Claims
- 1. A membrane which after exposure to a 20% sulfuric acid solution for either, 24 hours at 90° C. or 30 days at 40° C.; is capable of meeting the test of: removing at least 50% of the copper ions from a feed solution consisting of 9.5% CuSO4 and 20% sulfuric acid at a flux of at least 1 gfd; wherein the feed solution is applied to the membrane at a pressure of 600 psig and a temperature of 25° C.
- 2. The membrane according to claim 1, wherein at least 80% of the copper ions from the feed solution are removed.
- 3. A separation method comprising contacting a membrane according to claim 1 with an acid-containing feed solution having a pH less than about 4 that comprises dissolved cations, wherein the membrane removes at least a portion of the dissolved cations from the feed solution.
- 4. A method for treating a metal ore sample comprising contacting a membrane according to claim 1 with an acid-containing feed solution comprising a dissolved metal ore; wherein the feed solution comprises metal ions; and wherein the membrane removes at least a portion of the metal ions from the feed solution.
- 5. The membrane of claim 1 prepared from the reaction of 1) a naphthalene disulfonyl reactant, a naphthalene trisulfonyl reactant, a benzene disulfonyl reactant, or a benzene trisulfonyl reactant, or mixtures thereof; with 2) diethylenetriamine, triethylenetetramine, tetrethylenepentamine, hexaethylenepentamine, or tris-(2-aminoethyl) amine, or mixtures thereof.
- 6. A membrane according to claim 1 wherein the test flux is at least 6 gfd.
- 7. A membrane according to claim 6 wherein the test copper retention value is at least 90%.
- 8. A nanofiltration membrane comprising a nanofiltration polymer matrix and a support wherein the polymer matrix has an acid stable chemical backbone having cationic functional groups; and is capable of meeting the test of: removing at least 50% of the copper ions from a feed solution consisting of 9.5% CuSO4 and 20% sulfuric acid at a flux of at least 1 gfd; wherein the feed solution is applied to the membrane at a pressure of 600 psig and a temperature of 25° C.
- 9. The membrane according to claim 8, wherein the polymer matrix is selected from the group consisting of polyolefins, polysulfones, polyethers, polysulfonamides, polyamines, polysulfides, and melamine polymers.
- 10. The membrane according to claim 8, wherein at least 80% of the copper ions from the feed solution are removed.
- 11. The membrane according to claim 8, wherein the matrix is a sulfonamide polymer matrix derived from sulfonyl monomer residues having at least two sulfonyl groups and amine monomer or oligomer residues having at least two amine groups.
- 12. The membrane according to claim 11, wherein the sulfonamide polymer of the matrix is prepared by interfacial polymerization.
- 13. The membrane as claimed in claim 9, wherein the membrane is a polymer comprised of a reaction product of monomeric reactants.
- 14. The membrane as claimed in claim 13, wherein at least one of the reactants comprises potentially cationic functional groups.
- 15. A separation method comprising contacting a membrane according to claim 8 with an acid-containing feed solution having a pH less than about 4 that comprises dissolved cations, wherein the membrane removes at least a portion of the dissolved cations from the feed solution.
- 16. A method for treating a metal ore sample comprising contacting a membrane according to claim 8 with an acid-containing feed solution comprising a dissolved metal ore; wherein the feed solution comprises metal ions; and wherein the membrane removes at least a portion of the metal ions from the feed solution.
- 17. A separation method comprising contacting a polysulfonamide membrane according to claim 9 with a feed solution having a pH less than about 4; wherein the solution comprises a dissolved organic compound; and wherein the membrane removes at least a portion of the organic compound from the solution.
- 18. A sulfonamide membrane prepared from 1) a monomeric or oligomeric reactant having two or more primary amines and at least one cationic functional group; and 2) a naphthalene disulfonyl reactant, a naphthalene trisulfonyl reactant, a benzene disulfonyl reactant, or a benzene trisulfonyl reactant, or mixtures thereof.
- 19. The membrane of claim 18 prepared from the reaction of 1) a naphthalene disulfonyl reactant, a naphthalene trisulfonyl reactant, a benzene disulfonyl reactant, or a benzene trisulfonyl reactant, or mixtures thereof; with 2) diethylenetriamine, triethylenetetramine, tetrethylenepentamine, hexaethylenepentamine, or tris(2-aminoethyl) amine, or mixtures thereof.
- 20. A membrane according to claim 8 wherein the test flux is at least 6 gfd.
- 21. A membrane according to 20 wherein the test copper retention value is at least 90%.
PRIORITY OF INVENTION
[0001] This application is a continuation under 35 U.S.C. 111(a) of International Application No. PCT/US01/16901 filed May 23, 2001 and published as WO 01/89654 A2 on Nov. 29, 2001, which claims priority from U.S. Provisional Application No. 60/206,276, which was filed on May 23, 2000; and from U.S. Provisional Application No. 60/206,494, which was filed on May 23, 2000, which applications and publication are incorporated herein by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60206276 |
May 2000 |
US |
|
60206494 |
May 2000 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/US01/16901 |
May 2001 |
US |
Child |
10302721 |
Nov 2002 |
US |