600
Views
42
CrossRef citations to date
0
Altmetric
Articles

The Order of Kinetic Models in Coal Fines Flotation

, , &
Pages 113-123 | Received 21 Jul 2015, Accepted 06 Jan 2016, Published online: 20 Oct 2016

References

  • Allan, G. C., and J. T. Woodcock. 2001. A review of the flotation of native gold and electrum. Minerals Engineering 14(9): 931–962.
  • Polat, M., H. Polat, and S. Chander. 2003. Physical and chemical interactions in coal flotation. International Journal of Mineral Processing 72(1): 199–213.
  • Cilek E. C. 2004. Estimation of flotation kinetic parameters by considering interactions of the operating variables. Minerals Engineering 17(1): 81–85.
  • Mazumdar M. 1994. Statistical discrimination of flotation models based on batch flotation data. International Journal of Mineral Processing 42(1): 53–73.
  • Zhang, H., J. Liu, Y. Cao, and Y. Wang. 2013. Effects of particle size on lignite reverse flotation kinetics in the presence of sodium chloride. Powder Technology 246: 658–663.
  • Zuniga, H. G. 1935. Flotation recovery is an exponential function of its rate. Mining Bulletin of the National Society of Mining (Santiago) 47: 83–86.
  • Sutherland K. L. 1948. Physical chemistry of flotation: XI. Kinetics of the flotation process. The Journal of Physical Chemistry 52 (2): 394–425.
  • Arbiter, N., and C. C. Harris. 1962. Flotation kinetics. In Froth flotation — 50th anniversary volume, ed. D. W. Fuerstenau, 215–246. New York: American Institute of Mining, Metallurgical, and Petroleum Engineers.
  • Klimpel, R. R. 1984. Froth flotation: The Kinetic Approach. In Proceedings of Mintek 50, ed. L. F. Haughton, 385–392. Johannesburg: Council for Mineral Technology.
  • Harris, C. C., and A. Chakravarti. 1970. Semi-batch froth flotation kinetics: Species distribution analysis. Transactions AIME 247: 162–172.
  • Imaizumi, T., and T. Inoue. 1963. Kinetic considerations of froth flotation. In Proceedings of the 6th International Mineral Processing Congress, Cannes, ed. A. Robert, 581–593. Oxford: Pergamon.
  • Loveday, B. K. 1966. Analysis of froth flotation kinetics. Trans. IMM 75: C219–C225.
  • Dowling, E. C., R. R. Klimpel, and F. F. Aplan. 1985. Model discrimination in the flotation of a porphyry copper ore. Minerals and Metallurgical Processing 2(2): 87–101.
  • Lynch, A. J., N. W. Johnson, E. V. Manlapig, and C. G Thorne. 1981. Mineral and coal flotation circuits. Amsterdam: Elsevier.
  • Trahar, W. J. 1981. A rational interpretation of the role of particle size in flotation. International Journal of Mineral Processing 8(4): 289–327.
  • Cilek, E. C. 2004. Estimation of flotation kinetic parameters by considering interactions of the operating variables. Minerals Engineering 17(1): 81–85.
  • Jameson, G. J. 2012. The effect of surface liberation and particle size on flotation rate constants. Minerals Engineering 36: 132–137.
  • Chau, T. T., W. J. Bruckard, P. T. L. Koh, and A. V. Nguyen. 2009. A review of factors that affect contact angle and implications for flotation practice. Advances in Colloid and Interface Science 150(2): 106–115.
  • Yuan, X. M., B. I. Palsson, and K. S. E. Forssberg. 1996. Statistical interpretation of flotation kinetics for a complex sulphide ore. Minerals Engineering 9(4): 429–442.
  • Bayat, O., M. Ucurum, and C. Poole. 2004. Effects of size distribution on flotation kinetics of Turkish sphalerite. Mineral Processing and Extractive Metallurgy 113(1): 53–59.
  • Volkoya, Z. V. 1946. On the law governing process of separation of solids of different floatabilities. Acta Physicochimica USSR 21: 1105–1113.
  • Hernainz Bermudez De Castro, F., and M. Calero De Hoces. 1996. Flotation rate of celestite and calcite. Chemical Engineering Science 51(1): 119–125.
  • Brożek, Marian, and Anna Młynarczykowska. 2007. Analysis of kinetics models of batch flotation. Physicochemical Problems of Mineral Processing 41: 51–65.
  • De Bruyn, P. L., and H. J. Modi. 1956. Particle size and flotation rate of quartz. Trans. AIME 205: 415–419.
  • Mika, T. S., and D. W. Fuerstenau. 1968. A microscopic model of the flotation process. Proceedings of the Eighth International Mineral Processing Congress, Leningrad, 246–269.
  • Sutherland, K. L. 1948. Kinetics of flotation process. The Journal of Physical Chemistry 52: 386–390.
  • Yianatos, J., N. Bergh, R. Bucarey, J. Rodríguez, and F. Díaz. 2005. The effect of fines recycling on industrial grinding performance. Minerals engineering 18(11): 1110–1115.
  • Polat, M., and S. Chander. 2000. First-order flotation kinetics models and methods for estimation of the true distribution of flotation rate constants. International Journal of Mineral Processing 58(1): 145–166.
  • Woodburn, E. T. 1970. Mathematical modelling of flotation processes. Minerals Science and Engineering 2(2): 3–17.
  • Saleh, A. M. 2010. A study on the performance of second order models and two phase models in iron ore flotation. Physicochemical Problems of Mineral Processing 44: 215–230.
  • Trahar, W. J., and L. J. Warren. 1976. The floatability of very fine particles—A review. International Journal of Mineral Processing 3(2): 103–131.
  • Yoon, R. H., and G. H. Luttrell. 1989. The effect of bubble size on fine particle flotation. Mineral Processing and Extractive Metallurgy Review 5(1–4): 101–122.
  • Kohmeunch, J., L. Christodoulou, M. Fan, M. Mankosa, and G. Luttrell. 2010. Advancements in coarse and fine particle flotation. In Proceedings of the 42nd Annual Canadian Mineral Processors Operators Conference, ed. S. K. Kawatra, 55–69. Ontario, Canada: Canadian Mineral Processors.
  • Tao, D. 2005. Role of bubble size in flotation of coarse and fine particles—A review. Separation Science and Technology 39(4): 741–760.
  • Welsby, S. D. D., S. M. S. M. Vianna, and J.-P. Franzidis. 2010. Assigning physical significance to floatability components. International Journal of Mineral Processing 97(1): 59–67.
  • Ahmed, M. M. 2004. Discrimination of different models in the flotation of Maghara coal. Mineral Processing and Extractive Metallurgy 113(2): 103–110.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.