Glyoxalated N-vinylamine
View Patent ↗The present invention is directed to compositions comprising a cellulose reactive functionalized polyvinylamine first adduct, compositions comprising combinations of the cellulose reactive functionalized polyvinylamine first adduct and cellulose reactive functionalized polyvinylamide second adduct, methods for preparing first adduct and second adduct blends and finally methods of increasing the wet or dry strength of paper by incorporation into the paper furnish or coating a paper or board with said adducts.
1. A premixed blend comprising cellulose reactive first and second adducts:
wherein said first adduct comprises
a reaction product of a starting polyvinylamine with at least a dialdehyde,
wherein the starting polyvinylamine is a polymer formed from N-vinylformamide or N-vinylacetamide,
wherein the polymer is at least partially hydrolyzed to impart a degree of primary amino functionality, prior to the reaction with the dialdehyde; and
the second adduct comprises a reaction product of a dialdehyde with a starting polyvinylamide,
with the proviso that the first and second cellulose reactive adducts are different.
2. The premixed blend according to claim 1 , wherein the at least partially hydrolyzed polymer is hydrolyzed from about 1 to about 100 mole %.
3. The premixed blend according to claim 1 , wherein the dialdehyde is selected from the group consisting of: glyoxal, glutaraldehyde, furan dialdehyde, 2-hydroxyadipaldehyde, and succinaldehyde.
4. The premixed blend according to claim 1 , wherein a concentration of starting polyvinylamine is less than about 4 wt. % of the reaction mixture at any time during formation of the first cellulose reactive adduct.
5. The premixed blend according to claim 1 , wherein formation of the first cellulose reactive adduct takes place in an inverse emulsion, microemulsion or in a substantially aqueous solution.
6. The premixed blend according to claim 1 , wherein the inverse emulsion or microemulsion has a particle size ranging from about 25 nm to about 2000 nm.
7. The premixed blend according to claim 1 , wherein the starting polyvinylamide is a polymer or copolymer formed from at least (meth)acrylamide, N-alkyl (meth)acrylamide, or mixtures thereof.
8. The blend according to claim 1 , wherein the first cellulose reactive adduct is a glyoxalated polyvinylamine and the second cellulose reactive adduct is a glyoxalated polyvinylamide.
9. A blend of at least a first and a second adduct,
wherein said first and second adducts are formed simultaneous by reacting a mixture of a starting polyvinylamine and a starting polyvinylamide with a dialdehyde,
wherein the polyvinylamine is a polymer formed from N-vinylformamide or N-vinylacetamide, which polymer is at least partially hydrolyzed to impart a degree of primary amino functionality prior to the reaction with the dialdehyde, and
the polyvinylamide is a polymer formed from an ethylenically unsaturated amide comprising (meth)acrylamide, N-alkyl (meth)acrylamide, or mixtures thereof.
10. The blend according to claim 9 , wherein a total concentration of the starting polyvinylamine and the starting polyvinylamide is less than about 4 weight percent of the reaction mixture at any stage during the first and second adduct reactions.
11. The blend according to claim 9 , wherein the average molecular weights of the starting polyvinylamine and the starting polyvinylamide are each independently greater than 25,000 Daltons.
12. The blend according to claim 11 , wherein the average molecular weight of the starting polyvinylamine ranges from about 200,000 to about 500,000 Daltons.
13. The blend according to claim 11 , wherein the average molecular weight of the starting polyvinylamide ranges from 50,000 to about 200,000 Daltons.