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Pesticides Used on Beef Cattle Feed Yards Are Aerially Transported into the Environment Via Particulate Matter

机译:牛肉饲料码上使用的农药通过颗粒物质鸟类运输到环境中

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摘要

Considering the recent discovery of veterinary pharmaceutical aerial transport from industrial cattle feeding operations via particulate matter, the objective of this study is to determine the extent to which insecticides are also transported into the environment by total suspended particulates emanating from beef cattle feed yards. Of 16 different pesticides quantified in particulate matter samples collected from beef cattle feed yards, permethrin was detected most frequently at >67% of particulate matter samples and at a mean concentration of 1211.7 ± 781.0 (SE) ng/m~3 Imidacloprid was detected at a mean concentration of 62.8 ± 38.2 (SE) ng/ m~3 or equivalent to published concentrations in dust from treated seed planting activities. When insecticide concentrations observed in this study are projected to all United States of America feed yards, the resulting particulate matter (669,000 kg) could contain enough insecticides (active ingredient mass basis) to kill over a billion honeybees daily. Furthermore, a novel transport pathway for macrocyclic lactone entry into the environment was identified. These data raise concern that nontarget organisms may be exposed to potentially toxic levels of pesticides from beef cattle feed yards.
机译:考虑到最近通过颗粒物质从工业牛饲养作业的兽医药物运输的发现,本研究的目的是通过总悬浮的颗粒从肉牛饲料码发出的总悬浮的颗粒来确定杀虫剂也将杀虫剂的程度传播到环境中。在由牛肉饲料码收集的颗粒物质样品中定量的16种不同的农药,均常常检测到> 67%的颗粒物样品,并且在1211.7±781.0(SE)的平均浓度下检测到Ng / m〜3咪酰啉代平均浓度为62.8±38.2(SE)Ng / m〜3或相当于已公布的经处理的种子种植活性的灰尘浓度。当在本研究中观察到的杀虫剂浓度被预测到所有美国饲料码头时,所得到的颗粒物质(669,000千克)可含有足够的杀虫剂(活性成分质量基础),每天杀死超过10亿蜜饮料。此外,鉴定了用于宏环内酯进入环境的新型运输途径。这些数据引发了令人担忧的患者可能暴露于来自牛犊饲料码的潜在毒性水平的毒性。

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  • 来源
    《Environmental Science & Technology》 |2020年第20期|13008-13015|共8页
  • 作者单位

    Department of Environmental Toxicology Texas Tech University Lubbock Texas 79409 United States;

    Department of Environmental Toxicology Texas Tech University Lubbock Texas 79409 United States;

    Department of Environmental Toxicology Texas Tech University Lubbock Texas 79409 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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