IP Library Granted Patent US 8,808,849
Granted Patent B2
US 8,808,849 · App. 13/472,958 · Granted Aug 19, 2014

Composites of inorganic microparticles having a phosphated surface and alkaline earth carbonate nanoparticles

Inventors: Patrick A. C. Gane (Rothrist, CH); Matthias Buri (Rothrist, CH); René Vinzenz Blum (St. Urban, CH); Catherine Jean Ridgway (Mühlethal, CH)
Assignee: Omya International AG
C09C1/02C09C3/006C01P2004/61D21H19/385D21H27/001C01P2006/14D21H19/36C01P2006/12
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Quick Facts
Patent No.
US 8,808,849
App. No.
13/472,958
Granted
Aug 19, 2014
Kind
B2
Abstract

The present invention relates to composites comprising inorganic micro pigments and/or fillers in the form of surface-phosphated microparticles, whose surface is at least partially coated with finely divided with alkaline earth carbonate nanoparticles by means of binders based on copolymers comprising as the monomers one or more dicarboxylic acids and one or more monomers from the group of diamines, triamines, dialkanolamines or trialkanolamines and epichlorohydrin, a method for producing such composites, aqueous slurries thereof and the use thereof in papermaking or in the field of production of paints and plastics as well as the use of the binders for the coating of microparticles with nano alkaline earth carbonate.

Claims (56)

1. An aqueous slurry comprising a composite, wherein the composite comprises:

(i) surface-phosphated inorganic pigment and/or filler microparticles having a spherical equivalent diameter of 0.3 μm to 100 μm as determined by the sedimentation method, wherein the inorganic pigment and/or filler microparticles comprise natural ground calcium carbonate, precipitated calcium carbonate, dolomite, or any mixture thereof;

(ii) a nano alkaline earth carbonate composition at least partially coating the surface-phosphated inorganic pigment and/or filler microparticles, wherein ≧90% of particles of the nano alkaline earth carbonate composition, based on the number N of particles, have a spherical equivalent diameter of less than 200 nm as determined by the sedimentation method; and

(iii) a binder that facilitates coating of the surface-phosphated inorganic pigment and/or filler microparticles with the nano alkaline earth carbonate composition, wherein the binder is a copolymer comprising one or more dicarboxylic acids; one or more diamines, triamines, dialkanolamines or trialkanoalmines; and epichlorohydrin.

2. The aqueous slurry according to claim 1 , wherein the nano alkaline earth carbonate composition comprises natural ground calcium carbonate, precipitated calcium carbonate, a mixed carbonate, dolomite, or any mixture thereof.

3. The aqueous slurry according to claim 1 , wherein the inorganic pigment and/or filler microparticles comprise natural ground calcium carbonate selected from marble, limestone, chalk or any mixture thereof.

4. The aqueous slurry according to claim 1 , wherein the inorganic pigment and/or filler microparticles comprise precipitated calcium carbonate having a vateritic, calcitic or aragonitic crystal structure.

5. The aqueous slurry according to claim 1 , wherein the phosphated surface of the inorganic pigment and/or filler microparticles comprise calcium phosphate selected from calcium hydrogen phosphate, octacalcium phosphate (OCP), hydroxyapatite (HAP) or any mixture thereof.

6. The aqueous slurry according to claim 1 , wherein the phosphated surface of the inorganic pigment and/or filler microparticles is phosphated by treatment with phosphoric acid and/or phosphoric acid and one or more further medium-strong to strong H 3 O + ion providers and gaseous carbon dioxide.

7. The aqueous slurry according to claim 1 , wherein the one or more dicarboxylic acids of the binder is selected from the group consisting of saturated or unsaturated, branched or unbranched C 2 -C 10 dicarboxylic acids, C 3 -C 9 dicarboxylic acids, C 4 -C 8 dicarboxylic acids, C 5 -C 7 dicarboxylic acids and adipic acid.

