References
- S. Madhav, A. Ahamad, P. Singh, P.K. Mishra, A review of
textile industry: wet processing, environmental impacts, and
effluent treatment methods, Environ. Qual. Manage., 27 (2018)
31–41.
- K. Singh, S. Arora, Removal of synthetic textile dyes from
wastewaters: a critical review on present treatment technologies,
J. Crit. Rev. Environ. Sci. Technol., 41 (2011) 807–879.
- C. Ahmed Basha, K.V. Selvakumar, H.J. Prabhu, P. Sivashanmugam,
C.W. Lee, Degradation studies for textile
reactive dye by combined electrochemical, microbial and
photocatalytic methods, Sep. Purif. Technol., 79 (2011) 303–309.
- S. Selvakumar, R. Manivasagan, K. Chinnappan, Biodegradation
and decolourization of textile dye wastewater using Ganoderma
lucidum, 3 Biotech., 3 (2013) 71–79.
- A. Al-Kdasi, A. Idris, C. Saed, C.T. Guan, Treatment of textile
wastewater by advanced oxidation processes – a review, Global
Nest: Int. J., 6 (2004) 222–230.
- M.A. Rauf, S.S. Ashraf, Chapter 9 – Application of Advanced
Oxidation Processes (AOP) to Dye Degradation – An Overview,
A.R. Lang, Ed., Dyes and Pigments: New Research ISBN 978-1-
60692-027-5, Nova Science Publishers, Inc., 2009, pp. 259–307.
- A. El Nemr, M.A. Hassaan, F.F. Madkour, Advanced oxidation
process (AOP) for detoxification of acid red 17 dye solution and
degradation mechanism, Environ. Process., 5 (2018) 95–113.
- A. Zuorro, R. Lavecchia, Evaluation of UV/H2O2 advanced
oxidation process (AOP) for the degradation of diazo dye
reactive green 19 in aqueous solution, Desal. Water Treat.,
52 (2013) 1571–1577.
- M.A. Hassaan, A. El Nemr, F.F. Madkour, Testing the advanced
oxidation processes on the degradation of direct blue 86 dye in
wastewater, Egypt. J. Aquat. Res., 43 (2017) 11–19.
- A.O. Ibhadon, P. Fitzpatrick, Heterogeneous photocatalysis:
recent advances and applications, Catalysts, 3 (2013) 189–218.
- M.G. Alalm, A. Tawfik, S. Ookawara, Enhancement of
photocatalytic activity of TiO2 by immobilization on activated
carbon for degradation of pharmaceuticals, J. Environ. Chem.
Eng., 4 (2016) 1929–1937.
- P. Muthirulan, M. Meenakshisundararam, N. Kannan,
Beneficial role of ZnO photocatalyst supported with porous
activated carbon for the mineralization of alizarin cyanin green
dye in aqueous solution, J. Adv. Res., 4 (2013) 479–484.
- Z.-A. Mirian, A. Nezamzadeh-Ejhieh, Removal of phenol content
of an industrial wastewater via a heterogeneous photodegradation
process using supported FeO onto nanoparticles of
Iranian clinoptilolite, Desal. Water Treat., 57 (2016) 16483–16494.
- H.J. Cheng, L.Z. Wang, Nanostructure sensitization of
transition metal oxides for visible-light photocatalysis, Beilstein
J. Nanotechnol., 5 (2014) 696–710.
- A.K. Arora, V.S. Jaswal, K. Singh, R. Singh, Applications of
metal/mixed metal oxides as photocatalyst: a review, Orient.
J. Chem., 32 (2016) 2035–2042.
- J.C. Védrine, Heterogeneous catalysis on metal oxides,
Catalysts, 7 (2017) 2–25.
- G. Kumar, R. Kumar, S.W. Hwang, A. Umar, Photocalytic
degradation of direct red-23 dye with ZnO nanoparticles,
J. Nanosci. Nanotechnol., 14 (2014) 7161–7166.
- S. Charkrabarti, B.K. Dutta, Photocatalytic degradation of
model textile dyes in wastewater using ZnO as semiconductor
catalyst, J. Hazard. Mater., 112 (2004) 269–278.
- K. Byrappa, A.K. Subramani, S. Ananda, K.M. Lokanatha
Rai, R. Dinesh, M. Yoshimura, Photocatalytic degradation of
rhodamine B dye using hydrothermally synthesized ZnO, Bull.
Mater. Sci., 29 (2006) 433–438.
