References
- B.S. Rubin, Bisphenol A: an endocrine disruptor with widespread
exposure and multiple effects, J. Steroid. Biochem. Mol.
Biol., 127 (2011) 27–34.
- N. Collado, G. Buttiglieri, B.A. Kolvenbach, J. Comas, P.F. Corvini,
I. Rodríguez-Roda, Exploring the potential of applying
proteomics for tracking bisphenol A and nonylphenol degradation
in activated sludge, Chemosphere, 90 (2013) 2309–2314.
- S.C. Nagel, J.J. Bromfield, Bisphenol A: a model endocrine disrupting
chemical with a new potential mechanism of action,
Endocrinology, 154 (2013) 1962–1964.
- T.O. Hanci, I. Arslan-Alaton, B. Genc, Bisphenol A treatment
by the hot persulfate process: Oxidation products and acute
toxicity, J. Hazard. Mater., 263 (2013) 283–290.
- Z. Karim, Q. Husain, Application of fly ash adsorbed peroxidase
for the removal of bisphenol A in batch process and
continuous reactor: assessment of genotoxicity of its product,
Food. Chem. Toxicol., 48 (2010) 3385–3390.
- J. Bohdziewicz, G. Liszczyk, Evaluation of effectiveness of
bisphenol A removal on domestic and foreing activated carbons,
Ecol. Chem. Eng., 20 (2013) 371–379.
- M.F. Brugnera, K. Rajeshwar, J.C. Cardoso, M.V.B. Zanoni,
Bisphenol a removal from wastewater using self-organized
TiO2 nanotubular array electrodes, Chemosphere, 78 (2010)
569–575.
- F. Gao, Y. Li, B. Xiang, Degradation of bisphenol a through
transition metals activating persulfate process, Ecotoxic. Environ.
Safety, 158 (2018) 239–247.
- S. Yang, P. Wang, X. Yang, L. Shan, W. Zhang, X. Shao, R. Niu,
Degradation efficiencies of azo dye Acid Orange 7 by the interaction
of heat, UV and anions with common oxidants: persulfate,
peroxy mono sulfate and hydrogen peroxide, J. Hazard.
Mater., 179 (2010) 552–558.
- M. Ahmad, A.L. Teel, R.J. Watts, Mechanism of persulfate
activation by phenols, Environ. Sci. Technol., 47 (2013) 5864–5871.
- Y. Zhu, M. Yue, Y. Natarajan, L. Kong, L. Ma, Q. Zhao, J. Zhan,
Efficient activation of persulfate by Fe3O4@b-cyclodextrin
nanocomposite for removal of bisphenol, A, RSC Adv., 8 (2018)
14879–14887.
- Y.G. Kang, H.C. Vu, T.T. Le, Y.S. Chang, Activation of persulfate
by a novel Fe(II)-immobilized chitosan/alginate composite for
bisphenol A degradation, Chem. Eng. J., 353 (2018) 736–745.
- H. Li, J. Wan, Y. Ma, Y. Wang, Synthesis of novel core-shell
Fe0@Fe3O4 as heterogeneous activator of persulfate for oxidation
of dibutylphthalate under neutral conditions, Chem. Eng.
J., 301 (2016) 315–324.
- Z.H. Diao, W. Qian, P.R. Guo, L.G. Kong, S.Y. Pu, Photo-assisted
degradation of bisphenol A by a novel FeS2@SiO2 microspheres activated per sulphate process: Synergistic effect,
pathway and mechanism, Chem. Eng. J., 349 (2018) 683–693.
- S. Zhang, X. Zhao, H. Niu, Y. Shi, Y. Cai, G. Jiang, Super paramagnetic
Fe3O4 nanoparticles as catalysts for the catalytic oxidation
of phenolic and aniline compounds, J. Hazard. Mater.,
167 (2009) 560–566.
- D.B. Thakur, R.M. Tiggelaar, Y. Weber, J.G.E. Gardeniers, L.
Lefferts, K. Seshan, Ruthenium catalyst on carbon nano fiber
support layers for use in silicon-base structured micro reactors,
Part II: Catalytic reduction of bromate contaminants in
aqueous phase, Appl. Catal. B, 102 (2011) 243–250.
- B. Darsinou, Z. Frontistis, M. Antonopoulou, I. Konstantinou,
D. Mantzavinos, Sono-activated persulfate oxidation of
bisphenol A: kinetics, pathways and the controversial role of
temperature, Chem. Eng. J., 280 (2015) 623–633.
- H. Kusic, I. Peternel, S. Ukic, N. Koprivanac, T. Bolanca, S.
Papic, A.L. Bozic, Modeling of iron activated persulfate oxidation
treating reactive azo dye in water matrix, Chem. Eng. J.,
172 (2011) 109–121.
- M.M. Amin, B. Bina, A.M. Samanai, H.R. Pourzamani, Benzene
removal by nano magnetic particles under continuous
condition from aqueous solutions, Front. Environ. Sci. Eng., 8
(2014) 345–356.
- W. Guo, W. Hu, J. Pan, H. Zhou, W. Guan, X. Wang, J. Dai, Selective
adsorption and separation of BPA from aqueous solution
using novel molecularly imprinted polymers based on kaolinite/Fe3O4 composites, Chem. Eng. J., 171 (2011) 603–611.
- M.H. Dehghani, A.H. Mahvi, N. Rastkari, R. Saeedi, S.
Nazmara, E. Iravani, Adsorption of bisphenol A (BPA) from
aqueous solutions by carbon nanotubes: kinetic and equilibrium
studies, Desal. Water. Treat., 54 (2015) 84–92.
- S. Ghosh, A.Z.M. Badruddoza, K. Hidajat, M.S. Uddin, Adsorptive
removal of emerging contaminants from water using
super paramagnetic Fe3O4 nanoparticles bearing a minated
β-cyclodextrin, J. Environ. Chem. Eng., 1 (2013) 122–130.
- Y. Zhou, L. Chen, L. Ping, X. Tang, J. Lu, Removal of bisphenol
a from aqueous solution using modified fibric peat as a novel
biosorbent, Sep. Purif. Technol., 81 (2011) 184–190.
- Y.H. Huang, Behavioral evidence of the dominant radicals and
intermediates involved in Bisphenol a degradation using an
efficient Co2+/PMS oxidation process, J. Hazard Mater., 167
(2009) 418–426.
- J.A. Zaz, J.A. Casas, C.B. Molina, A. Quintanilla, J.J. Rodriguez,
Evolution of ecotoxicity upon Fenton’ s oxidation of phenol in
water, Environ. Sci. Technol., 41 (2007) 7164–7170.
- D. Deng, X. Lin, J. Ou, Z. Wang, S. Li, M. Deng, Y. Shu, Efficient
chemical oxidation of high levels of soil-sorbed phenanthrene
by ultrasound induced, thermally activated persulfate, Chem.
Eng. J., 265 (2015) 176–183.
- C. Tan, Y. Dong, D. Fu, N. Gao, J. Ma, X. Liu, Chloramphenicol
removal by zero valent iron activated peroxy mono sulfate
system: Kinetics and mechanism of radical generation, Chem.
Eng. J., 334 (2018) 1006–1015.
- X. Wei, N. Gao, C. Li, Y. Deng, S. Zhou, L. Li, Zero-valent iron
(ZVI) activation of persulfate (PS) for oxidation of bentazon in
water, Chem. Eng. J., 285 (2016) 660–670.