236
Li ZC, Yost RS, Green RE (1998) Incorporating uncertainty in a chemical leaching assessment. J
Contam Hydrol 29:285–299
Loewy RM, Monza LB, Kirs VE, Savini MC (2011) Pesticide distribution in an agricultural environment in Argentina. J Environ Sci Health B 46(8):662–670
McCall PJ, Laskowski DE, Swann RL, Disburger HJ (1981) Measurement of sorption coefficients
of organic chemicals and their use, in environment fate analysis. In: Test protocols for environmental fate and movement of toxicants. Proceeding symposium Association of Analytical
Chemists, 94th annual meeting. AOAC, Washington, DC
McLaughlin RA, Weber JB, Warren RL (1994) Soil facts, protecting groundwater in North
Carolina: a pesticide and soil ranking system. College of Agricultural and Life Sciences, North
Carolina State University, North Carolina Cooperative Extensive Service, Raleigh
McMahon PB, Chapelle FH (2008) Redox processes and water quality of selected principal aquifers. Ground Water 46(2):259–271
Meeks YJ, Dean JD (1990) Evaluating groundwater vulnerability to pesticides. J Water Res Plann
Manag 116:693–707
Mehnert E, Keefer AD, Dey SW, Wehrmann AH, Wilson DS, Ray C (2005) Aquifer sensitivity
to pesticide leaching: testing a soil and hydrogeologic index method. G W Monitor Remediat
25(4):60–67
Mol HGJ, Janssen M, Cramers CA, Vreuls JJ, Brinkman UAT (1995) Trace level analysis of
micropollutants in aqueous samples using gas chromatography with online sample enrichment
and large volume injection. J Chromatogr A 703(1–2):277–307
Paim S, Lagenbach T (1996) Adsorption of s-triazine by soil components. Inter Biodeter Biodegra
37(1–2):121
Papa E, Castiglioni S, Gramatica P, Nikolayenko V, Kayumov O, Calamari D (2004) Screening
the leaching tendency of pesticides applied in the Amu Darya Basin (Uzbekistan). Water Res
38:3485–3494
Popovska P, Geshovska V (2014) Water balance model for vulnerability assessment of water
resources in Strumica river basin. Irrigation Drainage Syst Eng 3(3):127–135
Rao PSC, Hornsby AG, Jessup RE (1985) Indices for ranking the potential for pesticide contamination of groundwater. Proceedings of the Soil and Crop Science Society of Florida, 44:1–8
Reilly ЈT, Smalling KL, Orlando JL, Kuivila KM (2012) Occurrence of boscalid and other selected
fungicides in surface water and groundwater in three targeted use areas in the United States.
Chemosphere 89:228–234
Robinson NJ (2001) Standard operation procedure RAM 360/02. Residue analytical method for
the determination of pirimicarb and its carbamate metabolites in water. Bracknell, Berkshire,
UK: Syngenta, RAM 360/02, 18 May 2001. Syngenta file no PP62/0948
Shomar BH, Muller G, Yahya A (2005) Occurrence of pesticides in groundwater and topsoil of the
Gaza Strip. Water Air Soil Pollut 171:237–251
Silva E, Mendes PM, Ribeiro L, Cerejeira JM (2011) Exposure assessment of pesticides in a shallow groundwater of the Tagus vulnerable zone (Portugal): a multivariate statistical approach
(JCA). Env Sci Poll Res 19(7):2667–2680
Spadotto CA (2002) Screening method for assessing pesticide leaching potential. Pesticidas:
Revista de Ecotoxicologia E Meio Ambiente 12:69–78
Stan JH, Goebel H (1984) Program in BASIC to combine data from two different selective detectors and its application for screening of pesticides in residue analysis. J Autom Chem 6:14–20
Stan JH, Müller MH (1988) Evaluation of automated and manual hot splitless, cold splitless
(PTV), and on column injection technique using capillary gas chromatography for the analysis
of organophosphorus pesticides. J High Res Chrom 11(1):140–143
Talbert ER, Fletchal HO (1965) The adsorption of some s-triazines in soils. Weeds 13(1):46–52
Tariq MI, Afzal S, Hussain I, Sultana N (2007) Pesticides exposures in Pakistan: a review. Environ
