Citation: SHEN Lu, CHEN Ji, DENG Yuefeng. Extraction of Sc(Ⅲ) Using a Bifunctional Ionic Liquid [A336][P507][J]. Chinese Journal of Applied Chemistry, ;2016, 33(3): 330-335. doi: 10.11944/j.issn.1000-0518.2016.03.150305 shu

Extraction of Sc(Ⅲ) Using a Bifunctional Ionic Liquid [A336][P507]

  • Corresponding author: CHEN Ji, 
  • Received Date: 24 August 2015
    Available Online: 21 October 2015

    Fund Project:

  • Extraction of Sc(Ⅲ) from HNO3 medium and HCl medium using a bifunctional ionic liquid extractant [A336][P507] was investigated. The results show that the extractability of Sc(Ⅲ) by [A336][P507] is high at low acidity. The extraction efficiency of Sc(Ⅲ) decreases when the aqueous phase acidity increases from 0.5 mol/L to 4 mol/L. The extraction mechanism was investigated. The extracted complex of Sc(Ⅲ) is different from light REs due to the smaller radius of Sc(Ⅲ) and the competitive effect of P-O and P=O. The extraction efficiency of Sc(Ⅲ) is enhanced with the increase concentration of NaCl or NaNO3 in the aqueous phase. Thermodynamic functions of the extraction reaction demonstrate that the extraction of Sc(Ⅲ) is an exothermic process. Extraction of other rare earth ions at low acidity by the extractant is negligible suggesting that [A336][P507] has potential in industrial applications of Sc(Ⅲ) extraction and separation over other rare earth ions.
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    1. [1]

      [1] ZHANG Yuxue. Types of Sc Deposits and Research Prospects[J]. Geol-Geochem,1997,77(60):116-119(in Chinese).张玉学. 分散元素钪的矿床类型与研究前景[J]. 地质地球化学,1997,77(60):116-119.

    2. [2]

      [2] CHI Ru'an,WANG Dianzuo. Rare Earth Dressing and Extraction Technology[M]. Beijing:Science Press,1996:293(in Chinese).池汝安,王淀佐. 稀土选矿与提取技术[M]. 北京:科学出版社,1996:293.

    3. [3]

      [3] XIAO Jinkai. Distribution Characteristics of Industrial Waste Red Mud[J]. Geol-Geochem,1996,(2):82-86(in Chinese).肖金凯. 工业废渣赤泥中钪的分布特征[J]. 地质地球化学,1996,(2):82-86.

    4. [4]

      [4] XIAO Jinkai,LEI Jianquan,XIA Xiang. Some Characteristics of Scandium in Bauxite from Central Guizhou as well as in Red Mud[J]. Acta Miner Sin,1994,14(4):388-393(in Chinese).肖金凯,雷剑泉,夏祥. 黔中铝土矿及赤泥中钪的某些特征[J]. 矿物学报,1994,14(4):388-393.

    5. [5]

      [5] LIAO Chunsheng,Xu Gang,JIA Jiangtao. Recovery and Applicaion of Scandium-A Strategic Resource of New Centry[J]. J Chinese Rare Earth Soc,2001,19(1):289-297(in Chinese).廖春生,徐刚,贾江涛. 新世纪的战略资源-钪的提取与应用[J]. 中国稀土学报,2001,19(4):289-297.

    6. [6]

      [6] WANG Xiquan. The Separation and Enrichment of Sc by P204 Solvent Extraction[J]. Liaoning Chem Ind,1998,27(6):320-322(in Chinese).王喜全. 用P204作萃取剂分离富集钪[J]. 辽宁化工,1998,27(6):320-322.

    7. [7]

      [7] Changchun Institute of Applied Chemistry, Chinese Academy of Sciences. Rare Earth Chemical Proceedings[M]. Beijing:Science Press,1982(in Chinese).中国科学院长春应用化学研究所. 稀土化学论文集[M]. 北京:科学出版社,1982.

    8. [8]

      [8] Li D Q,Wang C. Solvent Extraction of Scandium(Ⅲ) by Cyanex 923 and Cyanex 925[J]. Hydrometallurgy,1998,48(3):301-312.

    9. [9]

      [9] Whitehead J A,Lawrance G A,McCluskey A. ‘Green’ Leaching: Recyclable and Selective Leaching of Gold-Bearing Ore in An Ionic Liquid[J]. Green Chem,2004,6(7):313-315.

    10. [10]

      [10] Nakashima K,Kubota F,Maruyama T,et al. Ionic liquids as a Novel Solvent for Lanthanide Extraction[J]. Anal Sci,2003,19(8):1097-1098.

    11. [11]

      [11] Sun X Q,Ji Y,Liu Y,et al. An Engineering-Purpose Preparation Strategy for Ammonium-Type Ionic Liquid with High Purity[J]. AlChE J,2010,56(4):989-996.

    12. [12]

      [12] Guo L,Chen J,Shen L,et al. Highly Selective Extraction and Separation of Rare Earths(Ⅲ) Using Bifunctional Ionic Liquid Extractant[J]. ACS Sustain Chem Eng,2014,2(8):1968-1975.

    13. [13]

      [13] Zhang D L,Wang W,Deng Y F,et al. Extraction and Recovery of Cerium(Ⅳ) and Fluorine(Ⅰ) from Sulfuric Solutions Using Bifunctional Ionic Liquid Extractants[J]. Chem Eng J,2012,179(1):19-25.

    14. [14]

      [14] Wang W,Yang H L,Cui H M,et al. Application of Bifunctional Ionic Liquid Extractants [A336][CA-12] and [A336][CA-100] to the Lanthanum Extraction and Separation from Rare Earths in the Chloride Medium[J]. Ind Eng Chem Res,2011,50(12):7534-7541.

    15. [15]

      [15] Sun X Q,Ji Y,Hu F C,et al. The Inner Synergistic Effect of Bifunctional Ionic Liquid Extractant for Solvent Extraction[J]. Talanta,2010,81(4/5):1877-1883.

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