IP Library Granted Patent US 8,080,127
Granted Patent B2
US 8,080,127 · App. 11/735,487 · Granted Dec 20, 2011

Carbon foam evaporator

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Quick Facts
Patent No.
US 8,080,127
App. No.
11/735,487
Granted
Dec 20, 2011
Kind
B2
Abstract

A carbon foam evaporator is described which can be used in a wide variety of operating conditions. The evaporator utilizes a carbon foam with a bi-model pore distribution. The carbon foam is thermally stable up to temperatures of at least 300° C., is rigid, and has a compressive strength of at least 100 psi. The carbon foam is also resistant to chemical attacks.

Claims (31)

1. An evaporator comprising:

a carbon foam body having a multiplicity of pores and having a bimodal pore distribution wherein at least about 90% of the pores by volume have a diameter of between about 10 microns and about 150 microns and at least about 0.5% of the pores by volume have a diameter between about 0.8 microns and about 3.5 microns;

a liquid introducer arranged to direct a liquid to the carbon foam body;

a liquid collector arranged to collect liquid from the carbon foam body; and

a gas provider operably associated with the carbon foam body for providing a gas to the carbon foam body.

2. The evaporator of claim 1 , wherein the gas provider forces a gas to the carbon foam body.

3. The evaporator of claim 2 , wherein the gas provider is arranged to direct the gas to pass across the carbon foam body.

4. The evaporator of claim 2 , wherein the gas provider is arranged to direct the gas to pass into the carbon foam body.

5. The evaporator of claim 1 , wherein the gas provider comprises an unforced open atmospheric access to the carbon foam body.

6. The evaporator of claim 1 further comprising a heater, wherein the heater is arranged so that the gas contacting the carbon foam body is heated.

7. The evaporator of claim 1 , wherein the carbon foam has a density of between about 0.05 g/cc to about 0.4 g/cc.

8. The evaporator of claim 7 , wherein the carbon foam has a porosity of between about 65% and about 98%.

9. The evaporator of claim 1 , wherein the pores have, on average, an aspect ratio of between about 1.0 and about 1.5.

10. The evaporator of claim 1 , wherein at least about 90% of the pores by volume have a diameter of between about 15 microns and about 95 microns.

11. The evaporator of claim 1 , wherein the carbon foam is wetted by both polar and non-polar liquids.

12. The evaporator of claim 1 , wherein the carbon foam is thermally stable up to temperatures of at least three hundred degrees centigrade.

13. The evaporator of claim 1 , wherein the carbon foam has a compressive strength of at least 100 psi.

14. The evaporator of claim 13 , wherein the carbon foam has a compressive strength to density ratio of at least 1000 psi/(g/cc).

15. The evaporator of claim 1 , wherein:

the liquid introducer and the liquid collector are comprised of a container having the liquid disposed in the container and having the carbon foam body disposed in the container with a first portion of the carbon foam body contacting the liquid and a second portion of the carbon foam body above the liquid; and

the gas provider is arranged to provide the gas access to the second portion of the carbon foam body.

16. A method of evaporating a liquid, comprising:

(a) providing a carbon foam evaporator body having a multiplicity of pores and having a bimodal pore distribution wherein at least about 90% of the pores by volume have a diameter between about 10 microns and about 150 microns, and at least about 0.5% of the pores by volume have a diameter between about 0.8 microns and about 3.5 microns;

(b) introducing the liquid into the carbon foam evaporator body;

(c) providing a gas to the carbon foam evaporator body; and

(d) evaporating at least a portion of the liquid from the carbon foam evaporator body into the gas.

17. The method of claim 16 , wherein step (c) further comprises heating the gas prior to providing the gas to the carbon foam evaporator body.

18. The method of claim 16 , wherein step (b) comprises placing the liquid and the carbon foam evaporator body in a container with a first portion of the carbon foam evaporator body contacting the liquid and a second portion of the carbon foam evaporator body above the liquid.

19. The method of claim 16 , wherein step (c) comprises forcing the gas into contact with the carbon foam evaporator body.

20. The method of claim 16 , wherein step (c) comprises providing an unforced open atmospheric access to the carbon foam evaporator body.

21. The method of claim 16 , wherein said liquid comprises a liquid mixture having at least one more volatile component, and wherein the at least a portion of the liquid that is evaporated includes the more volatile component.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Feb 12, 2018
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: GRAFTECH INTERNATIONAL HOLDINGS INC.
Reel/Frame 045308/0567 →
SECURITY AGREEMENT Recorded Jul 14, 2010
From: GRAFTECH INTERNATIONAL HOLDINGS INC.
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 024678/0830 →
CHANGE OF NAME Recorded Oct 15, 2007
From: UCAR CARBON COMPANY INC.
To: GRAFTECH INTERNATIONAL HOLDINGS INC.
Reel/Frame 019961/0697 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 11, 2007
From: CHEN, CHONG
To: UCAR CARBON COMPANY INC.
Reel/Frame 019431/0137 →