28. Feo ML, Ginebreda A, Eljarrat E, Barceló D (2010) Presence of pyrethroid pesticides in water
and sediments of Ebro River Delta. J Hydrol 393:156–162. https://doi.org/10.1016/j.jhydrol.
2010.08.012
29. Feo ML, Eljarrat E, Barceló D (2010) A rapid and sensitive analytical method for the determination of 14 pyrethroids in water samples. J Chromatogr A 1217:2248–2253. https://doi.org/10.
1016/j.chroma.2010.02.018
30. Aznar R, Sánchez-Brunete C, Albero B, Moreno-Ramón H, Tadeo JL (2017) Pyrethroids levels
in paddy field water under Mediterranean conditions: measurements and distribution modelling.
Paddy Water Environ 15:307–316. https://doi.org/10.1007/s10333-016-0550-2
31. Bereswill R, Streloke M, Schulz R (2013) Current-use pesticides in stream water and suspended
particles following runoff: exposure, effects, and mitigation requirements. Environ Toxicol
Chem 32(6):1254–1263. https://doi.org/10.1002/etc.2170
32. Hook SE, Doan H, Gonzago D, Musson D, Du J, Kookana R, Sellars MJ, Kumar A (2018)
The impacts of modern-use pesticides on shrimp aquaculture: an assessment for north eastern
Australia. Ecotoxicol Environ Saf 148:770–780. https://doi.org/10.1016/j.ecoenv.2017.11.028
33. Gadelha JR, Rocha AC, Camacho C, Eljarrat E, Peris A, Aminot Y, Readman JW, Boti V,
Nannou C, Kapsi M, Albanis T, Rocha F, Machado A, Bordalo A, Valente LMP, Nunes ML,
Marques A, Almeida CMR (2019) Persistent and emerging pollutants assessment on aquaculture oysters (Crassostrea gigas) from NW Portuguese coast (Ria De Aveiro). Sci Total Environ
666:731–742. https://doi.org/10.1016/j.scitotenv.2019.02.280
34. Bollmohr S, Day JA, Schulz R (2007) Temporal variability in particle-associated pesticide
exposure in a temporarily open estuary, Western Cape, South Africa. Chemosphere
68:479–488. https://doi.org/10.1016/j.chemosphere.2006.12.078
35. Tucca F, Moya H, Barra R (2014) Ethylene vinyl acetate polymer as a tool for passive sampling
monitoring of hydrophobic chemicals in the salmon farm industry. Mar Pollut Bull 88:174–179.
https://doi.org/10.1016/j.marpolbul.2014.09.009
36. Langford K, Bæk K, Kringstad A, Rundberget T, Øxnevad S, Thomas KV (2015) Screening of
the sea lice medications azamethiphos, deltamethrin and cypermethrin. Norwegian Environment Agency’s – environmental monitoring M-345
37. Weston DP, Zhang M, Lydy MJ (2008) Identifying the cause and source of sediment toxicity in
an agriculture-influenced creek. Environ Toxicol Chem 27(4):953–962
38. Anderson BS, Phillips BM, Voorhees JP, Hunt JW, Worchester K, Adams M, Kapellas N,
Tjeerdema RS (2006) Evidence of pesticide impacts in the Santa Maria river watershed,
California, USA. Environ Toxicol Chem 25(4):1160–1170
39. Phillips BM, Anderson BS, Hunt JW, Huntley SA, Tjeerdema RS, Kapellas N, Worcester K
(2006) Solid-phase sediment toxicity identification evaluation in an agricultural stream. Environ
Toxicol Chem 25(6):1671–1676
40. Bondarenko S, Spurlock F, Gan J (2007) Analysis of pyrethroids in sediment pore water by
solid-phase microextraction. Environ Toxicol Chem 26(12):2587–2593
41. Wang JZ, Li HZ, You J (2012) Distribution and toxicity of current-use insecticides in sediment
of a lake receiving waters from areas in transition to urbanization. Environ Pollut 161:128–133.
https://doi.org/10.1016/j.envpol.2011.10.020
42. Xu EG, Bui C, Lamerdin C, Schlenk D (2016) Spatial and temporal assessment of environmental contaminants in water, sediments and fish of the Salton Sea and its two primary
tributaries, California, USA, from 2002 to 2012. Sci Total Environ 559:130–140. https://doi.
org/10.1016/j.scitotenv.2016.03.144
43. Kuivila KM, Hladik ML, Ingersoll CG, Kemble NE, Moran PW, Calhoun DL, Nowell LH,
Gilliom RJ (2012) Occurrence and potential sources of pyrethroid insecticides in stream
sediments from seven U.S. metropolitan areas. Environ Sci Technol 46:4297–4303. https://
doi.org/10.1021/es2044882
44. Crane JL (2019) Distribution, toxic potential, and influence of land use on conventional and
emerging contaminants in urban stormwater pond sediments. Arch Environ Contam Toxicol
76:265–294. https://doi.org/10.1007/s00244-019-00598-w
104
L. Méjanelle et al.
and sediments of Ebro River Delta. J Hydrol 393:156–162. https://doi.org/10.1016/j.jhydrol.
