234
References
Akay Demir AE, Dilek FB, Yetis U (2019) A new screening index for pesticides leachability to
groundwater. J Environ Manag 231:1193–1202
Araújo CVM, Shinn C, Müller R, Moreira-Santos M, Espíndola ELG, Ribeiro R (2015) The ecotoxicity of pyrimethanil for aquatic biota. In: Marcelo LL, Sonia S (eds) Toxicity and hazard
of agrochemicals. Intech Open
Bailey GW, White JL (1970) Factors influencing the adsorption, desorption and movement of
pesticides in soils. Residue Rev 32:29–92
Barbash JE, Thelin GP, Kolpin DW, Gilliom RJ (2001) Major herbicides in ground water: results
from the National Water-Quality Assessment. USGS staff published research, paper 27
Benjamin OB, William JN, Nyarko E (2012) Pesticide contamination in groundwater and streams
draining vegetable plantations in the Ofinso District, Ghana, In: Maria C, Hernandez S (eds),
Soil health and land use management
Bortoluzzi EC, Rheinheimer DS, Gonçalves CS, Pellegrini JB, Maroneze AM, Kurz MH, Bacar
NM, Zanella R (2007) Investigation of the occurrence of pesticide residues in rural wells and
surfacе water following application to tobacco. Química Nova 30(8):1872–1876
Briggs GG (1981) Theoretical and experimental relationships between soil adsorption, octanolwater partition coefficient, water solubilities, bioconcentration factors, and parachor. J Agric
Food Chem 29:1050–1059
Burow RK, Stork VS, Dubrovsky NM (1998) Nitrate and pesticides in ground water in the eastern
San Joaquin Valley, California: occurrence and trends. Water-resources investigations report
98-4040-a. US Geological survey, Sacramento, CA
Casado GA, Olmo M, Carricondo F, Munoz G, Rasero SF, Vilchez LJ (2000) Determination of
carbetamide in groundwater by micro liquid-liquid extraction and gas chromatography-mass
spectrometry. Chromatographia 52(3, 4):233–236
Chapelle FH, Bradley PM, Thomas MA, McMahon PB (2008) Distinguishing iron-reducing from
sulfate-reducing conditions in ground-water systems. Ground Water 47(2):300–305
Close M, Humphries B (2019) National survey of pesticides and emerging organic contaminants
(EOCs) in groundwater 2018. Institute of Environmental Science and Research Limited,
Wellington
Close ME, Skinner A (2012) Sixth national survey of pesticides in groundwater in New Zealand.
N Z J Mar Freshw Res 46(4):443–457
Cohen SZ, Creeger SM, Carsel RF, Enfield CG (1984) Potential for pesticide contamination
of groundwater resulting from agricultural uses. In: Krueger RF, Seiber JN (eds) Treatment
and disposal of pesticide wastes, ACS Symposium, vol 259. American Chemical Society,
Washington, DC, pp 297–325
EC (1980) Council directive of 15 July 1980 relating to the quality of water intended for human
consumption. Official Journal of the European Communities No L 229/11
EC (2000) Directive 2000/60/EC of the European Parliament and of the council of 23 October
2000 establishing a framework for Community action in the field of water policy. Official
Journal of the European Communities L 327/1
EC (2006) Directive 2006/118/EC of the European parliament and of the council of 12 December
2006 on the protection of groundwater against pollution and deterioration. Official Journal of
the European Union, L 372/19
EEA (2004) Pesticides in groundwater. Indicator Fact Sheet Prod-ID: IND-260-en
Estévez E, del Cabrera MC, Molina-Díaz A, Robles-Molina J, del Palacios-Díaz MP (2012)
Screening of emerging contaminants and priority substances (2008/105/EC) in reclaimed water
for irrigation and groundwater in a volcanic aquifer (Gran Canaria, Canary Islands, Spain). Sci
Total Environ 433:538–546
European Parliament (2008) Directive 2008/105/EC of the European parliament and of the council
of 16 December 2008 on environmental quality standards in the field of water policy, amending and subsequently repealing Council Directives 82/176/EEC, 83/513/EEC, 84/156/EEC,
B. Kovacevik et al.
Précédent

- 246/423

Suivant