References

  1. M.T. Yagub, T.S. Sen, S. Afroze, H.M. Ang, Dye and its removal from aqueous solution by adsorption: a review, Adv. Colloid. Interface Sci., 209 (2014) 172–184.
  2. R.D.C. Soltani, A.R. Khataee, M. Safari, S.W. Joo, Preparation of bio-silica/chitosan nanocomposite for adsorption of a textile dye in aqueous solutions, Int. Biodeterior. Biodegradation, 85 (2013) 383–391.
  3. S. Elemen, E.P.A. Kumbasar, S. Yapar, Modelling the adsorption of textile dye on organoclay using an artificial neural network, Dyes Pigments, 95 (2012) 102–111.
  4. S. Liu, Y. Ding, P. Li, K. Diao, X. Tan, F. Lei, Y. Zhan, Q. Li, B. Huang, Z. Huang, Adsorption of the anionic dye Congo red from aqueous solution onto natural zeolites modified with N,N-dimethyl dehydroabietylamine oxide, Chem. Eng. J., 248 (2014) 135–144.
  5. J. Zhang, Q. Zhou, L. Ou, Kinetic, isotherm, and thermodynamic studies of the adsorption of methyl orange from aqueous solution by chitosan/alumina composite, J. Chem. Eng. Data., 57 (2012) 412–419.
  6. Y. Fan, H.J. Liu, Y. Zhang, Y. Chen, Adsorption of anionic MO or cationic MB from MO/MB mixture using polyacrylonitrile fiber hydrothermally treated with hyper branched polyethylenimine, J. Hazard. Mater., 283 (2015) 321–328.
  7. V. Nair, A. Panigrahy, R. Vinu, Development of novel chitosan-lignin composites for adsorption of dyes and metal ions from wastewater, Chem. Eng. J., 254 (2014) 491–502.
  8. Q. Peng, M. Liu, J. Zheng, C. Zhou, Adsorption of dyes in aqueous solutions by chitosanhalloysite nanotubes composite hydrogel beads, Microporous Mesoporous Mater., 201 (2015) 190–201.
  9. M.S. Derakhshan, O.J. Moradi, The study of thermodynamics and kinetics methyl orange and malachite green by SWCNTs, SWCNT-COOH and SWCNT-NH2 as adsorbents from aqueous solution, Ind. Eng. Chem., 20 (2014) 3086–3094.
  10. A.A. Jalil, S. Triwahyono, S.H. Adam, N.D. Rahim, M.A.A. Aziz, N.H.H. Hairom, A.N.M. Razali, M.A.Z. Abidin, M.K.A. Mohamadiaha, Adsorption of methyl orange from aqueous solution onto calcined Lapindo volcanic mud, J. Hazard. Mater., 181 (2010) 755–762.
  11. D. Elhamifar, F. Shojaeipoor, M. Roosta, Self-assembled ionic-liquid based organosilica (SAILBO) as a novel and powerful adsorbent for removal of malachite green from aqueous solution, J. Taiwan. Inst. Chem. Eng., 59 (2016) 267–274.
  12. P. Monvisade, P. Siriphannon, Chitosan intercalated montmorillonite: preparation, characterization and cationic dye adsorption, Applied. Clay. Sci., 42 (2009) 427–431.
  13. M. Wawrzkiewicz, Anion-exchange resins for C.I. Direct Blue 71 removal from aqueous solutions and wastewaters: effects of basicity and matrix composition and structure, Ind. Eng. Chem. Res., 53 (2014) 11838−11849.
  14. D. Ljubas, G. Smoljanic, H. Juretic, Degradation of methyl orange and Congo Red dyes by using TiO2 nanoparticles activated by the solar and the solar-like radiation, J. Environ. Manage., 161 (2015) 83–91.
  15. L. Ai, C. Zhang, L. Meng, Adsorption of methyl orange from aqueous solution on hydrothermal synthesized Mg-Al layered double hydroxide, J. Chem. Eng. Data., 56 (2011) 4217–4225.
