References
- M. Pérez-Moya, M. Graells, G. Castells, J. Amigó, E. Ortega,
G. Buhigas, L.M. Pérez, H.D. Mansilla, Characterization of
the degradation performance of the sulfamethazine antibiotic
by photo-Fenton process, Water Res., 44 (2010) 2533–2540.
- J. Wu, H. Zhang, N. Oturan, Y. Wang, L. Chen, M.A. Oturan,
Application of response surface methodology to the removal
of the antibiotic tetracycline by electrochemical process using
carbon-felt cathode and DSA (Ti/RuO2–IrO2) anode, Chemosphere,
87 (2012) 614–620.
- A.G. Trovó, R.F. Nogueira, A. Agüera, A.R. Fernandez-Alba, C.
Sirtori, S. Malato, Degradation of sulfamethoxazole in water
by solar photo-Fenton. Chemical and toxicological evaluation,
Water Res., 43 (2009) 3922–3931.
- X. Cui, P. Zeng, G. Qiu, Y. Liu, Y. Song, X. Xie, L. Han, Pilotscale
treatment of pharmaceutical berberine wastewater by
Fenton oxidation, Environ. Earth Sci., 73 (2015) 4967–4977.
- W. Xiong, Z. Zeng, X. Li, G. Zeng, R. Xiao, Z. Yang, Y. Zhou,
C. Zhang, M. Cheng, L. Hu, Multi-walled carbon nanotube/amino-functionalized MIL-53 (Fe) composites: remarkable
adsorptive removal of antibiotics from aqueous solutions,
Chemosphere, 210 (2018) 1061–1069.
- V. Homem, L. Santos, Degradation and removal methods of
antibiotics from aqueous matrices – a review, J. Environ. Manage.,
92 (2011) 2304–2347.
- Y. Yang, Z. Zeng, C. Zhang, D. Huang, G. Zeng, R. Xiao, C. Lai,
C. Zhou, H. Guo, W. Xue, Construction of iodine vacancy-rich
BiOI/Ag@AgI Z-scheme heterojunction photo catalysts for
visible-light-driven tetracycline degradation: transformation
pathways and mechanism insight, Chem. Eng. J., 349 (2018)
808–821.
- A. Dirany, I. Sirés, N. Oturan, M.A. Oturan, Electrochemical
abatement of the antibiotic sulfamethoxazole from water, Chemosphere,
81 (2010) 594–602.
- W. Baran, J. Sochacka, W. Wardas, Toxicity and biodegradability
of sulfonamides and products of their photo catalytic
degradation in aqueous solutions, Chemosphere, 65 (2006)
1295–1299.
- C. Zhou, P. Xu, C. Lai, C. Zhang, G. Zeng, D. Huang, M.
Cheng, L. Hu, W. Xiong, X. Wen, Rational design of graphic
carbon nitride copolymers by molecular doping for visible-light-driven degradation of aqueous sulfamethazine and
hydrogen evolution, Chem. Eng. J., 359 (2019) 186–196.
- T. Methatham, M.-C. Lu, C. Ratanatamskul, Removal of 2,
4-dichlorophenol as herbicide’s by-product by Fenton’s reagent
combined with an electrochemical system, Desal. Water Treat.,
32 (2011) 42–48.
- H. Yi, M. Yan, D. Huang, G. Zeng, C. Lai, M. Li, X. Huo, L. Qin,
S. Liu, X. Liu, Synergistic effect of artificial enzyme and 2D
nano-structured Bi2WO6 for eco-friendly and efficient biomimetic
photocatalysis, Appl. Catal., B., 250 (2019) 52–62.
- Y. Yang, C. Zhang, C. Lai, G. Zeng, D. Huang, M. Cheng, J.
Wang, F. Chen, C. Zhou, W. Xiong, BiOX (X=Cl, Br, I) photocatalytic
nanomaterials: applications for fuels and environmental
management, Adv. Colloid Interfac., 254 (2018) 76–93.
- C. Zhang, W. Wang, A. Duan, G. Zeng, D. Huang, C. Lai, X. Tan,
M. Cheng, R. Wang, C. Zhou, Adsorption behavior of engineered
carbons and carbon nanomaterials for metal endocrine
disruptors: Experiments and theoretical calculation, Chemosphere,
222 (2019) 184–194.