8. The aqueous slurry according to claim 1 , wherein the one or more diamines, triamines, dialkanolamines or trialkanolamines of the binder is selected from the group consisting of linear and branched, substituted and unsubstituted diamines, triamines and di- and trialkanolamines, N-(2-aminoethyl)-1,2-ethanediamine, diethanolamine, N-alkyldialkanolamines, N-methyl-diethanolamine, N-ethyldiethanolamine and triethanolamine.

9. The aqueous slurry according to claim 1 , wherein the binder is a copolymer of adipic acid with N-(2-aminoethyl)-1,2-ethanediamine and epichlorohydrin.

10. Paper, paint or plastic comprising a composite or a slurry thereof, wherein the composite comprises:

(i) surface-phosphated inorganic pigment and/or filler microparticles having a spherical equivalent diameter of 0.3 μm to 100 μm as determined by the sedimentation method, wherein the inorganic pigment and/or filler microparticles comprise natural ground calcium carbonate, precipitated calcium carbonate, dolomite, or any mixture thereof;

(ii) a nano alkaline earth carbonate composition at least partially coating the surface-phosphated inorganic pigment and/or filler microparticles, wherein ≧90% of particles of the nano alkaline earth carbonate composition, based on the number N of particles, have a spherical equivalent diameter of less than 200 nm as determined by the sedimentation method; and

(iii) a binder that facilitates coating of the surface-phosphated inorganic pigment and/or filler microparticles with the nano alkaline earth carbonate composition, wherein the binder is a copolymer comprising one or more dicarboxylic acids; one or more diamines, triamines, dialkanolamines or trialkanoalmines; and epichlorohydrin.

11. The paper, paint or plastic according to claim 10 , wherein the nano alkaline earth carbonate composition comprises natural ground calcium carbonate, precipitated calcium carbonate, a mixed carbonate, dolomite, or any mixture thereof.

12. The paper, paint or plastic according to claim 10 , wherein the inorganic pigment and/or filler microparticles comprise natural ground calcium carbonate selected from marble, limestone, chalk or any mixture thereof.

13. The paper, paint or plastic according to claim 10 , wherein the inorganic pigment and/or filler microparticles comprise precipitated calcium carbonate having a vateritic, calcitic or aragonitic crystal structure.

14. The paper, paint or plastic according to claim 10 , wherein the phosphated surface of the inorganic pigment and/or filler microparticles comprise calcium phosphate selected from calcium hydrogen phosphate, octacalcium phosphate (OCP), hydroxyapatite (HAP) or any mixture thereof.

15. The paper, paint or plastic according to claim 10 , wherein the phsophated surface of the inorganic pigment and/or filler microparticles is phosphated by treatment with phosphoric acid and/or phosphoric acid and one or more further medium-strong to strong H 3 O + ion providers and gaseous carbon dioxide.

16. The paper, paint or plastic according to claim 10 , wherein the one or more dicarboxylic acids of the binder is selected from the group consisting of saturated or unsaturated, branched or unbranched C 2 -C 10 dicarboxylic acids, C 3 -C 9 dicarboxylic acids, C 4 -C 8 dicarboxylic acids, C 5 -C 7 dicarboxylic acids and adipic acid.

17. The paper, paint or plastic according to claim 10 , wherein the one or more diamines, triamines, dialkanolamines or trialkanolamines of the binder is selected from the group consisting of linear and branched, substituted and unsubstituted diamines, triamines and di- and trialkanolamines, N-(2-aminoethyl)-1,2-ethanediamine, diethanolamine, N-alkyldialkanolamines, N-methyl-diethanolamine, N-ethyldiethanolamine and triethanolamine.

18. The paper, paint or plastic according to claim 10 , wherein the binder is a copolymer of adipic acid with N-(2-aminoethyl)-1,2-ethanediamine and epichlorohydrin.

