IP Library Granted Patent US 9,951,196
Granted Patent B2
US 9,951,196 · App. 14/059,953 · Granted Apr 24, 2018

Cationic polyoxometalate-coated alumina trihydrate dispersants

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Quick Facts
Patent No.
US 9,951,196
App. No.
14/059,953
Granted
Apr 24, 2018
Kind
B2
Abstract

The present invention relates to polyoxometalate-coated alumina trihydrate dispersants prepared by combining a polyaluminum chloride having certain characteristics with alumina trihydrate particles. Such dispersants are useful for forming cationic alumina trihydrate slurries, which can be mixed with titanium dioxide to produce stable cationic slurry blends useful in paper, paper-board, and paint (coatings) applications. The dispersants are also useful for preparing cationic titanium dioxide slurries.

Claims (53)

1. A cationic polyoxometalate-coated alumina tri hydrate dispersant (Cationic POM Dispersant) comprising a reaction product of:

a. about 40 wt. % to about 70 wt. % of a polyaluminum chloride having a basicity of about 20% to about 40% and an Al 2 O 3 content of about 10 wt. % to about 17 wt. %; and

b. about 30 wt. % to about 60 wt. % of crystalline alumina trihydrate (ATH) particles;

wherein the cationic POM dispersant has a pH of ≤2.5; and

wherein the cationic POM dispersant comprises cationic POM-coated ATH particles.

2. The Cationic POM Dispersant of claim 1 , wherein the crystalline alumina trihydrate particles have an average particle size of about 0.1 μm to about 1 μm.

3. The Cationic POM Dispersant of claim 1 , wherein the crystalline alumina trihydrate particles have an average particle size of about 0.2 μm to about 0.5 μm.

4. The Cationic POM Dispersant of claim 1 , wherein the polyaluminum chloride has an Al 13 [AlO 4 Al 12 (OH) 24 (H 2 O) 12 7+ ] with Keggin structure content of about 18% to about 31%.

5. The Cationic POM Dispersant of claim 1 , wherein the polyaluminum chloride has a basicity of about 25% to about 35%.

6. The Cationic POM Dispersant of claim 1 , wherein the polyaluminum chloride has an Al 2 O 3 content of about 10 wt. % to about 11 wt. %.

7. The Cationic POM Dispersant of claim 1 , wherein the polyaluminum chloride has:

a. a basicity of about 30% to about 32%;

b. an Ah03 content of about 10 wt. % to about 11 wt. %; and

c. an Al 13 [AlO 4 Al 12 (OH) 24 (H 2 O) 12 7+ ] with Keggin structure content of about 18% to about 31%.

8. The Cationic POM Dispersant of claim 1 , wherein the polyaluminum chloride is comprised of from about 65 to about 75 weight percent water and from about 25 to about 35 weight percent solids.

9. The Cationic POM Dispersant of claim 1 , prepared with about 45 to about 55 weight percent crystalline alumina trihydrate particles and about 45 to about 55 weight percent polyaluminum chloride, wherein the polyaluminum chloride is comprised of from about 65 to about 75 weight percent water and from about 25 to about 35 weight percent solids.

10. A cationic slurry, comprising the Cationic POM Dispersant of claim 1 and inorganic particles, in addition to the crystalline alumina trihydrate particles present as part of the Cationic POM Dispersant, selected from the group consisting of alumina trihydrate particles, titanium dioxide, and mixtures thereof.

11. An intermediate cationic alumina trihydrate slurry (Intermediate ATH + Slurry) comprising:

a. a Diluted POM Dispersant comprising:

i. about 5 wt. % to about 14 wt. % of the Cationic POM Dispersant of claim 1 ; and

ii. about 86 wt. % to about 95 wt. % water; and

b. crystalline alumina trihydrate (ATH) particles in addition to the crystalline alumina trihydrate particles present as part of the Cationic POM Dispersant;

wherein the Intermediate ATH + Slurry has a pH of between about 2 and about 6.8 and has a total ATH solids content of about 74 wt. % to about 84 wt. %.

12. The Intermediate ATH + Slurry of claim 11 , wherein the Intermediate ATH+ Slurry has a pH of between about 3 and about 6.

13. The Intermediate ATH + Slurry of claim 11 , wherein the about ATH solids content is about 77 wt. % to about 78 wt. %.

