References
- X. Jiang, H.Y. Xia, L.B. Zhang, J.H. Peng, S. Cheng, Q. Zhang,
Preparation of copper loaded activated carbon by ultrasoundmicrowave
combined treating on waste activated carbon,
Powder Technol., 338 (2018) 857–868.
- S. Cheng, L.B. Zhang, H.Y. Xia, J.H. Peng, J.H. Shu, C.Y. Li,
Adsorption behavior of methylene blue onto waste-derived
adsorbent and exhaust gases recycling, RSC Adv., 44 (2017)
27331–27341.
- A. Nasrollahpour, S.E. Moradi, Photochemical degradation
of methylene blue by metal oxide-supported activated carbon
photocatalyst, Desal. Water Treat., 57 (2016) 8854–8862.
- Secretariat of China Dyestuff Industry Association, Analysis of
the Economic Operation of China’s Dyed Pigment Industry in
2017, Fine and Specialty Chemicals, 26 (2018) 5–13.
- J.G. Georgiadis, B.J. Marinas, A.M. Mayes, M.A. Shannon,
P.W. Bohn, Science and technology for water purification in the
coming decades, Nature., 452 (2008) 301–310.
- M.R. Hoffmann, S.T. Martin, W. Choi, D.W. Bahnemann,
Environmental applications of semiconductor photocatalysis,
Chem. Rev., 95 (1995) 69–96.
- J. Hou, C. Yang, Z. Wang, W. Zhou, S. Jiao, H. Zhu, In situ
synthesis of α–β phase heterojunction on Bi2O3 nanowires
with exceptional visible-light photocatalytic performance,
Appl. Catal., B, 142–143 (2013) 504–511.
- S. Cotillas, J. Llanos, D.P.C. Clematis, M. Panizza, Removal
of Procion Red MX–5B dye from wastewater by conductivediamond
electrochemical oxidation, Electrochim. Acta,
263 (2018) 1–7.
- Y. Huang, G. Ruan, Y. Ruan, W. Zhang, X. Li, F. Du, J. Li,
Hypercrosslinked porous polymers hybridized with graphene
oxide for water treatment: dye adsorption and degradation,
RSC Adv., 8 (2018) 13417–13422.
- A.K. Verma, R.R. Dash, P. Bhunia, A review on chemical/flocculation technologies for removal of colour from textile
wastewaters, J. Environ. Manage., 93 (2012) 154–168.
- A.E.D.F. Marcela, B.D.C. Cassandra, M.M. Bonetto, D.P.S. Rafael,
L.A. Féris, Diclofenac removal from water by adsorption
using activated carbon in batch mode and fixed-bed column:
isotherms, thermodynamic study and breakthrough curves
modeling, J. Cleaner Prod., 181 (2018) 145–154.
- B.-T. Zhang, H. Liu, Y. Liu, Y.G. Teng, Application trends of
nanofibers in analytical chemistry, TrAC, Trends Anal. Chem.,
131 (2020) 115992, doi: 10.1016/j.trac.2020.115992.
- L. Pan, Y. Takagi, Y. Matsui, T. Matsushita, N. Shirasaki, Micromilling
of spent granular activated carbon for its possible reuse
as an adsorbent: remaining capacity and characteristics, Water
Res., 114 (2017) 50–58.
- T.S. Kim, H.J. Song, M.A. Dar, H.J. Lee, D.W. Kim, Fast
adsorption kinetics of highly dispersed ultrafine nickel/carbon nanoparticles for organic dye removal, Appl. Surf. Sci.,
439 (2018) 364–370.
- A. Fujishima, K. Honda, Electrochemical photolysis of water at
a semiconductor electrode, Nature, 238 (1972) 37–38.
- J. Li, J. Zhong, X. He, S. Huang, J. Zeng, J. He, W. Shi, Enhanced
photocatalytic activity of Fe2O3 decorated Bi2O3, Appl. Surf. Sci.,
284 (2013) 527–532.
