IP Library Granted Patent US 10,443,111
Granted Patent B2
US 10,443,111 · App. 15/563,478 · Granted Oct 15, 2019

Method for removing iron from iron-containing solution and method for recovering valuable metals

Inventors: Junichi Arakawa (Tsuruga, JP); Junichi Ito (Tsuruga, JP); Takuya Yokota (Hitachi, JP)
Assignee: JX NIPPON MINING & METALS CORPORATION
C22B3/08C01G45/02C01G49/02C22B3/44C22B7/00C22B7/007C22B23/00C22B47/00H01M10/54Y02P10/234Y02W30/84
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Quick Facts
Patent No.
US 10,443,111
App. No.
15/563,478
Granted
Oct 15, 2019
Kind
B2
Abstract

The present invention provides a method for removing iron from an iron-containing solution containing an iron ion, comprising adding a lithium ion battery cathode material containing manganese to an acidic sulfuric acid solution to obtain a cathode material-containing solution, and then precipitating a manganese ion as manganese dioxide in a mixed solution obtained by mixing the iron-containing solution with the cathode material-containing solution while precipitating the iron ion contained in the iron-containing solution as a solid.

Claims (12)

1. A method for removing iron from an iron-containing solution containing an iron ion, comprising:

adding a lithium ion battery cathode material containing manganese to an acidic sulfuric acid solution to obtain a cathode material-containing solution, and then precipitating a manganese ion as manganese dioxide in a mixed solution obtained by mixing the iron-containing solution with the cathode material-containing solution while precipitating the iron ion contained in the iron-containing solution as a solid.

2. The method for removing iron from the iron-containing solution according to claim 1 , wherein an iron ion concentration in the iron-containing solution is from 50 mg/L to 1 g/L.

3. The method for removing iron from the iron-containing solution according to claim 1 , wherein a pH of the mixed solution obtained by mixing the iron-containing solution with the cathode material-containing solution is from 1 to 2.

4. The method for removing iron from the iron-containing solution according to claim 1 , wherein an oxidation-reduction potential value of the mixed solution obtained by mixing the iron-containing solution with the cathode material-containing solution is 900 mV or more.

5. The method for removing iron from the iron-containing solution according to claim 1 , wherein hydrogen peroxide water is added when the lithium ion battery cathode material containing manganese is leached.

6. The method for removing iron from the iron-containing solution according to claim 1 , wherein manganese dioxide is added to the mixed solution obtained by mixing the iron-containing solution with the cathode material-containing solution.

7. The method for removing iron from the iron-containing solution according to claim 6 , wherein manganese dioxide added to the mixed solution is manganese dioxide contained in a leached residue of a lithium ion battery cathode material containing manganese.

8. The method for removing iron from the iron-containing solution according to claim 1 , wherein the lithium ion battery cathode material further comprises, in addition to manganese, at least one cathode material-forming metal making up the lithium ion battery cathode material, and wherein the iron-containing solution further comprises the cathode material-forming metal before mixed with the cathode material-containing solution.

9. The method for removing iron from the iron-containing solution according to claim 8 , wherein the at least one cathode material-forming metal is cobalt and/or nickel.

10. A method for recovering at least one valuable metal from at least one cathode material-forming metal contained in a lithium ion battery cathode material and an iron-containing solution by using the method for removing iron from the iron-containing solution according to claim 8 , comprising:

carrying out the method for removing iron from the iron-containing solution, and then recovering the at least one valuable metal in the iron-containing solution as well as the at least one valuable metal in the lithium ion battery cathode material.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2024
From: JX ADVANCED METALS CORPORATION
To: JX METALS CIRCULAR SOLUTIONS CO., LTD.
Reel/Frame 068665/0857 →
CHANGE OF NAME Recorded Jul 29, 2024
From: JX METALS CORPORATION
To: JX ADVANCED METALS CORPORATION
Reel/Frame 068179/0696 →
CHANGE OF NAME Recorded Jun 27, 2024
From: JX NIPPON MINING & METALS CORPORATION
To: JX METALS CORPORATION
Reel/Frame 068050/0527 →
CHANGE OF ADDRESS Recorded Aug 11, 2021
From: JX NIPPON MINING & METALS CORPORATION
To: JX NIPPON MINING & METALS CORPORATION
Reel/Frame 057160/0114 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2018
From: ARAKAWA, JUNICHI; ITO, JUNICHI; YOKOTA, TAKUYA
To: JX NIPPON MINING & METALS CORPORATION
Reel/Frame 047799/0506 →
Priority Claims (1)
JP 2015-072586 · Mar 31, 2015 · national
Continuity (1)
Related Publication 20180073098A1 · Mar 15, 2018
Cited By (2)
US 12,522,514 US 12,534,776