1 Pharmaceuticals, Personal Care Products, and Artificial …
35
Peng X, Ou W, Wang C, Wang Z, Huang Q, Jin J et al (2014) Occurrence and ecological potential
of pharmaceuticals and personal care products in groundwater and reservoirs in the vicinity of
municipal landfills in China. Sci Total Environ 490:889–898
Philip JM, Aravind UK, Aravindakumar CT (2018) Emerging contaminants in Indian environmental
matrices—a review. Chemosphere 190:307–326
Postigo C, Barceló D (2015) Synthetic organic compounds and their transformation products in
groundwater: occurrence, fate and mitigation. Sci Total Environ 503–504:32–47
Qiao M, Ying G-G, Singer AC, Zhu Y-G (2018) Review of antibiotic resistance in China and its
environment. Environ Int 110:160–172
Quadra GR, Paranaíba JR, Vilas-Boas J, Roland F, Amado AM, Barros N et al (2020) A global trend
of caffeine consumption over time and related-environmental impacts. Environ Pollut 256:113343
Rutgersson C, Fick J, Marathe N, Kristiansson E, Janzon A, Angelin M et al (2014) Fluoroquinolones
and qnr genes in sediment, water, soil, and human fecal flora in an environment polluted by
manufacturing discharges. Environ Sci Technol 48:7825–7832
Sackaria M, Elango L (2019) Organic micropollutants in groundwater of India—a review. Water
Environ Res
Salter AJ (1982) Overview. Trimethoprim-sulfamethoxazole: an assessment of more than 12 years
of use. Rev Infect Dis 4:196–236
Schwarzenbach RP, Escher BI, Fenner K, Hofstetter TB, Johnson CA, von Gunten U et al (2006)
The challenge of micropollutants in aquatic systems. Science 313:1072
Sharma BM, Beˇ canová J, Scheringer M, Sharma A, Bharat GK, Whitehead PG et al (2019) Health
and ecological risk assessment of emerging contaminants (pharmaceuticals, personal care products, and artificial sweeteners) in surface and groundwater (drinking water) in the Ganges River
Basin, India. Sci Total Environ 646:1459–1467
Stuart ME, Lapworth DJ, Thomas J, Edwards L (2014) Fingerprinting groundwater pollution
in catchments with contrasting contaminant sources using microorganic compounds. Sci Total
Environ 468–469:564–577
Sui Q, Cao X, Lu S, Zhao W, Qiu Z, Yu G (2015) Occurrence, sources and fate of pharmaceuticals
and personal care products in the groundwater: a review. Emerg Contam 1:14–24
Tambosi JL, Yamanaka LY, José HJ, Moreira RdFPM, Schröder HF (2010) Recent research data on
the removal of pharmaceuticals from sewage treatment plants (STP). Química Nova 33:411–420
Thiebault T (2020) Sulfamethoxazole/trimethoprim ratio as a new marker in raw wastewaters: a
critical review. Sci Total Environ, 136916
Tong L, Huang S, Wang Y, Liu H, Li M (2014) Occurrence of antibiotics in the aquatic environment
of Jianghan Plain, Central China. Sci Total Environ 497–498:180–187
Tran NH, Reinhard M, Gin KY-H (2008) Occurrence and fate of emerging contaminants in municipal
wastewater treatment plants from different geographical regions—a review. Water Res 133:182–
207
Tran NH, Hu J, Li J, Ong SL (2014a) Suitability of artificial sweeteners as indicators of raw
wastewater contamination in surface water and groundwater. Water Res 48:443–456
Tran NH, Li J, Hu J, Ong SL (2014b) Occurrence and suitability of pharmaceuticals and personal care products as molecular markers for raw wastewater contamination in surface water and
groundwater. Environ Sci Pollut Res 21:4727–4740
Tran NH, Reinhard M, Khan E, Chen H, Nguyen VT, Li Y et al (2019) Emerging contaminants
in wastewater, stormwater runoff, and surface water: application as chemical markers for diffuse
sources. Sci Total Environ 676:252–267
Van Boeckel TP, Gandra S, Ashok A, Caudron Q, Grenfell BT, Levin SA et al (2014) Global
antibiotic consumption 2000 to 2010: an analysis of national pharmaceutical sales data. Lancet
Infect Dis 14:742–750
Van Huy N, Murakami M, Sakai H, Oguma K, Kosaka K, Asami M et al (2011) Occurrence and
formation potential of N-nitrosodimethylamine in ground water and river water in Tokyo. Water
