References
- A. Bhatnagar, I. Anastopoulos, Adsorptive removal of bisphenol
A (BPA) from aqueous solution: a review, Chemosphere,
168 (2017) 885–902.
- R. Liliana, G. Slawomir, J. Tomasz, W. Joanna, P. Andrzej, The
effects of Bisphenol A (BPA) on sympathetic nerve fibers in the
uterine wall of the domestic pig, Reprod. Toxicol., 84 (2019)
39–48.
- J. Michałowicz, Bisphenol A – sources, toxicity and
biotransformation, Environ. Toxicol. Pharmacol., 37 (2014)
738–758.
- E.M. Munguía-López, S. Gerardo-Lugo, E. Peralta, S. Bolumen,
H. Soto-Valdez, Migration of bisphenol A (BPA) from can
coatings into a fatty-food simulant and tuna fish, Food Addit.
Contam., 22 (2005) 892–898.
- D. Nathanson, P. Lertpitayakun, M.S. Lamkin, M. Edalatpour,
L.L. Chou, In vitro elution of leachable components from dental
sealants, J. Am. Dent. Assoc., 128 (1997) 1517–1523.
- H. Wada, H. Tarumi, S. Imazato, M. Narimatsu, S. Ebisu, In
vitro estrogenicity of resin composites, J. Dent. Res., 83 (2004)
222–226.
- A. Jemec, T. Tišler, B. Erjavec, A. Pintar, Antioxidant responses
and whole-organism changes in Daphnia magna acutely and
chronically exposed to endocrine disruptor bisphenol A,
Ecotoxicol. Environ. Saf., 86 (2012) 213–218.
- J.F. Chen, Y.Y. Xiao, Z.X. Gai, R. Li, Z.X. Zhu, C.L. Bai,
R.L. Tanguay, X.J. Xu, C.J. Huang, Q.X. Dong, Reproductive
toxicity of low level bisphenol A exposures in a two-generation
zebrafish assay: evidence of male-specific effects, Aquat.
Toxicol., 169 (2015) 204–214.
- R.K. Bhandari, S.L. Deem, D.K. Holliday, C.M. Jandegian,
C.D. Kassotis, S.C. Nagel, D.E. Tillitt, F.S. vom Saal,
C.S. Rosenfeld, Effects of the environmental estrogenic
contaminants bisphenol A and 17α-ethinyl estradiol on sexual
development and adult behaviors in aquatic wildlife species,
Gen. Comp. Endocrinol., 214 (2015) 195–219.
- J. Drastichová, Z. Svobodová, M. Groenland, R. Dobšíková,
V. Žlábek, D. Weissová, M. Szotkowská, Effect of exposure
to bisphenol A and 17β-estradiol on the sex differentiation
in zebrafish (Danio rerio), Acta Vet. Brno, 74 (2015) 287–291.
- X. Li, M.-Z. Sun, X. Li, S.-H. Zhang, L.-T. Dai, X.-Y. Liu, X. Zhao,
D.-Y. Chen, X.-Z. Feng, Impact of low-dose chronic exposure
to Bisphenol A (BPA) on adult male zebrafish adaption to the
environmental complexity: disturbing the color preference
patterns and reliving the anxiety behavior, Chemosphere,
186 (2017) 295–304.
- L. Wang, Z. Wang, J. Liu, G.X. Ji, L. Shi, J. Xu, J.X. Yang,
Deriving the freshwater quality criteria of BPA, BPF and BPAF
for protecting aquatic life, Ecotoxicol. Environ. Saf., 164 (2018)
713–721.
- S. Son, K.S. Nam, H.J. Kim, M.C. Gye, I. Shin, Cytotoxicity
measurement of Bisphenol A (BPA) and its substitutes using
human keratinocytes, Environ. Res., 164 (2018) 655–659.
- I.R. Falconer, Are endocrine disrupting compounds a health
risk in drinking water?, Int. J. Environ. Res. Public Health,
3 (2006) 180–184.
- O. Gülnaz, Bisfenol A’nın biyolojik parçalanması,
biyokonsantrasyon faktörleri ve östrojenik aktivite düzeylerinin
belirlenmesi, Çukurova Üniveristesi, 2006.
- S.P. van Leeuwen, T.F. Bovee, M. Awchi, M.D. Klijnstra, A.R.
Hamers, R.L. Hoogenboom, L. Portier, A. Gerssen, BPA, BADGE
and analogues: a new multi-analyte LC-ESI-MS/MS method
for their determination and their in vitro (anti)estrogenic and
(anti)androgenic properties, Chemosphere, 221 (2019) 246–253.
- I. Escalona, J. de Grooth, J. Font, K. Nijmeijer, Removal of BPA
by enzyme polymerization using NF membranes, J. Membr.
