IP Library Granted Patent US 10,600,525
Granted Patent B1
US 10,600,525 · App. 15/841,078 · Granted Mar 24, 2020

Gas permeable hydrophobic material

Inventors: Tristan M. Karns (Los Alamos, NM); Brian L. Scott (Los Alamos, NM); Laura E. Wolfsberg (Los Alamos, NM); Paul H. Smith (Los Alamos, NM); D. Kirk Veirs (Los Alamos, NM); Kirk Reeves (Los Alamos, NM); Jared W. Borrego (Los Alamos, NM)
Assignee: Triad National Security, LLC
G21F5/06B01D39/20G21F1/125G21F5/005G21F5/02B01D2239/0478B01D2239/10G21Y2002/10G21Y2002/306G21Y2002/501G21Y2004/10
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Quick Facts
Patent No.
US 10,600,525
App. No.
15/841,078
Granted
Mar 24, 2020
Kind
B1
Abstract

Hydrophobic filter materials, methods of making them, and their use in various industrial applications are presented. In an example, thermally stable, gas permeable hydrophobic filters which maintain their integrity upon exposure to elevated temperature, radiation, acid, or all are described.

Claims (15)

1. A porous material configured for use as a filter material in a nuclear material storage container, the porous material comprising an aluminosilicate substrate and a coating having a thickness of greater than zero to 5 microns, the coating comprising a copper oxide coating, a copper oxide nanowire coating, a fluorine coating, a fluoride coating, or combinations thereof.

2. A porous material configured for use as a filter material in a nuclear material storage container, the porous material comprising a substrate material selected from copper, copper oxide, copper nanowires, aluminosilicates, and combinations thereof, and a polyimide coating, wherein the porous material has a water contact angle of 100° to 160° and a failure temperature of from 400° C. to 500° C.

3. A nuclear material storage container, comprising:

a containment device that defines a filter material receptacle; and

a hydrophobic porous filter material housed in the receptacle, wherein the porous filter material comprises a fluorinated aluminosilicate substrate and a coating having a thickness of greater than zero to 5 microns, the coating comprising a copper oxide coating, a copper oxide nanowire coating, a fluorine coating, a fluoride coating, or combinations thereof, the porous filter material having a water contact angle of 100° to 160° and a failure temperature of from 400° C. to 500° C.

4. A method, comprising:

providing a porous material according to claim 1 ; and

using the material in a process for storing and/or transporting hazardous material.

5. A porous material configured for use as a filter material in a nuclear material storage container, the porous material comprising a substrate material comprising a fluorinated metal, fluorinated metal oxide, fluorinated metal silicate, or combinations thereof, and a polyimide coating.

6. A method, comprising:

providing a porous material according to claim 5 ; and

using the material in a process for storing and/or transporting hazardous material.

7. A method, comprising:

providing a nuclear material storage container according to claim 3 ; and

using the nuclear material storage container for storing and/or transporting hazardous material.

Assignments (3)
CONFIRMATORY LICENSE Recorded Aug 10, 2020
From: TRIAD NATIONAL SECURITY, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 053441/0230 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2018
From: LOS ALAMOS NATIONAL SECURITY, LLC
To: TRIAD NATIONAL SECURITY, LLC
Reel/Frame 048007/0803 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2018
From: KARNS, TRISTAN M.; SMITH, PAUL H.; REEVES, KIRK; SCOTT, BRIAN L.; WOLFSBERG, LAURA E.; VEIRS, D. KIRK; BORREGO, JARED W.
To: LOS ALAMOS NATIONAL SECURITY, LLC
Reel/Frame 045143/0950 →
Continuity (1)
Provisional Application 62437567 · Dec 21, 2016