Claims
- 1. A process for absorbing an aqueous electrolyte solution comprising contacting a superabsorbent polymer selected from the group consisting of: (A) an absorbent polymer which is prepared by copolymerization of (a) an ampholytic monomer having the formula of: ##STR10## where one and only one of the substituted groups R.sub.1, R.sub.2, R.sub.3 and R.sub.4 must be a vinyl group, the rest can be the same or different and can be hydrogen or a C.sub.1 -C.sub.3 alkyl group; R.sub.5 is a phenyl group; n is .gtoreq.1 and .ltoreq.6; and q is 0 or 1; (b) at least one olefinic monomer; and (c) at least one crosslinking agent which has at least two polymerizable olefinic functionalities wherein the olefinic functionalities are suitable for crosslinking; (B) a graft copolymer which is prepared by contacting a main polymer selected from the group consisting of polysaccharides, polyolefins, and mixtures thereof; under graft polymerization with (a) at least one olefinic monomer; and (b) copolymerizing therewith an ampholytic monomer having the formula of: ##STR11## where one and only one of the substituted groups R.sub.1, R.sub.2, R.sub.3 and R.sub.4 must be a vinyl group, the rest can be the same or different and can be hydrogen or a C.sub.1 -C.sub.3 alkyl group; R.sub.5 is a phenyl group; n is .gtoreq.1 and .ltoreq.6; and q is 0 or 1; and (C) mixtures of (A) and (B); with an aqueous electrolyte solution.
- 2. A process according to claim 1 wherein said olefinic monomer is selected from the group consisting of acrylamide, methacrylamide, acrylonitrile, acrylic acid, methacrylic acid, alkali salts of acrylic acid, alkali salts of methacrylic acid, 2-methacryloyloxyethyltrimethylamine, 2-acrylamido-2-methylpropane sulfonic acid, alkali salts of 2-acrylamido-2-methylpropane sulfonic acid, 2-methacryloyloxyethane sulfonic acid, alkali salts of 2-methacryloyloxyethane sulfonic acid, 3-methacrylamidopropyltrimethylamine, 3-methacrylamidopropyldimethylamine, 2-methacryloyloxyethyldiethylamine, styrene sulfonic acid, alkali salts of styrene sulfonic acid, N-vinyl-2-pyrrolidone, and mixtures thereof.
- 3. A process according to claim 1 wherein said ampholytic monomer is selected from the group consisting of 1-vinyl-3-(3-sulfopropyl)-imidazolium hydroxide, 1-vinyl-3-(4-sulfobutyl)imidazolium hydroxide, 1-vinyl-2-methyl-3-(3-sulfopropyl)imidazolium hydroxide, 1-vinyl-2-methyl-3-(4-sulfobutyl)imidazolium hydroxide, 1-vinyl-3-(2-sulfobenzyl)imidazolium hydroxide, 2-vinyl-3-(3-sulfopropyl)imidazolium hydroxide, 2-vinyl-3-(4-sulfobutyl)imidazolium hydroxide, 4(5)-vinyl-1-(3-sulfopropyl sulfobutyl)imidazolium hydroxide, 4(5)-vinyl-1-(4-sulfobutyl)imidazolium hydroxide, 1-methyl-2-vinyl-3-(3-sulfopropyl)imidazolium hydroxide, 1-vinyl-3-(4-sulfobutyl)imidazolium hydroxide, and mixtures thereof.
- 4. A process according to claim 1 wherein said crosslinking agent is selected from the group consisting of N,N-diallylmethacrylamide, diallylamine, N,N-bisacrylamidoacetic acid, N,N'-bisacrylamidoacetic acid methylester, N,N'-methylenebisacrylamide (methylene-bis-acrylamide), N,N-benzylidenebisacrylamide, allylacrylate, diisopropenylbenzene, diallyl succinate, ethylene glycol diacrylate, diallylacrylamide, divinylbenzene, and combinations of two or more thereof.
- 5. A process according to claim 4 wherein said crosslinking agent is N,N'-methylenebisacrylamide.
- 6. A process according to claim 1 wherein said ampholytic monomer is present in said absorbent polymer in the range of from about 1 to about 60 mole percent.
- 7. A process according to claim 6 wherein said range is from 3 to 30 mole percent.
- 8. A process according to claim 1 wherein said superabsorbent polymer is partially hydrolyzed.
- 9. A process according to claim 1 wherein said absorbent polymer is prepared from (a) 1-vinyl-3-(3-sulfopropyl)imidazolium hydroxide; (b) acrylamide; and (c) N,N'-methylenebisacrylamide.
- 10. A process according to claim 1 wherein said absorbent polymer is prepared from (a) 1-vinyl-3-(3-sulfopropyl)imidazolium hydroxide; (b) acrylic acid; and (c) N,N'-methylenebisacrylamide.
- 11. A process according to claim 1 wherein said absorbent polymer is prepared from (a) 1-vinyl-3-(3-sulfopropyl)imidazolium hydroxide; (b) acrylonitrile; and (c) N,N'-methylenebisacrylamide.
- 12. A process according to claim 1 wherein said absorbent polymer is derived from (a) 1-vinyl-3-(3-sulfopropyl)imidazolium hydroxide which is present in said absorbent polymer in the range of from about 1 to about 60 mole percent; (b) acrylamide which is present in said absorbent polymer in the range of from about 40 to about 99 mole percent; and (c) N,N-methylenebisacrylamide which is present in said absorbent polymer in the range of from about 0.001 to about 5 mole percent.
