IP Library Granted Patent US 7,578,997
Granted Patent B2
US 7,578,997 · App. 10/137,052 · Granted Aug 25, 2009

Metal ion modified high surface area materials for odor removal and control

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Quick Facts
Patent No.
US 7,578,997
App. No.
10/137,052
Granted
Aug 25, 2009
Kind
B2
Abstract

This invention relates to high surface area materials, such as nanoparticles, that are coated with metal ions. These modified nanoparticles have active sites that bind various gases and/or odorous compounds, thereby removing these compounds from a medium such as air or water. Metal ions are adsorbed onto the surface of the nanoparticle and bound strongly to the surface. By selection of the metal ion, specific gaseous compounds and/or odorous compounds can be targeted and removed efficiently and effectively from both aqueous phase and from the air. The modified nanoparticles are useful in numerous article of manufacture for industrial and consumer use.

Claims (32)

1. A composition for neutralizing odor, comprising:

a nanoparticle comprising a diameter of less than 500 nanometers, a surface area of at least about 500 square meters/gram, and a first Zeta Potential of about −1 to −50 millivolts, the nanoparticle comprising silica, titanium dioxide, gold, zinc oxide, polystyrene, or combinations thereof; and

at least one metal ion adsorbed onto the nanoparticle, the at least one metal ion selected from the group consisting of a copper ion, a silver ion, a gold ion, and combinations thereof;

wherein at least one of the nanoparticle and the adsorbed metal ion is capable of binding at least one odorous compound.

2. The composition of claim 1 , wherein the nanoparticle comprises a negative first Zeta Potential of about −1 to −20 millivolts.

3. The composition of claim 1 , further comprising a second higher Zeta Potential after adsorption of the at least one metal ion onto the nanoparticle.

4. The composition of claim 1 , wherein the nanoparticle comprises a surface area of at least about 800 square meters/gram.

5. The composition of claim 1 , wherein the at least one odorous compound comprises a compound selected from the group consisting of sulfur containing compounds, nitrogen containing compounds, carboxylic acids, alcohols, aliphatic aldehydes, aliphatic ketones, and combinations thereof.

6. A composition for removing gaseous compounds, comprising:

a nanoparticle comprising alumina, magnesium oxide, or combinations thereof, the nanoparticle further comprising a diameter of less than 500 nanometers, a surface area of greater than 200 square meters/gram, and a Zeta Potential of about 10 to 40 millivolts; and

at least one metal ion or metal ion complex adsorbed onto the nanoparticle, the metal ion complex selected from the group consisting of permanganate ion;

wherein at least one of the nanoparticle and the adsorbed metal ion or metal ion complex is capable of binding at least one gaseous compound.

7. The composition of claim 6 , further comprising a second lower Zeta Potential after adsorption of the at least one metal ion or metal ion complex onto the nanoparticle.

8. The composition of claim 6 , wherein the nanoparticle comprises a surface area of at least about 500 square meters/gram.

9. The composition of claim 8 , wherein the nanoparticle comprises a surface area of at least about 800 square meters/gram.

10. The composition of claim 6 , wherein the at least one gaseous compound comprises a compound selected from the group consisting of ethylene gas, carvone, terpenoids, and combinations thereof.

11. A composition for removal of gaseous compounds and odorous compounds, comprising:

a first modified nanoparticle, comprising a nanoparticle, the nanoparticle comprising alumina, magnesium oxide, or combinations thereof, the nanoparticle further comprising a diameter of less than 500 nanometers, a surface area of at least about 200 square meters/gram, a positive Zeta Potential and at least one negatively charged metal ion complex adsorbed onto the first modified nanoparticle, the at least one negatively charged metal ion complex selected from the group consisting of permanganate ion; and

a second modified nanoparticle, comprising a nanoparticle comprising a negative Zeta Potential and at least one positively charged metal ion adsorbed onto the second modified nanoparticle;

wherein the first modified nanoparticle is capable of binding a first gaseous compound and the second nanoparticle is capable of binding a second gaseous compound.

12. The composition of claim 11 , wherein the second modified nanoparticle comprises a nanoparticle selected from the group consisting of silica, titanium dioxide, gold, zinc oxide, polystyrene, and combinations thereof.

13. The composition of claim 11 , wherein the at least one positively charged metal ion comprises a metal ion selected from the group consisting of copper ion, silver ion, gold ion, iron ion, and combinations thereof.

14. The composition of claim 1 ,

wherein the nanoparticle is a silica nanoparticle; and

wherein the at least one metal ion comprises a plurality of copper ions, wherein each of the adsorbed plurality of copper ions is an active site on a surface of the silica nanoparticle for binding odorous compounds to the nanoparticle surface.

15. The composition of claim 11 , wherein at least one of the first gaseous compound and the second gaseous compound comprises an odorous compound.

16. A modified nanoparticle, comprising:

a nanoparticle having a diameter of less than 500 nanometers and a surface area of at least about 500 square meters/gram, the nanoparticle comprising silica, alumina, magnesium oxide, titanium dioxide, iron oxide, gold, zinc oxide, copper oxide, polystyrene, or combinations thereof; and at least one metal ion or metal ion complex adsorbed onto the nanoparticle material, the at least one metal ion or metal ion complex comprising an ion or ion complex selected from the group consisting of a copper ion, a silver ion, a gold ion, a permanganate ion, an iron ion, and combinations thereof;

wherein the nanoparticle comprises a first Zeta Potential before adsorption of the metal ion or metal ion complex and a second Zeta Potential after adsorption and a difference between the first Zeta Potential and the second Zeta Potential of at least about 5.0 millivolts, and the adsorbed metal ion or metal ion complex is capable of binding at least one odorous or gaseous compound to the modified nanoparticle.

17. The modified nanoparticle of claim 16 , wherein the second Zeta Potential is determined by an add-on amount of adsorbed metal ions.

18. The modified nanoparticle of claim 16 , wherein the nanoparticle comprises a first Zeta Potential of about 1 to 70 millivolts.

19. The modified nanoparticle of claim 16 , wherein the nanoparticle comprises a first Zeta Potential of about −1 to −50 millivolts.

Assignments (1)
NAME CHANGE Recorded Feb 3, 2015
From: KIMBERLY-CLARK WORLDWIDE, INC.
To: KIMBERLY-CLARK WORLDWIDE, INC.
Reel/Frame 034880/0742 →