화학공학소재연구정보센터
Journal of Industrial and Engineering Chemistry, Vol.18, No.5, 1751-1757, September, 2012
Equilibrium, thermodynamic and kinetic studies for the adsorption of lead (II) and nickel (II) onto clay mixture containing boron impurity
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The present study examined the use of waste containing boron impurity (BC) from boron enrichment plant for the removal of lead (II) and nickel (II) from aqueous solutions. The effects of pH, contact time, initial dye concentration, adsorbent dosage, and temperature on the adsorption process were examined. Residual lead and nickel concentration reached in equilibrium in 90 min and the rate of adsorption by BC was rapid in the first 45 min of the reaction time. The pseudo- second-order kinetic model best described the kinetic of the adsorption. Batch adsorption studies showed that the adsorption patterns followed Langmuir isotherm model.
  1. Marino PE, Franzblau A, Lilis R, Archives of Environmental Health., 44, 140 (1989)
  2. Kadirvelu K, Thamaraiselvi K, Namasivayam C, Sep. Purif. Technol., 24(3), 497 (2001)
  3. Divrikli U, Elci L, Analytica Chimica Acta., 452, 231 (2002)
  4. Soylak M, Saracoglu S, Divrikli U, Elci L, Talanta., 66, 1098 (2005)
  5. Gonzalez-Munoz MJ, Rodriguez MA, Luque S, Alvarez JR, Desalination, 200(1-3), 742 (2006)
  6. Muthukrishnan M, Guha BK, Desalination, 200(1-3), 351 (2006)
  7. Bessbousse H, Rhlalou T, Verchere JF, Lebrun L, J. Membr. Sci., 307(2), 249 (2008)
  8. Kiefer R, Kalinitchev AI, Ho¨ ll WH, Reactive and Functional Polymers., 67, 1421 (2007)
  9. Iqbal M, Saeed A, Zafar SI, J. Hazard. Mater., 164(1), 161 (2009)
  10. Mittal A, Mittal J, Malviya A, Gupta VK, J. Colloid Interface Sci., 344(2), 497 (2010)
  11. Mittal A, Mittal J, Malviya A, Kaur D, Gupta VK, J. Colloid Interface Sci., 343(2), 463 (2010)
  12. Mittal A, Mittal J, Malviya A, Kaur D, Gupta VK, J. Colloid Interface Sci., 342(2), 518 (2010)
  13. Mittal A, Kaur D, Mittal J, J. Hazard. Mater., 163(2-3), 568 (2009)
  14. Mittal A, Gajbe V, Mittal J, Journal of Hazardous Materials., 150, 364 (2008)
  15. Alok MA, Mittal J, Kurup L, Singh AK, J. Hazard. Mater., 138(1), 95 (2006)
  16. Mittal A, Mittal J, Malviya A, Gupta VK, J. Colloid Interface Sci., 340(1), 16 (2009)
  17. Mittal A, Kaur D, Malviya A, Mittal J, Gupta VK, J. Colloid Interface Sci., 337(2), 345 (2009)
  18. Mittal A, Mittal J, Lisha K, International Journal of Environment and Pollution., 43(4), 308 (2010)
  19. Mittal A, Gupta VK, Toxicological and Environmental Chemistry., 92(10), 1813 (2010)
  20. Lata H, Garg VK, Gupta RK, J. Hazard. Mater., 157(2-3), 503 (2008)
  21. Amuda OS, Giwa AA, Bello IA, Biochemical Engineering Journal., 36, 174 (2007)
  22. Chen CL, Wang XK, Ind. Eng. Chem. Res., 45(26), 9144 (2006)
  23. Kandah MI, Meunier JL, J. Hazard. Mater., 146(1-2), 283 (2007)
  24. Lu CY, Chiu HS, Chem. Eng. Sci., 61(4), 1138 (2006)
  25. Tan XL, Fang M, Chen CL, Yu SM, Wang XK, Carbon., 46, 1741 (2008)
  26. Eren E, Afsin B, Onal Y, J. Hazard. Mater., 161(2-3), 677 (2009)
  27. Xu D, Tan XL, Chen CL, Wang XK, Applied Clay Science., 41, 37 (2008)
  28. Zhu S, Hou H, Xue Y, Applied Clay Science., 40, 171 (2008)
  29. Gupta SS, Bhattacharyya KG, Journal of Environment Management., 87, 46 (2008)
  30. Bhattacharyya KG, Gupta SS, Advances in Colloid and Interface Science., 140, 114 (2008)
  31. Gupta SS, Bhattacharyya KG, Journal of Colloid and Interface Science., 295, 221 (2006)
  32. Qui W, Zheng Y, Chemical Engineering Journal., 45, 483 (2009)
  33. Sprynskyy M, Buszewski B, Terzyk AP, Namiesnik J, J. Colloid Interface Sci., 304(1), 21 (2006)
  34. Vijayaraghavan K, Padmesh TVN, Palanivelu K, Velan M, J. Hazard. Mater., 133(1-3), 304 (2006)
  35. Rakhshaee R, Khosravi M, Ganji MT, J. Hazard. Mater., 134(1-3), 120 (2006)
  36. Mehta SK, Gaur JP, Ecological Engineering., 18, 1 (2001)
  37. Febrianto J, Kosasih AN, Sunarso J, Ju YH, Indraswati N, Ismadji S, J. Hazard. Mater., 162(2-3), 616 (2009)
  38. Mittal A, Thakur V, Gajbe V, Environmental Science and Pollution Research, http://dx.doi.org/10.1007/s11356-012-0756-9. (2012)
  39. Sud D, Mahajan G, Kaur MP, Bioresource Technology., 99, 6017 (2008)
  40. Olgun A, Atar N, J. Hazard. Mater., 161(1), 148 (2009)
  41. Atar N, Olgun A, Desalination, 249(1), 109 (2009)
  42. Atar N, Olgun A, J. Hazard. Mater., 146(1-2), 171 (2007)
  43. Langmuir I, Journal of the American Chemical Society., 40, 1361 (1918)
  44. Freundlich HMF, Journal of Physical Chemistry., 57, 385 (1906)
  45. Lagergren S, Kungliga Svenska Vetenskapsakademiens. Handlingar., 24(4), 1 (1898)
  46. Ho YS, McKay G, Process Saf. Environ. Protect., 76(2), 183 (1998)
  47. Weber WJ, Morriss JC, American Society of Civil Engineers., 89, 31 (1963)
  48. Bhattacharyya KG, Sen Gupta S, J. Colloid Interface Sci., 310(2), 411 (2007)
  49. Erdem E, Karapinar N, Donat R, J. Colloid Interface Sci., 280(2), 309 (2004)
  50. Motsi T, Rowson NA, Simmons MJH, International Journal of Mineral Processing., 92, 42 (2009)
  51. Nightingale ER, Journal of Physical Chemistry., 63, 1381 (1959)
  52. Marcus Y, Journal of the Chemical Society, Faraday Transactions., 87, 2995 (1991)