- F. Yehia, G. Eshaq, A. Rabie, A. Mady, A. ElMetwally, Phenol
degradation by advanced Fenton process in combination with
ultrasonic irradiation, Egyptian J. Petrol., 24 (2015) 13–18.
- Y. Yang, C. Zhang, D. Huang, G. Zeng, J. Huang, C. Lai, C.
Zhou, W. Wang, H. Guo, W. Xue, Boron nitride quantum dots
decorated ultra thin porous g-C3N4: intensified exciton dissociation
and charge transfer for promoting visible-light-driven
molecular oxygen activation, Appl. Catal., B., 245 (2019) 87–99.
- F. Fu, D.D. Dionysiou, H. Liu, The use of zero-valent iron for
groundwater remediation and wastewater treatment: a review,
J. Hazard. Mater., 267 (2014) 194–205.
- M.A.N. Khan, M. Siddique, F. Wahid, R. Khan, Removal of
reactive blue 19 dye by sono, photo and sono photocatalytic
oxidation using visible light, Ultrason. Sonochem., 26 (2015)
370–377.
- R. Bhavani, A. Sivasamy, Sonocatalytic degradation of malachite
green oxalate by a semiconductor metal oxide nanocatalyst,
Ecotox. Environ. Safe., 134 (2016) 403–411.
- Y.L. Pang, A.Z. Abdullah, S. Bhatia, Review on sonochemical
methods in the presence of catalysts and chemical additives
for treatment of organic pollutants in wastewater, Desalination,
277 (2011) 1–14.
- X. Zhou, B. Lv, Z. Zhou, W. Li, G. Jing, Evaluation of highly
active nanoscale zero-valent iron coupled with ultrasound for
chromium (VI) removal, Chem. Eng. J., 281 (2015) 155–163.
- N.C. Mueller, B. Nowack, Nanoparticles for remediation: solving
big problems with little particles, Elements, 6 (2010) 395–400.
- Y. Liu, H. Choi, D. Dionysiou, G.V. Lowry, Trichloroethene
hydrodechlorination in water by highly disordered monometallic
nanoiron, Chem. Mater., 17 (2005) 5315–5322.
- R. Li, X. Jin, M. Megharaj, R. Naidu, Z. Chen, Heterogeneous
Fenton oxidation of 2, 4-dichlorophenol using iron-based
nanoparticles and persulfate system, Chem. Eng. J., 264 (2015)
587–594.
- D. Mohan, S. Kumar, A. Srivastava, Fluoride removal from
groundwater using magnetic and nonmagnetic corn stover
biochars, Ecol. Eng., 73 (2014) 798–808.
- A. Liu, J. Liu, B. Pan, W.-x. Zhang, Formation of lepidocrocite
(γ–FeOOH) from oxidation of nanoscale zero-valent iron
(nZVI) in oxygenated water, Rsc Adv., 4 (2014) 57377–57382.
- S. Zha, Y. Cheng, Y. Gao, Z. Chen, M. Megharaj, R. Naidu,
Nanoscale zero-valent iron as a catalyst for heterogeneous
Fenton oxidation of amoxicillin, Chem. Eng. J., 255 (2014) 141–148.
- M.R. Jamei, M.R. Khosravi, B. Anvaripour, A novel ultrasound
assisted method in synthesis of NZVI particles, Ultrason.
Sonochem., 21 (2014) 226–233.
- A. Liu, J. Liu, W.-x. Zhang, Transformation and composition
evolution of nanoscale zero valent iron (nZVI) synthesized by
borohydride reduction in static water, Chemosphere, 119 (2015)
1068–1074.
- T. Shahwan, S.A. Sirriah, M. Nairat, E. Boyacı, A.E. Eroğlu, T.B.
Scott, K.R. Hallam, Green synthesis of iron nanoparticles and
their application as a Fenton-like catalyst for the degradation
of aqueous cationic and anionic dyes, Chem. Eng. J., 172 (2011)
258–266.
- Z. Wen, Y. Zhang, C. Dai, Removal of phosphate from aqueous
solution using nanoscale zerovalent iron (nZVI), Colloids Surf.
A., 457 (2014) 433–440.
- W. Zhang, H. Gao, J. He, P. Yang, D. Wang, T. Ma, H. Xia, X. Xu,
Removal of norfloxacin using coupled synthesized nanoscale
zero-valent iron (nZVI) with H2O2 system: Optimization of
operating conditions and degradation pathway, Sep. Purif.
