1 3
Topics in Current Chemistry (2020) 378:7
125. Alexander J, Knopp G, Dötsch A, Wieland A, Schwartz T (2016) Ozone treatment of conditioned
wastewater selects antibiotic resistance genes, opportunistic bacteria, and induce strong population
shifts. Sci Total Environ 559:103–112
126. Liu S-S, Qu H-M, Yang D, Hu H, Liu W-L, Qiu Z-G et al (2018) Chlorine disinfection increases
both intracellular and extracellular antibiotic resistance genes in a full-scale wastewater treatment
plant. Water Res 136:131–136
127. Murray GE, Tobin RS, Junkins B, Kushner DJ (1984) Effect of chlorination on antibiotic resistance
profiles of sewage-related bacteria. Appl Environ Microbiol 48:73–77
128. Zheng J, Su C, Zhou J, Xu L, Qian Y, Chen H (2017) Effects and mechanisms of ultraviolet, chlorination, and ozone disinfection on antibiotic resistance genes in secondary effluents of municipal
wastewater treatment plants. Chem Eng J 317:309–316
129. Karaolia P, Michael-Kordatou I, Hapeshi E, Drosou C, Bertakis Y, Christofilos D et al (2018)
Removal of antibiotics, antibiotic-resistant bacteria and their associated genes by graphenebased TiO2 composite photocatalysts under solar radiation in urban wastewaters. Appl Catal B
224:810–824
130. Moreira NFF, Sousa JM, Macedo G, Ribeiro AR, Barreiros L, Pedrosa M et al (2016) Photocatalytic ozonation of urban wastewater and surface water using immobilized TiO2 with LEDs: Micropollutants, antibiotic resistance genes and estrogenic activity. Water Res 94:10–22
131. Amiri H, Nabizadeh R, Silva Martinez S, Jamaleddin Shahtaheri S, Yaghmaeian K, Badiei A et al
(2018) Response surface methodology modeling to improve degradation of Chlorpyrifos in agriculture runoff using TiO 2 solar photocatalytic in a raceway pond reactor. Ecotoxicol Environ Saf
147:919–925
132. Carra I, Santos-Juanes L, Acién Fernández FG, Malato S, Sánchez Pérez JA. New approach to
solar photo-Fenton operation. Raceway ponds as tertiary treatment technology. Journal of Hazardous Materials. 2014;279:322-9.
133. Mehrjouei M, Müller S, Möller D (2015) A review on photocatalytic ozonation used for the treatment of water and wastewater. Chem Eng J 263:209–219
134. Cho M, Gandhi V, Hwang T-M, Lee S, Kim J-H (2011) Investigating synergism during sequential
inactivation of MS-2 phage and Bacillus subtilis spores with UV/H 2 O 2 followed by free chlorine.
Water Res 45:1063–1070
135. Bandala ER, González L, Sanchez-Salas JL, Castillo JH (2011) Inactivation of Ascaris eggs in
water using sequential solar driven photo-Fenton and free chlorine. J Water Health 10:20–30
136. Meng X, Zhang Z (2018) Two dimensional graphitic materials for photoelectrocatalysis: a short
review. Catal Today 315:2–8
137. Li X, Yu J, Wageh S, Al-Ghamdi AA, Xie J (2016) Graphene in photocatalysis: a review. Small
12:6640–6696
138. Georgieva J, Valova E, Armyanov S, Philippidis N, Poulios I, Sotiropoulos S (2012) Bi-component
semiconductor oxide photoanodes for the photoelectrocatalytic oxidation of organic solutes and
vapours: a short review with emphasis to TiO 2 –WO 3 photoanodes. J Hazard Mater 211:30–46
139. Yang M-Q, Zhang N, Pagliaro M, Xu Y-J (2014) Artificial photosynthesis over graphene–semiconductor composites. Are we getting better? Chem Soc Rev 43:8240–8254
140. Kakaei K (2013) One-pot electrochemical synthesis of graphene by the exfoliation of graphite
powder in sodium dodecyl sulfate and its decoration with platinum nanoparticles for methanol oxidation. Carbon 51:195–201
141. Liu C, Zhang L, Liu R, Gao Z, Yang X, Tu Z et al (2016) Hydrothermal synthesis of N-doped TiO 2
nanowires and N-doped graphene heterostructures with enhanced photocatalytic properties. J Alloy
Compd 656:24–32
142. Jin Z, Zhang Q, Yuan S, Ohno T (2015) Synthesis high specific surface area nanotube gC 3 N 4 with
two-step condensation treatment of melamine to enhance photocatalysis properties. RSC Adv
5:4026–4029
143. Ozer LY, Garlisi C, Oladipo H, Pagliaro M, Sharief SA, Yusuf A et al (2017) Inorganic semiconductors-graphene composites in photo (electro) catalysis: synthetic strategies, interaction mechanisms and applications. J Photochem Photobiol C 33:132–164
144. Wang G, Feng W, Zeng X, Wang Z, Feng C, McCarthy DT et al (2016) Highly recoverable TiO 2 –
GO nanocomposites for stormwater disinfection. Water Res 94:363–370
145. Garcia DT, Ozer LY, Parrino F, Ahmed M, Brudecki GP, Hasan SW et al (2018) Photocatalytic
ozonation under visible light for the remediation of water effluents and its integration with an electro-membrane bioreactor. Chemosphere 209:534–541
261
Reprinted from the journal
Topics in Current Chemistry (2020) 378:7
125. Alexander J, Knopp G, Dötsch A, Wieland A, Schwartz T (2016) Ozone treatment of conditioned
wastewater selects antibiotic resistance genes, opportunistic bacteria, and induce strong population
shifts. Sci Total Environ 559:103–112
126. Liu S-S, Qu H-M, Yang D, Hu H, Liu W-L, Qiu Z-G et al (2018) Chlorine disinfection increases
both intracellular and extracellular antibiotic resistance genes in a full-scale wastewater treatment
plant. Water Res 136:131–136
127. Murray GE, Tobin RS, Junkins B, Kushner DJ (1984) Effect of chlorination on antibiotic resistance
profiles of sewage-related bacteria. Appl Environ Microbiol 48:73–77
128. Zheng J, Su C, Zhou J, Xu L, Qian Y, Chen H (2017) Effects and mechanisms of ultraviolet, chlorination, and ozone disinfection on antibiotic resistance genes in secondary effluents of municipal
wastewater treatment plants. Chem Eng J 317:309–316
129. Karaolia P, Michael-Kordatou I, Hapeshi E, Drosou C, Bertakis Y, Christofilos D et al (2018)
Removal of antibiotics, antibiotic-resistant bacteria and their associated genes by graphenebased TiO2 composite photocatalysts under solar radiation in urban wastewaters. Appl Catal B
224:810–824
130. Moreira NFF, Sousa JM, Macedo G, Ribeiro AR, Barreiros L, Pedrosa M et al (2016) Photocatalytic ozonation of urban wastewater and surface water using immobilized TiO2 with LEDs: Micropollutants, antibiotic resistance genes and estrogenic activity. Water Res 94:10–22
131. Amiri H, Nabizadeh R, Silva Martinez S, Jamaleddin Shahtaheri S, Yaghmaeian K, Badiei A et al
(2018) Response surface methodology modeling to improve degradation of Chlorpyrifos in agriculture runoff using TiO 2 solar photocatalytic in a raceway pond reactor. Ecotoxicol Environ Saf
147:919–925
132. Carra I, Santos-Juanes L, Acién Fernández FG, Malato S, Sánchez Pérez JA. New approach to
solar photo-Fenton operation. Raceway ponds as tertiary treatment technology. Journal of Hazardous Materials. 2014;279:322-9.
133. Mehrjouei M, Müller S, Möller D (2015) A review on photocatalytic ozonation used for the treatment of water and wastewater. Chem Eng J 263:209–219
134. Cho M, Gandhi V, Hwang T-M, Lee S, Kim J-H (2011) Investigating synergism during sequential
inactivation of MS-2 phage and Bacillus subtilis spores with UV/H 2 O 2 followed by free chlorine.
Water Res 45:1063–1070
135. Bandala ER, González L, Sanchez-Salas JL, Castillo JH (2011) Inactivation of Ascaris eggs in
water using sequential solar driven photo-Fenton and free chlorine. J Water Health 10:20–30
136. Meng X, Zhang Z (2018) Two dimensional graphitic materials for photoelectrocatalysis: a short
review. Catal Today 315:2–8
137. Li X, Yu J, Wageh S, Al-Ghamdi AA, Xie J (2016) Graphene in photocatalysis: a review. Small
12:6640–6696
138. Georgieva J, Valova E, Armyanov S, Philippidis N, Poulios I, Sotiropoulos S (2012) Bi-component
semiconductor oxide photoanodes for the photoelectrocatalytic oxidation of organic solutes and
vapours: a short review with emphasis to TiO 2 –WO 3 photoanodes. J Hazard Mater 211:30–46
139. Yang M-Q, Zhang N, Pagliaro M, Xu Y-J (2014) Artificial photosynthesis over graphene–semiconductor composites. Are we getting better? Chem Soc Rev 43:8240–8254
140. Kakaei K (2013) One-pot electrochemical synthesis of graphene by the exfoliation of graphite
powder in sodium dodecyl sulfate and its decoration with platinum nanoparticles for methanol oxidation. Carbon 51:195–201
141. Liu C, Zhang L, Liu R, Gao Z, Yang X, Tu Z et al (2016) Hydrothermal synthesis of N-doped TiO 2
nanowires and N-doped graphene heterostructures with enhanced photocatalytic properties. J Alloy
Compd 656:24–32
142. Jin Z, Zhang Q, Yuan S, Ohno T (2015) Synthesis high specific surface area nanotube gC 3 N 4 with
two-step condensation treatment of melamine to enhance photocatalysis properties. RSC Adv
5:4026–4029
143. Ozer LY, Garlisi C, Oladipo H, Pagliaro M, Sharief SA, Yusuf A et al (2017) Inorganic semiconductors-graphene composites in photo (electro) catalysis: synthetic strategies, interaction mechanisms and applications. J Photochem Photobiol C 33:132–164
144. Wang G, Feng W, Zeng X, Wang Z, Feng C, McCarthy DT et al (2016) Highly recoverable TiO 2 –
GO nanocomposites for stormwater disinfection. Water Res 94:363–370
145. Garcia DT, Ozer LY, Parrino F, Ahmed M, Brudecki GP, Hasan SW et al (2018) Photocatalytic
ozonation under visible light for the remediation of water effluents and its integration with an electro-membrane bioreactor. Chemosphere 209:534–541
261
Reprinted from the journal
