IP Library Granted Patent US 8,721,837
Granted Patent B2
US 8,721,837 · App. 13/709,140 · Granted May 13, 2014

Method for recovering pulping chemicals and reducing the concentration of potassium and chloride therein

Inventors: Michael S. Begley (Lisle, IL); Jean-Claude Gallot (Naperville, IL)
Assignee: Veolia Water Solutions & Technologies North America, Inc.
D21C11/066D21C11/063D21C11/12
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Quick Facts
Patent No.
US 8,721,837
App. No.
13/709,140
Granted
May 13, 2014
Kind
B2
Abstract

In a digester, wood chips and white liquor are combined and cooked under pressure to pulp the wood. This produces black liquor which is concentrated and burned in a recovery boiler. The recovery boiler produces ash that contains sodium, sulphur, potassium and chloride. The ash is dissolved and subjected to a process that recovers sodium sulfate and burkeite. The concentration of potassium and chloride is reduced, in part at least, by subjecting the ash to adiabatic cooling in a crystallizer which produces glaserite and a purge stream rich in chloride. By leaching the glaserite, sodium sulfate is removed from the glaserite, leaving potassium sulfate. The recovered sodium sulfate and burkeite can be recycled and used as pulping chemicals. The removed potassium and chloride can be further treated or appropriately discarded.

Claims (36)

1. A method of removing pulp from wood and recovering pulping chemical from black liquor while reducing the concentration of potassium and chloride in the black liquor, comprising:

digesting wood in a digester and separating pulp from the wood and producing the black liquor;

concentrating the black liquor forming concentrated black liquor;

directing the concentrated black liquor to a recovery boiler and burning the concentrated black liquor and, in the process, producing ash that contains potassium, chloride and sodium;

reducing the concentration of potassium and chloride in at least a portion of the ash while recovering sodium from the ash by:

i. mixing the ash with an aqueous solution and dissolving the ash in the aqueous solution to form a dissolved ash solution;

ii. concentrating the dissolved ash solution, thus forming a concentrated dissolved ash solution and forming precipitated sodium sulfate and precipitated sodium carbonate;

iii. separating the precipitated sodium sulfate and the precipitated sodium carbonate; and then

iv. directing the concentrated dissolved ash solution to a crystallizer and adiabatically cooling the concentrated dissolved ash solution to produce a glaserite slurry and a purge stream containing chloride.

2. The method of claim 1 including directing the glaserite slurry to a solid-liquid separator and separating glaserite crystals from the glaserite slurry.

3. The method of claim 2 wherein the solid-liquid separator also produces a liquid recycle stream and wherein the liquid recycle stream is recycled to the crystallizer that produces the glaserite slurry.

4. The method of claim 1 wherein concentrating the dissolved ash solution includes evaporating the dissolved ash solution in an evaporator which precipitates sodium sulfate and sodium carbonate.

5. The method of claim 1 wherein the precipitated sodium carbonate forms a part of precipitated burkeite.

6. The method of claim 4 wherein evaporating the dissolved ash solution also precipitates burkeite.

7. The method of claim 2 including separating sodium sulfate from the glaserite crystals by leaching the sodium sulfate from the glaserite crystals.

8. The method of claim 1 including recycling a portion of the purge stream containing chloride to an evaporator that concentrates the dissolved ash solution.

9. The method of claim 2 wherein the solid-liquid separator that separates glaserite crystals from the glaserite slurry produces a liquid recycle stream containing chloride that is recycled to the crystallizer.

10. The method of claim 7 including recycling the sodium sulfate separated from the glaserite crystals to one or more evaporators that concentrate the dissolved ash solution in step (ii).

11. The method of claim 1 including: (1) recycling at least a part of the purge stream containing chloride to one or more evaporators located upstream of the crystallizer.

12. A method recovering wood pulping chemicals from black liquor produced in a wood pulping process in a pulp mill, comprising:

burning the black liquor in a recovery boiler and forming ash containing sodium, potassium and chloride;

dissolving at least a portion of the ash to form a dissolved ash solution;

directing the dissolved ash solution to one or more evaporators and concentrating the dissolved ash solution and precipitating sodium sulfate forming a concentrated dissolved ash solution and precipitated sodium sulfate;

recovering the precipitated sodium sulfate; then

directing the concentrated dissolved ash solution to a crystallizer and cooling the concentrated dissolved ash solution to form a glaserite slurry and a mother liquor containing chloride;

wherein cooling the concentrated dissolved ash in the crystallizer causes glaserite to precipitate from the concentrated dissolved ash solution and forms part of the glaserite slurry; and

directing the glaserite slurry from the crystallizer.

13. The method of claim 12 wherein the glaserite slurry includes at least some chloride and wherein the method includes removing chloride from the concentrated dissolved ash solution by directing the glaserite slurry from the crystallizer.

14. The method of claim 12 wherein the mother liquor includes at least some chloride and the method includes recycling the mother liquor to the one or more evaporators.

15. The method of claim 12 including directing the glaserite slurry to a solid-liquid separator and separating the glaserite slurry into glaserite crystals and a liquid stream; and recycling the liquid stream to the crystallizer.

16. The method of claim 15 including mixing an aqueous solution with the glaserite crystals and leaching sodium sulfate from the glaserite crystals to form potassium sulfate.

17. The method of claim 16 including recycling the sodium sulfate leached from the glaserite crystals to the one or more evaporators.

18. The method of claim 12 including adiabatically cooling the concentrated dissolved ash solution in the crystallizer.

19. The method of claim 12 wherein the crystallizer is a flash crystallizer and cools the concentrated dissolved ash solution to approximately 35° C. which results in the crystallization of glaserite.

20. The method of claim 12 including purging at least a portion of the mother liquor to remove chloride.

21. The method of claim 12 wherein the mother liquor is directed from the crystallizer in a mother liquor stream, and wherein there is provided a purge stream that extends from the mother liquor stream and wherein the purge stream is utilized to remove chloride from the dissolved ash solution.

Assignments (3)
CHANGE OF NAME Recorded Jan 28, 2015
From: VEOLIA WATER SOLUTIONS & TECHNOLOGIES NORTH AMERICA, INC.
To: VEOLIA WATER TECHNOLOGIES, INC.
Reel/Frame 034827/0619 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 10, 2013
From: HPD, LLC
To: VEOLIA WATER SOLUTIONS & TECHNOLOGIES NORTH AMERICA, INC.
Reel/Frame 029601/0575 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2012
From: BEGLEY, MICHAEL S.; GALLOT, JEAN-CLAUDE
To: HPD, LLC
Reel/Frame 029462/0314 →
Continuity (2)
Provisional Application 61676102 · Jul 26, 2012
Related Publication 20140027076A1 · Jan 30, 2014