Claims
- 1. A water-soluble, linear copolymer of diallyl ammonium monomer and an acrylamide monomer having a uniform diallyl ammonium monomer to acrylamide monomer ratio and an intrinsic viscosity of from about 10 to about 25 dl/g as determined in a 4% sodium chloride solution.
- 2. A copolymer as claimed in claim 1 wherein the diallyl ammonium monomer corresponds to the formula: ##STR3## and the acrylamide monomer corresponds to the formula: ##STR4## wherein R1 is independently in each occurrence hydrogen or C.sub.1-.varies. alkyl; R.sup.2 is independently in each occurrence hydrogen, a C.sub.1-18 alkyl, C.sub.1-18 alkoxyalkyl or C.sub.1-18 hydroxyalkyl moiety; R.sup.3 is independently in each occurrence hydrogen or a C.sub.1-5 lower alkyl moiety; R.sup.4 is independently in each occurrence hydrogen, C.sub.1-18 alkyl, C.sub.1-18 alkoxy alkyl, or C.sub.1-18 hydroxyalkyl; and Y is an anion.
- 3. A copolymer as claimed in claim 2, wherein said intrinsic viscosity is from 15 to 20 dl/g.
- 4. A water-soluble, linear copolymer of a diallyl ammonium monomer and an acrylamide monomer having a uniform diallyl ammonium monomer to acrylamide monomer ratio prepared by the process comprising the steps of:
- a) initiating the copolymerization of a stirred mixture of diallyl ammonium monomer with a portion of the total amount of acrylamide monomer required in a solvent solution at a temperature at which copolymerization proceeds;
- b) adding to said stirred monomer solution the remaining acrylamide monomer by continuous addition to form a homogeneous gel solution, while maintaining the reaction temperature;
- c) after completion of the addition of acrylamide, maintaining the reaction mixture at the polymerization temperature for a period of about 30 minutes to about 1 hour to complete polymerization;
- d) after the polymerization is completed homogeneously mixing a chain transfer agent in said gel solution to form a gel mixture;
- e) heating said gel mixture to a temperature at which residual monomer undergoes copolymerization; and
- f) drying said gel mixture.
- 5. A copolymer prepared by the process according to claim 4 wherein the diallyl ammonium monomer corresponds to the formula: ##STR5## and the acrylamide monomer corresponds to the formula: ##STR6## wherein R1 is independently in each occurrence hydrogen or C1-4 alkyl; R2 is independently in each occurrence hydrogen, a C1-18 alkyl, C1-18 alkoxyalkyl or C1-18 hydroxyalkyl moiety; R3 is independently in each occurrence hydrogen or a C1-5 lower alkyl moiety; R4 is independently in each occurrence hydrogen, C1-18 alkyl, C1-18 alkoxy alkyl, or C1-18 hydroxyalkyl; and Y is an anion.
- 6. A copolymer prepared by the process as claimed in claim 5, wherein the solvent is water or C1-C4 primary alcohol.
- 7. A copolymer prepared by the process as claimed in claim 6, wherein the polymerization temperature of steps a) b) and c) is about 20.degree. to about 50.degree. C.
- 8. A copolymer prepared by the process as claimed in claim 7, wherein about 15 to about 17 percent of the total amount of the acrylamide monomer is added to step (a).
- 9. A copolymer prepared by the process as claimed in claim 8, wherein the addition of the remaining acrylamide monomer in step (b) is over a period of about 0.5 to about 8 hours.
- 10. A copolymer prepared by the process as claimed in claim 9, wherein the remaining acrylamide monomer is added in such a manner that a decreasing feed rate is achieved over step b).
- 11. A copolymer prepared by the process as claimed in claim 10, wherein from about 30 to about 35% of the remaining acrylamide monomer is added during the first quarter of step b) period, from about 25 to about 30% is added during the second quarter, from about 20 to about 25% is added during the third quarter and from about 15 to about 20% is added during the final quarter.
- 12. A copolymer prepared by the process as claimed in claim 11, wherein the chain transfer agent is sodium hypophosphite.
- 13. A copolymer prepared by the process as claimed in claim 11, wherein the heating of step (e) is conducted at about 60.degree. to about 90.degree. C. for about 0.1 to about 4.0 hours.
- 14. A copolymer prepared by the process as claimed in claim 13, wherein the diallyl ammonium monomer to acrylamide monomer ratio is from about 5 to about 95 mole percent.
- 15. A copolymer prepared by the process as claimed in claim 13, wherein the diallyl ammonium monomer to acrylamide monomer ratio is from about 25 to about 50 mole percent.
- 16. A copolymer prepared according to the process as claimed in claim 10 wherein the polymerization temperature of steps a) b) and c) is about 40.degree. C. or below.
CROSS-REFERENCE TO RELATED APPLICATION
This is a divisional of application Ser. No. 07/667 707, filed Mar. 11, 1991, now U.S. Pat. No. 5,110,883.
US Referenced Citations (7)
Foreign Referenced Citations (4)
Number |
Date |
Country |
103698 |
Mar 1984 |
EPX |
188721 |
Jul 1986 |
EPX |
247774 |
Dec 1987 |
EPX |
127729 |
Oct 1977 |
DDX |
Non-Patent Literature Citations (3)
Entry |
C. Wandrey and W. Jaeger (1985) Acta Polym. 36(2), 100-102 "Copolymerization of dimethyl diallyl ammonium chloride and acryl amide". |
W. Jaeger et al. (1984) J. Macromol. Sci.--Chem. A21(5), 593-614 "Cyclopolymerization Kinetics of dimethyl diallyl ammonium chloride". |
H. Tanaka (1986) J. Polym. Sci. Polym. Chem. Ed. 24, 29-36 "Copolymerization of Cationic Monomers with acetylamido in Aqueous Solution". |
Divisions (1)
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Number |
Date |
Country |
Parent |
667707 |
Mar 1991 |
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