Int 33(8):1107–1122
B. Kovacevik et al.
Li ZC, Yost RS, Green RE (1998) Incorporating uncertainty in a chemical leaching assessment. J
Contam Hydrol 29:285–299
Loewy RM, Monza LB, Kirs VE, Savini MC (2011) Pesticide distribution in an agricultural environment in Argentina. J Environ Sci Health B 46(8):662–670
McCall PJ, Laskowski DE, Swann RL, Disburger HJ (1981) Measurement of sorption coefficients
of organic chemicals and their use, in environment fate analysis. In: Test protocols for environmental fate and movement of toxicants. Proceeding symposium Association of Analytical
Chemists, 94th annual meeting. AOAC, Washington, DC
McLaughlin RA, Weber JB, Warren RL (1994) Soil facts, protecting groundwater in North
Carolina: a pesticide and soil ranking system. College of Agricultural and Life Sciences, North
Carolina State University, North Carolina Cooperative Extensive Service, Raleigh
McMahon PB, Chapelle FH (2008) Redox processes and water quality of selected principal aquifers. Ground Water 46(2):259–271
Meeks YJ, Dean JD (1990) Evaluating groundwater vulnerability to pesticides. J Water Res Plann
Manag 116:693–707
Mehnert E, Keefer AD, Dey SW, Wehrmann AH, Wilson DS, Ray C (2005) Aquifer sensitivity
to pesticide leaching: testing a soil and hydrogeologic index method. G W Monitor Remediat
25(4):60–67
Mol HGJ, Janssen M, Cramers CA, Vreuls JJ, Brinkman UAT (1995) Trace level analysis of
micropollutants in aqueous samples using gas chromatography with online sample enrichment
and large volume injection. J Chromatogr A 703(1–2):277–307
Paim S, Lagenbach T (1996) Adsorption of s-triazine by soil components. Inter Biodeter Biodegra
37(1–2):121
Papa E, Castiglioni S, Gramatica P, Nikolayenko V, Kayumov O, Calamari D (2004) Screening
the leaching tendency of pesticides applied in the Amu Darya Basin (Uzbekistan). Water Res
38:3485–3494
Popovska P, Geshovska V (2014) Water balance model for vulnerability assessment of water
resources in Strumica river basin. Irrigation Drainage Syst Eng 3(3):127–135
Rao PSC, Hornsby AG, Jessup RE (1985) Indices for ranking the potential for pesticide contamination of groundwater. Proceedings of the Soil and Crop Science Society of Florida, 44:1–8
Reilly ЈT, Smalling KL, Orlando JL, Kuivila KM (2012) Occurrence of boscalid and other selected
fungicides in surface water and groundwater in three targeted use areas in the United States.
Chemosphere 89:228–234
Robinson NJ (2001) Standard operation procedure RAM 360/02. Residue analytical method for
the determination of pirimicarb and its carbamate metabolites in water. Bracknell, Berkshire,
UK: Syngenta, RAM 360/02, 18 May 2001. Syngenta file no PP62/0948
Shomar BH, Muller G, Yahya A (2005) Occurrence of pesticides in groundwater and topsoil of the
Gaza Strip. Water Air Soil Pollut 171:237–251
Silva E, Mendes PM, Ribeiro L, Cerejeira JM (2011) Exposure assessment of pesticides in a shallow groundwater of the Tagus vulnerable zone (Portugal): a multivariate statistical approach
(JCA). Env Sci Poll Res 19(7):2667–2680
Spadotto CA (2002) Screening method for assessing pesticide leaching potential. Pesticidas:
Revista de Ecotoxicologia E Meio Ambiente 12:69–78
Stan JH, Goebel H (1984) Program in BASIC to combine data from two different selective detectors and its application for screening of pesticides in residue analysis. J Autom Chem 6:14–20
Stan JH, Müller MH (1988) Evaluation of automated and manual hot splitless, cold splitless
(PTV), and on column injection technique using capillary gas chromatography for the analysis
of organophosphorus pesticides. J High Res Chrom 11(1):140–143
Talbert ER, Fletchal HO (1965) The adsorption of some s-triazines in soils. Weeds 13(1):46–52
Tariq MI, Afzal S, Hussain I, Sultana N (2007) Pesticides exposures in Pakistan: a review. Environ
Int 33(8):1107–1122
B. Kovacevik et al.