- J. Zhong, J. Li, J. Zeng, J. He, S. Huang, W. Jiang, M. Li, Enhanced
photocatalytic activity of In2O3–decorated TiO2, Appl. Phys. A,
115 (2014) 1231–1238.
- P. Cai, S.M. Zhou, D.K. Ma, S.N. Liu, W. Chen, S.M. Huang,
Fe2O3-modified porous BiVO4 nanoplates with enhanced
photocatalytic activity, Nano-Micro. Lett., 7 (2015) 183–193.
- J.Z. Li, J.B. Zhong, J. Zeng, F.M. Feng, J.J. He, Improved
photocatalytic activity of dysprosium-doped Bi2O3 prepared
by sol-gel method, Mater. Sci. Semicond. Process., 16 (2013)
379–384.
- Y. Dai, L. Yin, Low Fe-doped Bi2O3 photocatalyst with long
wavelength response: crystalline transition and mechanisms by
first-principles calculation, J. Alloys Compd., 563 (2013) 80–84.
- N. Xia, D. Yuan, T. Zhou, J. Chen, S. Mo, Y. Liu, Microwave
synthesis and electrochemical characterization of mesoporous
carbon@Bi2O3 composites, Mater. Res. Bull., 46 (2011) 687–691.
- M. Malligavathy, D.P. Padiyan, Phase purity analysis and
optical studies of Bi2O3 nanoparticles suitable for photocatalytic
activity, Int. J. Nanomed.,17 (2018) 1760040, doi: 10.1142/
S0219581X17600407.
- S.A. Hosseini, R. Saeedi, Photocatalytic degradation of
methyl orange on Bi2O3 and Ag2O-Bi2O3 nano photocatalysts,
Bull. Chem. React. Eng. Catal., 12 (2017) 96, doi: 10.9767/
bcrec.12.1.623.96-105.
- X. Liu, X. Quan, L. Bo, S. Chen, Y. Zhao, M. Chang, Temperature
measurement of GAC and decomposition of PCP loaded
on GAC and GAC-supported copper catalyst in microwave
irradiation, Appl. Catal., A, 264 (2004) 53–58.
- P. Arabkhani, H. Javadian, A. Asfaram, M. Ateia, Decorating
graphene oxide with zeolitic imidazolate framework (ZIF-8)
and pseudo-boehmite offers ultra-high adsorption capacity
of diclofenac in hospital effluents, Chemosphere, 271 (2021)
129610, doi: 10.1016/j.chemosphere.2021.129610.
- M. Asfaram, G. Ghaedi, R. Ghezelbash, Biosorption of malachite
green by novel biosorbent Yarrowia lipolytica isf7: application of
response surface methodology, J. Mol. Liq., 214 (2016) 249–258.
- H. Abbasi., F. Salimi, F. Golmohammadi, Removal of cadmium
from aqueous solution by nano composites of bentonite/TiO2
and bentonite/ZnO using photocatalysis adsorption process,
Silicon-Neth. Silicon, 12 (2020) 2721–2731.
- M. Kamari, S. Shafiee, F. Salimi, Comparison of modified
boehmite nanoplatelets and nanowires for dye removal from
aqueous solution, Desal. Water Treat., 161 (2019) 304–314.
- J. Rezaee, F. Salimi, C. Karami, Removal of eriochrome black
T dye from water solution using modified nano-boehmite by
organic compounds, Desal. Water Treat., 139 (2019) 342–351.
- P. Arabkhani, A. Asfaram, Development of a novel threedimensional
magnetic polymer aerogel as an efficient adsorbent
for malachite green removal, J. Hazard. Mater., 384 (2019)
121394, doi: 10.1016/j.jhazmat.2019.121394.
- M. Roosta, M. Ghaedi, A. Asfaram, Simultaneous ultrasonicassisted
removal of malachite green and safranin O by copper
nanowires loaded on activated carbon: central composite
design optimization, RSC Adv., 5 (2015) 57021–57029.