- 13. A process according to claim 1 wherein said absorbent polymer is derived from (a) 1-vinyl-3-(3-sulfopropyl)imidazolium hydroxide which is present in said absorbent polymer in the range of from about 1 to about 60 mole percent; (b) acrylic acid which is present in said absorbent polymer in the range of from about 40 to about 99 mole percent; and (c) N,N-methylenebisacrylamide which is present in said absorbent polymer in the range of from about 0.001 to about 5 mole percent.
- 14. A process according to claim 1 wherein said absorbent polymer is derived from (a) 1-vinyl-3-(3-sulfopropyl)imidazolium hydroxide which is present in said absorbent polymer in the range of from about 1 to about 60 mole percent; (b) acrylonitrile which is present in said absorbent polymer in the range of from about 40 to about 99 mole percent; and (c) N,N-methylenebisacrylamide which is present in said absorbent polymer in the range of from about 0.001 to about 5 mole percent.
- 15. A process according to claim 1 wherein said graft copolymer is prepared by first graft copolymerizing said olefinic monomer onto said main polymer to produce an olefin grafted main polymer chain and thereafter graft polymerizing said ampholytic monomer onto said olefin grafted main polymer chain.
- 16. A process according to claim 1 wherein said graft copolymer is prepared by first graft copolymerizing said ampholytic monomer onto said main polymer to produce an ampholytic monomer grafted main polymer chain and thereafter graft copolymerizing said olefinic monomer onto said ampholytic monomer grafted main polymer chain.
- 17. A process according to claim 1 wherein said graft copolymer is prepared by contemporaneous graft copolymerization of a mixture of said olefin monomer and said ampholytic monomer onto said main polymer chain.
- 18. A process according to claim 1 wherein contemporaneously with said graft copolymerization a crosslinking agent is copolymerized therewith, wherein said crosslinking agent is provided in an amount effective to produce a highly absorbent graft copolymer.
- 19. A process according to claim 1 wherein said main polymer is a polysaccharide selected from the group consisting of starch, cellulose, glycogen, and mixtures thereof.
- 20. A process according to claim 19 wherein said polysaccharide is starch.
- 21. A process according to claim 1 wherein said graft copolymer is prepared from (a) 1-vinyl-3-(3-sulfopropyl)imidazolium hydroxide; and (b) acrylonitrite.
- 22. A process according to claim 1 wherein said graft copolymer comprises: (a) from about 1 to about 50 weight % of said polysaccharide; and (b) from about 75 to about 98 mole % of said olefinic monomer and from about 2 to about 25 mole % of said ampholytic monomer based on total mole % of said olefinic monomer and said ampholytic monomer equaling 100%.
- 23. A process according to claim 22 wherein said graft copolymer comprising repeating units of: (a) from 5 to 30 weight % of said polysaccharide; and (b) from 80 to 97 mole % of said olefinic monomer and from 3 to 20 mole % of said ampholytic monomer based on total mole % of said olefinic monomer and ampholytic monomer equaling 100%.
- 24. A process according to claim 1 wherein said absorbent polymer comprises repeating units of: (a) from about 1 to about 60 mole % of 1-vinyl-3-(3-sulfopropyl)imidazolium hydroxide: (b) from about 35 to about 99 mole % of acrylonitrile; and (c) from about 0.001 to about 5 mole % of N,N'-methylenebisacrylamide.
- 25. A process according to claim 24 wherein said absorbent polymer comprises repeating units of: (a) from about 3 to about 30 mole % of 1-vinyl-3-(3-sulfopropyl)imidazolium hydroxide; (b) from about 69 to about 96 mole % of acrylonitrile; and (c) from about 0.05 to about 1 mole % of N,N'-methylenebisacrylamide.
- 26. A process according to claim 1 wherein said electrolyte solution is a urine.
- 27. A process for absorbing urine solution comprising contacting said urine with a superabsorbent polymer selected from the group consisting of (A) an absorbent polymer prepared by copolymerization of (a) 1-vinyl-3-(3-sulfopropyl)imidazolium hydroxide; (b) at least one olefinic monomer selected from the group consisting of acrylamide, acrylic acid, acrylonitrile, and mixtures thereof; and (c) N,N'-methylenebisacrylamide; (B) a graft copolymer prepared by contacting starch with acrylonitrile and 1-vinyl-3-(3-sulfopropyl)imidazolium hydroxide under graft copolymerization conditions; and (C) mixtures of said absorbent polymer and said graft copolymer.
Parent Case Info
This application is a division of application Ser. No. 07/873,259, filed Apr. 24, 1992, now allowed.
US Referenced Citations (14)
Non-Patent Literature Citations (3)
Entry |
Polymer, vol. 19, pp. 1157-1162 (Salamone et al, Oct. 1978). |
J. Appl. Poly. Sci., vol. 22, pp. 1343-1357 (Taylor et al, 1978). |
Encyclopedia of Polymer Science and Engineering, vol. 11, pp. 514-530 (1988). |
Continuation in Parts (1)
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Number |
Date |
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873259 |
Apr 1992 |
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