Sci., 468 (2014) 192–201.
- Q.Q. Yu, L. Feng, X. Chai, X.H. Qiu, H. Ouyang, G.Y. Deng,
Enhanced surface Fenton degradation of BPA in soil with a
high pH, Chemosphere, 220 (2019) 335–343.
- S. Li, G.S. Zhang, P. Wang, H.S. Zheng, Y.J. Zheng, Microwaveenhanced
Mn-Fenton process for the removal of BPA in
water, Chem. Eng. J., 294 (2016) 371–379.
- N. Potakis, Z. Frontistis, M. Antonopoulou, I. Konstantinou,
D. Mantzavinos, Oxidation of bisphenol A in water by heatactivated
persulfate, J. Environ. Manage., 195 (2017) 125–132.
- S. Akbari, F. Ghanbari, M. Moradi, Bisphenol A degradation
in aqueous solutions by electrogenerated ferrous ion activated
ozone, hydrogen peroxide and persulfate: applying low current
density for oxidation mechanism, Chem. Eng. J., 294 (2016)
298–307.
- C.M. Liu, P.X. Wu, Y.J. Zhu, L.T. Tran, Simultaneous
adsorption of Cd2+ and BPA on amphoteric surfactant activated
montmorillonite, Chemosphere, 144 (2016) 1026–1032.
- Y. Dong, D. Wu, X. Chen, Y. Lin, Adsorption of bisphenol A
from water by surfactant-modified zeolite, J. Colloid Interface
Sci., 348 (2010) 585–590.
- A. Cydzik-Kwiatkowska, K. Bernat, M. Zielińska, K. Bułkowska,
I. Wojnowska-Baryła, Aerobic granular sludge for bisphenol A
(BPA) removal from wastewater, Int. Biodeterior. Biodegrad.,
122 (2017) 1–11.
- M.-K. Zühlke, R. Schlüter, A.-K. Henning, M. Lipka,
A. Mikolasch, P. Schumann, M. Giersberg, G. Kunze, F. Schauer,
A novel mechanism of conjugate formation of bisphenol A
and its analogues by Bacillus amyloliquefaciens: detoxification
and reduction of estrogenicity of bisphenols, Int. Biodeterior.
Biodegrad., 109 (2016) 165–173.
- P.V. Nidheesh, Removal of organic pollutants by
peroxicoagulation, Environ. Chem. Lett., 16 (2018) 1283–1292.
- E. Brillas, I. Sirés, M.A. Oturan, Electro-Fenton process and
related electrochemical technologies based on Fenton’s
reaction chemistry, Chem. Rev., 109 (2009) 6570–6631.
- E. Yüksel, İ.A. Şengil, M. Özacar, The removal of sodium dodecyl
sulfate in synthetic wastewater by peroxi-electrocoagulation
method, Chem. Eng. J., 152 (2009) 347–353.
- S. Ahmadzadeh, M. Dolatabadi, Modeling and kinetics study
of electrochemical peroxidation process for mineralization
of bisphenol A; a new paradigm for groundwater treatment,
J. Mol. Liq., 254 (2018) 76–82.
- A. Benhadji, M. Taleb Ahmed, Detergent removal from rinsing
water by peroxi electrocoagulation process, Int. J. Environ. Ecol.
Eng., 13 (2019) 607–610.
- K. Eryuruk, U. Tezcan Un, U. Bakır Ogutveren, Electrochemical
treatment of wastewaters from poultry slaughtering and
processing by using iron electrodes, J. Cleaner Prod., 172 (2018)
1089–1095.
- D. Venu, R. Gandhimathi, P.V. Nidheesh, S.T. Ramesh,
Effect of solution pH on leachate treatment mechanism of
peroxicoagulation process, J. Hazard. Toxic Radioact. Waste,
20 (2016) 06016001.
- Y. Esfandyari, Y. Mahdavi, M. Seyedsalehi, M. Hoseini,
G.H. Safari, M.G. Ghozikali, H. Kamani, J. Jaafari, Degradation
and biodegradability improvement of the olive mill wastewater
by peroxi-electrocoagulation/electrooxidation-electroflotation
process with bipolar aluminum electrodes, Environ. Sci. Pollut.
Res., 22 (2015) 6288–6297.
- E. Brillas, J. Casado, Aniline degradation by Electro-Fenton®
and peroxi-coagulation processes using a flow reactor for
wastewater treatment, Chemosphere, 47 (2002) 241–248.
- F. Ghanbari, M. Moradi, A comparative study of
electrocoagulation, electrochemical Fenton, electro-Fenton
and peroxi-coagulation for decolorization of real textile
wastewater: electrical energy consumption and biodegradability
improvement, J. Environ. Chem. Eng., 3 (2015) 499–506.