  16. S.G. Muntean, M.E. Radulescu-Grad, P. Sfarloag, Dye adsorbed on copolymer, possible specific sorbent for metal ions removal, RSC Adv., 4 (2014) 27354–27362.
  17. G. Sheng, A. Alsaedi, W. Shammakh, S. Monaquel, J. Sheng, X. Wang, H. Li, Y. Huang, Enhanced sequestration of selenite in water by nanoscale zero valent iron immobilization on carbon nanotubes by a combined batch, XPS and XAFS investigation, Carbon, 99 (2016) 123–130.
  18. J. Ma, F. Yu, L. Zhou, L. Jin, M. Yang, J. Luan, Y. Tang, H. Fan, Z. Yuan, J. Chen Enhanced adsorptive removal of methyl orange and Methylene Blue from aqueous solution by alkali-activated multiwalled carbon nanotubes, Appl. Mater. Interfaces., 4 (2012) 5749−5760.
  19. H.Y. Zhua, R. Jiang, L. Xiao, W. Li, A novel magnetically separable Fe2O3/crosslinked chitosan adsorbent: preparation, characterization and adsorption application for removal of hazardous azo dye, J. Hazard. Mater., 179 (2010) 251–257.
  20. S. Karaca, A. Gurses, O. Acislia, A. Hassania, M. Kiransan, K. Yikilmaz, Modeling of adsorption isotherms and kinetics of Remazol Red RB adsorption from aqueous solution by modified clay, Desal. Wat. Treat., 51 (2013) 2726–2739.
  21. M. Arshadi, F. SalimiVahid, J.W.L. Salvacion, M. Soleymanzadeh, Adsorption studies of methyl orange on an immobilized Mn-nanoparticle: kinetic and thermodynamic, RSC Adv., 4 (2014) 16005–16017.
  22. M.Z. Iqbal, A.A. Abdala, Thermally reduced graphene: synthesis, characterization and dye removal applications, RSC Adv., 3 (2013) 24455–24464.
  23. G. Sheng, J. Hu, H. Li, J. Li, Y. Huang, Enhanced sequestration of Cr(VI) by nanoscale zero-valent iron supported on layered double hydroxide by batch and XAFS study, Chemosphere, 148 (2016) 227–232.
  24. R. Rakhshaee, M. Giahi, A. Pourahmad, Removal of methyl orange from aqueous solution by Azolla filicoloides: synthesis of Fe3O4 nano-particles and its surface modification by the extracted pectin of Azolla, Chinese. Chem. Lett., 22 (2011) 501–504.
  25. W. Cheah, S. Hosseini, M.A. Khan, T.G. Chuah, T.S.Y. Choong, Acid modified carbon coated monolith for methyl orange adsorption, Chem. Eng. J., 215–216 (2013) 747.
  26. M. Arshadia, F.V. Salimi, J.W.L. Salvacion, M. Soleymanzadeh, A practical organometallic decorated nano-size SiO2–Al2O3 mixed-oxides for methyl orange removal from aqueous solution, Appl. Surf. Sci., 280 (2013) 726–736.
  27. P. Tian, X.Y. Han, G.L. Ning, H.X. Fang, J.W. Ye, W.T. Gong, Y. Lin, Synthesis of porous hierarchical MgO and its superb adsorption properties, ACS Appl. Mater. Interfaces., 5 (2013) 12411−12418.
  28. R. Gong, J. Ye, W. Dai, X. Yan, J. Hu, X. Hu, S. Li, H. Huang, Adsorptive removal of methyl orange and Methylene Blue from aqueous solution with finger citron residue-based activated carbon, Ind. Eng. Chem. Res., 52 (2013) 14297–14303.
  29. B. Tanhaei, A. Ayati, M. Lahtinen, M. Sillanpaa, Preparation and characterization of a novel chitosan/Al2O3/magnetite nanoparticles composite adsorbent for kinetic, thermodynamic and isotherm studies of methyl orange adsorption, Chem. Eng. J., 259 (2015) 1–10.
  30. Y. Yao, B. He, F. Xu, X. Chen, Equilibrium and kinetic studies of methyl orange adsorption on multiwalled carbon nanotubes, Chem. Eng. J., 170 (2011) 82–89.
