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Recovery of gallium from Bayer red mud through acidic-leaching-ion-exchange process under normal atmospheric pressure
Fanghai Lu;  Tangfu Xiao;  Jian Lin;  Anjing Li;  Qiong Long;  Fang Huang;  Lihua Xiao;  Xiang Li;  Jiawei Wang;  Qingxiang Xiao;  Haiyan Chen
2018
Source PublicationHydrometallurgy
Volume175Pages:124-132
Abstract

The Bayer red mud (BRM), generally containing 0.002 wt%-0.008 wt% of gallium (Ga), is an overlooked resource of Ga. In this work, an efficient method, called acidic-leaching-ion-exchange process (ALIEP), was developed to extract Ga from BRM. The ALIEP method involved three main steps: the BRM sample was firstly dissolved by mineral acid and the obtained leaching solution was further purified to remove the Fe3+ Consequently, the purified solution, pre-concentrated by re-circulation process, was efficiently treated by ion exchange process for the Ga recovery. The main influencing factors of the acidic-leaching process were systematically investigated. The optimal Ga leaching conditions were determined as HC1 +/- 159 g/L, liquid-to-solid ratio of 8 mL/g, 55 degrees C, and 5 h, attaining Ga leaching rate of 94.77% and the corresponding Ga3+ concentration of 3.91 mg/L in leachate. A nearly complete iron removal from the leachate was achieved by employing LSD-396 resin under conditions of 45 +/- 2 degrees C, resin dosage of 0.6 g/mL and 2 h. Subsequently, the recovery efficiency of Ga from re-circulation leaching solution using the ion-exchange technology was evaluated. The results indicated that an adsorption rate of 59.84% and desorption rate of 95.32% for Ga were obtained. The concentrated solution contained 97.54 mg/L of Ga, which was enriched 24.95 and 4.75 times compared to the initial leaching solution of 3.91 mg/L and re-circulation solution of 20.52 mg/L, respectively.

KeywordBayer Red Mud (Brm) gallium acidic-leaching-ion-exchange Process (Aliep) recovery
Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/8652
Collection环境地球化学国家重点实验室
Affiliation1.State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China
2.University of Chinese Academy of Sciences, Beijing 100049, China
3.School of Materials and Metallurgical Engineering, Guizhou Institute of Technology, Guiyang 550003, China
4.School of Environmental Science and Engineering, Guangzhou University, Guangzhou 510006, China
Recommended Citation
GB/T 7714
Fanghai Lu;Tangfu Xiao;Jian Lin;Anjing Li;Qiong Long;Fang Huang;Lihua Xiao;Xiang Li;Jiawei Wang;Qingxiang Xiao;Haiyan Chen. Recovery of gallium from Bayer red mud through acidic-leaching-ion-exchange process under normal atmospheric pressure[J]. Hydrometallurgy,2018,175:124-132.
APA Fanghai Lu;Tangfu Xiao;Jian Lin;Anjing Li;Qiong Long;Fang Huang;Lihua Xiao;Xiang Li;Jiawei Wang;Qingxiang Xiao;Haiyan Chen.(2018).Recovery of gallium from Bayer red mud through acidic-leaching-ion-exchange process under normal atmospheric pressure.Hydrometallurgy,175,124-132.
MLA Fanghai Lu;Tangfu Xiao;Jian Lin;Anjing Li;Qiong Long;Fang Huang;Lihua Xiao;Xiang Li;Jiawei Wang;Qingxiang Xiao;Haiyan Chen."Recovery of gallium from Bayer red mud through acidic-leaching-ion-exchange process under normal atmospheric pressure".Hydrometallurgy 175(2018):124-132.
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