14. A paper grade cationic alumina trihydrate slurry comprising

a. an Intermediate ATH + Slurry comprising

i. a Diluted POM Dispersant comprising:

1. the Cationic POM Dispersant of claim 1 ; and

2. water in an amount sufficient to provide a total ATH solids content of about 3 wt. % to about 6 wt. % in the Diluted POM Dispersant; and

ii. crystalline alumina trihydrate (ATH) particles in addition to the crystalline alumina trihydrate particles present as part of the Cationic POM Dispersant;

wherein the Intermediate ATH + Slurry has a pH of between about 2 and about 6.8 and a total ATH solids content of about 74 wt. % to about 84 wt. %; and

b. water in an amount sufficient to dilute the Intermediate ATH+ Slurry to a total ATH solids content of about 70 wt. % to about 72 wt. %.

15. The paper grade cationic alumina trihydrate slurry of claim 14 , wherein the Intermediate ATH + Slurry comprises crystalline alumina trihydrate (ATH) particles having a surface area of from about 0.3 m 2 /g to about 10 m 2 /g in addition to the crystalline alumina trihydrate particles present as part of the Cationic POM Dispersant.

16. The paper grade cationic alumina trihydrate slurry of claim 14 , wherein the Intermediate ATH + Slurry comprises crystalline alumina trihydrate (ATH) particles having an average particle size of from about 0.1 μm to about 10 μm in addition to the crystalline alumina trihydrate particles present as part of the Cationic POM Dispersant.

17. A paint grade cationic alumina trihydrate slurry comprising:

a. an Intermediate ATH + Slurry comprising:

i. a Diluted POM Dispersant comprising:

1. the Cationic POM Dispersant of claim 1 ; and

2. water at an amount sufficient to dilute the Cationic POM Dispersant to a total ATH solids content of about 1 wt. % to about 4 wt. %; and

ii. crystalline alumina trihydrate (ATH) particles in addition to the crystalline alumina trihydrate particles present as part of the Cationic POM Dispersant;

wherein the Intermediate ATH + Slurry has a pH of between about 2 and about 6.8 and the total ATH solids content is from about 74 wt. % to about 84 wt. %; and

b. water in an amount sufficient to dilute the Intermediate ATH + Slurry to a total ATH solids content of about 70 wt. % to about 72 wt. %.

18. The paint grade cationic alumina trihydrate slurry of claim 15 , wherein the Intermediate ATH + Slurry comprises crystalline alumina trihydrate (ATH) particles having a surface area of from about 0.3 m 2 /g to about 10 m 2 /g in addition to the crystalline alumina trihydrate particles present as part of the Cationic POM Dispersant.

19. The paint grade cationic alumina trihydrate slurry of claim 15 , wherein the Intermediate ATH + Slurry comprises crystalline alumina trihydrate (ATH) particles having an average particle size of from about 0.1 μm to about 10 μm in addition to the crystalline alumina trihydrate particles present as part of the Cationic POM Dispersant.

20. A method of making a cationic polyoxometalate-coated alumina trihydrate dispersant (Cationic POM Dispersant) comprising combining

(a) about 40 wt. % to about 70 wt. % of a polyaluminum chloride having a basicity of about 20% to about 40% and an Al 2 O 3 content of about 10 wt. % to about 17 wt. % with

(b) about 30 wt. % to about 60 wt. % of crystalline alumina trihydrate (ATH) particles, wherein the resulting cationic POM dispersant has a pH of: S 2.5 and comprises cationic POM-coated ATH particles.

21. The method of claim 20 , wherein the crystalline alumina trihydrate particles have an average particle size of about 0.1 μm to about 1 μm.

22. The method of claim 20 , wherein the polyaluminum chloride has an Al 13 [AlO 4 Al 12 (OH) 24 (H 2 O) 12 7+ ] with Keggin structure content of about 18% to about 31%.

23. The method of claim 20 , wherein the polyaluminum chloride has a basicity of about 25% to about 35%.

24. The method of claim 20 , wherein the polyaluminum chloride has an Al 2 O 3 content of about 10 wt. % to about 11 wt. %.

25. The method of claim 20 , wherein the polyaluminum chloride is comprised of from about 65 to about 75 weight percent water and from about 25 to about 35 weight percent solids.

Assignments (2)
RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jun 27, 2014
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: J.M. HUBER CORPORATION; CP KELCO U.S., INC.; HUBER ENGINEERED WOODS LLC
Reel/Frame 033247/0705 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2013
From: EVERS, GLENN R.
To: J.M. HUBER CORPORATION
Reel/Frame 031453/0185 →