- P.V. Nidheesh, R. Gandhimathi, Electrolytic removal of
Rhodamine B from aqueous solution by peroxicoagulation
process, Environ. Sci. Pollut. Res., 21 (2014) 8585–8594.
- A.R. Khataee, V. Vatanpour, A.R. Amani Ghadim, Decolorization
of C.I. Acid Blue 9 solution by UV/Nano-TiO2, Fenton,
Fenton-like, electro-Fenton and electrocoagulation processes:
a comparative study, J. Hazard. Mater., 161 (2009) 1225–1233.
- C.A. Martínez-Huitle, E. Brillas, Decontamination of wastewaters
containing synthetic organic dyes by electrochemical
methods: a general review, Appl. Catal., B, 87 (2009) 105–145.
- F. Haber, J. Weiss, The catalytic decomposition of hydrogen
peroxide by iron salts, Proc. R. Soc. A, 147 (1934) 332–351.
- R. Andreozzi, V. Caprio, A. Insola, R. Marotta, Advanced
oxidation processes (AOP) for water purification and recovery,
Catal. Today, 53 (1999) 51–59.
- P.N. Tanattı, Biyodizel atıksularının elektrokoagülasyon ve ileri
oksidasyon yöntemleri ile arıtılabilirliği, Sakarya Üniversitesi,
2015.
- E. Yüksel, Elektrofenton yöntemiyle yüzey aktif madde içeren
atıksuların arıtılması, Sakarya Üniversitesi, 2009.
- Z.L. Pan, F.P. Yu, L. Li, C.W. Song, J.W. Yang, C.L. Wang,
Y.Q. Pan, T.H. Wang, Electrochemical microfiltration
treatment of bisphenol A wastewater using coal-based carbon
membrane, Sep. Purif. Technol., 227 (2019) 115695, doi: 10.1016/j.
seppur.2019.115695.
- E. Felis, S. Ledakowicz, J.S. Miller, Degradation of Bisphenol
A using UV and UV/H2O2 processes, Water Environ. Res.,
83 (2011) 2154–2158.
- M. Umar, F. Roddick, L.H. Fan, H.A. Aziz, Application of ozone
for the removal of bisphenol A from water and wastewater –
a review, Chemosphere, 90 (2013) 2197–2207.
- M. Dietrich, M. Franke, M. Stelter, P. Braeutigam, Degradation
of endocrine disruptor bisphenol A by ultrasound-assisted
electrochemical oxidation in water, Ultrason. Sonochem.,
39 (2017) 741–749.
- R.A. Torres, C. Pétrier, E. Combet, F. Moulet, C. Pulgarin,
Bisphenol A mineralization by integrated ultrasound-UV iron(
II) treatment, Environ. Sci. Technol., 41 (2017) 297–302.
- Y. Ohko, I. Ando, C. Niwa, T. Tatsuma, T. Yamamura,
T. Nakashima, Y. Kubota, A. Fujishima, Degradation of
bisphenol A in water by TiO2 photocatalyst, Environ. Sci.
Technol., 35 (2011) 2365–2368.
- R.C. Wang, D.J. Ren, S.Q. Xia, Y.L. Zhang, J.F. Zhao, Photocatalytic
degradation of Bisphenol A (BPA) using immobilized TiO2 and
UV illumination in a horizontal circulating bed photocatalytic
reactor (HCBPR), J. Hazard. Mater., 169 (2019) 926–932.
- A. Chmayssem, S. Taha, D. Hauchard, Scaled-up electrochemical
reactor with a fixed bed three-dimensional cathode for electro-Fenton process: application to the treatment of bisphenol A,
Electrochim. Acta, 225 (2017) 435–442.
- S.S. da Silva, O. Chiavone-Filho, E.L. de Barros Neto, E.L.
Foletto, Oil removal from produced water by conjugation of
flotation and photo-Fenton processes, J. Environ. Manage., 147
(2015) 257–263.
- K. Rajeshwar, M.E. Osugi, W. Chanmanee, C.R. Chenthamarakshan,
M.V.B. Zanoni, P. Kajitvichyanukul, R. Krishnan-Ayer, Heterogeneous photocatalytic treatment of organic dyes
in air and aqueous media, J. Photochem. Photobiol., C, 9 (2018)
171–192.
- M. Özacar, İ. Ayhan Şengil, A two stage batch adsorber
design for methylene blue removal to minimize contact time,
J. Environ. Manage., 80 (2006) 372–379.
- N. Pınar Tanattı, İ. Ayhan Şengil, A. Özdemir, Optimizing
TOC and COD removal for the biodiesel wastewater by
electrocoagulation, Appl. Water Sci., 8 (2018) 1–10.