References
- M.R. Samarghandi, A. Dargahi, A. Shabanloo, H.Z. Nasab,
Y. Vaziri, A. Ansari, Electrochemical degradation of methylene
blue dye using a graphite doped PbO2 anode: optimization of
operational parameters, degradation pathway and improving
the biodegradability of textile wastewater, Arabian J. Chem.,
13 (2020) 6847–6864.
- M.R. Samarghandi, A. Dargahi, H.Z. Nasab, E. Ghahramani,
S. Salehi, Degradation of azo dye Acid Red 14 (AR14) from
aqueous solution using H2O2/nZVI and S2O82–/nZVI processes
in the presence of UV irradiation, Water Environ. Res., 92 (2020)
1173–1183.
- K.P. Sundar, S. Kanmani, Studies on the development of a novel
UV-LED strip photocatalytic reactor and performance on dye
decolourization, Environ. Prot. Eng., 47 (2021) 31–57.
- A. Hossain, A.B.M. Sadique Rayhan, M.J. Raihan, A. Nargis,
I.M.I. Ismail, A. Habib, A.J. Mahmood, Kinetics of degradation
of Eosin Y by one of the advanced oxidation processes (AOPs)–
Fenton’s process, Am. J. Anal. Chem., 7 (2016) 863–879.
- M. Afsharnia, M. Kianmehr, H. Biglari, A. Dargahi, A. Karimi,
Disinfection of dairy wastewater effluent through solar
photocatalysis processes, Water Sci. Eng., 11 (2018) 214–219.
- E. Asgari, B. Hashemzadeh, G. Hassani, M. Manshouri,
A. Sheikhmohammadi, Y. Fakhri, Enhancement the BuP photocatalytic
degradability by UVC/ZnO through adding exogenous
oxidant: mechanism, kinetic, energy consumption, J. Environ.
Chem. Eng., 8 (2020) 1–28.
- A. Almasi, A. Dargahi, M. Mohammadi, A. Azizi, A. Karami,
F. Baniamerian, Z. Saeidimoghadam, Application of response
surface methodology on cefixime removal from aqueous
solutions by ultrasonic/photooxidation, Int. J. Pharm. Technol.,
8 (2016) 16728–16736.
- V.K. Saharan, M.P. Badve, A.B. Pandit, Degradation of Reactive
Red 120 dye using hydrodynamic cavitation, Chem. Eng. J.,
178 (2011) 100–107.
- S.K. Gujar, P.R. Gogate, P. Kanthale, R. Pandey, S. Thakre,
M. Agrawal, Combined oxidation processes based on
ultrasound, hydrodynamic cavitation and chemical oxidants
for treatment of real industrial wastewater from cellulosic fiber
manufacturing sector, Sep. Purif. Technol., 257 (2021) 117888,
doi: 10.1016/j.seppur.2020.117888.
- M.R. Samarghandi, A. Rahmani, G. Asgari, G. Ahmadidoost,
A. Dargahi, Photocatalytic removal of cefazolin from aqueous
solution by AC prepared from mango seed + ZnO under UV
irradiation, Global NEST J., 20 (2018) 399–407.
- E. Asgari, A. Sheikhmohammadi, H. Nourmoradi, S. Nazari,
M. Aghanaghad, Degradation of ciprofloxacin by photocatalytic
ozonation process under irradiation with UVA: comparative
study, performance and mechanism, Process Saf. Environ. Prot.,
147 (2021) 356–366.
- B. Hashemzadeh, H. Alamgholiloo, N.N. Pesyan, E. Asgari,
A. Sheikhmohammadi, J. Yeganeh, H. Hashemzadeh, Degradation
of ciprofloxacin using hematite/MOF nanocomposite as a
heterogeneous Fenton-like catalyst: a comparison of composite
and core-shell structures, Chemosphere, 281 (2021) 130970,
doi:10.1016/j.chemosphere.2021.130970.
- K. Hasani, M. Moradi, S.A. Mokhtari, H. Sadeghi,
A. Dargahi, M. Vosoughi, Degradation of basic violet 16 dye
by electroactivated persulfate process from aqueous solutions
and toxicity assessment using microorganisms: determination
of by-products, reaction kinetic and optimization using Box–
Behnken design, Int. J. Chem. Reactor Eng., 19 (2021) 261–275.
- S. Lettieri, M. Pavone, A. Fioravanti, L.S. Amato, P. Maddalena,
Charge carrier processes and optical properties in TiO2 and
TiO2-based heterojunction photocatalysts: a review, Materials,
14 (2021) 1–57.
