34
K. Kuroda and J. Kobayashi
Kuroda K, Hayashi T, Funabiki A, Do AT, Canh VD, Nga TTV et al (2017b) Holocene estuarine
sediments as a source of arsenic in Pleistocene groundwater in suburbs of Hanoi, Vietnam.
Hydrogeol J 25:1137–1152
Lange FT, Scheurer M, Brauch H-J (2012) Artificial sweeteners—a recently recognized class of
emerging environmental contaminants: a review. Anal Bioanal Chem 403:2503–2518
Lapworth DJ, Baran N, Stuart ME, Ward RS (2012) Emerging organic contaminants in groundwater:
a review of sources, fate and occurrence. Environ Pollut 163:287–303
Lapworth DJ, Das P, Shaw A, Mukherjee A, Civil W, Petersen JO et al (2018) Deep urban groundwater vulnerability in India revealed through the use of emerging organic contaminants and residence
time tracers. Environ Pollut 240:938–949
Larsson DGJ, de Pedro C, Paxeus N (2007) Effluent from drug manufactures contains extremely
high levels of pharmaceuticals. J Hazard Mater 148:751–755
Lee H-J, Kim KY, Hamm S-Y, Kim M, Kim HK, Oh J-E (2019) Occurrence and distribution of
pharmaceutical and personal care products, artificial sweeteners, and pesticides in groundwater
from an agricultural area in Korea. Sci Total Environ 659:168–176
Li Z, Xiang X, Li M, Ma Y, Wang J, Liu X (2015) Occurrence and risk assessment of pharmaceuticals
and personal care products and endocrine disrupting chemicals in reclaimed water and receiving
groundwater in China. Ecotoxicol Environ Saf 119:74–80
Li X, Shang X, Luo T, Du X, Wang Y, Xie Q et al (2016) Screening and health risk of organic
micropollutants in rural groundwater of Liaodong Peninsula, China. Environ Pollut 218:739–748
Liu J, Zheng C (2016) Towards integrated groundwater management in China. In: Jakeman AJ,
Barreteau O, Hunt RJ, Rinaudo J-D, Ross A (eds) Integrated groundwater management: concepts,
approaches and challenges. Springer International Publishing, Cham, pp 455–475
Loos R, Locoro G, Comero S, Contini S, Schwesig D, Werres F et al (2010) Pan-European survey
on the occurrence of selected polar organic persistent pollutants in ground water. Water Res
44:4115–4126
Lundborg CS, Tamhankar AJ (2017) Antibiotic residues in the environment of South East Asia.
BMJ 358:j2440
Mathew G, Unnikrishnan MK (2012) The emerging environmental burden from pharmaceuticals.
Econ Political Wkly 47:31–34
McCance W, Jones OAH, Edwards M, Surapaneni A, Chadalavada S, Currell M (2018) Contaminants of emerging concern as novel groundwater tracers for delineating wastewater impacts in
urban and peri-urban areas. Water Res 146:118–133
Merel S, Snyder SA (2016) Critical assessment of the ubiquitous occurrence and fate of the insect
repellent N,N-diethyl-m-toluamide in water. Environ Int 96:98–117
Michael I, Rizzo L, McArdell CS, Manaia CM, Merlin C, Schwartz T et al (2013) Urban wastewater
treatment plants as hotspots for the release of antibiotics in the environment: a review. Water Res
47:957–995
Murakami M, Kuroda K, Sato N, Fukushi T, Takizawa S, Takada H (2009) Groundwater pollution
by perfluorinated surfactants in Tokyo. Environ Sci Technol 43:3480–3486
Mutiyar PK, Mittal AK (2014) Risk assessment of antibiotic residues in different water matrices in
India: key issues and challenges. Environ Sci Pollut Res 21:7723–7736
Nakada N, Tanishima T, Shinohara H, Kiri K, Takada H (2006) Pharmaceutical chemicals and
endocrine disrupters in municipal wastewater in Tokyo and their removal during activated sludge
treatment. Water Res 40:3297–3303
Nakada N, Kiri K, Shinohara H, Harada A, Kuroda K, Takizawa S et al (2008) Evaluation of pharmaceuticals and personal care products as water-soluble molecular markers of sewage. Environ
Sci Technol 42:6347–6353
Oaks JL, Gilbert M, Virani MZ, Watson RT, Meteyer CU, Rideout BA et al (2004) Diclofenac
residues as the cause of vulture population decline in Pakistan. Nature 427:630–633
Oppenheimer J, Eaton A, Badruzzaman M, Haghani AW, Jacangelo JG (2011) Occurrence and
suitability of sucralose as an indicator compound of wastewater loading to surface waters in
urbanized regions. Water Res 45:4019–4027
K. Kuroda and J. Kobayashi
Kuroda K, Hayashi T, Funabiki A, Do AT, Canh VD, Nga TTV et al (2017b) Holocene estuarine
sediments as a source of arsenic in Pleistocene groundwater in suburbs of Hanoi, Vietnam.