Technol., 172 (2017) 158–167.
- H. Zhou, Y. Shen, P. Lv, J. Wang, P. Li, Degradation pathway
and kinetics of 1-alkyl-3-methylimidazolium bromides oxidation
in an ultrasonic nanoscale zero-valent iron/hydrogen
peroxide system, J. Hazard. Mater., 284 (2015) 241–252.
- A. Babuponnusami, K. Muthukumar, Removal of phenol by
heterogenous photo electro Fenton-like process using nanozero
valent iron, Sep. Purif. Technol., 98 (2012) 130–135.
- L. Wang, J. Yang, Y. Li, J. Lv, J. Zou, Removal of chlorpheniramine
in a nanoscale zero-valent iron induced heterogeneous
Fenton system: Influencing factors and degradation intermediates,
Chem. Eng. J., 284 (2016) 1058–1067.
- J. Deng, H. Dong, C. Zhang, Z. Jiang, Y. Cheng, K. Hou, L.
Zhang, C. Fan, Nanoscale zero-valent iron/biochar composite
as an activator for Fenton-like removal of sulfamethazine, Sep.
Purif. Technol., 202 (2018) 130–137.
- C. Özdemir, M.K. Öden, S. Şahinkaya, D. Güçlü, The sonochemical
decolorisation of textile azo dye CI Reactive Orange 127,
Color Technol., 127 (2011) 268–273.
- Y. Pan, M. Zhou, J. Cai, X. Li, W. Wang, B. Li, X. Sheng, Z. Tang,
Significant enhancement in treatment of salty wastewater by
pre–magnetization Fe0/H2O2 process, Chem. Eng. J., 339 (2018)
411–423.
- Y. Wei, X. Wang, W. Guo, J. Wang, Mechanistic study of the
degradation of azo dye reactive brilliant red K-2BP by ultra
sound radiation and zero-valent iron, Environ. Eng. Sci., 29
(2012) 399–405.
- Z. Li, L. Wang, J. Meng, X. Liu, J. Xu, F. Wang, P. Brookes,
Zeolite-supported nanoscale zero-valent iron: new findings
on simultaneous adsorption of Cd (II), Pb (II), and As (III) in
aqueous solution and soil, J. Hazard. Mater., 344 (2018) 1–11.
- Y.-b. Hu, X.-y. Li, Influence of a thin aluminum hydroxide coating
layer on the suspension stability and reductive reactivity
of nanoscale zero-valent iron, Appl. Catal. B., 226 (2018) 554–564.
- N. Jaafarzadeh, A. Takdastan, S. Jorfi, F. Ghanbari, M. Ahmadi,
G. Barzegar, The performance study on ultrasonic/Fe3O4/H2O2 for degradation of azo dye and real textile wastewater
treatment, J. Mol. Liq., 256 (2018) 462–470.
- E. Shirazi, A. Torabian, G. Nabi-Bidhendi, Carbamazepine
removal from groundwater: Effectiveness of the TiO2/UV,
nanoparticulate zero-valent fron, and fenton (NZVI/H2O2)
processes, CLEAN–Soil, Air, Water, 41 (2013) 1062–1072.
- H. Shemer, Y.K. Kunukcu, K.G. Linden, Degradation of the
pharmaceutical metronidazole via UV, Fenton and photo-Fenton
processes, Chemosphere, 63 (2006) 269–276.
- R.B. Phillips, R.R. James, M.L. Magnuson, Electrolyte selection
and microbial toxicity for electrochemical oxidative water
treatment using a boron-doped diamond anode to support site
specific contamination incident response, Chemosphere, 197
(2018) 135–141.
- I. Talinli, G. Anderson, Interference of hydrogen peroxide on
the standard COD test, Water Res., 26 (1992) 107–110.
- A.G. Trovó, R.F. Nogueira, A. Agüera, C. Sirtori, A.R. Fernández-Alba, Photodegradation of sulfamethoxazole in various
aqueous media: persistence, toxicity and photo products
assessment, Chemosphere, 77 (2009) 1292–1298.
- H. Lin, J. Niu, J. Xu, Y. Li, Y. Pan, Electrochemical mineralization
of sulfamethoxazole by Ti/SnO2-Sb/Ce-PbO2 anode:
kinetics, reaction pathways, and energy cost evolution, Electrochim.
Acta, 97 (2013) 167–174.