IP Library Granted Patent US 10,391,456
Granted Patent B2
US 10,391,456 · App. 14/616,227 · Granted Aug 27, 2019

Electrolyte chemistry and improved stack performance in high brine concentration electrodialysis

Inventors: Thomas D. Hayes (Schaumburg, IL); Blaine F. Severin (Okemos, MI)
Assignee: GAS TECHNOLOGY INSTITUTE
B01D65/027B01D61/52B01D2311/12B01D2311/246B01D2313/345B01D2321/22B01D2321/223
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Quick Facts
Patent No.
US 10,391,456
App. No.
14/616,227
Granted
Aug 27, 2019
Kind
B2
Abstract

Methods for improving ion flux and energy efficiency in a membrane stack of an electrodialysis unit wherein the membrane stack is disposed between an anode and a cathode each in an electrolyte of a selected concentration. Methods include increasing the concentration of the electrolyte, adding a strong base to the electrolyte and adding buffering anions to the electrolyte. Methods for cleaning the electrodes of such a unit involving involve applying a pulsed polarity reversal to the electrodes. Also provided are methods for improving unit operation by increasing the basicity of the electrolyte to the anode and increasing the acidity of the electrolyte to the cathode or alternatively or in addition, by applying heat to increase the operating temperature of at least one of the electrolyte and the treated water stream.

Claims (18)

1. In an electrodialysis unit comprising an anode and a cathode, the anode and the cathode both having an electrolyte solution of a selected concentration continuously applied to both the anode and the cathode and with a membrane stack disposed between the anode and the cathode, the membrane stack comprising pairs of cationic and anionic selective membranes to segregate increasingly dilute salts streams from concentrated salts streams by acting upon a salt solution, wherein the salt solution, dilute salts streams, and concentrated salts streams are distinct and separate from the electrolyte solution and wherein the salt solution has an ion concentration and contains at least 0.5% TDS, a method for improving ion flux and energy efficiency in the stack, the method comprising at least one technique selected from the group consisting of increasing the concentration of the electrolyte solution to balance the electrolyte concentration to be similar or greater than the ion concentration of the salt solution wherein the electrolyte solution comprises sulfate anions, adding a strong base to the electrolyte solution to increase electrolyte solution pH to 9-12, and adding buffering anions to the electrolyte solution, where the electrolyte solution has a pH of 11-12.

2. The method of claim 1 wherein the selected technique is increasing the concentration of the electrolyte solution to balance the electrolyte concentration to be similar or greater than the ion concentration of the salt solution.

3. The method of claim 2 wherein the concentration of the electrolyte solution is increased to be at least equal to the salt solution being treated.

4. The method of claim 2 wherein the electrolyte solution comprises sodium sulfate.

5. In an electrodialysis unit comprising an anode and a cathode, the anode and the cathode both having an electrolyte solution of a selected concentration continuously applied to both the anode and the cathode and with a membrane stack disposed between the anode and the cathode, the membrane stack comprising pairs of cationic and anionic selective membranes to segregate increasingly dilute salts streams from concentrated salts stream by acting upon a salt solution that is distinct and separate from the electrolyte solution and wherein the salt solution has an ion concentration and contains at least 0.5% TDS, a method for improving ion flux and energy efficiency in the stack, the method comprising:

adding a strong base to the electrolyte solution to increase electrolyte solution pH to 9-12.

6. The method of claim 5 wherein the strong base is sodium hydroxide.

7. The method of claim 5 wherein after the addition the resulting electrolyte solution comprises sufficient hydroxide ions that reaction at the anode is at least 10% oxidation of hydroxide ions and not more than 90% oxidation of water.

8. In an electrodialysis unit comprising an anode and a cathode, the anode and the cathode both having an electrolyte solution of a selected concentration continuously applied to both the anode and the cathode and with a membrane stack disposed between the anode and the cathode, the membrane stack comprising pairs of cationic and anionic selective membranes to segregate increasingly dilute salts streams front concentrated salts stream by acting upon a salt solution that is distinct and separate from the electrolyte solution and wherein the salt solution has an ion concentration and contains at least 0.5% TDS, a method for improving ion flux and energy efficiency in the stack, the method comprising:

adding buffering anions to the electrolyte solution, where the electrolyte solution has a pH of 11-12.

9. The method of claim 8 wherein the added buffering anion is selected from the group consisting of phosphate, borate and combinations thereof.

10. The method of claim 9 wherein the added buffering anion is phosphate.

11. The method of claim 9 wherein the added buffering anion is borate.

12. The method of claim 5 additionally comprising increasing the concentration of the electrolyte solution to balance the electrolyte concentration to be similar or greater than the ion concentration of the salt solution.

13. The method of claim 8 additionally comprising increasing the concentration of the electrolyte solution to balance the electrolyte concentration to be similar or greater than the ion concentration of the salt solution.

14. In an electrodialysis unit comprising an anode and a cathode, the anode and the cathode both having an electrolyte solution of a selected concentration continuously applied to both the anode and the cathode and with a membrane stack disposed between the anode and the cathode, the membrane stack comprising pairs of cationic and anionic selective membranes to segregate increasingly dilute salts streams from concentrated salts stream by acting upon a salt solution that is distinct and separate from the electrolyte solution and wherein the salt solution has an ion concentration and contains at least 0.5% TDS, a method for improving ion flux and energy efficiency in the stack, the method comprising:

adding a strong base to the electrolyte solution to increase electrolyte solution pH to 9-12 and adding buffering anions to the electrolyte solution.

15. The method of claim 5 additionally comprising increasing the concentration of the electrolyte solution to balance the electrolyte concentration to be similar or greater than the ion concentration of the salt solution, and adding buffering anions to the electrolyte solution.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jul 8, 2019
From: INSTITUTE OF GAS TECHNOLOGY
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 049693/0885 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2015
From: HAYES, THOMAS D.; SEVERIN, BLAINE F.
To: GAS TECHNOLOGY INSTITUTE
Reel/Frame 035058/0623 →
Continuity (1)
Related Publication 20160228820A1 · Aug 11, 2016