92
S. Mohapatra et al.
Liu Y, Sun H, Zhang L, Feng L (2017) Photodegradation behaviors of 17β-estradiol in different water
matrixes. Process Saf Environ Prot 112:335–341. https://doi.org/10.1016/j.psep.2017.08.044
Maalanka A, Hubicka U, Krzek J, Walczak M, Izworski G (2013) Determination of fluoxetine in
the presence of photodegradation products appearing during UVA irradiation in a solid phase
by chromatographic-densitometric method, kinetics and identification of photoproducts. Acta
Chromatogr 25:465–481. https://doi.org/10.1556/AChrom.25.2013.3.5
Marco-Urrea E, Pérez-Trujillo M, Vicent T, Caminal G (2009) Ability of white-rot fungi to remove
selected pharmaceuticals and identification of degradation products of ibuprofen by Trametes
versicolor. Chemosphere 74:765–772. https://doi.org/10.1016/j.chemosphere.2008.10.040
Massmann G, Greskowiak J, Dünnbier J, Zuehlke S, Knappe A, Pekdeger A (2006) The impact of
variable temperatures on the redox conditions and the behavior of pharmaceutical residues during
artificial recharge. J Hydrol 328:141–56
Massmann G, Dünnbier U, Heberer T, Taute T (2008) Behavior and redox sensitivity of pharmaceutical residues during bank filtration — investigation of residues of phenazone-type analgesics.
Chemosphere 71:1476–85
Matamoros V, Duhec A, Albaigés J, Bayona JM (2009) Photodegradation of carbamazepine, ibuprofen, ketoprofen and 17α-ethinylestradiol in fresh and seawater. Water Air Soil Pollut 196:161–168.
https://doi.org/10.1007/s11270-008-9765-1
Mazellier P, Méité L, De Laat J (2008) Photodegradation of the steroid hormones 17β-estradiol
(E2) and 17α-ethinylestradiol (EE2) in dilute aqueous solution. Chemosphere 73:1216–1223
Mishra M, Menon N, Tatiparti SSV, Mukherji S (2018) Assessment of endocrine disruption potential
of selected pharmaceuticals using an in-vitro assay. J Indian Chem Soc 95:269-277
Mohapatra S, Padhye LP, Mukherji S (2018) Challenges in detection of antibiotics in wastewater
matrix. In: Environmental contaminants, pp 3–20
Mompelat S, Le Bot B, Thomas O (2009) Occurrence and fate of pharmaceutical products and
by-products, from resource to drinking water. Environ Int 35:803–814
Mutiyar PK, Gupta SK, Mittal AK (2018) Fate of pharmaceutical active compounds (PhACs) from
River Yamuna, India: an ecotoxicological risk assessment approach. Ecotoxicol Environ Saf
150:297–304. https://doi.org/10.1016/j.ecoenv.2017.12.041
Nödler K, Voutsa D, Licha T (2014) Polar organic micropollutants in the coastal environment of
different marine systems. Mar Pollut Bull. https://doi.org/10.1016/j.marpolbul.2014.06.024
O’Connor DJ (1988) Models of sorptive toxic substances in freshwater systems. I: basic equations.
J Environ Eng 114:507–532. https://doi.org/10.1061/(asce)0733-9372(1988)114:3(507)
Oliveira C, Lima DLD, Silva CP, Otero M, Esteves VI (2016) Photodegradation behaviour of estriol:
an insight on natural aquatic organic matter influence. Chemosphere 159:545–551. https://doi.
org/10.1016/j.chemosphere.2016.06.046
Osenbrück K, Gläser HR, Knöller K, Weise SM, Möder M, Wennrich R, Schirmer M, Reinstorf F,
Busch W, Strauch G (2007) Sources and transport of selected organic micropollutants in urban
groundwater underlying the city of Halle (Saale), Germany. Water Res 41:3259–3270. https://
doi.org/10.1016/j.watres.2007.05.014
Packer JL, Werner JJ, Latch DE, McNeill K, Arnold WA (2003) Photochemical fate of pharmaceuticals in the environment: naproxen, diclofenac, clofibric acid, and ibuprofen. Aquat Sci
65:342–351. https://doi.org/10.1007/s00027-003-0671-8
Padhye LP, Yao H, Kung’u FT, Huang CH (2014) Year-long evaluation on the occurrence and
fate of pharmaceuticals, personal care products, and endocrine disrupting chemicals in an urban
drinking water treatment plant. Water Res. https://doi.org/10.1016/j.watres.2013.10.070
Paje MLF, Kuhlicke U, Winkler M, Neu TR (2002) Inhibition of lotic biofilms by diclofenac. Appl
Microbiol Biotechnol. https://doi.org/10.1007/s00253-002-1042-4
Pal A, Gin KYH, Lin AYC, Reinhard M (2010) Impacts of emerging organic contaminants on
freshwater resources: review of recent occurrences, sources, fate and effects. Sci Total Environ
