IP Library › Granted Patent US 11,939,645
Granted Patent B2
US 11,939,645 · App. 17/056,099 · Granted Mar 26, 2024

Method for extracting lithium from carbonate clay type lithium ore based on ion exchange

Inventors: Hanjie Wen (Guiyang, CN); Hannian Gu (Guiyang, CN); Li Zhu (Baiguo Town, CN); Chongguang Luo (Guiyang, CN); Shengjiang Du (Guiyang, CN)
Assignee: INSTITUTE OF GEOCHEMISTRY, CHINESE ACADEMY OF SCIENCES
C22B26/12C22B1/02C22B3/42
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Quick Facts
Patent No.
US 11,939,645
App. No.
17/056,099
Granted
Mar 26, 2024
Kind
B2
Abstract

This invention discloses a method for extracting lithium from carbonate clay type lithium ore based on ion exchange, which belongs to the field of lithium extraction technologies. This method aims to, with iron salt as the extractant, extract lithium into the solution through exchange reaction with lithium ore, which mainly involves the following steps: have clay type lithium ores crushed and ground prior to high-temperature roasting activation, and then conduct iron exchange reaction by iron salt solution while heating, followed by solid-liquid separation by means of filtration. The filtrate obtained will be lithium-bearing solution, and the extraction rate of lithium can reach as high as over 90%.

Claims (12)

1. A method for extracting lithium from carbonate clay type lithium ore based on ion exchange, the method comprising the following steps:

(1) Crushing: having lithium ore crushed and finely ground;

(2) Roasting treatment: having crushed ore roasted at a temperature of 450-800° C.;

(3) Iron exchange: adding a solution of ferric iron salt to the ore treated as specified in Step (2), and then conducting iron exchange reaction while stifling;

(4) Filtration and separation: conducting solid-liquid separation immediately after the completion of reaction, the filtrate obtained being a lithium-bearing solution.

2. The method for extracting lithium from carbonate clay type lithium ore based on ion exchange according to claim 1 , wherein the ore mentioned in Step (1) is carbonate clay type lithium ore with a particle size thereof being ground to less than 100 mesh.

3. The method for extracting lithium from carbonate clay type lithium ore based on ion exchange according to claim 1 , wherein heat preservation time for the roasting treatment mentioned in Step (2) is 1 h.

4. The method for extracting lithium from carbonate clay type lithium ore based on ion exchange according to claim 1 , wherein the ferric iron salt mentioned in Step (3) is inorganic ferric iron salt.

5. The method for extracting lithium from carbonate clay type lithium ore based on ion exchange according to claim 4 , wherein the inorganic ferric iron salt is ferric sulfate, ferric chloride or ferric nitrate.

6. The method for extracting lithium from carbonate clay type lithium ore based on ion exchange according to claim 1 , wherein a mass fraction of the solution of ferric iron salt is 5-20%.

7. The method for extracting lithium from carbonate clay type lithium ore based on ion exchange according to claim 6 , wherein a ratio between the ore treated as specified in Step (2) and the solution of ferric iron salt is 1 g: 5 mL.

8. The method for extracting lithium from carbonate clay type lithium ore based on ion exchange according to claim 1 , wherein time for the iron exchange reaction mentioned in Step (3) is 1-4 h.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2020
From: WEN, HANJIE; GU, HANNIAN; ZHU, LI; LUO, CHONGGUANG; DU, SHENGJIANG
To: INSTITUTE OF GEOCHEMISTRY, CHINESE ACADEMY OF SCIENCES
Reel/Frame 054388/0264 →
Priority Claims (1)
CN 201910788413.3 · Aug 26, 2019 · national
Continuity (1)
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