Semi-industrial experimental study on bauxite separation using a cell–column integration process

Ning-ning Zhang , Chang-chun Zhou , Long-fei Cong , Wen-long Cao , You Zhou

International Journal of Minerals, Metallurgy, and Materials ›› 2016, Vol. 23 ›› Issue (1) : 7 -15.

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International Journal of Minerals, Metallurgy, and Materials ›› 2016, Vol. 23 ›› Issue (1) : 7 -15. DOI: 10.1007/s12613-016-1205-4
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Semi-industrial experimental study on bauxite separation using a cell–column integration process

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Abstract

The cyclonic-static micro-bubble flotation column (FCSMC) is a highly efficient mineral processing equipment. In this study, a cell-column (FCSMC) integration process was investigated for the separation of bauxite and its feasibility was analyzed on a theoretical basis. The properties of low-grade bauxite ore from Henan Province, China were analyzed. Parameters such as reagent dosage, scraping bubble time, and pressure of the circulating pump during the sorting process were investigated and optimized to improve the flotation efficiency. On the basis of these parameters, continuous separation experiments were conducted. Bauxite concentrate with an aluminum-to-silicon (A/S) mass ratio of 6.37 and a 77.63wt% recovery rate were achieved via a flow sheet consisting of “fast flotation using a flotation cell, one roughing flotation and one cleaning flotation using flotation columns”. Compared with the full-flotation-cells process, the cell–column integration process resulted in an increase of the A/S ratio by 0.41 and the recovery rate by 17.58wt%. Cell–column integration separation technology represents a new approach for the separation of middle-to-low-grade bauxite ore.

Keywords

bauxite / separation / flotation / flotation columns / flotation cells

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Ning-ning Zhang, Chang-chun Zhou, Long-fei Cong, Wen-long Cao, You Zhou. Semi-industrial experimental study on bauxite separation using a cell–column integration process. International Journal of Minerals, Metallurgy, and Materials, 2016, 23(1): 7-15 DOI:10.1007/s12613-016-1205-4

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References

[1]

Huang C.B., Wang Y.H., Chen X.H., Lan Y., Hu Y.M., Yu F.S. Review of research on desilication of bauxite ores by reverse flotation. Met. Mine, 2005, 6, 21.

[2]

Ma C.J., Tian X.J., Liu R., Yang X. Selection of bayer digestion technology and equipment for Chinese bauxite. Light Metals: Proceedings of the Technical Sessions of the TMS Light Metals Committee, 125th TMS Annual Meeting, Anaheim, 1996 187.

[3]

Papanastassiou D., Csoke B., Solymar K. Improved preparation of the Greek diasporic bauxite for Bayer-process. Light Metals: Proceedings of the Technical Sessions of the TMS Light Metals Committee, 131th TMS Annual Meeting, Seattle, 2002 67.

[4]

Zhong H., Liu G.Y., Xia L.Y., Lu Y.P., Hu Y.H., Zhao S.G., Yu X.Y. Flotation separation of diaspore from kaolinite, pyrophyllite and illite using three cationic collectors. Miner. Eng., 2008, 21(12-14): 1055.

[5]

Wang Y., Hu Y., He P., Gu G. Reverse flotation for removal of silicates from diasporic-bauxite. Miner. Eng., 2004, 17(1): 63.

[6]

Xu Z.H., Plitt V., Liu Q. Recent advances in reverse flotation of diasporic ores: a Chinese experience. Miner. Eng., 2004, 17(9-10): 1007.

[7]

Liu G.Y., Zhong H., Hu Y.H., Zhao S.G., Xia L.Y. The role of cationic polyacrylamide in the reverse flotation of diasporic bauxite. Miner. Eng., 2007, 20(13): 1191.

[8]

Li L., Liu J.T., Wang Y.T., Cao Y.J., Zhang H.J., Yu H.S. Experimental research on anionic reverse flotation of hematite with a flotation column. Procedia Earth Planet. Sci., 2009, 1(1): 791.

[9]

Cao Y.J., Gui X.H., Ma Z.L., Yu X.X., Chen X.D., Zhang X.P. Process mineralogy of copper-nickel sulphide flotation by a cyclonic-static micro-bubble flotation column. Min. Sci. Technol., 2009, 19(6): 784.

[10]

Li G.S., Liu J.T., Cao Y.J., Wang D.P. Effect of a cyclonic flotation column on the separation of magnesium from phosphate ore. Min. Sci. Technol., 2011, 21(5): 647.

[11]

Li G.S., Cao Y.J., Liu J.T., Wang D.P. Cyclonic flotation column of siliceous phosphate ore. Int. J. Miner. Process., 2012, 110-111, 6.

[12]

Liu J.T., Xu H.X., Li X.B. Cyclonic separation process intensification oil removal based on microbubble flotation. Int. J. Min. Sci. Technol., 2013, 23(3): 415.

[13]

Ran J.C., Liu J.T., Zhang C.J., Wang D.Y., Li X.B. Experimental investigation and modeling of flotation column for treatment of oily wastewater. Int. J. Min. Sci. Technol., 2013, 23(5): 665.

[14]

Liu J.T. Study on Cyclonic-static Micro Bubble Flotation Column and Preparation Technology of Clean Coal, 1999, Beijing, China University of Mining and Technology, 102.

[15]

Zhang H.J., Liu J.T., Wang Y.T., Cao Y.J., Ma Z.L., Li X.B. Cyclonic-static micro-bubble flotation column. Miner. Eng., 2013, 45, 1.

[16]

Zuniga H.G. Flotation recovery is an exponential function of time. Bol. Min. Soc. Nac. Min., 1935, 47, 83.

[17]

Zhou C.C. Study of Short Flowsheet Separation with Flotation Column for Middle-low Grade Bauxite, 2010, Xuzhou, China University of Mining and Technology, 38.

[18]

Wang D.P. Study on Column Flotation of Middle-Low Grade Collophane: Strengthened Process and Short Flow Sheet, 2011, Xuzhou, China University of Mining and Technology, 50.

[19]

Han W. Numerical Study of Multi-phase Flow Characteristic and Flotation Dynamics Performance in Flotation Machine, 2009, Lanzhou, Lanzhou University of Technology, 61.

[20]

Wang Y.T. Study on Structure and Properties of Novel Micro Bubble Generator of Flotation Column, 1995, Beijing, China University of Mining and Technology, 65.

[21]

Yoon R.H., Luttrell G.H. The effect of bubble size on fine particle flotation. Miner. Process. Extr. Metall. Rev., 1989, 5(1-4): 101.

[22]

Yan X.K. Multi-flow Process Simulation and Fluid Dynamics Research on Column Flotation [Dissertation]. China University of Mining and Technology, Xuzhou, 2013 103.

[23]

Zhou C.C., Liu J.T., Li Z., Ren X.C., Yan B. Study of short flowsheet separation with flotation column for middle- low grade bauxite. J. China Univ. Sci. Technol., 2010, 39(1): 116.

[24]

Zhang G.F., Feng Q.M., Lu Y.P., Liu G.Y., Ou L.M. Effect of sodium hexametaphosphate on flotation of bauxite. J. Cent. South Univ. Technol. Nat. Sci., 2001, 32(2): 127.

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