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A field method is described, which allows the qualitative estimation of pesticide contamination in the edgeof-field runoff. The method employs cheap and easy-to-use runoff sampling bottles, which were installed in an agricultural stream catchment over a period of three growing seasons. During this time 18 runoff events were detected, in nine of which insecticide contamination was measured (maximum concentrations: lindane 0.7 μg l−1 and 12.7 μg kg−1, parathion 20 μg l−1 and 728 μg kg, fenvalerate 18.4 μg 1-1 and 924 μg kg−1). These insecticides were detected mainly as particle-bound chemicals. On about 80 % of the occasions the presence or absence of runoff measured in the field was in agreement with a simulation of runoff presence or absence using the runoff model KINEROS.  相似文献   
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Summary. The capacity of benzoxazolinone metabolization of dicotyledonous species characteristic for the former vegetation classes Secalietea (grain field weed communities) and Chenopodietea (hoed vegetable communities) was estimated by the production of BOA-6-OH, BOA-6-β-O-glucoside, and BOA-N-glucoside. Except for Urtica urens, Galinsoga ciliata, and Polygonum aviculare (Chenopodietea), all species tested were able to synthesize BOA-6-OH, its glucoside, and BOA-N-glucoside, but effectiveness of BOA metabolism differed highly depending on species and plant organ. There was no correlation between bacterial phenoxazinone production and appearance of metabolites in the plants. Bioassays demonstrated that N-glucosylation is more efficient in BOA detoxification than O-glucosylation. The intermediate BOA-6-OH, however, is more harmful than BOA itself. It is therefore assumed that the ability to synthesize BOA-N-glucoside reduces the sensitivity to BOA strikingly. Since the detoxification capacity did not correlate with the taxonomic position, the affiliation of the species tested with the corresponding plant communities was taken into consideration. Evidently, the ecobiochemical potential of species to detoxify benzoxazolinone, regarded as an essential secondary compound in rye and wheat fields, reflects their occurrence in those plant associations. The ability to cope with the compound could be the result of co-evolutionary processes and presents a hidden aspect of allelopathic interaction. Received 4 January 1999; accepted 14 June 1999.  相似文献   
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People frequently have to work in high repetitive jobs. Previous research has focused exclusively on the effects of task repetitiveness on well‐being, while neglecting effects on work performance. In the present study, we aimed to fill this void by conducting two workplace simulations with experimental manipulations of task repetitiveness. Participants worked for about 5 hours at either a computer workstation, compiling computer hardware packages according to customer requests (Experiment 1, N = 160), or at an assembly line, piecing together equipment sets for furniture (Experiment 2, N = 213). Both experiments provide consistent evidence that high repetitiveness has a detrimental effect on well‐being, whereas work performance increases under conditions of high repetitiveness. On a practical level, our study hence shows that high task repetitiveness is a double‐edged sword for both employees and organizations. On a conceptual level, our findings emphasize the necessity to account for both mental strain and work performance when examining the effects of task repetitiveness. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   
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