19. A filler, pigment or filtration aid comprising a composite or a slurry thereof, wherein the composite comprises:

(i) surface-phosphated inorganic pigment and/or filler microparticles having a spherical equivalent diameter of 0.3 μm to 100 μm as determined by the sedimentation method, wherein the inorganic pigment and/or filler microparticles comprise natural ground calcium carbonate, precipitated calcium carbonate, dolomite, or any mixture thereof;

(ii) a nano alkaline earth carbonate composition at least partially coating the surface-phosphated inorganic pigment and/or filler microparticles, wherein ≧90% of particles of the nano alkaline earth carbonate composition, based on the number N of particles, have a spherical equivalent diameter of less than 200 nm as determined by the sedimentation method; and

(iii) a binder that facilitates coating of the surface-phosphated inorganic pigment and/or filler microparticles with the nano alkaline earth carbonate composition, wherein the binder is a copolymer comprising one or more dicarboxylic acids; one or more diamines, triamines, dialkanolamines or trialkanoalmines; and epichlorohydrin.

20. The filler, pigment or filtration aid according to claim 19 , wherein the-nano alkaline earth carbonate composition comprises natural ground calcium carbonate, precipitated calcium carbonate, a mixed carbonate, dolomite, or any mixture thereof.

21. The filler, pigment or filtration aid according to claim 19 , wherein the inorganic pigment and/or filler microparticles comprise natural ground calcium carbonate selected from marble, limestone, chalk or any mixture thereof.

22. The filler, pigment or filtration aid paper according to claim 19 , wherein the inorganic pigment and/or filler microparticles comprise precipitated calcium carbonate having a vateritic, calcitic or aragonitic crystal structure.

23. The filler, pigment or filtration aid according to claim 19 , wherein the phosphated surface of the inorganic pigment and/or filler microparticles comprise calcium phosphate selected from calcium hydrogen phosphate, octacalcium phosphate (OCP), hydroxyapatite (HAP) or any mixture thereof.

24. The filler, pigment or filtration aid according to claim 19 , wherein the phosphated surface of the inorganic pigment and/or filler microparticles is phosphated by treatment with phosphoric acid and/or phosphoric acid and one or more further medium-strong to strong H 3 O + ion providers and gaseous carbon dioxide.

25. The filler, pigment or filtration aid according to claim 19 , wherein the one or more dicarboxylic acids of the binder is selected from the group consisting of saturated or unsaturated, branched or unbranched C 2 -C 10 dicarboxylic acids, C 3 -C 9 dicarboxylic acids, C 4 -C 8 dicarboxylic acids, C 5 -C 7 dicarboxylic acids and adipic acid.

26. The filler, pigment or filtration aid according to claim 19 , wherein the one or more diamines, triamines, dialkanolamines or trialkanolamines monomer of the binder is selected from the group consisting of linear and branched, substituted and unsubstituted diamines, triamines and di- and trialkanolamines, N-(2-aminoethyl)-1,2-ethanediamine, diethanolamine, N-alkyldialkanolamines, N-methyl-diethanolamine, N-ethyldiethanolamine and triethanolamine.

27. The filler, pigment or filtration aid according to claim 19 , wherein the binder is a copolymer of adipic acid with N-(2-aminoethyl)-1,2-ethanediamine and epichlorohydrin.

28. A coating colour comprising a composite or a slurry thereof, wherein the composite comprises:

(i) surface-phosphated inorganic pigment and/or filler microparticles having a spherical equivalent diameter of 0.3 μm to 100 μm as determined by the sedimentation method, wherein the inorganic pigment and/or filler microparticles comprise natural ground calcium carbonate, precipitated calcium carbonate, dolomite, or any mixture thereof;

(ii) a nano alkaline earth carbonate composition at least partially coating the surface-phosphated inorganic pigment and/or filler microparticles, wherein ≧90% of particles of the nano alkaline earth carbonate composition, based on the number N of particles, have a spherical equivalent diameter of less than 200 nm as determined by the sedimentation method; and

(iii) a binder that facilitates coating of the surface-phosphated inorganic pigment and/or filler microparticles with the nano alkaline earth carbonate composition, wherein the binder is a copolymer comprising one or more dicarboxylic acids; one or more diamines, triamines, dialkanolamines or trialkanoalmines; and epichlorohydrin.

