IP Library › Granted Patent US 10,023,937
Granted Patent B2
US 10,023,937 · App. 14/862,866 · Granted Jul 17, 2018

Adsorbent for rare earth element and method for recovering rare earth element

Inventors: Takeshi Ogata (Tsukuba, JP); Mikiya Tanaka (Tsukuba, JP)
Assignee: NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY
C22B59/00B01J20/103B01J20/22B01J20/261B01J20/265B01J20/3071B01J20/321B01J20/3204B01J20/328B01J20/3212B01J20/3251B01J20/3259B01J20/3425B01J20/3475C02F1/288C08F110/02C08F110/06C08G73/02C08G73/0206C08K3/36C22B3/24C22B7/006C02F1/285C02F1/286C02F2101/10Y02P10/234
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Quick Facts
Patent No.
US 10,023,937
App. No.
14/862,866
Granted
Jul 17, 2018
Kind
B2
Abstract

An adsorbent for rare earth element and a method for recovering a rare earth element, in which a rare earth element contained in an aqueous solution can be simply and inexpensively adsorbed and recovered, and a rare earth element present in an aqueous solution in combination with a base metal can be selectively adsorbed and recovered. The adsorbent includes a base material and diglycolamic acid introduced into the base material. The method for recovering a rare earth element includes steps of: bringing an aqueous solution containing a rare earth element into contact with the adsorbent for rare earth element to allow the rare earth element to be adsorbed on the adsorbent for rare earth element; and desorbing the rare earth element adsorbed on the adsorbent for rare earth element with an acid of 1 N or less.

Claims (11)

1. An adsorbent for rare earth element which is brought into contact with an aqueous solution containing a rare earth element to adsorb and recover the rare earth element, the adsorbent comprising:

a base material; and

diglycolamic acid introduced into the base material,

wherein the base material is polyethylene or polypropylene.

2. The adsorbent for rare earth element according to claim 1 , wherein the diglycolamic acid has been introduced into the base material by reacting diglycolic acid or diglycolic anhydride with a carrier having a primary amine and/or a secondary amine on the base material.

3. The adsorbent for rare earth element according to claim 2 , wherein the carrier is selected from the group consisting of poly(allylamine), polyethyleneimine, and chitosan.

4. A method for recovering a rare earth element comprising:

bringing an aqueous solution containing a rare earth element into contact with an adsorbent for rare earth element to adsorb the rare earth element on the adsorbent, the adsorbent comprising a base material and diglycolamic acid introduced into the base material; and

desorbing the rare earth element with an acid of 1 N or less.

5. The method for recovering a rare earth element according to claim 4 , wherein the acid is hydrochloric acid.

6. The method for recovering a rare earth element according to claim 5 , wherein the aqueous solution containing a rare earth element is a mixed aqueous solution containing a rare earth element and a base metal in which pH is not adjusted, and the rare earth element is selectively adsorbed and recovered from the mixed aqueous solution.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2015
From: OGATA, TAKESHI; TANAKA, MIKIYA
To: NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY
Reel/Frame 036637/0535 →
Priority Claims (2)
JP 2013-061922 · Mar 25, 2013 · national
JP 2013-174697 · Aug 26, 2013 · national
Continuity (2)
Continuation PCTJP2014058323 · Mar 25, 2014
Related Publication 20160010178A1 · Jan 14, 2016