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Original Articles

Investigating Slime Coating in Coal Flotation Using the Rheological Properties at Low CaCl2 Concentrations

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Pages 237-249 | Received 30 Mar 2016, Accepted 12 Sep 2016, Published online: 27 Oct 2016

References

  • Xu, Z., J. Liu, J. W. Choung, and Z. Zhou. 2003. Electrokinetic study of clay interactions with coal in flotation. International Journal of Mineral Processing 68(1–4): 183–196.
  • Arnold, B. J., and F. F. Aplan. 1986. The effect of clay slimes on coal flotation, Part I: The nature of the clay. International Journal of Mineral Processing 17(3): 225–242.
  • Oats, W. J., O. Ozdemir, and A. V. Nguyen. 2010. Effect of mechanical and chemical clay removals by hydrocyclone and dispersants on coal flotation. Minerals Engineering 23(5): 413–419.
  • Edwards, C. R., W. B. Kipkie, and G. E. Agar. 1980. The effect of slime coatings of the serpentine minerals, chrysotile and lizardite, on pentlandite flotation. International Journal of Mineral Processing 7(1): 33–42.
  • Polat, M., H. Polat, and S. Chander. 2003. Physical and chemical interactions in coal flotation. International Journal of Mineral Processing 72(1–4): 199–213.
  • Connelly, D. 2011. High clay ores — A mineral processing nightmare. Australian Journal of Mining 24: 28–29.
  • Trahar, W. J. 1981. A rational interpretation of the role of particle size in flotation. International Journal of Mineral Processing 8(4): 289–327.
  • Forbes, E., K. J. Davey, and L. Smith. 2014. Decoupling rehology and slime coatings effect on the natural flotability of chalcopyrite in a clay-rich flotation pulp. Minerals Engineering 56: 136–144.
  • Missana, T., and A. Adell. 2000. On the applicability of DLVO theory to the prediction of clay colloids stability. Journal of Colloid and Interface Science 230(1): 150–156.
  • Zhijun, Z., and J. Liu. 2015. Effect of calcium ions on induction time between a coal particle and air bubble. International Journal of Coal Preparation and Utilization 35: 31–38.
  • Zhang, H. 2015. Effect of electrolyte addition on flotation response of coal. Physicochemical Problems of Mineral Processing 51(1): 257–267.
  • Craig, V. S. J., B. W. Ninham, and R. M. Pashley. 1993. The effect of electrolytes on bubble coalescence in water. Journal of Physical Chemistry 97(39): 10192–10197.
  • He, M., Y. Wang, and E. Forssberg. 2004. Slurry rheology in wet ultrafine grinding of industrial minerals: A review. Powder Technology 147(1–3): 94–112.
  • Farrokhpay, S., and M. Zanin. 2012. An investigation into the effect of water quality on froth stability. Advanced Powder Technology 23(4): 493–497.
  • Cruz, N., Y. Peng, and E. Wightman. 2015. Interactions of clay minerals in copper–gold flotation: Part 2 — Influence of some calcium bearing gangue minerals on the rheological behaviour. International Journal of Mineral Processing 141: 51–60.
  • Wang, B., and Y. Peng. 2013. The behaviour of mineral matter in fine coal flotation using saline water. Fuel 109: 309–315.
  • Ozdemir, O., E. Taran, M. A. Hampton, S. I. Karakashev, and A. V. Nguyen. 2009. Surface chemistry aspects of coal flotation in bore water. International Journal of Mineral Processing 92(3–4): 177–183.
  • Wang, B., and Y. Peng. 2014. The interaction of clay minerals and saline water in coarse coal flotation. Fuel 134: 326–332.
  • Liu, D., and Y. Peng. 2014. Reducing the entrainment of clay minerals in flotation using tap and saline water. Powder Technology 253: 216–222.
  • Pawlik, M., J. S. Laskowski, and F. Melo. 2004. Effect of coal surface wettability on aggregation of fine coal particles. Coal Preparation 24: 233–248.
  • Brandenburg, U., and G. Lagaly. 1988. Rheological properties of sodium montmorillonite dispersions. Applied Clay Science 3: 263–279.
  • De Kretser, R., P. J. Scales, and D. V. Boger. 1997. Improving clay-based tailings disposal: Case study on coal tailings. AIChE Journal 43(7): 1894–1903.
  • Zhang, Z., J. Liu, Z. Xu, and L. Ma. 2013. Effects of clay and calcium ions on coal flotation. International Journal of Mining Science and Technology 23(5): 689–692.
  • Ozdemir, O. 2013. Specific ion effect of chloride salts on collectorless flotation of coal. Physicochemical Problems of Mineral Processing 49(2): 511–524.
  • Zhang, M., and Y. Peng. 2015. Effect of clay minerals on pulp rheology and the flotation of copper and gold minerals. Minerals Engineering 70: 8–13.
  • Savassi, O. N., D. J. Alexander, J. P. Franzidis, and E. V. Manlapig. 1998. An empirical model for entrainment in industrial flotation plants. Minerals Engineering 11(3): 243–256.
  • Farrokhpay, S., I. Ametov, and S. Grano. 2011. Improving the recovery of low grade coarse composite particles in porphyry copper ores. Advanced Powder Technology 22(4): 464–470.

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