2010.08.012
29. Feo ML, Eljarrat E, Barceló D (2010) A rapid and sensitive analytical method for the determination of 14 pyrethroids in water samples. J Chromatogr A 1217:2248–2253. https://doi.org/10.
1016/j.chroma.2010.02.018
30. Aznar R, Sánchez-Brunete C, Albero B, Moreno-Ramón H, Tadeo JL (2017) Pyrethroids levels
in paddy field water under Mediterranean conditions: measurements and distribution modelling.
Paddy Water Environ 15:307–316. https://doi.org/10.1007/s10333-016-0550-2
31. Bereswill R, Streloke M, Schulz R (2013) Current-use pesticides in stream water and suspended
particles following runoff: exposure, effects, and mitigation requirements. Environ Toxicol
Chem 32(6):1254–1263. https://doi.org/10.1002/etc.2170
32. Hook SE, Doan H, Gonzago D, Musson D, Du J, Kookana R, Sellars MJ, Kumar A (2018)
The impacts of modern-use pesticides on shrimp aquaculture: an assessment for north eastern
Australia. Ecotoxicol Environ Saf 148:770–780. https://doi.org/10.1016/j.ecoenv.2017.11.028
33. Gadelha JR, Rocha AC, Camacho C, Eljarrat E, Peris A, Aminot Y, Readman JW, Boti V,
Nannou C, Kapsi M, Albanis T, Rocha F, Machado A, Bordalo A, Valente LMP, Nunes ML,
Marques A, Almeida CMR (2019) Persistent and emerging pollutants assessment on aquaculture oysters (Crassostrea gigas) from NW Portuguese coast (Ria De Aveiro). Sci Total Environ
666:731–742. https://doi.org/10.1016/j.scitotenv.2019.02.280
34. Bollmohr S, Day JA, Schulz R (2007) Temporal variability in particle-associated pesticide
exposure in a temporarily open estuary, Western Cape, South Africa. Chemosphere
68:479–488. https://doi.org/10.1016/j.chemosphere.2006.12.078
35. Tucca F, Moya H, Barra R (2014) Ethylene vinyl acetate polymer as a tool for passive sampling
monitoring of hydrophobic chemicals in the salmon farm industry. Mar Pollut Bull 88:174–179.
https://doi.org/10.1016/j.marpolbul.2014.09.009
36. Langford K, Bæk K, Kringstad A, Rundberget T, Øxnevad S, Thomas KV (2015) Screening of
the sea lice medications azamethiphos, deltamethrin and cypermethrin. Norwegian Environment Agency’s – environmental monitoring M-345
37. Weston DP, Zhang M, Lydy MJ (2008) Identifying the cause and source of sediment toxicity in
an agriculture-influenced creek. Environ Toxicol Chem 27(4):953–962
38. Anderson BS, Phillips BM, Voorhees JP, Hunt JW, Worchester K, Adams M, Kapellas N,
Tjeerdema RS (2006) Evidence of pesticide impacts in the Santa Maria river watershed,
California, USA. Environ Toxicol Chem 25(4):1160–1170
39. Phillips BM, Anderson BS, Hunt JW, Huntley SA, Tjeerdema RS, Kapellas N, Worcester K
(2006) Solid-phase sediment toxicity identification evaluation in an agricultural stream. Environ
Toxicol Chem 25(6):1671–1676
40. Bondarenko S, Spurlock F, Gan J (2007) Analysis of pyrethroids in sediment pore water by
solid-phase microextraction. Environ Toxicol Chem 26(12):2587–2593
41. Wang JZ, Li HZ, You J (2012) Distribution and toxicity of current-use insecticides in sediment
of a lake receiving waters from areas in transition to urbanization. Environ Pollut 161:128–133.
https://doi.org/10.1016/j.envpol.2011.10.020
42. Xu EG, Bui C, Lamerdin C, Schlenk D (2016) Spatial and temporal assessment of environmental contaminants in water, sediments and fish of the Salton Sea and its two primary
tributaries, California, USA, from 2002 to 2012. Sci Total Environ 559:130–140. https://doi.
org/10.1016/j.scitotenv.2016.03.144
43. Kuivila KM, Hladik ML, Ingersoll CG, Kemble NE, Moran PW, Calhoun DL, Nowell LH,
Gilliom RJ (2012) Occurrence and potential sources of pyrethroid insecticides in stream
sediments from seven U.S. metropolitan areas. Environ Sci Technol 46:4297–4303. https://
doi.org/10.1021/es2044882
44. Crane JL (2019) Distribution, toxic potential, and influence of land use on conventional and
emerging contaminants in urban stormwater pond sediments. Arch Environ Contam Toxicol
76:265–294. https://doi.org/10.1007/s00244-019-00598-w
104
L. Méjanelle et al.