408:6062–6069. https://doi.org/10.1016/j.scitotenv.2010.09.026
S. Mohapatra et al.
Liu Y, Sun H, Zhang L, Feng L (2017) Photodegradation behaviors of 17β-estradiol in different water
matrixes. Process Saf Environ Prot 112:335–341. https://doi.org/10.1016/j.psep.2017.08.044
Maalanka A, Hubicka U, Krzek J, Walczak M, Izworski G (2013) Determination of fluoxetine in
the presence of photodegradation products appearing during UVA irradiation in a solid phase
by chromatographic-densitometric method, kinetics and identification of photoproducts. Acta
Chromatogr 25:465–481. https://doi.org/10.1556/AChrom.25.2013.3.5
Marco-Urrea E, Pérez-Trujillo M, Vicent T, Caminal G (2009) Ability of white-rot fungi to remove
selected pharmaceuticals and identification of degradation products of ibuprofen by Trametes
versicolor. Chemosphere 74:765–772. https://doi.org/10.1016/j.chemosphere.2008.10.040
Massmann G, Greskowiak J, Dünnbier J, Zuehlke S, Knappe A, Pekdeger A (2006) The impact of
variable temperatures on the redox conditions and the behavior of pharmaceutical residues during
artificial recharge. J Hydrol 328:141–56
Massmann G, Dünnbier U, Heberer T, Taute T (2008) Behavior and redox sensitivity of pharmaceutical residues during bank filtration — investigation of residues of phenazone-type analgesics.
Chemosphere 71:1476–85
Matamoros V, Duhec A, Albaigés J, Bayona JM (2009) Photodegradation of carbamazepine, ibuprofen, ketoprofen and 17α-ethinylestradiol in fresh and seawater. Water Air Soil Pollut 196:161–168.
https://doi.org/10.1007/s11270-008-9765-1
Mazellier P, Méité L, De Laat J (2008) Photodegradation of the steroid hormones 17β-estradiol
(E2) and 17α-ethinylestradiol (EE2) in dilute aqueous solution. Chemosphere 73:1216–1223
Mishra M, Menon N, Tatiparti SSV, Mukherji S (2018) Assessment of endocrine disruption potential
of selected pharmaceuticals using an in-vitro assay. J Indian Chem Soc 95:269-277
Mohapatra S, Padhye LP, Mukherji S (2018) Challenges in detection of antibiotics in wastewater
matrix. In: Environmental contaminants, pp 3–20
Mompelat S, Le Bot B, Thomas O (2009) Occurrence and fate of pharmaceutical products and
by-products, from resource to drinking water. Environ Int 35:803–814
Mutiyar PK, Gupta SK, Mittal AK (2018) Fate of pharmaceutical active compounds (PhACs) from
River Yamuna, India: an ecotoxicological risk assessment approach. Ecotoxicol Environ Saf
150:297–304. https://doi.org/10.1016/j.ecoenv.2017.12.041
Nödler K, Voutsa D, Licha T (2014) Polar organic micropollutants in the coastal environment of
different marine systems. Mar Pollut Bull. https://doi.org/10.1016/j.marpolbul.2014.06.024
O’Connor DJ (1988) Models of sorptive toxic substances in freshwater systems. I: basic equations.
J Environ Eng 114:507–532. https://doi.org/10.1061/(asce)0733-9372(1988)114:3(507)
Oliveira C, Lima DLD, Silva CP, Otero M, Esteves VI (2016) Photodegradation behaviour of estriol:
an insight on natural aquatic organic matter influence. Chemosphere 159:545–551. https://doi.
org/10.1016/j.chemosphere.2016.06.046
Osenbrück K, Gläser HR, Knöller K, Weise SM, Möder M, Wennrich R, Schirmer M, Reinstorf F,
Busch W, Strauch G (2007) Sources and transport of selected organic micropollutants in urban
groundwater underlying the city of Halle (Saale), Germany. Water Res 41:3259–3270. https://
doi.org/10.1016/j.watres.2007.05.014
Packer JL, Werner JJ, Latch DE, McNeill K, Arnold WA (2003) Photochemical fate of pharmaceuticals in the environment: naproxen, diclofenac, clofibric acid, and ibuprofen. Aquat Sci
65:342–351. https://doi.org/10.1007/s00027-003-0671-8
Padhye LP, Yao H, Kung’u FT, Huang CH (2014) Year-long evaluation on the occurrence and
fate of pharmaceuticals, personal care products, and endocrine disrupting chemicals in an urban
drinking water treatment plant. Water Res. https://doi.org/10.1016/j.watres.2013.10.070
Paje MLF, Kuhlicke U, Winkler M, Neu TR (2002) Inhibition of lotic biofilms by diclofenac. Appl
Microbiol Biotechnol. https://doi.org/10.1007/s00253-002-1042-4
Pal A, Gin KYH, Lin AYC, Reinhard M (2010) Impacts of emerging organic contaminants on
freshwater resources: review of recent occurrences, sources, fate and effects. Sci Total Environ
408:6062–6069. https://doi.org/10.1016/j.scitotenv.2010.09.026
