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Transport of oxytetracycline,chlortetracycline, and ivermectin in surface runoff from irrigated pasture
Authors:Daniel A Bair  Ina E Popova  Kenneth W Tate
Institution:1. Department of Land, Air, and Water Resources, University of California, Davis, California, USA;2. Department of Plant, Soil and Entomological Sciences, University of Idaho, Moscow, Idaho, USA;3. Department of Plant Sciences, University of California, Davis, California, USA
Abstract:The transport of oxytetracycline, chlortetracycline, and ivermectin from manure was assessed via surface runoff on irrigated pasture. Surface runoff plots in the Sierra Foothills of Northern California were used to evaluate the effects of irrigation water application rates, pharmaceutical application conditions, vegetative cover, and vegetative filter strip length on the pharmaceutical discharge in surface runoff. Experiments were designed to permit the maximum potential transport of pharmaceuticals to surface runoff water, which included pre-irrigation to saturate soil, trimming grass where manure was applied, and laying a continuous manure strip perpendicular to the flow of water. However, due to high sorption of the pharmaceuticals to manure and soil, less than 0.1% of applied pharmaceuticals were detected in runoff water. Results demonstrated an increase of pharmaceutical transport in surface runoff with increased pharmaceutical concentration in manure, the concentration of pharmaceuticals in runoff water remained constant with increased irrigation flow rate, and no appreciable decrease in pharmaceutical runoff was produced with the vegetative filter strip length increased from 30.5 to 91.5 cm. Most of the applied pharmaceuticals were retained in the manure or within the upper 5 cm of soil directly beneath the manure application sites. As this study evaluated conditions for high transport potential, the data suggest that the risk for significant chlortetracycline, oxytetracycline, and ivermectin transport to surface water from cattle manure on irrigated pasture is low.
Keywords:Veterinary pharmaceuticals  surface runoff  irrigated pasture  vegetative filter strip  environmental exposure  ivermectin  oxytetracyline  chlortetracycline  manure  sorption
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