- K.N. Ewelina, A. Wanag, K.K. Joanna, L. Kowalczyk,
M. Zgrzebnicki, B. Tryba, J. Przepiórski, A.W. Morawski,
Methylene blue decomposition on TiO2/reduced graphene oxide
hybrid photocatalysts obtained by a two-step hydrothermal
and calcination synthesis, Catal. Today, 357 (2020) 630–637.
- S. Ren, P. Rong, Q. Yu, Preparations, properties and applications
of graphene in functional devices: a concise review, Ceram. Int.,
44 (2018) 11940–11955.
- T.F. Yeh, J. Cihlar, C.Y. Chang, C. Cheng, H. Teng, Roles of
graphene oxide in photocatalytic water splitting, Mater. Today,
16 (2013) 78–84.
- A. Enesca, The influence of photocatalytic reactors design and
operating parameters on the wastewater organic pollutants
removal—a mini-review, Catalysts, 11 (2021) 1–22.
- M.S. Miguel, C. Pablos, R.V. Grieken, J. Marugan, Influence of
light distribution on the performance of photocatalytic reactors:
LED vs. mercury lamps, Appl. Catal., B, 215 (2017) 1–7.
- K.P. Sundar, S. Kanmani, Progression of photocatalytic reactors
and it’s comparison: a review, Chem. Eng. Res. Des., 154 (2020)
135–150.
- M. Enis Leblebici, B. Van den Bogaert, G.D. Stefanidis,
T.V. Gerven, Efficiency vs. productivity in photoreactors, a
case study on photochemical separation of Eu, Chem. Eng. J.,
310 (2017) 240–248.
- A.N. Syahida, H. Sutanto, I. Alkian, F.D.D. Irianti, A.A. Wibowo,
P. Priyono, Synthesized and characterization nanosized
synthesis Fe3O4 powder from natural iron sand, J. Phys.: Conf.
Ser., 1943 (2021) 012013.
- W.K. Jo, G.T. Park, R.J. Tayade, Synergetic effect of adsorption
on degradation of malachite green dye under blue LED
irradiation using spiral-shaped photocatalytic reactor, Chem.
Technol. Biotechnol., 90 (2015) 2280–2289.
- R. Siburian, H. Sihotang, S.L. Raja, M. Supeno, C. Simanjuntak,
New route to synthesize of graphene nano sheets, Orient. J.
Chem., 34 (2018) 182–187.
- Q. Cheng, Y. Okamoto, N. Tamura, M. Tsuji, S. Maruyama,
Y. Matsuo, Graphene-like-graphite as fast-chargeable and highcapacity
anode materials for lithium ion batteries, Sci. Rep.,
7 (2017) 1–14.
- L.P. Bakos, L. Sarvari, K. Laszlo, J. Mizsei, Z. Konya, G. Halasi,
K. Hernadi, A. Szabo, D. Berkesi, I. Bakos,
I.M. Szilagyi, Electric
and photocatalytic properties of graphene oxide depending on
the degree of its reduction, Nanomaterials, 10 (2020) 1–14.
- M. Acik, Y.J. Chabal, A review on thermal exfoliation of
graphene oxide, J. Mater. Sci. Res., 2 (2013) 101–112.
- M. Ahn, R. Liu, C. Lee, W. Lee, Designing carbon/oxygen ratios
of graphene oxide membranes for proton exchange membrane
fuel cells, J. Nanomater., 10 (2019) 1–9.
- D.C. Marcano, D.V. Kosynkin, J.M. Berlin, A. Sinitskii, Z. Sun,
A. Slesarev, L.B. Alemany, W. Lu, J.M. Tour, Improved synthesis
of graphene oxide, ACS Nano, 4 (2010) 4806–4814.
- M. Kocijan, L. Curkovic, D. Ljubas, K. Muzina, I. Bacic,
T. Radosevic, M. Podlogar, I. Bdikin, O.I. Gonzalo,
M.J. Hortiguela, G. Goncalves, Graphene-based TiO2 nanocomposite
for photocatalytic degradation of dyes in aqueous
solution under solar-like radiation, Appl. Sci., 11 (2021) 1–15.
- R.C. Pawar, V. Khare, C. Sunyong Lee, Hybrid photocatalysts
using graphitic carbon
nitride/cadmium sulfide/reduced graphene oxide (g-C3N4/CdS/RGO) for superior
photodegradation of organic pollutants under UV and visible
light, Dalton Trans., 43 (2014) 12514–12527.