Res 45:3369–3377
35
Peng X, Ou W, Wang C, Wang Z, Huang Q, Jin J et al (2014) Occurrence and ecological potential
of pharmaceuticals and personal care products in groundwater and reservoirs in the vicinity of
municipal landfills in China. Sci Total Environ 490:889–898
Philip JM, Aravind UK, Aravindakumar CT (2018) Emerging contaminants in Indian environmental
matrices—a review. Chemosphere 190:307–326
Postigo C, Barceló D (2015) Synthetic organic compounds and their transformation products in
groundwater: occurrence, fate and mitigation. Sci Total Environ 503–504:32–47
Qiao M, Ying G-G, Singer AC, Zhu Y-G (2018) Review of antibiotic resistance in China and its
environment. Environ Int 110:160–172
Quadra GR, Paranaíba JR, Vilas-Boas J, Roland F, Amado AM, Barros N et al (2020) A global trend
of caffeine consumption over time and related-environmental impacts. Environ Pollut 256:113343
Rutgersson C, Fick J, Marathe N, Kristiansson E, Janzon A, Angelin M et al (2014) Fluoroquinolones
and qnr genes in sediment, water, soil, and human fecal flora in an environment polluted by
manufacturing discharges. Environ Sci Technol 48:7825–7832
Sackaria M, Elango L (2019) Organic micropollutants in groundwater of India—a review. Water
Environ Res
Salter AJ (1982) Overview. Trimethoprim-sulfamethoxazole: an assessment of more than 12 years
of use. Rev Infect Dis 4:196–236
Schwarzenbach RP, Escher BI, Fenner K, Hofstetter TB, Johnson CA, von Gunten U et al (2006)
The challenge of micropollutants in aquatic systems. Science 313:1072
Sharma BM, Beˇ canová J, Scheringer M, Sharma A, Bharat GK, Whitehead PG et al (2019) Health
and ecological risk assessment of emerging contaminants (pharmaceuticals, personal care products, and artificial sweeteners) in surface and groundwater (drinking water) in the Ganges River
Basin, India. Sci Total Environ 646:1459–1467
Stuart ME, Lapworth DJ, Thomas J, Edwards L (2014) Fingerprinting groundwater pollution
in catchments with contrasting contaminant sources using microorganic compounds. Sci Total
Environ 468–469:564–577
Sui Q, Cao X, Lu S, Zhao W, Qiu Z, Yu G (2015) Occurrence, sources and fate of pharmaceuticals
and personal care products in the groundwater: a review. Emerg Contam 1:14–24
Tambosi JL, Yamanaka LY, José HJ, Moreira RdFPM, Schröder HF (2010) Recent research data on
the removal of pharmaceuticals from sewage treatment plants (STP). Química Nova 33:411–420
Thiebault T (2020) Sulfamethoxazole/trimethoprim ratio as a new marker in raw wastewaters: a
critical review. Sci Total Environ, 136916
Tong L, Huang S, Wang Y, Liu H, Li M (2014) Occurrence of antibiotics in the aquatic environment
of Jianghan Plain, Central China. Sci Total Environ 497–498:180–187
Tran NH, Reinhard M, Gin KY-H (2008) Occurrence and fate of emerging contaminants in municipal
wastewater treatment plants from different geographical regions—a review. Water Res 133:182–
207
Tran NH, Hu J, Li J, Ong SL (2014a) Suitability of artificial sweeteners as indicators of raw
wastewater contamination in surface water and groundwater. Water Res 48:443–456
Tran NH, Li J, Hu J, Ong SL (2014b) Occurrence and suitability of pharmaceuticals and personal care products as molecular markers for raw wastewater contamination in surface water and
groundwater. Environ Sci Pollut Res 21:4727–4740
Tran NH, Reinhard M, Khan E, Chen H, Nguyen VT, Li Y et al (2019) Emerging contaminants
in wastewater, stormwater runoff, and surface water: application as chemical markers for diffuse
sources. Sci Total Environ 676:252–267
Van Boeckel TP, Gandra S, Ashok A, Caudron Q, Grenfell BT, Levin SA et al (2014) Global
antibiotic consumption 2000 to 2010: an analysis of national pharmaceutical sales data. Lancet
Infect Dis 14:742–750
Van Huy N, Murakami M, Sakai H, Oguma K, Kosaka K, Asami M et al (2011) Occurrence and
formation potential of N-nitrosodimethylamine in ground water and river water in Tokyo. Water
Res 45:3369–3377
