Mechanistic Study and Application of Anionic/Cationic Combination Collector ST-8 for the Flotation of Spodumene

Author:

Zhao Jun1,Luo Huihua1,Liu Yutong1,Liu Ju1,Peng Liqing1,Cen Mei1,Li Fengyuan1

Affiliation:

1. School of Xingfa Mining Engineering, Wuhan Institute of Technology, Wuhan 430074, China

Abstract

The mechanism of anionic/cationic combination collector ST-8 for the efficient separation of spodumene and feldspar was investigated by flotation tests, surface tension measurements, zeta potential measurements and infrared spectroscopy analysis. The flotation results indicated that when the optimum molar ratio of sodium oleate and dodecylamine was 6:1–10:1 and pH = 8.5, the recovery of spodumene reached a maximum of 80% and that of feldspar reached about 24.5%. Zeta potential measurements showed that the negative shift of the kinetic potential on the surface of spodumene was much stronger than that on the surface of feldspar, indicating that the adsorption capacity of the combined collector on spodumene surface and feldspar surface was greatly different. From the surface tension as well as the synergistic parameters, there was a strong mutual attraction between dodecylamine and sodium oleate, and there was a significant synergistic effect between them. Infrared spectroscopy indicated that the combined collector chemisorbed on the mineral surface, and the intensity of the absorption peak after the action of spodumene was much stronger than that after the action of feldspar. The solution chemistry of the combined collector revealed that at pH 8.5, the positively charged ions RNH3+ and (RNH3+)22+ in dodecylamine and the negatively charged RCOO− and (RCOO−)22− ions in oleic acid form highly reactive complexes to interact with the mineral surface by electrostatic gravitation, thus achieving efficient separation of spodumene and feldspar. Finally, from the closed-circuit test results, a flotation index of 6.34% Li2O grade and 88.51% Li2O recovery was obtained.

Funder

Hubei Province Unveiling System Project

Hubei Province Technological Innovation Major Project

Wuhan Engineering University Graduate Education Innovation Fund Project

Publisher

MDPI AG

Subject

Geology,Geotechnical Engineering and Engineering Geology

Reference24 articles.

1. Dazhe, L. (2004). The use of lithium and its resource development. Chin. J. Saf. Sci., 76–98.

2. Ting, C., and Zihua, K. (2007). Progress of lithium resources and development technology in China. Guangdong Trace Elem. Sci., 6–9.

3. Overview of domestic and foreign lithium mineral resources and their beneficiation process;Wenlong;Mod. Min.,2010

4. Analysis of the current situation and prospect of lithium industry in China;Jing;Chem. Prog.,2011

5. Zhiyong, G. (2013). Fundamental Study on the Relationship between Crystal Anisotropy and Flotation Behavior of Three Calcium-Bearing Minerals. [Ph.D. Thesis, Central South University].

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