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Atmospheric Deposition of Current-Use and Historic-Use Pesticides in Snow at National Parks in the Western United States

机译:美国西部国家公园雪中目前和历史使用农药的大气沉降

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摘要

The United States (U.S.)National Park Service has initiated research on the atmospheric deposition and fate of semi-volatile organic compounds in its alpine,sub-Arctic,and Arctic ecosystems in the Western U.S.Results for the analysis of pesticides in seasonal snowpack samples collected in spring 2003 from seven national parks are presented herein.From a target analyte list of 47 pesticides and degradation products,the most frequently detected current-use pesticides were dacthal,chlorpyrifos,endosulfan,and gamma -hexachlorocyclohexane,whereas the most frequently detected historic-use pesticides were dieldrin,a-hexachlorocyclohexane,chlordane,and hexachloroben-zene.Correlation analysis with latitude,temperature,elevation,paniculate matter,and two indicators of regional pesticide use reveal that regional current and historic agricultural practices are largely responsible for the distribution of pesticides in the national parks in this study.Pesticide deposition in the Alaskan parks is attributed to long-range transport because there are no significant regional pesticide sources.The percentage of total pesticide concentration due to regional transport (%RT)was calculated for the other parks.%RT was highest at parks with higher regional cropland intensity and for pesticides with lower vapor pressures and shorter half-lives in air.
机译:美国国家公园管理局已开始研究其在美国西部的高山,亚北极和北极生态系统中的半挥发性有机化合物在大气中的沉积和结局。分析季节性积雪样品中农药的结果此处列出了2003年春季在七个国家公园中的杀虫剂。从目标分析物列表中的47种杀虫剂和降解产物中,最常检测到的目前使用的杀虫剂是Dacthal,毒死rif,硫丹和γ-六氯环己烷,而最常检测到的历史性杀虫剂是使用的农药为狄氏剂,α-六氯环己烷,氯丹和六氯苯-苯。与纬度,温度,海拔,颗粒物的相关性分析以及两个区域农药使用指标表明,区域当前和历史悠久的农业实践在很大程度上影响了土壤的分布。这项研究在国家公园中使用了农药。阿拉斯加公园中的农药沉积是由于没有明显的区域农药来源,因此选择远程运输。计算其他区域由于区域运输造成的农药总浓度(%RT)的百分比。在区域耕地密度较高且农药较高的公园中,%RT最高具有较低的蒸气压和较短的空气半衰期。

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  • 来源
    《Environmental Science & Technology》 |2006年第10期|p.3174-3180|共7页
  • 作者单位

    Department of Environmental and Molecular Toxicology Oregon State University,Corvallis,Oregon 97331,Department of Chemistry,Oregon State University,Corvallis,Oregon 97331,United States Geological Survey,Denver,Colorado 80225,and United States Environ;

    Department of Environmental and Molecular Toxicology Oregon State University,Corvallis,Oregon 97331,Department of Chemistry,Oregon State University,Corvallis,Oregon 97331,United States Geological Survey,Denver,Colorado 80225,and United States Environ;

    Department of Environmental and Molecular Toxicology Oregon State University,Corvallis,Oregon 97331,Department of Chemistry,Oregon State University,Corvallis,Oregon 97331,United States Geological Survey,Denver,Colorado 80225,and United States Environ;

    Department of Environmental and Molecular Toxicology Oregon State University,Corvallis,Oregon 97331,Department of Chemistry,Oregon State University,Corvallis,Oregon 97331,United States Geological Survey,Denver,Colorado 80225,and United States Environ;

    Department of Environmental and Molecular Toxicology Oregon State University,Corvallis,Oregon 97331,Department of Chemistry,Oregon State University,Corvallis,Oregon 97331,United States Geological Survey,Denver,Colorado 80225,and United States Environ;

  • 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
  • 中图分类 环境化学;
  • 关键词

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