- Q. Huang, S. Zhang, C. Cai, B. Zhou, β-and α-Bi2O3
nanoparticles synthesized via microwave-assisted method
and their photocatalytic activity towards the degradation of
rhodamine B, Mater. Lett., 65 (2011) 988–990.
- J.Y. Liu, Preparation of Cerium Oxide Composite and its
Application in Photocatalysis, Ph.D. Dissertation, East China
Normal University, Shanghai, 2015 (in Chinese).
- H. Sudrajat, S. Hartuti, Structural properties and catalytic
activity of a novel ternary CuO/g-C3N4/Bi2O3 photocatalyst,
J. Colloid Interface Sci., 524 (2018) 227–235.
- H. Jiang, C. Wang, P. Wang, J. Li, Z. Lu, Surface properties
and visible-light photocativity of N-doped TiO2 nano-powder,
J. Mater. Sci. Eng., 29 (2011) 161–166.
- M. Wang, Q. Liu, Y. Che, L. Zhang, D. Zhang, Characterization
and photocatalytic properties of N-doped BiVO4 synthesized
via sol-gel method, J. Alloys Compd., 548 (2013) 70–76.
- Y. Shi, L. Luo, Y. Zhang, Y. Chen, S. Wang, L. Li, F. Jiang,
Synthesis and characterization of α/β-Bi2O3 with enhanced
photocatalytic activity for 17α-ethynylestradiol, Ceram. Int.,
43 (2017) 7267–7635.
- K.S. Novoselov, V.I. Falko, L. Colombo, P.R. Gellert,
M.G. Schwab, K. Kim, A roadmap for grapheme, Nature, 490
(2012) 192–200.
- F. Salimi, V. Valiei, C. Karami, Removal of EBT dye from
aqueous solution by modified MoNiO4 adsorbent. Desal. Water
Treat., 190 (2020) 340–352.
- M. Jalalah, M. Faisal, H. Bouzid, J.G. Park, S.A.A. Sayari,
A.A. Ismail, Comparative study on photocatalytic
performances of crystalline α-and β-Bi2O3 nanoparticles under
visible light, J. Ind. Eng. Chem., 309 (2015) 183–189.
- G. Dai, S. Liu, Y. Liang, A simple preparation of carbon doped
porous Bi2O3 with enhanced visible-light photocatalytic activity,
J. Alloys Compd., 608 (2014) 44–48.
- S. Chen, J. Zhang, C. Zhang, Q. Yue, Y. Li, C. Li, Equilibrium and
kinetic studies of methyl orange and methyl violet adsorption
on activated carbon derived from Phragmites australis,
Desalination, 252 (2010) 149–156.
- R. Shan, L. Lu, J. Gu, Y. Zhang, H. Yuan, Y. Chen, B. Luo,
Photocatalytic degradation of methyl orange by Ag/TiO2/biochar composite catalysts in aqueous solutions, Mater.
Sci. Semicond. Process., 114 (2020) 105088, doi: 10.1016/j.mssp.2020.105088.
- N.N. Bahrudin, M. Nawi, Z. Zainal, Insight into the synergistic
photocatalytic-adsorptive removal of methyl orange dye using
TiO2/chitosan based photocatalyst, Int. J. Biol. Macromol.,
165 (2020) 2462–2474.
- X. Yuan, F. Pei, X. Luo, H. Hu, H. Qian, P. Wen, K. Miao,
S. Guo, W. Wang, G. Feng, Fabrication of ZnO/Au@Cu2O
heterojunction towards deeply oxidative photodegradation
of organic dyes, Sep. Purif. Technol., 262 (2021) 118301, doi:
10.1016/j.seppur.2021.118301.
- S. Radoor, J. Karayil, A. Jayakumar, J. Parameswaranpillai,
S. Siengchin, Efficient removal of methyl orange from aqueous
solution using mesoporous ZSM-5 zeolite: synthesis, kinetics
and isotherm studies, Colloids Surf., A, 611 (2021) 125852,
doi: 10.1016/j.colsurfa.2020.125852.