- P.K. Samanta, Weak quantum confinement in ZnO nanorods: a
one dimensional potential well approach, Opt. Photonics Lett.,
4 (2011) 35–45.
- M.A.M. Adnan, N.M. Julkapli, S.B.A. Hamid, Review on ZnO
hybrid photocatalyst: impact on photocatalytic activities of
water pollutant degradation, Rev. Inorg. Chem., 36 (2016) 77–104.
- A. Nezamzadesh-Ejhieh, S. Khosandi, Photocatalytic
degradation of 4-nitrophenol with ZnO supported nanoclinoptililite
zeolite, J. Ind. Eng. Chem., 20 (2014) 937–946.
- D. Rakhmawaty, S. Ishmayana, A.R. Noviyanti, Preparation
of ZnO/SiO2 composite using isolated from rice husk, Res.
J. Chem. Environ., 22 (2018) 236–239.
- K. Rasool, G.K. Nasrallah, N. Younes, R.P. Pandey,
P.A. Rasheed, K.A. Mahmoud, “Green” ZnO-interlinked
chitosan nanoparticles for the efficient inhibition of sulfatereducing
bacteria in inject seawater, ACS Sustainable
Chem. Eng., 6 (2018) 2896–3906.
- H.S. Zakria, M.H.D. Othman, R. Kamaludin, S.H.S.A. Kadir,
T.A. Kurniawan, A. Jilani, Immobilization techniques of a
photocatalyst into and onto a polymer membrane for photocatalytic
activity, RCS Adv., 11 (2021) 6985–7014
- Z. Gong, L. Liao, G. Lv, X. Wang, A simple method for physical
purification of bentonite, Appl. Clay Sci., 119 (2016) 292–300.
- N.V. Suc, D.T.K. Chi, Removal of rhodamine B from aqueous
solution via adsorption onto microwave-activated rice husk
ash, J. Dispersion Sci. Technol., 38 (2017) 216–222.
- T.M. Elmorsi, M.F. Bakr, M. Elsayed, Enhancing the removal of
methylene blue by a modified ZnO nanoparticles, kinetics and
equilibrium studies, Can. J. Chem., 95 (2017) 590–600.
- A. Pimentel, D. Nunes, P. Duarte, J. Rodrigues, F.M. Costa,
T. Monterio, R. Martins, E. Fortunato, Synthesis of long ZnO
nanorods under microwave irradiation or conventional
heating, J. Phys. Chem., 118 (2014) 14629–14639.
- B.D. Viezbicke, S. Patel, B.E. Davis, D.P. Birnie, Evaluation of the
Tauc method for optical absorption edge determination: ZnO
thin film as a model system, Phys. Status Solidi B., 252 (2015)
1700–1710.
- S. Natarajian, H.C. Bajaj, R.J. Tayade, Recent advances based
on the synergetic effect of adsorption for removal of dyes
from waste water using photocatalytic process, J. Environ. Sci.,
65 (2018) 201–222.
- N. Kamarulzaman, M.F. Kasim, R. Rusdi, Band gap narrowing
and widening of ZnO nanostructures and dope materials,
Nanoscale Res. Lett., 10 (2015) 1–12.
- L.A. Ghule, A.A. Patil, K.B. Sapnar, S.D. Dhole, K.M. Garadkar,
Photocatalytic degradation of methyl orange using ZnO
nanorods, Toxicol. Environ. Chem., 93 (2011) 623–634.
- A.F. Alkaim, A.M. Aljeboree, N.A. Alrazaq, S.J. Baqir,
F.H. Hussein, A.J. Lilo, Effect of pH on adsorption and
photocatalytic degradation efficiency of different catalysts on
removal of methyl blue, Asian J. Chem., 26 (2014) 8445–8448.
- R. Kumar, G. Kumar, A. Umar, ZnO nano-mushrooms for
photocatalytic degradation of methyl orange, Mater. Lett.,
97 (2013) 100–103.
- M.S. Nasrollahzadeh, M. Hadavifar, S.S. Ghasemi,
M.A. Chamjangali, Synthesis of ZnO nanostructure using
activated carbon for photocatalytic degradation of methyl
orange from aqueous solutions, Appl. Water Sci., 8 (2018) 104,
doi: 10.1007/s13201-018-0750-6.
- M. Irani, T. Mohammadi, S. Mohebbi, Photocatalytic degradation
of methylene blue with ZnO nanoparticles; a joint experimental
and theoretical study, J. Mex. Chem. Soc., 60 (2016) 218–225.