Issue
Korean Journal of Chemical Engineering,
Vol.34, No.8, 2211-2217, 2017
Settling characteristics of coal preparation plant fine tailings using anionic polymers
The objective of solid-liquid separation in thickeners in coal preparation plants is to obtain both a clear supernatant liquid with a low turbidity for reuse and a dense slurry. It is important for the smooth operation of the plant to produce good-quality recirculation water. In this study, settling characteristics of coal tailings (d80=70 μm) taken from the thickener feed of Derekoy Coal Preparation Plant (Manisa, Turkey) were investigated with the use of anionic polymers. In the tests we determined the effects of the process parameters including polymer type, polymer dosage, temperature, suspension pH, and pulp density on the flocculation of the fine tailings of the coal preparation operation. Minefloc anionic polymer showed a better flocculation performance in comparison with other polymers. An optimum settling rate of 300mm/min was reached at a dosage of 30 g/t-solids, a pulp density of 5%, pH 7.9, and temperature 25 °C using Minefloc polymer.
[References]
  1. Bentli I, Ekoloji, 19, 71, 2010
  2. Mpofu P, Addai-Mensah J, Ralston J, Int. J. Miner. Process., 75(3-4), 155, 2005
  3. Svarovsky L, Characterization of particles suspended in liquids, Solid-liquid separation, London: Butterworth & Co. (Publishers) Ltd. (1981).
  4. Oteyaka B, Yamık A, Ucar A, Sahbaz O, Yılmaz B, Proceedings of 19th Int. Mining Cong. and Exhibition of Turkey, 297 (2005).
  5. Hogg R, Int. J. Miner. Process., 58(1), 223, 2000
  6. Mpofu P, Addai-Mensah J, Ralston J, Int. J. Miner. Process., 71(1-4), 247, 2003
  7. Sarıoglu M, Cebeci Y, Beyazit N, Asian J. Chem., 14, 388, 2002
  8. Sivamohan R, Int. J. Miner. Process., 28, 247, 1990
  9. Somasundaran P, Das KK, Flocculation and selective flocculation - an overview, Innovation in Mineral and Coal Processing, A.A. Balkema Publishers, Rotterdam, Netherlands (1998).
  10. Ersoy B, Proceedings of Turkish 4th Marble Symposium, 449 (2003).
  11. Foshee WC, Swan MJ, Klimpel RR, Min. Eng., 293 (1982).
  12. Maher GG, J. Env. Sci., 26, 29, 1983
  13. Menon VB, Woods MC, Mullins ME, Michaels LD, Miner. Metall. Process., 4, 193, 1987
  14. Attia YA, Yu S, Sep. Sci. Technol., 26, 803, 1991
  15. Tadros TF, Taylor P, Bognolo G, Langmuir, 11(12), 4678, 1995
  16. Akdemir U, Aydogan S, Canbazoglu M, Ozkan A, Proceedings of 16th Mining Congress of Turkey, 411 (1999).
  17. Tao D, Groppo JG, Parekh BK, Miner. Eng., 2, 163, 2000
  18. Sabah E, Cengiz I, Proceedings of the 14th Turkish Coal Congress, 133 (2004).
  19. Sabah E, Erkan ZE, Fuel, 85(3), 350, 2006
  20. Alam N, Ozdemir O, Hampton MA, Nguyen AV, Fuel, 90, 26, 2001
  21. Ofori P, Nguyen AV, Firth B, McNally C, Ozdemir O, Chem. Eng. J., 172(2-3), 914, 2011
  22. Ofori P, Nguyen AV, Firth B, McNally C, Hampton MA, Fuel, 97, 262, 2012
  23. Ji Y, Lu Q, Liu Q, Zeng H, Colloids Surf. A: Physicochem. Eng. Asp., 430, 29, 2013
  24. Das B, Prakash S, Biswal SK, Reddy PSR, J. South. Afr. Inst. Min. and Metall., 106, 707, 2006
  25. Kumar S, Bhattacharya S, Mandre NR, J. South. Afr. Inst. Min. and Metall., 114, 945, 2014
  26. Cengiz I, Sabah E, Erkan ZE, Madencilik, 43, 15, 2004
  27. Gregory J, Crit. Rev. Env. Cont., 19, 185, 1989
  28. Yarar B, US. Department of Commerce, National Technical Information Service, Springfield, Scientific Report, 34 (2001).
  29. Atesok G, Madencilik, 26, 15, 1987
  30. Gregory J, J. Colloid Interface Sci., 42, 448, 1973
  31. Oner B, MSc Thesis, Selcuk University, Turkey (2011).
  32. Pandey SR, Int. J. Eng. Res. Technol., 2, 351, 2013