TY - JOUR A1 - Lima, D.L.D. A1 - Schneider, Rudolf A1 - Scherer, H.W. A1 - Duarte, A.C. A1 - Santos, E.B.H. A1 - Esteves, V.I. T1 - Sorption-desorption behavior of atrazine on soils subjected to different organic long-term amendments N2 - Sorption of atrazine on soils subjected to three different organic amendments was measured using a batch equilibrium technique. A higher KF value (2.20 kg-1(mg L-1)-N) was obtained for soil fertilized with compost, which had a higher organic matter (OM) content. A correlation between the KFOC values and the percentage of aromatic carbon in OM was observed. The highest KFOC value was obtained for the soil with the highest aromatic content. Higher aromatic content results in higher hydrophobicity of OM, and hydrophobic interactions play a key role in binding of atrazine. On the other hand, the soil amended with farmyard manure had a higher content of carboxylic units, which could be responsible for hydrogen bonding between atrazine and OM. Dominance of hydrogen bonds compared to hydrophobic interactions can be responsible for the lower desorption capacity observed with the farmyard manure soil. The stronger hydrogen bonding can reduce the leaching of atrazine into drinking water resources and runoff to rivers and other surface waters. KW - Capillary electrophoresis KW - Atrazine KW - Sorption KW - Soil KW - Compost KW - Sewage sludge KW - Farmyard manure PY - 2010 DO - https://doi.org/10.1021/jf903937d SN - 0021-8561 SN - 1520-5118 VL - 58 IS - 5 SP - 3101 EP - 3106 PB - American Chemical Society CY - Columbus, Ohio AN - OPUS4-21108 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - JOUR A1 - Filipe, O.M.S. A1 - Vidal, M.M. A1 - Scherer, H.W. A1 - Schneider, Rudolf A1 - Duarte, A. A1 - Esteves, V.I. A1 - Santos, E.B.H. T1 - Effect of long term organic amendments on adsorption-desorption of thiram onto a luvisol soil derived from loess KW - Thiram KW - Adsorption-desorption KW - Soil KW - Organic amendments PY - 2010 DO - https://doi.org/10.1016/j.chemosphere.2010.04.003 SN - 0045-6535 SN - 0366-7111 VL - 80 IS - 3 SP - 293 EP - 300 PB - Elsevier Science CY - Kidlington, Oxford AN - OPUS4-23196 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -