IP Library Patent Application 11457840
Patent Application
App. No. 11/457,840

CARBON DIOXIDE CAPTURE SYSTEMS AND METHODS

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Patent No.
US None
App. No.
11/457,840
Abstract

A carbon dioxide separation system comprises a heat exchanger having a first flow path for directing a fluid comprising carbon dioxide, for example an exhaust gas, therethrough and a second flow path for directing a heat transfer fluid therethrough, a separator comprising a material with selective permeability of carbon dioxide for separating the first and second flow paths and for promoting thermal transfer and carbon dioxide transport therebetween, and a condenser for condensing the heat transfer fluid to isolate the carbon dioxide. In another embodiment, a carbon dioxide separation system comprises an energy production system for generating electricity and an exhaust gas including carbon dioxide at a temperature greater than about 300C, a heat exchanger having a first flow path for directing the exhaust gas therethrough and a second flow path for directing water therethrough to promote thermal transfer between the first flow path and the second flow path and produce a flow of steam within the second flow path, a carbon dioxide extraction circuit in thermal and mass transfer relationship with the exhaust gas comprising a third flow path for directing a heat transfer fluid therethrough, wherein the carbon dioxide extraction circuit comprises a material with selective permeability of carbon dioxide for promoting thermal transfer and carbon dioxide transport between the exhaust gas and the heat transfer fluid to produce a mixed flow of a gaseous heat transfer fluid and carbon dioxide within the third flow path, and a condenser for receiving the mixed flow and for condensing the mixed flow to isolate the carbon dioxide.

Claims (37)

1 . A carbon dioxide separation system comprising:

a heat exchanger comprising a first flow path for directing a fluid comprising carbon dioxide therethrough and a second flow path for directing a heat transfer fluid therethrough;

a separator comprising a material with selective permeability of carbon dioxide for separating said first and said second flow paths and for promoting thermal transfer and carbon dioxide transport therebetween; and

a condenser for condensing said heat transfer fluid to isolate said carbon dioxide.

2 . A carbon dioxide separation system in accordance with claim 1 , wherein said fluid is an exhaust gas.

3 . A carbon dioxide separation system in accordance with claim 2 , wherein said exhaust gas is in the temperature range between about 200C to about 700C.

4 . A carbon dioxide separation system in accordance with claim 1 , wherein said heat transfer fluid is water.

5 . A carbon dioxide separation system in accordance with claim 4 , further comprising a steam turbine for receiving said heat transfer fluid in a gaseous phase and for extracting work therefrom.

6 . A carbon dioxide separation system in accordance with claim 1 , wherein said separator comprises a material selected from the group of, microporous carbon, microporous silica, microporous titanosilicate, microporous mixed oxide and zeolite materials, and hybrid membranes.

7 . A carbon dioxide separation system in accordance with claim 1 , wherein said separator comprises a separation layer disposed upon a support layer.

8 . A carbon dioxide separation system in accordance with claim 7 , wherein said support layer comprises porous metal.

9 . A carbon dioxide separation system in accordance with claim 8 , wherein said porous metal comprises at least one of stainless steel, iron-based-alloy, nickel, nickel-based-alloy and combinations thereof.

10 . A carbon dioxide separation system in accordance with claim 2 , wherein said exhaust gas is produced from at least one of a gas turbine, a furnace, a thermal oxidizer, metal processing systems, or an industrial process.

11 . A carbon dioxide separation system in accordance with claim 1 , wherein said heat transfer fluid is selected from the group consisting of water, refrigerant, alcohols or silicon oils or combinations thereof.

12 . A carbon dioxide separation system comprising:

an energy production system for generating electricity and an exhaust gas comprising carbon dioxide at a temperature greater than about 200C.

a heat exchanger comprising a first flow path for directing said exhaust gas therethrough and a second flow path for directing water therethrough;

a separator comprising a material with selective permeability of carbon dioxide for separating said first and said second flow paths and for promoting thermal transfer and carbon dioxide transport therebetween to produce a mixed flow of steam and carbon dioxide within said second flow path;

a steam turbine for receiving said mixed flow of steam and carbon dioxide and for extracting work therefrom; and

a condenser for receiving said mixed flow and for condensing said mixed flow to isolate the carbon dioxide.

13 . A carbon dioxide separation system in accordance with claim 12 , wherein said energy production system is a gas turbine.

14 . A carbon dioxide separation system in accordance with claim 12 , wherein said exhaust gas comprising carbon dioxide is at a temperature between about 400C and about 700C.

15 . A carbon dioxide separation system in accordance with claim 12 , wherein said heat exchanger is a Heat Recovery Steam Generator (HRSG).

16 . A carbon dioxide separation system in accordance with claim 15 , wherein said separator is at least one heat exchange circuit within said HRSG.

17 . A carbon dioxide separation system in accordance with claim 12 , wherein said separator comprises a material selected from the group of microporous carbon, microporous silica, microporous titanosilicate, microporous mixed oxide and zeolite materials, and hybrid membranes.

18 . A carbon dioxide separation system in accordance with claim 12 , further comprising a recycle flow path from said heat exchanger to said energy production system to recycle at least a portion of said exhaust gas to said energy production system.

19 . A carbon dioxide separation system comprising:

an energy production system for generating electricity and an exhaust gas comprising carbon dioxide at a temperature greater than about 200C;

a heat exchanger comprising a first flow path for directing said exhaust gas therethrough and a second flow path for directing water therethrough to promote thermal transfer between the first flow path and the second flow path and produce a flow of steam within said second flow path;

a carbon dioxide extraction circuit in thermal and mass transfer relationship with said exhaust gas comprising a third flow path for directing a heat transfer fluid therethrough;

wherein said carbon dioxide extraction circuit comprises a material with selective permeability of carbon dioxide for promoting thermal transfer and carbon dioxide transport between said exhaust gas and said heat transfer fluid to produce a mixed flow of a gaseous heat transfer fluid and carbon dioxide within said third flow path; and

a condenser for receiving said mixed flow and for condensing said mixed flow to isolate the carbon dioxide.

20 . A species separation system comprising:

a heat exchanger comprising a first flow path for directing a fluid comprising said species therethrough and a second flow path for directing a heat transfer fluid therethrough;

a separator comprising a material with selective permeability of said species for separating said first and said second flow paths and for promoting thermal transfer and species transport therebetween; and

a condenser for condensing said heat transfer fluid to isolate said species.

21 . A species separation system in accordance with claim 20 , wherein said species is selected from the group consisting of carbon dioxide, carbon monoxide, nitrous oxide, nitrogen dioxide, sulfur dioxide or combinations thereof.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2006
From: BOWMAN, MICHAEL JOHN; SANBORN, STEPHEN DUANE; EVULET, ANDREI TRISTAN; RUUD, JAMES ANTHONY
To: GENERAL ELECTRIC COMPANY
Reel/Frame 017945/0053 →