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PUBMED FOR HANDHELDS

Journal Abstract Search


430 related items for PubMed ID: 18308436

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  • 3. Spatial and temporal trends and flow dynamics of glyphosate and other pesticides within an agricultural watershed in Argentina.
    Pérez DJ, Okada E, De Gerónimo E, Menone ML, Aparicio VC, Costa JL.
    Environ Toxicol Chem; 2017 Dec; 36(12):3206-3216. PubMed ID: 28631831
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  • 6. Dynamics of glyphosate and AMPA in the soil surface layer of glyphosate-resistant crop cultivations in the loess Pampas of Argentina.
    Bento CPM, van der Hoeven S, Yang X, Riksen MMJPM, Mol HGJ, Ritsema CJ, Geissen V.
    Environ Pollut; 2019 Jan; 244():323-331. PubMed ID: 30343233
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  • 7. Pesticide assessment of the banana sector in an Ecuadorian watershed.
    Matamoros D, Vanrolleghem PA.
    Meded Rijksuniv Gent Fak Landbouwkd Toegep Biol Wet; 2001 Jan; 66(2b):863-72. PubMed ID: 12425113
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  • 8. Predicted impact of transgenic, herbicidetolerant corn on drinking water quality in vulnerable watersheds of the mid-western USA.
    Wauchope RD, Estes TL, Allen R, Baker JL, Hornsby AG, Jones RL, Richards RP, Gustafson DI.
    Pest Manag Sci; 2002 Feb; 58(2):146-60. PubMed ID: 11852639
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  • 12. Sorption, desorption and mineralisation of the herbicides glyphosate and MCPA in samples from two Danish soil and subsurface profiles.
    Sørensen SR, Schultz A, Jacobsen OS, Aamand J.
    Environ Pollut; 2006 May; 141(1):184-94. PubMed ID: 16203072
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  • 13. Mobility and leaching of glyphosate: a review.
    Vereecken H.
    Pest Manag Sci; 2005 Dec; 61(12):1139-51. PubMed ID: 16211661
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  • 16. Pesticide distribution in an agricultural environment in Argentina.
    Loewy RM, Monza LB, Kirs VE, Savini MC.
    J Environ Sci Health B; 2011 Dec; 46(8):662-70. PubMed ID: 21806463
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  • 20. Tillage system, application rate, and extreme event effects on herbicide losses in surface runoff.
    Shipitalo MJ, Owens LB.
    J Environ Qual; 2006 Dec; 35(6):2186-94. PubMed ID: 17071888
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