- S.H.S. Chan, T.Y. Wu, J.C. Juan, C.Y. Teh, Recent developments
of metal oxide semiconductors as photocatalysts in advanced
oxidation processes (AOPs) for treatment of dye waste-water,
J. Chem. Technol. Biotechnol., 86 (2011) 1130–1158.
- N.T. Padmanabhan, N. Thomas, J. Louis, D.T. Mathew, P. Ganguly,
H. John, S.C. Pillai, Graphene coupled TiO2 photocatalysts for
environmental applications: a review, Chemosphere, 271 (2021)
129506, doi:10.1016/j.chemosphere.2020.129506.
- A. Mahmood, X. Wang, X. Xie, J. Sun, Degradation behaviour
of mixed and isolated aromatic ring containing VOCs:
Langmuir-Hinshelwood kinetics, photodegradation, in-situ
FTIR and DFT studies, J. Environ. Chem. Eng., 9 (2021) 105069,
doi: 10.1016/j.jece.2021.105069.
- P.S. Ghosal, A.K. Gupta, Development of a generalized
adsorption isotherm model at solid-liquid interface:
a novel
approach, J. Mol. Liq., 240 (2017) 21–24.
- J.L. Luna, L.E.R. Montes, S.M. Vargas, A.I. Martínez,
O.F.M. Ricardez, M.C.A.G. Chavez, R.C. Gonzalez,
F.A.S. Dominguez, M.C.C. Diaz, V.V. Hipolito, Linear and
nonlinear kinetic and isotherm adsorption models for arsenic
removal by manganese ferrite nanoparticles, SN Appl. Sci.,
1 (2019) 1–19.
- T. Claes, A. Dilissen, M.E. Leblebici, T.V. Gervena, Translucent
packed bed structures for high throughput photocatalytic
reactors, Chem. Eng. J., 361 (2019) 725–735.
- Z. Dong, Z. Wen, F. Zhao, S. Kuhn, T. Noel, Scale-up of microand
milli-reactors: an overview of strategies, design principles
and applications, Chem. Eng. Sci.: X, 10 (2021) 100097,
doi: 10.1016/j.cesx.2021.100097.
- X. Wang, J. Jia, Y. Wang, Combination of photocatalysis with
hydrodynamic cavitation for degradation of tetracycline,
Chem. Eng. J., 315 (2017) 274–282.
- G. Meir, M.E. Leblebici, S. Fransen, S. Kuhn, T.V. Gerven,
Principles of co-axial illumination for photochemical reactions:
part 1. Model development, J. Adv. Manuf. Process., 2 (2020)
1–16.
- E. Colombo, M. Ashokkumar, Comparison of the photocatalytic
efficiencies of continuous stirred tank reactor (CSTR) and
batch systems using a dispersed micron sized photocatalyst,
RSC Adv., 7 (2017) 48222–48229.
- M.M. Sara, F. Bahadori, M. Ghadiri, A. Afghan, Enhancing
Fenton-like oxidation of crystal violet over Fe/ZSM-5 in a plug
flow reactor, React. Kinet. Mech. Catal., 133 (2021) 1061–1073.
- I. Thakur, A. Verma, B. Ormeci, Visibly active Fe-TiO2 composite:
a stable and efficient catalyst for the catalytic disinfection of
water using a once-through reactor, J. Environ. Chem. Eng.,
9 (2021) 1–12.
- S.M. Abdolmotaleb, Z. Ghorbanian, G. Asgari, A. Dargahi,
Degradation of CEX antibiotic from aqueous environment by
US/S2O82–/NiO process: optimization using Taguchi method and
kinetic studies, Desal. Water Treat., 171 (2019) 444–455.
- S. Afshin, Y. Rashtbari, M. Vosough, A. Dargahi, M. Fazlzadeh,
A. Behzad, M. Yousefi, Application of Box–Behnken design
for optimizing parameters of hexavalent chromium removal
from aqueous solutions using Fe3O4 loaded on activated carbon
prepared from alga: kinetics and equilibrium study, J. Water
Process Eng., 42 (2021) 1–9.
- M.E. Leblebici, G.D. Stefanidis, T.V. Gerven, Comparison
of photocatalytic space-time yields of 12 reactor designs for
wastewater treatment, Chem. Eng. Process. Process Intensif.,
97 (2015) 106–111.