Hydrogeol J 25:1137–1152
Lange FT, Scheurer M, Brauch H-J (2012) Artificial sweeteners—a recently recognized class of
emerging environmental contaminants: a review. Anal Bioanal Chem 403:2503–2518
Lapworth DJ, Baran N, Stuart ME, Ward RS (2012) Emerging organic contaminants in groundwater:
a review of sources, fate and occurrence. Environ Pollut 163:287–303
Lapworth DJ, Das P, Shaw A, Mukherjee A, Civil W, Petersen JO et al (2018) Deep urban groundwater vulnerability in India revealed through the use of emerging organic contaminants and residence
time tracers. Environ Pollut 240:938–949
Larsson DGJ, de Pedro C, Paxeus N (2007) Effluent from drug manufactures contains extremely
high levels of pharmaceuticals. J Hazard Mater 148:751–755
Lee H-J, Kim KY, Hamm S-Y, Kim M, Kim HK, Oh J-E (2019) Occurrence and distribution of
pharmaceutical and personal care products, artificial sweeteners, and pesticides in groundwater
from an agricultural area in Korea. Sci Total Environ 659:168–176
Li Z, Xiang X, Li M, Ma Y, Wang J, Liu X (2015) Occurrence and risk assessment of pharmaceuticals
and personal care products and endocrine disrupting chemicals in reclaimed water and receiving
groundwater in China. Ecotoxicol Environ Saf 119:74–80
Li X, Shang X, Luo T, Du X, Wang Y, Xie Q et al (2016) Screening and health risk of organic
micropollutants in rural groundwater of Liaodong Peninsula, China. Environ Pollut 218:739–748
Liu J, Zheng C (2016) Towards integrated groundwater management in China. In: Jakeman AJ,
Barreteau O, Hunt RJ, Rinaudo J-D, Ross A (eds) Integrated groundwater management: concepts,
approaches and challenges. Springer International Publishing, Cham, pp 455–475
Loos R, Locoro G, Comero S, Contini S, Schwesig D, Werres F et al (2010) Pan-European survey
on the occurrence of selected polar organic persistent pollutants in ground water. Water Res
44:4115–4126
Lundborg CS, Tamhankar AJ (2017) Antibiotic residues in the environment of South East Asia.
BMJ 358:j2440
Mathew G, Unnikrishnan MK (2012) The emerging environmental burden from pharmaceuticals.
Econ Political Wkly 47:31–34
McCance W, Jones OAH, Edwards M, Surapaneni A, Chadalavada S, Currell M (2018) Contaminants of emerging concern as novel groundwater tracers for delineating wastewater impacts in
urban and peri-urban areas. Water Res 146:118–133
Merel S, Snyder SA (2016) Critical assessment of the ubiquitous occurrence and fate of the insect
repellent N,N-diethyl-m-toluamide in water. Environ Int 96:98–117
Michael I, Rizzo L, McArdell CS, Manaia CM, Merlin C, Schwartz T et al (2013) Urban wastewater
treatment plants as hotspots for the release of antibiotics in the environment: a review. Water Res
47:957–995
Murakami M, Kuroda K, Sato N, Fukushi T, Takizawa S, Takada H (2009) Groundwater pollution
by perfluorinated surfactants in Tokyo. Environ Sci Technol 43:3480–3486
Mutiyar PK, Mittal AK (2014) Risk assessment of antibiotic residues in different water matrices in
India: key issues and challenges. Environ Sci Pollut Res 21:7723–7736
Nakada N, Tanishima T, Shinohara H, Kiri K, Takada H (2006) Pharmaceutical chemicals and
endocrine disrupters in municipal wastewater in Tokyo and their removal during activated sludge
treatment. Water Res 40:3297–3303
Nakada N, Kiri K, Shinohara H, Harada A, Kuroda K, Takizawa S et al (2008) Evaluation of pharmaceuticals and personal care products as water-soluble molecular markers of sewage. Environ
Sci Technol 42:6347–6353
Oaks JL, Gilbert M, Virani MZ, Watson RT, Meteyer CU, Rideout BA et al (2004) Diclofenac
residues as the cause of vulture population decline in Pakistan. Nature 427:630–633
Oppenheimer J, Eaton A, Badruzzaman M, Haghani AW, Jacangelo JG (2011) Occurrence and
suitability of sucralose as an indicator compound of wastewater loading to surface waters in
urbanized regions. Water Res 45:4019–4027
