated air from air; and

an ozone contactor configured to react the raw sour water and the ozonated air to substantially remove the contaminates from the raw sour water.

11. A syngas generation system in accordance with claim 9 wherein said treatment unit comprises:

an ultraviolet (UV) light generator configured to generate UV light; and

a UV contactor comprising:

at least UV light tube optically coupled to said UV light generator such that the UV light is transmitted through said at least one UV light tube; and

at least one sour water tube coupled proximate to said at least one UV light tube such that the raw sour water and the UV light react to substantially remove the contaminates from the raw sour water.

12. A syngas generation system in accordance with claim 9 wherein said treatment unit comprises

a hydrogen peroxide contactor configured to react the raw sour water with hydrogen peroxide to substantially remove the contaminates from the raw sour water; and

a metering pump configured to meter a predetermined amount of the hydrogen peroxide into said hydrogen peroxide contactor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2019
From: GENERAL ELECTRIC COMPANY
To: AIR PRODUCTS AND CHEMICALS, INC.
Reel/Frame 050787/0642 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2009
From: MILLER, GARY DANIEL
To: GENERAL ELECTRIC COMPANY
Reel/Frame 023125/0803 →