References

  1. K. Mohanty, M. Jha, B.C. Meikap, M.N. Biswas, Removal of chromium (VI) from dilute aqueous solutions by activated carbon developed from Terminalia arjuna nuts activated with zinc chloride, Chem. Eng. Sci., 60 (2005) 3049–3059.
  2. F.N. Acar, Z. Eren, Removal of Cu(II) ions by activated poplar sawdust (Samsun clone) from aqueous solutions, J. Hazard. Mater., 137 (2006) 909–914.
  3. R. Vimala, N. Das, Mechanism of Cd(II) adsorption by macrofungus Pleurotus platypus, J. Environ. Sci., 23 (2011) 288–293.
  4. A. Üçer, A. Uyanik, Ş.F. Aygün, Adsorption of Cu(II), Cd(II), Zn(II), Mn(II) and Fe(III) ions by tannic acid immobilised activated carbon, Sep. Purif. Technol., 47 (2006) 113–118.
  5. M. Husseien, A.A. Amer, A. El-Maghraby, N.A. Taha, Utilization of barley straw as a source of a activated carbon for removal of methylene blue from aqueous solution, J. Appl. Sci. Res., 3 (2007) 1352–1358.
  6. J.M. Rosas, R. Ruiz-Rosas, J. Rodríguez-Mirasol, T. Cordero, Kinetic study of the oxidation resistance of phosphorus-containing activated carbons, Carbon, 50 (2012) 1523–1537.
  7. N. Bouchenafa-Saib, P. Grange, P. Verhasselt, F. Addoun, V. Dubois, Effect of oxidant treatment of date pit active carbons used as Pd supports in catalytic hydrogenation of nitrobenzene, Appl. Catal., A, 286 (2005) 167–174.
  8. F. Bouhamed, Z. Elouear, J. Bouzid, Adsorptive removal of copper(II) from aqueous solutions on activated carbon prepared from Tunisian date stones: equilibrium, kinetics and thermodynamics, J. Taiwan Inst. Chem. Eng., 43 (2012) 741–749.
  9. K.Y. Foo, B.H. Hameed, Preparation and characterization of activated carbon from pistachio nut shells via microwave-induced chemical activation, Biomass Bioenergy, 35 (2011) 3257–3261.
  10. K.A. Krishnan, K.G. Sreejalekshmi, R.S. Baiju, Nickel(II) adsorption onto biomass based activated carbon obtained from sugarcane bagasse pith, Bioresour. Technol., 102 (2011) 10239–10247.
  11. G. Cheng, L. Sun, L. Jiao, L.X. Peng, Z.H. Lei, Y.X. Wang, J. Lin, Adsorption of methylene blue by residue biochar from copyrolysis of dewatered sewage sludge and pine sawdust, Desal. Wat. Treat., 51 (2013) 7081–7087.
  12. J. Dı́az-Teran, D.M. Nevskaia, A.J. López-Peinado, A. Jerez, Porosity and adsorption properties of an activated charcoal, Colloids Surf., A, 187 (2001) 167–175.
  13. M. Zabihi, A.H. Asl, A. Ahmadpour, Studies on adsorption of mercury from aqueous solution on activated carbons prepared from walnut shell, J. Hazard. Mater., 174 (2010) 251–256.
  14. B.H. Hameed, A.T.M. Din, A.L. Ahmad, Adsorption of methylene blue onto bamboo-based activated carbon: kinetics and equilibrium studies, J. Hazard. Mater., 141 (2007) 819–825.
  15. J.M. Valente Nabais, C. Laginhas, M.M.L. Ribeiro Carrott, P.J.M. Carrott, J.E. Crespo Amorós, A.V. Nadal Gisbert, Surface and porous characterisation of activated carbons made from a novel biomass precursor, the esparto grass, Appl. Surf. Sci., 265 (2013) 919–924.
  16. J.J.M. Órfão, A.I.M. Silva, J.C.V. Pereira, S.A. Barata, I.M. Fonseca, P.C.C. Faria, M.F.R. Pereira, Adsorption of a reactive dye on chemically modified activated carbons—influence of pH, J. Colloid Interface Sci., 296 (2006) 480–489.
  17. P.C.C. Faria, J.J.M. Órfão, M.F.R. Pereira, Adsorption of anionic and cationic dyes on activated carbons with different surface chemistries, Water Res., 38 (2004) 2043–2052.
  18. A.B.M. Noor, M.A.B.M. Nawi, Textural characteristics of activated carbons prepared from oil palm shells activated with ZnCl2 and pyrolysis under nitrogen and carbon dioxide, J. Phys. Sci., 19 (2008) 93–104.
  19. K.S.W. Sing, Reporting physisorption data for gas/solid systems with special reference to the determination of surface area and porosity (Recommendations 1984), Pure Appl. Chem., 57 (1985) 603–619.
  20. Y. Chen, B. Huang, M. Huang, B. Cai, On the preparation and characterization of activated carbon from mangosteen shell, J. Taiwan Inst. Chem. Eng., 42 (2011) 837–842.
