References
- 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.
- 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.
- 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.
- 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.
- 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.
- 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.
- S.K. Isalou, M. Ghorbanpour, Catalytic activity of Fe-modified
bentonite in heterogeneous photo-Fenton process, Desal. Wat.
Treat., 162 (2018) 376–382.
- 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.
- 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.
- M. Ghorbanpour, A. Feizi, Iron-doped TiO2 catalysts with
photocatalytic activity, J. Water Environ. Nanotechnol., 4 (2019)
60–66.
- 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.
- 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.
- 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.
- 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.
- 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.
- M. Ghorbanpour, Soybean oil bleaching by adsorption onto
bentonite/iron oxide nanocomposites, J. Phys. Sci., 29 (2018)
113–119.
- S. Yamanaka, M. Hattori, Iron oxide pillared clay, Catal. Today,
2 (1988) 261–270.
- 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.
- 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.
- 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.
- 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.
- Z.R. Liu, S.Q. Zhou, Adsorption of copper and nickel on
Na-bentonite, Process Saf. Environ. Prot., 88 (2010) 62–66.
- 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.
- M. Ghorbanpour, M. Mazloumi, A. Nouri, Silver-doped
nanoclay with antibacterial activity, J. Ultrafine Grained Nanostruct.
Mater., 50 (2017) 124–131.
- 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.
- 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.
- 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.
- 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.
- 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.