29. The coating colour according to claim 28 , wherein the nano alkaline earth carbonate composition comprises natural ground calcium carbonate, precipitated calcium carbonate, a mixed carbonate, dolomite, or any mixture thereof.

30. The coating colour according to claim 28 , wherein the inorganic pigment and/or filler microparticles comprise natural ground calcium carbonate selected from marble, limestone, chalk or any mixture thereof.

31. The coating colour according to claim 28 , wherein the inorganic pigment and/or filler microparticles comprise precipitated calcium carbonate having a vateritic, calcitic or aragonitic crystal structure.

32. The coating colour according to claim 28 , wherein the phosphated surface of the inorganic pigment and/or filler microparticles comprise calcium phosphate selected from calcium hydrogen phosphate, octacalcium phosphate (OCP), hydroxyapatite (HAP) or any mixture thereof.

33. The coating colour according to claim 28 , wherein the phosphated surface of the inorganic pigment and/or filler microparticles is phosphated by treatment with phosphoric acid and/or phosphoric acid and one or more further medium-strong to strong H 3 O + ion providers and gaseous carbon dioxide.

34. The coating colour according to claim 28 , wherein the one or more dicarboxylic acids of the binder is selected from the group consisting of saturated or unsaturated, branched or unbranched C 2 -C 10 dicarboxylic acids, C 3 -C 9 dicarboxylic acids, C 4 -C 8 dicarboxylic acids, C 5 -C 7 dicarboxylic acids and adipic acid.

35. The coating colour according to claim 28 , wherein the one or more diamines, triamines, dialkanolamines or trialkanolamines of the binder is selected from the group consisting of linear and branched, substituted and unsubstituted diamines, triamines and di- and trialkanolamines, N-(2-aminoethyl)-1,2-ethanediamine, diethanolamine, N-alkyldialkanolamines, N-methyl-diethanolamine, N-ethyldiethanolamine and triethanolamine.

36. The coating colour according to claim 28 , wherein the binder is a copolymer of adipic acid with N-(2-aminoethyl)-1,2-ethanediamine and epichlorohydrin.

37. The coating colour according to claim 28 , wherein the coating colour has a solids content of 25-75 wt %.

38. The coating colour according to claim 28 , wherein the coating colour has a solids content of 30-60 wt %.

39. The coating colour according to claim 28 , wherein the coating colour has a solids content of 30-40 wt %.

40. The coating colour according to claim 28 , wherein the composite content, based on the total solids content of the coating colour, is 3 to 97 wt %.

41. The coating colour according to claim 28 , wherein the composite content, based on the total solids content of the coating colour, is 10 to 90 wt %.

42. The coating colour according to claim 28 , wherein the composite content, based on the total solids content of the coating colour, is 85±10 wt %.

43. The coating colour according to claim 28 , which further contains a coating aid.

44. The coating colour according to claim 43 , wherein the coating aid is selected from acrylic acid ester/styrene copolymers, styrene-butadiene and/or acrylonitrile copolymers or copolymers of acrylonitrile, butadiene, butyl acrylate and styrene or starches.

Assignments (1)
CHANGE OF NAME Recorded Oct 14, 2013
From: OMYA DEVELOPMENT AG
To: OMYA INTERNATIONAL AG
Reel/Frame 031406/0917 →
Priority Claims (1)
DE 10 2007 059 681 · Dec 12, 2007 · national
Continuity (3)
Division 12735081
Provisional Application 61008207 · Dec 19, 2007
Related Publication 20120232190A1 · Sep 13, 2012