Issue
Korean Journal of Chemical Engineering,
Vol.34, No.4, 1051-1061, 2017
Magnetic nanocomposite of multi-walled carbon nanotube as effective adsorbent for methyl violet removal from aqueous solutions: Response surface modeling and kinetic study
Magnetic nanocomposite of multi-walled carbon nanotube (m-MWCNT) was synthesized for adsorptive removal of methyl violet (MV) from aqueous solutions. The experiments were conducted using a central composite design (CCD) with the variables of adsorbent dosage (0.4-1.2 g/L), solution pH (3-9), contact time (10-42 min) and ionic strength (0.02-0.1mol L-1). Regression analysis showed good fit of the experimental data to a quadratic response surface model whose statistical significance was verified by analysis of variance. By applying the desirability functions, optimum conditions of the process were predicted as adsorbent dosage of 0.99g/L, pH=4.92, contact time of 40.98 minutes and ionic strength of 0.04 mol L-1 to achieve MV removal percentage of 101.19. Experimental removal efficiency of 99.51% indicated that CCD along with the desirability functions can be effectively applied for optimizing MV removal by m-MWCNT. Based on the study, the adsorption process followed Langmuir isotherm model and pseudo-second-order kinetic model could realistically describe the dye adsorption onto m-MWCNT.
[References]
