performance liquid chromatography–electrospray ionization low-energy collision-induced
dissociation tandem mass spectrometry. J Chromatogr A 1217(9):1471–1475
52. Villar Navarro M, Ramos Payán M, Fernández-Torres R, Bello-López MA, Callejón
Mochón M, Guiráum Pérez A (2011) Capillary electrophoresis determination of nonsteroidal
anti-inflammatory drugs in wastewater using hollow fiber liquid-phase microextraction. Electrophoresis 32(16):2107–2113
53. Xu Y, Luo F, Pal A, Gin KY, Reinhard M (2011) Occurrence of emerging organic contaminants in a tropical urban catchment in Singapore. Chemosphere 83:963–969
54. Baranowska I, Kowalski B (2011) Using HPLC method with DAD detection for the simultaneous determination of 15 drugs in surface water and wastewater. Pol J Environ Stud 20
(1):21–28
55. Da Silva BF, Jelic A, López-Serna R, Mozeto AA, Petrovic M, Barceló D (2011) Occurrence
and distribution of pharmaceuticals in surface water, suspended solids and sediments of the
Ebro river basin, Spain. Chemosphere 85(8):1331–1339
56. Huang Q, Yu Y, Tang C, Zhang K, Cui J, Peng X (2011) Occurrence and behavior of
non-steroidal anti-inflammatory drugs and lipid regulators in wastewater and urban river
water of the Pearl River Delta, South China. J Environ Monit 13(4):855–863
57. Gros M, Rodríguez-Mozaz S, Barceló D (2012) Fast and comprehensive multi-residue analysis of a broad range of human and veterinary pharmaceuticals and some of their metabolites in
surface and treated waters by ultra-high-performance liquid chromatography coupled to
quadrupole-linear ion trap tandem mass spectrometry. J Chromatogr A 1248:104–121
58. Vidal-Dorsch DE, Bay SM, Maruya K, Snyder SA, Trenholm RA, Vanderford BJ (2012)
Contaminants of emerging concern in municipal wastewater effluents and marine receiving
water. Environ Toxicol Chem 31(12):2674–2682
59. Rodil R, Quintana JB, Concha-Graña E, López-Mahía P, Muniategui-Lorenzo S, PradaRodríguez D (2012) Emerging pollutants in sewage, surface and drinking water in Galicia
(NW Spain). Chemosphere 86(10):1040–1049
60. Daneshvar A, Svanfelt J, Kronberg L, Weyhenmeyer GA (2012) Neglected sources of
pharmaceuticals in river water—footprints of a Reggae festival. J Environ Monit 14
(2):596–603
61. Komori K, Suzuki Y, Minamiyama M, Harada A (2013) Occurrence of selected pharmaceuticals in river water in Japan and assessment of their environmental risk. Environ Monit Assess
185(6):4529–4536
62. Aydin E, Talinli I (2013) Analysis, occurrence and fate of commonly used pharmaceuticals
and hormones in the Buyukcekmece watershed, Turkey. Chemosphere 90(6):2004–2012
63. Patrolecco L, Ademollo N, Grenni P, Tolomei A, Caracciolo AB, Capri S (2013) Simultaneous determination of human pharmaceuticals in water samples by solid phase extraction and
HPLC with UV-fluorescence detection. Microchem J 107:165–171
64. Shanmugam G, Sampath S, Selvaraj KK, Larsson DJ, Ramaswamy BR (2014) Non-steroidal
anti-inflammatory drugs in Indian rivers. Environ Sci Pollut Res 21(2):921–931
65. Lolić A, Paíga P, Santos LH, Ramos S, Correia M, Delerue-Matos C (2015) Assessment of
non-steroidal anti-inflammatory and analgesic pharmaceuticals in seawaters of North of
Portugal: occurrence and environmental risk. Sci Total Environ 508:240–250
66. Eslami A, Amini MM, Yazdanbakhsh AR, Rastkari N, Mohseni-Bandpei A, Nasseri S et al
(2015) Occurrence of non-steroidal anti-inflammatory drugs in Tehran source water, municipal and hospital wastewaters, and their ecotoxicological risk assessment. Environ Monit
Assess 187(12):734
67. Archer E, Petrie B, Kasprzyk-Hordern B, Wolfaardt GM (2017) The fate of pharmaceuticals
and personal care products (PPCPs), endocrine disrupting contaminants (EDCs), metabolites
and illicit drugs in a WWTW and environmental waters. Chemosphere 174:437–446. https://
doi.org/10.1016/J.CHEMOSPHERE.2017.01.101
36
