Claims
- 1. A composition comprising:
a mixture consisting essentially of (1) a dried hydrophobic sol-gel functionalized with at least one metal-removing constituent and (2) a solid support structure.
- 2. The composition recited in claim 1, wherein said solid support structure is molded, granular, or powdered.
- 3. The composition recited in claim 1, wherein said dried hydrophobic sol-gel is an aerogel.
- 4. The composition recited in claim 1, wherein the dried hydrophobic sol-gel includes a quantity of phosphoric acid.
- 5. The composition recited in claim 3, wherein the hydrophobic aerogel is produced by adding a predetermined amount of phosphoric acid to a siloxane sol-gel mixture prior to gellation.
- 6. The composition recited in claim 4, wherein the concentration of phosphoric acid of the hydrophobic aerogel ranges from 0.5% to 50%.
- 7. The composition recited in claim 5, wherein the concentration of phosphoric acid added prior to gellation ranges from 0.5% to 50%.
- 8. The composition recited in claim 3, wherein the hydrophobic aerogel includes a quantity of phosphonate.
- 9. The composition recited in claim 8, wherein the quantity of phosphonate incorporated in the aerogel is formed from the starting material (C2H5O)3SiCH2CH2P(O)(OC2H5)2.
- 10. The composition recited in claim 8, wherein the concentration of phosphonate in the hydrophobic aerogel ranges from 0.5% to 50%.
- 11. The composition recited in claim 3, wherein the hydrophobic aerogel includes a quantity of phosphate exchangeable metal salt, said hydrophobic aerogel being functionalized by washing with a pre-determined amount of phosphoric acid.
- 12. The composition recited in claim 11, wherein the phosphate exchangeable salt is calcium nitrate.
- 13. The composition recited in claim 11, wherein the concentration of the phosphate exchangeable metal salt prior to the phosphoric acid washing ranges from 0.5% to 50%.
- 14. The composition recited in claim 3, wherein the solid support structure is granulated activated carbon (GAC).
- 15. The composition recited in claim 12, wherein the GAC is acid washed.
- 16. A composition comprising:
a predetermined amount of a hydrophobic aerogel functionalized with at least one metal-removing constituent; and a predetermined amount of granulated activated carbon.
- 17. The composition recited in claim 16, wherein the metal-removing constituent is selected from the group consisting of phosphoric acid, phosphonate, and phosphate exchangeable metal salts.
- 18. A method comprising:
forming a first mixture comprising a predetermined amount of at least one organosilane compound a predetermined amount of an organosilane compound having a substituent capable of making an aerogel hydrophobic, and an organic solvent; forming a second mixture comprising a compound capable of binding at least one metal or a compound capable of being modified to a compound capable of binding at least one metal after gellation and an organic solvent; mixing the first mixture and the second mixture together with stirring for a predetermined amount of time to form a pre-aerogel mixture; combining said pre-aerogel mixture with a predetermined amount of a solid support structure to form a pre-aerogel/support structure mixture; and drying said pre-aerogel/support structure under supercritical conditions to form a functionalized hydrophobic aerogel/support structure solid material capable of removing metals from an aqueous media.
- 19. The method recited in claim 18, wherein said solid support structure is granulated activated carbon (GAC).
- 20. The method recited in claim 19, wherein said GAC is acid washed.
- 21. The method recited in claim 18, wherein said compound capable of binding at least one metal is selected from the group consisting of a predetermined amount of phosphoric acid and a compound containing a phosphonate.
- 22. The method recited in claim 18, wherein said compound capable of being modified to a compound capable of binding at least one metal after gellation is a phosphate exchangeable salt.
- 23. The method recited in claim 22, wherein said phosphate exchangeable salt is calcium nitrate.
- 24. The method recited in claim 18 wherein said compound is a phosphonate.
- 25. A method comprising:
providing a hydrophobic sol-gel on a solid support structure, wherein said hydrophobic sol-gel is functionalized with at least one metal-removing constituent and/or at least one VOC-removing constituent; and contacting said hydrophobic sol-gel on a solid support structure to an aqueous or vapor sample.
- 26. The method recited in claim 25, further comprising:
analyzing said hydrophobic sol-gel on a solid support structure after contacting it with said sample in order to detect the presence and/or concentration of metals and/or VOCs.
- 27. The method recited in claim 26, wherein said hydrophobic sol-gel is a hydrophobic aerogel.
- 28. The method recited in claim 27, wherein the hydrophobic aerogel includes a quantity of phosphoric acid.
- 29. The method recited in claim 28, wherein the concentration of phosphoric acid of the hydrophobic aerogel ranges from 0.5% to 50%.
- 30. The method recited in claim 27, wherein the hydrophobic aerogel includes a quantity of phosphonate.
- 31. The method recited in claim 30, wherein the concentration of phosphonate in the hydrophobic aerogel ranges from 0.5% to 50%.
- 32. The method recited in claim 27, wherein the hydrophobic aerogel includes a quantity of phosphate exchangeable metal salt, said hydrophobic aerogel being functionalized by washing with a pre-determined amount of phosphoric acid.
- 33. The method recited in claim 32, wherein the phosphate exchangeable salt is calcium nitrate.
- 34. The method recited in claim 33, wherein the concentration of the phosphate exchangeable metal salt prior to the phosphoric acid washing ranges from 0.5% to 50%.
- 35. The method recited in claim 27, wherein the solid support structure is granulated activated carbon (GAC).
- 36. The method recited in claim 35, wherein the GAC is acid washed.
RELATED APPLICATION
[0001] This application is a continuation in part of pending U.S. application Ser. No. 10/285,242 filed Oct. 30, 2002.
Government Interests
[0002] The United States Government has rights in this invention pursuant to Contract No. W-7405-ENG-48 between the United States Department of Energy and the University of California for the operation of Lawrence Livermore National Laboratory.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10285242 |
Oct 2002 |
US |
Child |
10794853 |
Mar 2004 |
US |