Extraction of scandium from scandium-rich material derived from bauxite ore residues

被引:62
作者
Li, Guanghui [1 ]
Ye, Qing [1 ]
Deng, Bona [1 ]
Luo, Jun [1 ]
Rao, Mingjun [1 ]
Peng, Zhiwei [1 ]
Jiang, Tao [1 ]
机构
[1] Cent S Univ, Sch Minerals Proc & Bioengn, Changsha 410083, Hunan, Peoples R China
基金
中国国家自然科学基金;
关键词
Bauxite residue; Scandium; Phosphoric acid leaching; Solvent extraction; P204; RARE-EARTH-ELEMENTS; RED MUD; SOLVENT-EXTRACTION; IONIC LIQUID; RECOVERY; SEPARATION; REGION;
D O I
10.1016/j.hydromet.2018.01.007
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
In our previous study, it has been proven that the content of scandium could be enriched to about 0.04 wt% in a solid product after proper pretreatment of bauxite ore residue. The extraction of scandium from this scandium rich material was investigated in the present study, with emphasis on both acid leaching of various components and solvent extraction of scandium from acidic leachate. It showed that more than 90% of Sc2O3 was leached out from this material with 6-8 mol/L phosphoric acid at 120-140 degrees C for 60-90 min and liquid-solid ratio of 10-12 mL/g. The presence of phosphoric acid promoted the leaching of scandium due to increased dissolution of perovskite, which converted to CaHPO4 and (TiO)(3)(PO4)(2) and then TiO2 precipitates through TiO2+ hydrolysis precipitation. In the subsequent solvent extraction step, about 98% of Sc3+ was further extracted from the acidic leachate with 2% D2EHPA (P204) at pH 1.8 and aqueous-organic ratio of 3:1. Compared with hydrochloric acid, sulfuric acid and nitric acid, phosphoric acid had much higher selectivity in separation of Sc from the other main constituents, as demonstrated by its large separation coefficient (beta) between scandium and other elemental species (e.g., for iron, beta(Sc/Fe) = 2703).
引用
收藏
页码:62 / 68
页数:7
相关论文
共 31 条
[11]   Scandium of the Kovdor baddeleyite-apatite-magnetite deposit (Murmansk Region, Russia): Mineralogy, spatial distribution, and potential resource [J].
Kalashnikov, A. O. ;
Yakovenchuk, V. N. ;
Pakhomovsky, Ya A. ;
Bazai, A. V. ;
Sokharev, V. A. ;
Konopleva, N. G. ;
Mikhailova, J. A. ;
Goryainov, P. M. ;
Ivanyuk, G. Yu .
ORE GEOLOGY REVIEWS, 2016, 72 :532-537
[12]   Bauxite residue issues: II. options for residue utilization [J].
Klauber, C. ;
Graefe, M. ;
Power, G. .
HYDROMETALLURGY, 2011, 108 (1-2) :11-32
[13]  
LI GH, 2016, METALS-BASEL, V6, DOI DOI 10.3390/MET6110294
[14]   Stepwise extraction of valuable components from red mud based on reductive roasting with sodium salts [J].
Li, Guanghui ;
Liu, Mingxia ;
Rao, Mingjun ;
Jiang, Tao ;
Zhuang, Jinqiang ;
Zhang, Yuanbo .
JOURNAL OF HAZARDOUS MATERIALS, 2014, 280 :774-780
[15]   Review on treatment and utilization of bauxite residues in China [J].
Liu, Wanchao ;
Yang, Jiakuan ;
Xiao, Bo .
INTERNATIONAL JOURNAL OF MINERAL PROCESSING, 2009, 93 (3-4) :220-231
[16]   Metallurgical process for valuable elements recovery from red mud-A review [J].
Liu, Zhaobo ;
Li, Hongxu .
HYDROMETALLURGY, 2015, 155 :29-43
[17]   Selective extraction and separation of thorium from rare earths by a phosphorodiamidate extractant [J].
Lu, Youcai ;
Wei, Haiqin ;
Zhang, Zhifeng ;
Li, Yanling ;
Wu, Guolong ;
Liao, Wuping .
HYDROMETALLURGY, 2016, 163 :192-197
[18]   Study of adsorption behavior of a new synthesized resin containing glycol amic acid group for separation of scandium from aqueous solutions [J].
Nghiem Van Nguyen ;
Iizuka, Atsushi ;
Shibata, Etsuro ;
Nakamura, Takashi .
HYDROMETALLURGY, 2016, 165 :51-56
[19]   SELECTIVE SEPARATION AND DETERMINATION OF SCANDIUM FROM YTTRIUM AND LANTHANIDES IN RED MUD BY A COMBINED ION EXCHANGE/SOLVENT EXTRACTION METHOD [J].
OCHSENKUHNPETROPULU, M ;
LYBEROPULU, T ;
PARISSAKIS, G .
ANALYTICA CHIMICA ACTA, 1995, 315 (1-2) :231-237
[20]   Recovery of lanthanides and yttrium from red mud by selective leaching [J].
OchsenkuhnPetropulu, M ;
Lyberopulu, T ;
Ochsenkuhn, KM ;
Parissakis, G .
ANALYTICA CHIMICA ACTA, 1996, 319 (1-2) :249-254