G. A. Elizalde-Velázquez and L. M. Gómez-Oliván
dissociation tandem mass spectrometry. J Chromatogr A 1217(9):1471–1475
52. Villar Navarro M, Ramos Payán M, Fernández-Torres R, Bello-López MA, Callejón
Mochón M, Guiráum Pérez A (2011) Capillary electrophoresis determination of nonsteroidal
anti-inflammatory drugs in wastewater using hollow fiber liquid-phase microextraction. Electrophoresis 32(16):2107–2113
53. Xu Y, Luo F, Pal A, Gin KY, Reinhard M (2011) Occurrence of emerging organic contaminants in a tropical urban catchment in Singapore. Chemosphere 83:963–969
54. Baranowska I, Kowalski B (2011) Using HPLC method with DAD detection for the simultaneous determination of 15 drugs in surface water and wastewater. Pol J Environ Stud 20
(1):21–28
55. Da Silva BF, Jelic A, López-Serna R, Mozeto AA, Petrovic M, Barceló D (2011) Occurrence
and distribution of pharmaceuticals in surface water, suspended solids and sediments of the
Ebro river basin, Spain. Chemosphere 85(8):1331–1339
56. Huang Q, Yu Y, Tang C, Zhang K, Cui J, Peng X (2011) Occurrence and behavior of
non-steroidal anti-inflammatory drugs and lipid regulators in wastewater and urban river
water of the Pearl River Delta, South China. J Environ Monit 13(4):855–863
57. Gros M, Rodríguez-Mozaz S, Barceló D (2012) Fast and comprehensive multi-residue analysis of a broad range of human and veterinary pharmaceuticals and some of their metabolites in
surface and treated waters by ultra-high-performance liquid chromatography coupled to
quadrupole-linear ion trap tandem mass spectrometry. J Chromatogr A 1248:104–121
58. Vidal-Dorsch DE, Bay SM, Maruya K, Snyder SA, Trenholm RA, Vanderford BJ (2012)
Contaminants of emerging concern in municipal wastewater effluents and marine receiving
water. Environ Toxicol Chem 31(12):2674–2682
59. Rodil R, Quintana JB, Concha-Graña E, López-Mahía P, Muniategui-Lorenzo S, PradaRodríguez D (2012) Emerging pollutants in sewage, surface and drinking water in Galicia
(NW Spain). Chemosphere 86(10):1040–1049
60. Daneshvar A, Svanfelt J, Kronberg L, Weyhenmeyer GA (2012) Neglected sources of
pharmaceuticals in river water—footprints of a Reggae festival. J Environ Monit 14
(2):596–603
61. Komori K, Suzuki Y, Minamiyama M, Harada A (2013) Occurrence of selected pharmaceuticals in river water in Japan and assessment of their environmental risk. Environ Monit Assess
185(6):4529–4536
62. Aydin E, Talinli I (2013) Analysis, occurrence and fate of commonly used pharmaceuticals
and hormones in the Buyukcekmece watershed, Turkey. Chemosphere 90(6):2004–2012
63. Patrolecco L, Ademollo N, Grenni P, Tolomei A, Caracciolo AB, Capri S (2013) Simultaneous determination of human pharmaceuticals in water samples by solid phase extraction and
HPLC with UV-fluorescence detection. Microchem J 107:165–171
64. Shanmugam G, Sampath S, Selvaraj KK, Larsson DJ, Ramaswamy BR (2014) Non-steroidal
anti-inflammatory drugs in Indian rivers. Environ Sci Pollut Res 21(2):921–931
65. Lolić A, Paíga P, Santos LH, Ramos S, Correia M, Delerue-Matos C (2015) Assessment of
non-steroidal anti-inflammatory and analgesic pharmaceuticals in seawaters of North of
Portugal: occurrence and environmental risk. Sci Total Environ 508:240–250
66. Eslami A, Amini MM, Yazdanbakhsh AR, Rastkari N, Mohseni-Bandpei A, Nasseri S et al
(2015) Occurrence of non-steroidal anti-inflammatory drugs in Tehran source water, municipal and hospital wastewaters, and their ecotoxicological risk assessment. Environ Monit
Assess 187(12):734
67. Archer E, Petrie B, Kasprzyk-Hordern B, Wolfaardt GM (2017) The fate of pharmaceuticals
and personal care products (PPCPs), endocrine disrupting contaminants (EDCs), metabolites
and illicit drugs in a WWTW and environmental waters. Chemosphere 174:437–446. https://
doi.org/10.1016/J.CHEMOSPHERE.2017.01.101
36
G. A. Elizalde-Velázquez and L. M. Gómez-Oliván