  31. M. Greluk, Z. Hubicki, Efficient removal of Acid Orange 7 dye from water using the strongly basic anion exchange resin Amberlite IRA-958, Desalination, 278 (2011) 219–226.
  32. C. Karthika, M. Sekar, Removal of Hg (II) ions from aqueous solution by acid acrylic resin: a study through adsorption isotherms analysis, J. Environ. Sci., 1 (2012) 34–41.
  33. S. Karcher, A. Kornmuller, M. Jekel, Anion exchange resins for removal of reactive dyes from textile wastewaters, Water Res., 36 (2002) 4717–4724.
  34. M. Wawrzkiewicz, Z. Hubicki, Equilibrium and kinetic studies on the sorption of acidic dye by macroporous anion exchanger, Chem. Eng. J., 157 (2010) 29–34.
  35. Y. Tang, X. Wang, L. Zhu, Removal of methyl orange from aqueous solutions with poly(acrylic acid-co-acrylamide) superabsorbent resin, Polym. Bull., 70 (2013) 905–918.
  36. L. Ai, C. Zhang, L. Meng, Adsorption of methyl orange from aqueous solution on hydrothermal synthesized Mg-Al layered double hydroxide, J. Chem. Eng. Data, 56 (2011) 4217–4225.
  37. S. Hosseini, M.A. Khan, M.R. Malekbala, W. Cheah, T.S.Y. Choong, Carbon coated monolith, a mesoporous material for the removal of methyl orange from aqueous phase: adsorption and desorption studies, Chem. Eng. J., 171 (2011) 1124–1131.
  38. L. Zhou, J. Jin, Z. Liu, X. Liang, C. Shang, Adsorption of acid dyes from aqueous solutions by the ethylenediamine-modified magnetic chitosan nanoparticles, J. Hazard. Mater., 185 (2011) 1045–1052.
  39. M.A. Khan, Z.A.A. Othman, M. Kumar, M.S. Ola, M.R. Siddique, Biosorption potential assessment of modified pistachio shell waste for methylene blue: thermodynamics and kinetics study, Desal. Wat. Treat., 56 (2014) 1–15.
  40. S.D. Khattri, M.K. Singh, Removal of malachite green from dye wastewater using neem sawdust by adsorption, J. Hazard. Mater., 167 (2009) 1089–1094.
  41. B. Nandi, A. Goswami, M. Purkait, Removal of cationic dyes from aqueous solutions by kaolin: kinetic and equilibrium studies, Appl. Clay. Sci., 42 (2009) 583–590.
  42. G. Sheng, H. Dong, Y. Li, Characterization of diatomite and its application for the retention of radiocobalt: role of environmental parameters, J. Environ. Radioact., 113 (2012) 108–115.
  43. T.T. Ali, K. Narasimharao, I.P. Parkin, C.J. Carmaltc, S. Sathasivam, S.N. Basahel, S.M. Bawaked, S.A. Al-Thabiti, Effect of pretreatment temperature on photo catalytic activity of microwave irradiated porous nanocrystalline ZnO, New J. Chem., 39 (2015) 321–332.
  44. K.H. Park, P.K. Parhi, N.H. Kang, Studies on removal of low content copper from the sea nodule aqueous solution using the cationic resin TP 207, Separ. Sci. Technol., 47 (2012) 1531–1541.
  45. I.I. Salame, T.J. Bandosz, Surface chemistry of activated carbons: combining the results of temperature-programmed desorption, Boehm, and potentiometric titrations, J. Colloid. Interf. Sci., 240 (2001) 252–258.
  46. R. Bahadur, Removal of Pb(ii) ion by using modified anion ion exchanger, Amberlite IRA-400, J. Environ. Res. Develop., 9 (2015) 744–754.
  47. H. Li, Z. Sun, L. Zhang, Y. Tian, G. Cui, S. Yan, A cost-effective porous carbon derived from pomelo peel for the removal of methyl orange from aqueous solution, Colloid. Surface. A., 489 (2016) 191–199.