  1. WHO/UNICEF, Global Water Supply and Sanitation Assessment
  2. Rafatullah M, Sulaiman O, Hashim R, Ahmad A, J. Hazard. Mater., 177(1-3), 70, 2010
  3. Bafana A, Devi SS, Krishnamurthi K, Chakrabarti T, Appl. Microbiol. Biotechnol., 74(5), 1145, 2007
  4. Samanta AK, Agarwal P, J. Fiber Text. Res., 34, 384, 2009
  5. Monash P, Pugazhenthi G, Adsorption, 15, 390, 2009
  6. Yagub MT, Sen TK, Ang H, Water Air Soil Pollut., 223, 5267, 2012
  7. Mekkawy HA, Ali MO, El-Zawahry AM, Toxicol. Lett., 95, 155, 1998
  8. Oxspring DA, Mcmullan G, Smyth WF, Marchant R, Biotechnol. Lett., 18(5), 527, 1996
  9. Zhang Q, Meng G, Wu J, Li D, Liu Z, Opt. Mater., 46, 52, 2015
  10. Moghaddam SS, Moghaddam MRA, Arami M, J. Hazard. Mater., 175(1-3), 651, 2010
  11. Chia-Hao L, Chin-Hau G, Jia-Jun S, Shing-Yi S, J. Membr. Sci., 471, 285, 2014
  12. Wawrzkiewicz M, Chem. Eng. J., 217, 414, 2013
  13. Ozcan A, Ozcan AS, J. Hazard. Mater., 125(1-3), 252, 2005
  14. Zhong LX, Lee CS, Haghighat F, J. Hazard. Mater., 243, 340, 2012
  15. Duman O, Tunc S, Polat TG, Microporous Mesoporous Mater., 210, 176, 2015
  16. Ayranci E, Duman O, Sep. Sci. Technol., 44(15), 3735, 2009
  17. Duman O, Tunc S, Polat TG, Appl. Clay Sci., 109-110, 22, 2015
  18. Tunc S, Duman O, Gurkan T, Ind. Eng. Chem. Res., 52(4), 1414, 2013
  19. Tunc S, Gurkan T, Duman O, Chem. Eng. J., 181-182, 431, 2012
  20. Tang WW, Zeng GM, Gong JL, Liu Y, Wang XY, Liu YY, Liu ZF, Chen L, Zhang XR, Tu DZ, Chem. Eng. J., 211, 470, 2012
  21. Maggini L, Raquez JM, Marega R, Ahrens JJ, Pineux F, Meyer F, Dubois P, Bonifazi D, Chem. Sus. Chem., 6, 367, 2013
  22. Ai LH, Huang HY, Chen ZL, Wei X, Jiang J, Chem. Eng. J., 156(2), 243, 2010
  23. Konicki W, Pelech I, Mijowska E, Jasinska I, Chem. Eng. J., 210, 87, 2012
  24. Liu Y, Jiang W, Wang Y, Zhang XJ, Song D, Li FS, J. Magn. Magn. Mater., 321, 408, 2009
  25. Sivashankar R, Sathya AB, Vasantharaj K, Sivasubramanian V, Environ. Nanotechnol. Monit. Manage., 1-2, 36, 2014
  26. Banerjee SS, Chen DH, J. Hazard. Mater., 147(3), 792, 2007
  27. Gong JL, Wang B, Zeng GM, Yang CP, Niu CG, Niu QY, Zhou WJ, Liang Y, J. Hazard. Mater., 164(2-3), 1517, 2009
  28. Madrakian T, Afkhami A, Ahmadi M, Bagheri H, J. Hazard. Mater., 196, 109, 2011
  29. Madrakian T, Afkhami A, Jalal NR, Ahmadi M, Sep. Sci. Technol., 48(17), 2638, 2013
  30. Dalali N, Habibizadeh M, Rostamizadeh K, Nakisa S, Asia Pac. J. Chem. Eng., 9, 552, 2014
  31. Bayazit SS, Sep. Sci. Technol., 49(9), 1389, 2014
  32. Duman O, Tunc S, Polat TG, Bozoglan BK, Carbohydr. Polym., 147, 79, 2016
  33. Duman O, Tunc S, Bozoglan BK, Polat TG, J. Alloy. Compd., 687, 370, 2016
  34. Ravikumar K, Krishnan KS, Ramalingam S, Balu K, Dyes Pigment., 72, 66, 2007
  35. Ravikumar K, Ramalingam S, Krishnan S, Balu K, Dyes Pigment., 70, 18, 2006
  36. Sahu JN, Acharya J, Meikap BC, J. Hazard. Mater., 172(2-3), 818, 2009
  37. Box GEP, Draper NR, Empirical Model-Building and Response Surfaces, Wiley, Minnesota (1987).
  38. Draper N, John JA, Technometrics, 30, 423, 1988
  39. Murugesan K, Dhamija A, Nam I, Kim Y, Chang Y, Dyes Pigment., 75, 176, 2007
  40. Khoo EC, Ong ST, Hung YT, Ha ST, Desalin. Water Treat., 51, 7109, 2013
  41. Olad A, Azhar FF, Shargh M, Jharfi S, Polym. Eng. Sci., 54(7), 1595, 2014
  42. Bandari F, Safa F, Shariati S, Arab. J. Sci. Eng., 40, 3363, 2015
  43. Sadaf S, Bhatti HN, Desalin. Water Treat., 57, 11773, 2016
  44. Lillie RD, Conn HJ, Conn’s biological stains: A handbook on the nature and uses of the dyes employed in the biological laboratory, Baltimore, Williams & Wilkins (1977).
  45. Li P, Su YJ, Wang Y, Liu B, Sun LM, J. Hazard. Mater., 179(1-3), 43, 2010
  46. Petcharoen K, Sirivat A, Mater. Sci. Eng. B-Solid State Mater. Adv. Technol., 177, 421, 2012
  47. Evans M, Optimization of Manufacturing Processes: A Response Surface Approach, Carlton House Terrace, London (2003).
  48. Oliveira LCA, Rios RVRA, Fabris JD, Sapag K, Garg VK, Lago RM, Appl. Clay Sci., 22, 169, 2003
  49. Legodi MA, DeWaal D, Dyes Pigment., 74, 161, 2007
  50. Goyanes S, Rubiolo GR, Salazar A, Jimeno A, Corcuera MA, Mondragon I, Diam. Relat. Mat., 16, 412, 2007
  51. Waldron RD, Phys. Rev., 99, 1727, 1955
  52. Ma M, Zhang Y, Yu W, Shen HJ, Zhang HQ, Gu N, Colloids Surf. A: Physicochem. Eng. Asp., 212, 219, 2003
  53. Gao ZM, Wu TH, Peng SY, Acta Phys. Chim. Sin., 11, 395, 1995
  54. Yetilmezsoy K, Demirel S, Vanderbei RJ, J. Hazard. Mater., 171(1-3), 551, 2009
  55. Alberghina G, Bianchini R, Fichera M, Fisichella S, Dyes Pigment., 46, 129, 2000
  56. Derringer G, Suich R, J. Qual. Technol., 12, 214, 1980
  57. Design expert statistical software, Stat-Ease, Inc., 2021 E. Hennepin Avenue, Suite 480, Minneapolis, MN 55413-2726, U.S.A. (2005).
  58. Lagergren S, Sven K, Vetenskakad. Handl., 24, 1, 1898
  59. Ho YS, McKay G, Process Biochem., 34(5), 451, 1999
  60. Weber WJ, Morris JC, J. Sanit. Engg. Div. ASCE, 89, 31, 1963
  61. Kannan K, Sundaram MM, Dyes Pigment., 51, 25, 2001
  62. Allen SJ, Mckay G, Khader KYH, Environ. Pollut., 56, 39, 1989
  63. Poots VJP, McKay G, Healy JJ, J. Water Pollut. Control Fed., 50, 926, 1978
  64. Hameed BH, J. Hazard. Mater., 166(1), 233, 2009
  65. Freundlich HZ, J. Phys. Chem., 57A, 385, 1906
  66. Tempkin MI, Pyzhev V, Acta Physiochim., USSR, 12, 327, 1940
  67. Foo KY, Hameed BH, Chem. Eng. J., 156(1), 2, 2010
  68. Musyoka SM, Mittal H, Mishra SB, Ngila JC, Int. J. Biol. Macromol., 65, 389, 2014
  69. Ghorai S, Sarkar A, Raoufi M, Panda AB, Schonherr H, Pal S, ACS Appl. Mater. Interfaces, 6, 4766, 2014
  70. Mittal H, Kumar V, Saruchi, Ray SS, Int. J. Biol. Macromol., 89, 1, 2016