IP Library Granted Patent US 9,573,090
Granted Patent B2
US 9,573,090 · App. 15/007,305 · Granted Feb 21, 2017

Superadsorbent material system for improved filtration applications

Inventors: Somnath Sengupta (Ellicott City, MD); Robert A. Burton (Columbia, MD); Barry W. Treadway (Rockville, MD); Christopher L. Rector (Jonesborough, TN); Pierre-Alain S. Auroux (Rockville, MD); Siddharth Singh (Lafayette, CA); John E. King (Ellicott City, MD)
Assignee: BAE Systems Information and Electronic Systems Integration Inc.
B01D53/02B01J20/205B01J20/28004B01J20/2808B01J20/2809B01J20/28066B01J20/28076B01J20/305B01J20/3021B01D2253/102B01D2253/112B01D2253/25B01D2253/304B01D2253/306B01D2253/308B01D2253/31B01D2253/311B01D2253/34B01D2257/708B01D2257/93
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Quick Facts
Patent No.
US 9,573,090
App. No.
15/007,305
Granted
Feb 21, 2017
Kind
B2
Abstract

The present invention involves the use of nanoporous carbons derived from partially or fully demetalized metal carbides in personal protection equipment for the reversible absorption/adsorption of both broad and specific targeted gases. These materials have been specifically processed to provide enhanced effective loadings against specific harmful volatile organic compounds.

Claims (23)

1. A method of private and public protection against specific gas targets comprising the steps of:

utilizing a protective filtration media, wherein said protective filtration media comprises an acid-treated carbide derived carbon;

removing said specific gas targets from an atmosphere with up to 80% relative humidity; and

retaining said specific gas targets with the protective filtration media.

2. The method of protection of claim 1 , further comprising modifying said acid-treated carbide derived carbon for specific gas targets.

3. The method of protection of claim 1 , wherein said protective filtration media comprises a surface area greater than 1,500 m 2 /g.

4. The method of protection of claim 1 , wherein said protective filtration media comprises a surface area greater than 2,200 m 2 /g.

5. The method of protection of claim 1 , wherein said protective filtration media comprises a pore volume greater than 1 cm 3 /g.

6. The method of protection of claim 1 , wherein said protective filtration media comprises a pore size of less than 2 nm.

7. The method of protection of claim 1 , wherein said protective filtration media comprises a pore size of more than 2 nm and less than 50 nm.

8. The method of protection of claim 1 , wherein said protective filtration media comprises a pore size of more than 50 nm.

9. The method of protection of claim 1 , wherein said protective filtration media comprises a pore size distribution of about 0.1. Å to about 100 Å.

10. The method of protection of claim 1 , wherein said protective filtration media has a particle size of about 900 μm to about 300 μm.

11. The method of protection of claim 1 , wherein said protective filtration media has metal carbide at least 1% removed.

12. The method of protection of claim 1 , wherein, said protective filtration media has metal carbide totally (100%) removed.

13. The method of protection of claim 1 , wherein said protective filtration media has an effective loading of about 0.08 g of a target gas per 1 g of a material.

14. The method of protection of claim 2 , wherein modifying said carbide derived carbon for specific gas targets further comprises the step of grinding said protective filtration media.

15. The method of protection of claim 2 , wherein modifying said carbide derived carbon for specific gas targets further comprises the steps of: grinding and sieving of said carbide derived carbon; flowing halogenated gas; treating said carbide derived carbon with a vacuum annealed treatment; sieving said carbide derived carbon; treating said carbide derived carbon with an acid nitric treatment; and heating said carbide derived carbon.

16. The method of protection of claim 1 , further comprising desorbing said specific gas targets from the protective filtration media.

17. The method of protection of claim 1 , wherein the protective filtration media is a powder.

18. The method of protection of claim 1 , wherein the protective filtration media is a fiber.

19. The method of protection of claim 1 , wherein the retaining step comprises absorption.

20. The method of protection of claim 1 , wherein the retaining step comprises adsorption.

Assignments (1)
CONFIRMATORY LICENSE Recorded Jul 15, 2019
From: BAE SYSTEMS INFORMATION AND ELECTRONIC SYSTEMS INTEGRATION INC.
To: DEFENSE THREAT REDUCTION AGENCY, US DOD
Reel/Frame 049751/0897 →
Continuity (3)
Division 14350583
Provisional Application 61681272 · Aug 9, 2012
Related Publication 20160136563A1 · May 19, 2016