Search Results - "Steen, R.J.C.A"

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  1. 1

    Large-volume injection in gas chromatography-ion trap tandem mass spectrometry for the determination of pesticides in the marine environment at the low ng/l level by Steen, R.J.C.A., Freriks, I.L., Cofino, W.P., Brinkman, U.A.Th

    Published in Analytica chimica acta (01-10-1997)
    “…Analytical procedures are developed for the identification and quantification of pesticides in the marine environment. Concentrations in the marine environment…”
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    Journal Article
  2. 2

    Gross fluxes and estuarine behaviour of pesticides in the Scheldt Estuary (1995–1997) by Steen, R.J.C.A, van der Vaart, J, Hiep, M, Van Hattum, B, Cofino, W.P, Brinkman, U.A.Th

    Published in Environmental pollution (1987) (01-01-2001)
    “…Flux measurements are made for a range of pesticides and related to usage, catchment features and compound properties. As part of the Fluxes of Agrochemicals…”
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    Journal Article
  3. 3

    Screening for transformation products of pesticides using tandem mass spectrometric scan modes by Steen, R.J.C.A., Bobeldijk, I., Brinkman, U.A.Th

    Published in Journal of Chromatography A (27-04-2001)
    “…The applicability of tandem mass spectrometric (MS–MS) scan modes such as constant neutral-loss and precursor-ion scanning to screen for unknown transformation…”
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    Journal Article
  4. 4

    Ecological risk assessment of agrochemicals in European estuaries by Steen, R.J.C.A, Leonards, P.E.G, Brinkman, U.A.T, Barcelo, D, Tronczynski, J, Albanis, T.A, Cofino, W.P

    Published in Environmental toxicology and chemistry (01-07-1999)
    “…The Fluxes of Agrochemicals into the Marine Environment (FAME) project, which was funded by the European Union, studied the presence and fate of pesticides in…”
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  5. 5

    Net fluxes of pesticides from the Scheldt Estuary into the North Sea: a model approach by Steen, R.J.C.A., Evers, E.H.G., Van Hattum, B., Cofino, W.P., Brinkman, U.A.Th

    Published in Environmental pollution (1987) (2002)
    “…Pesticide fluxes are modeled hydrodynamically for a complex estuarine environment. A hydrological model was constructed with the commercially available…”
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  6. 6

    Ultra-trace-level determination of the antifouling agent Irgarol 1051 by gas chromatography with tandem mass spectrometric detection by Steen, R.J.C.A, Leonards, P.E.G, Brinkman, U.A.Th, Cofino, W.P

    Published in Journal of Chromatography A (04-04-1997)
    “…The contamination level of the s-triazine herbicide Irgarol 1051, which is used as the active ingredient in antifouling paints, was studied in the Western…”
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    Journal Article
  7. 7