IP Library Granted Patent US 12,427,469
Granted Patent B2
US 12,427,469 · App. 17/951,806 · Granted Sep 30, 2025

Filter, composition and process for cleaning feed and exhaust fluids and method for eliminating PFAS and other noxious impurities in fluids

Inventor: Mariavicenta Wasas (Aurora, OH)
Assignee: Standard H2, Inc.
B01D53/0407B01D53/0438B01D53/0454B01J20/0203B01J20/041B01J20/08B01J20/103B01J20/28004B01J20/28016B01D2253/104B01D2253/106B01D2253/1122B01D2253/1124B01D2253/304B01D2256/16B01D2256/245B01D2257/2027B01D2257/304B01D2257/306B01D2257/404B01D2259/4533B01D2259/4541
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Quick Facts
Patent No.
US 12,427,469
App. No.
17/951,806
Granted
Sep 30, 2025
Kind
B2
Abstract

A fluid filter, filtering medium composition, and associated process for removing contaminants from feed and exhaust fluids used in fuel cell electricity generation, laboratories, the semiconductor and other industries to improve performance and extend useful equipment lifetimes and to clean fluids of sulfur compound contaminants, as well as to remove noxious NOx and halogen contaminants from feed and exhaust gases.

Claims (25)

1. A fluid filter for attachment to a gas or liquid line, such fluid filter comprising a housing packed with a filtering medium composition of granular particles ranging in size from about 15 mm to about 0.001 mm and consisting of a homogeneous composition of oxides of aluminum, antimony, barium, beryllium, bismuth, boron, cadmium, calcium, cerium, cesium, chromium, cobalt, copper, dysprosium, erbium, europium, gadolinium, gallium, germanium, hafnium, holmium, indium, iron, lanthanum, lead, lithium, lutetium, magnesium, manganese, molybdenum, neodymium, nickel, praseodymium, rhenium, rhodium, samarium, silicon, silver, strontium, titanium, vanadium, ytterbium, yttrium, zinc and zirconium, further comprising elemental gold, palladium, and platinum collectively comprising between 0.000001% and 0.002% of the filtering medium composition.

2. The fluid filter of claim 1 , further comprising an input line, wherein the housing has a diameter three or more times larger than the input line diameter.

3. The fluid filter of claim 1 , wherein the housing is three or more times longer than its own diameter.

4. The fluid filter of claim 1 , wherein the granular particles range in size from 4 mm to 0.04 mm.

5. The fluid filter of claim 1 , wherein the filtering medium composition is at least 80% oxides of copper as determined by ICP-MS solution analysis of nitric acid digestions of the medium.

6. The fluid filter of claim 1 , wherein the filtering medium composition is comprised of at least 90% by total weight oxides of copper.

7. The fluid filter of claim 1 , further comprising a contact temperature range from ambient temperature up to 500 C.

8. The fluid filter of claim 7 , wherein the contact temperature ranges from 30 C to 300 C.

9. The fluid filter of claim 1 , wherein the composition of the filtering medium composition is recyclable or regenerable.

10. A filtering medium composition of granular particles ranging in size from about 15 mm down to about 0.001 mm and consisting of a homogeneous composition of the oxides of aluminum, antimony, barium, beryllium, bismuth, boron, cadmium, calcium, cerium, cesium, chromium, cobalt, copper, dysprosium, erbium, europium, gadolinium, gallium, germanium, hafnium, holmium, indium, iron, lanthanum, lead, lithium, lutetium, magnesium, manganese, molybdenum, neodymium, nickel, praseodymium, rhenium, rhodium, samarium, silicon, silver, strontium, titanium, vanadium, ytterbium, yttrium, zinc and zirconium plus elemental gold, palladium, and platinum, wherein percentages of components are given by total weight and:

oxides of copper comprise at least 80% of the filtering medium composition,

non-copper oxides comprise between 0.001% and 19.9999% of the filtering medium composition, and

elemental gold, palladium and platinum comprise between 0.000001% and 0.002% of the filtering medium composition.

11. The filtering medium of claim 10 , wherein:

oxides of copper comprise up to 90% of the filtering medium composition,

non-copper oxides comprise between 0.001% and 9.9999% of the filtering medium composition, and

elemental gold, palladium and platinum comprise between 0.00001% and 0.0001% of the filtering medium composition.

12. A process for removing hydrogen sulfide, sulfur containing compounds such as thiols or mercaptans, oxides of nitrogen, PFAS substances and halogens from a gas or liquid stream that lowers the concentration of these contaminants to levels that are below the limit of detection of standard laboratory instrumentation by passing the gas or liquid stream through a fluid filter, such filter comprising a filter housing with a contact temperature ranging from about ambient to about 500 C that is packed with a filtering medium composition of granular particles ranging in size from about 15 mm down to about 0.01 mm and consisting of a homogeneous composition of the oxides of aluminum, antimony, barium, beryllium, bismuth, boron, cadmium, calcium, cerium, cesium, chromium, cobalt, copper, dysprosium, erbium, europium, gadolinium, gallium, germanium, hafnium, holmium, indium, iron, lanthanum, lead, lithium, lutetium, magnesium, manganese, molybdenum, neodymium, nickel, praseodymium, rhenium, rhodium, samarium, silicon, silver, strontium, titanium, vanadium, ytterbium, yttrium, zinc and zirconium, further comprising elemental gold, palladium, and platinum collectively comprising between 0.000001% and 0.002% of the filtering medium composition.

13. The process of claim 12 , wherein the stream flows upward through the filter.

14. The process of claim 12 , wherein the filtering medium composition is comprised of granular particles ranging in size from about 15 mm down to about 0.001 mm and consisting of a homogeneous composition of the oxides of aluminum, antimony, barium, beryllium, bismuth, boron, cadmium, calcium, cerium, cesium, chromium, cobalt, copper, dysprosium, erbium, europium, gadolinium, gallium, germanium, hafnium, holmium, indium, iron, lanthanum, lead, lithium, lutetium, magnesium, manganese, molybdenum, neodymium, nickel, praseodymium, rhenium, rhodium, samarium, silicon, silver, strontium, titanium, vanadium, ytterbium, yttrium, zinc and zirconium plus elemental gold, palladium, and platinum, wherein percentages of components are given by total weight and:

oxides of copper comprise at least 80% of the filtering medium composition,

non-copper oxides comprise between 0.001% and 19.9999% of the filtering medium composition, and

elemental gold, palladium and platinum comprise between 0.000001% and 0.002% of the filtering medium composition.

15. The process of claim 12 , wherein the stream is comprised of hydrogen, natural gas, biogas, or other laboratory or industrial gases or mixture of gases comprising air and specialty high purity composite gases of the grade known as “Chemically Pure” or “Research” that are bottled gases typically available to laboratory and industrial customers, in pipelines, in exhaust streams, or of liquids such as organic or inorganic liquids.

16. The process of claim 12 , wherein hydrogen sulfide, thiols, mercaptans, other sulfur containing molecules, oxides of nitrogen, PFAS substances and halogens are removed from feed or exhaust fluids.

Assignments (2)
CHANGE OF NAME Recorded Jul 12, 2024
From: STANDARD H2, INC.
To: STANDARD H2, INC.
Reel/Frame 068363/0780 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2022
From: WASAS, MARIAVICENTA
To: STANDARD H2, INC.
Reel/Frame 061239/0636 →
Continuity (3)
Continuation In Part 17676443 · Feb 21, 2022
Provisional Application 63226077 · Jul 27, 2021
Related Publication 20230116353A1 · Apr 13, 2023
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