  21. W.C. Lim, C. Srinivasakannan, N. Balasubramanian, Activation of palm shells by phosphoric acid impregnation for high yielding activated carbon, J. Anal. Appl. Pyrolysis, 88 (2010) 181–186.
  22. D. Xin-hui, C. Srinivasakannan, W.W. Qu, W. Xin, P. Jin-hui, Z. Li-bo, Regeneration of microwave assisted spent activated carbon: process optimization, adsorption isotherms and kinetics, Chem. Eng. Process., 53 (2012) 53–62.
  23. M. Jagtoyen, M. Thwaites, J. Stencel, B. Mc Enaney, F. Derbyshire, Adsorbent carbon synthesis from coals by phosphoric acid activation, Carbon, 30 (1992) 1089–1096.
  24. A. Kriaa, N. Hamdi, E. Srasra, Removal of Cu (II) from water pollutant with Tunisian activated lignin prepared by phosphoric acid activation, Desalination, 250 (2010). 179–187.
  25. F. Suárez-Garcıa, A. Martınez-Alonso, J.M.D. Tascon, Pyrolysis of apple pulp: chemical activation with phosphoric acid, J. Anal. Appl. Pyrolysis, 63 (2002) 283–301.
  26. J.M. Rosas, J. Bedia, J. Rodríguez-Mirasol, T. Cordero, HEMP-derived activated carbon fibers by chemical activation with phosphoric acid, Fuel, 88 (2009) 19–26.
  27. J.M. Rosas, J. Bedia, J. Rodríguez-Mirasol, T. Cordero, Preparation of hemp-derived activated carbon monoliths. Adsorption of water vapor, Ind. Eng. Chem. Res., 47 (2008) 1288–1296.
  28. J.H. Zhou, Z.J. Sui, J. Zhu, P. Li, D. Chen, Y.C. Dai, W.K. Yuan, Characterization of surface oxygen complexes on carbon nanofibers by TPD, XPS and FT-IR, Carbon, 45 (2007) 785–796.
  29. A. Achmad, J. Kassim, T.K. Suan, R.C. Amat, T.L. Seey, Equilibrium, kinetic and thermodynamic studies on the adsorption of direct dye onto a novel green adsorbent developed from Uncaria Gambir extract, J. Phys. Sci., 23 (2012) 1–13.
  30. M. Momčilović, M. Purenović, A. Bojić, A. Zarubica, M. Ranđelović, Removal of lead(II) ions from aqueous solutions by adsorption onto pine cone activated carbon, Desalination, 276 (2011) 53–59.
  31. T.G. Ammari, Utilization of a natural ecosystem bio-waste; leaves of Arundo donax reed, as a raw material of low-cost eco-biosorbent for cadmium removal from aqueous phase, Ecol. Eng., 71 (2014) 466–473.
  32. K.G. Akpomie, F.A. Dawodu, K.O. Adebowale, Mechanism on the sorption of heavy metals from binary-solution by a low cost montmorillonite and its desorption potential, Alexandria Eng. J., 54 (2015) 757–767.
  33. N. Azouaou, Z. Sadaoui, A. Djaafri, H. Mokaddem, Adsorption of cadmium from aqueous solution onto untreated coffee grounds: equilibrium, kinetics and thermodynamics, J. Hazard. Mater., 184 (2010) 126–134.
  34. M.M. Rao, D.K. Ramana, K. Seshaiah, M.C. Wang, S.C. Chien, Removal of some metal ions by activated carbon prepared from Phaseolus aureus hulls, J. Hazard. Mater., 166 (2009) 1006–1013.
  35. A.K. Meena, C. Rajagopal, G.K. Mishra, G.K. Mishra, Removal of heavy metal ions from aqueous solutions using chemically (Na2S) treated granular activated carbon as an adsorbent, J. Sci. Ind. Res., 69 (2010) 449–453.
  36. A. Özer, Removal of Pb(II) ions from aqueous solutions by sulphuric acid-treated wheat bran, J. Hazard. Mater., 141 (2007) 753–761.
  37. A. Özer, H.B. Pirincci, The adsorption of Cd (II) ions on sulphuric acid-treated wheat bran, J. Hazard. Mater., 137 (2006) 849–855.
  38. J. Choi, J.W. Park, Competitive adsorption of heavy metals and uranium on soil constituents and microorganism, Geosci. J., 9 (2005) 53–61.
  39. A. Özer, G. Gürbüz, A. Çalimli, B.K. Körbahti, Investigation of nickel(II) biosorption on Enteromorpha prolifera: optimization using response surface analysis, J. Hazard. Mater., 152 (2008) 778–788.
  40. E. Malkoc, Y. Nuhoglu, Removal of Ni(II) ions from aqueous solutions using waste of tea factory: adsorption on a fixed-bed column, J. Hazard. Mater., 135 (2006) 328–336.