References

  1. M.T. Yagub, T.K. 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. T. Santhi, S. Manonmani, Malachite green removal from aqueous solution by the peel of Cucumis sativa fruit, Clean–Soil Air Water 39 (2011) 162–170.
  3. L. Cottet, C.A.P. Almeida, N. Naidek, M.F. Viante, M.C. Lopes, N.A. Debacher, Adsorption characteristics of montmorillonite clay modified with iron oxide with respect to methylene blue in aqueous media, Appl. Clay Sci., 95 (2014) 25–31.
  4. Ç. Üzüm, T. Shahwan, A.E. Eroğlu, K.R. Hallam, T.B. Scott, I. Lieberwirth, Synthesis and characterization of kaolinitesupported zero-valent iron nanoparticles and their application for the removal of aqueous Cu2+ and Co2+ ions, Appl. Clay Sci., 43 (2009) 172–181.
  5. M. Ghorbanpour, B. Hakimi, A. Feizi, A comparative study of photocatalytic activity of ZnO/activated carbon nanocomposites prepared by solid-state and conventional precipitation methods, J. Nanostruct., 8 (2018) 259–265.
  6. N. Garshasbi, M. Ghorbanpour, A. Nouri, A. Lotfiman, Preparation of zinc oxide-nanoclay hybrids by alkaline ion exchange method, Braz. J. Chem. Eng., 34 (2017) 1055–1063.
  7. S.K. Isalou, M. Ghorbanpour, Catalytic activity of Fe-modified bentonite in heterogeneous photo-Fenton process, Desal. Wat. Treat., 162 (2018) 376–382.
  8. T. Robinson, G. McMullan, R. Marchant, P. Nigam, Remediation of dyes in textile effluent: a critical review on current treatment technologies with a proposed alternative, Bioresour. Technol., 77 (2001) 247–255.
  9. S. Rasalingam, R. Peng, R.T. Koodali, An insight into the adsorption and photocatalytic degradation of rhodamine B in periodic mesoporous materials, Appl. Catal., B, 174 (2015) 49–59.
  10. M. Ghorbanpour, A. Feizi, Iron-doped TiO2 catalysts with photocatalytic activity, J. Water Environ. Nanotechnol., 4 (2019) 60–66.
  11. M. Madadi, M. Ghorbanpour, A. Feizi, Preparation and characterization of solar light-induced rutile Cu-doped TiO2 photocatalyst by solid-state molten salt method, Desal. Wat. Treat., 145 (2019) 257–261.
  12. T. Shahwan, Ç. Üzüm, A.E. Eroğlu, I. Lieberwirth, Synthesis and characterization of bentonite/iron nanoparticles and their applications adsorbent of cobalt ions, Appl. Clay Sci., 47 (2010) 257–262.
  13. A.A. Tireli, I. do Rosário Guimarães, J.C. de Souza Terra, R.R. da Silva, M.C. Guerreiro, Fenton-like processes and adsorption using iron oxide-pillared clay with magnetic properties for organic compound mitigation, Environ. Sci. Pollut. Res., 22 (2015) 870–881.
  14. T. Mishra, P. Mohapatra, K.M. Parida, Synthesis, characterisation and catalytic evaluation of iron–manganese mixed oxide pillared clay for VOC decomposition reaction, Appl. Catal., 79 (2008) 279–285.
  15. S. Louhichi, A. Ghorbel, H. Chekir, N. Trabelsi, S. Khemakhem, Properties of modified crude clay by iron and copper nanoparticles as potential hydrogen sulfide adsorption, Appl. Clay Sci., 127 (2016) 123–128.
  16. M. Ghorbanpour, Soybean oil bleaching by adsorption onto bentonite/iron oxide nanocomposites, J. Phys. Sci., 29 (2018) 113–119.
  17. S. Yamanaka, M. Hattori, Iron oxide pillared clay, Catal. Today, 2 (1988) 261–270.
  18. P. Yuan, H. He, F. Bergaya, D. Wu, Q. Zhou, J. Zhu, Synthesis and characterization of delaminated iron-pillared clay with meso–microporous structure, Microporous Mesoporous Mater., 88 (2006) 8–15.
  19. A. Nouri, M. Ghorbanpour, S. Lotfiman, Diffusion of Cu ions into nanoclay by molten salt ion exchange for antibacterial application, J. Phys. Sci., 29 (2018) 31–42.
  20. B. Hakimi, M. Ghorbanpour, A. Feizi, ZnO/bentonite nanocomposites prepared with solid-state ion exchange as photocatalysts, J. Ultrafine Grained Nanostruct. Mater., 51 (2018) 139–146.
  21. B. Hakimi, M. Ghorbanpour, A. Feizi, A comparative study between photocatalytic activity of ZnO/bentonite composites prepared by precipitation, liquid-state ion exchange and solidstate ion exchange Methods, J. Water Environ. Nanotechnol., 3 (2018) 273–278.
  22. Z.R. Liu, S.Q. Zhou, Adsorption of copper and nickel on Na-bentonite, Process Saf. Environ. Prot., 88 (2010) 62–66.
  23. H. Pouraboulghasem, M. Ghorbanpour, R. Shayegh, S. Lotfiman, Synthesis, characterization and antimicrobial activity of solid-state ion-exchanged ZnO/bentonite nanocomposites, J. Cent. Sout Univ. Technol., 23 (2016) 787–792.
  24. M. Ghorbanpour, M. Mazloumi, A. Nouri, Silver-doped nanoclay with antibacterial activity, J. Ultrafine Grained Nanostruct. Mater., 50 (2017) 124–131.
  25. M. Santhosh Kumar, M. Schwidder, W. Grünert, U. Bentrup, A. Brückner, Selective reduction of NO with Fe-ZSM-5 catalysts of low Fe content: part II. Assessing the function of different Fe sites by spectroscopic in situ studies, J. Catal., 239 (2006) 173–186.
  26. M. Schwidder, M.S. Kumar, K. Klementiev, M.M. Pohl, A. Brückner, W. Grünert, Selective reduction of NO with Fe-ZSM-5 catalysts of low Fe content I. Relations between active site structure and catalytic performance, J. Catal., 231 (2005) 314–330.
  27. M. Iwasaki, K. Yamazaki, K. Banno, H. Shinjoh, Characterization of Fe/ZSM-5 DeNOx catalysts prepared by different methods: relationships between active Fe sites and NH3-SCR performance, J. Catal., 260 (2008) 205–216.
  28. Y. Gao, Y. Guo, H. Zhang, Iron modified bentonite: enhanced adsorption performance for organic pollutant and its regeneration by heterogeneous visible light photo-Fenton process at circumneutral pH, J. Hazard. Mater, 302 (2016) 105–113.
  29. K. Elass, A. Laachach, A. Alaoui, M. Azzi, Removal of methyl violet from aqueous solution using a stevensite-rich clay from Morocco, Appl. Clay Sci., 54 (2011) 90–96.