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农业杀虫剂在全球范围内威胁着地表水。

Agricultural insecticides threaten surface waters at the global scale.

作者信息

Stehle Sebastian, Schulz Ralf

机构信息

Institute for Environmental Sciences, University Koblenz-Landau, D-76829 Landau, Germany.

Institute for Environmental Sciences, University Koblenz-Landau, D-76829 Landau, Germany

出版信息

Proc Natl Acad Sci U S A. 2015 May 5;112(18):5750-5. doi: 10.1073/pnas.1500232112. Epub 2015 Apr 13.

DOI:10.1073/pnas.1500232112
PMID:25870271
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4426442/
Abstract

Compared with nutrient levels and habitat degradation, the importance of agricultural pesticides in surface water may have been underestimated due to a lack of comprehensive quantitative analysis. Increasing pesticide contamination results in decreasing regional aquatic biodiversity, i.e., macroinvertebrate family richness is reduced by ∼30% at pesticide concentrations equaling the legally accepted regulatory threshold levels (RTLs). This study provides a comprehensive metaanalysis of 838 peer-reviewed studies (>2,500 sites in 73 countries) that evaluates, for the first time to our knowledge on a global scale, the exposure of surface waters to particularly toxic agricultural insecticides. We tested whether measured insecticide concentrations (MICs; i.e., quantified insecticide concentrations) exceed their RTLs and how risks depend on insecticide development over time and stringency of environmental regulation. Our analysis reveals that MICs occur rarely (i.e., an estimated 97.4% of analyses conducted found no MICs) and there is a complete lack of scientific monitoring data for ∼90% of global cropland. Most importantly, of the 11,300 MICs, 52.4% (5,915 cases; 68.5% of the sites) exceeded the RTL for either surface water (RTLSW) or sediments. Thus, the biological integrity of global water resources is at a substantial risk. RTLSW exceedances depend on the catchment size, sampling regime, and sampling date; are significantly higher for newer-generation insecticides (i.e., pyrethroids); and are high even in countries with stringent environmental regulations. These results suggest the need for worldwide improvements to current pesticide regulations and agricultural pesticide application practices and for intensified research efforts on the presence and effects of pesticides under real-world conditions.

摘要

与营养水平和栖息地退化相比,由于缺乏全面的定量分析,农业杀虫剂对地表水的重要性可能被低估了。农药污染的增加导致区域水生生物多样性下降,即在农药浓度达到法定监管阈值水平(RTLs)时,大型无脊椎动物科的丰富度降低约30%。本研究对838项同行评审研究(73个国家的>2500个地点)进行了全面的荟萃分析,据我们所知,这是首次在全球范围内评估地表水对剧毒农业杀虫剂的暴露情况。我们测试了实测杀虫剂浓度(MICs;即定量的杀虫剂浓度)是否超过其RTLs,以及风险如何随时间推移取决于杀虫剂的发展和环境监管的严格程度。我们的分析表明,MICs很少出现(即估计97.4%的分析未发现MICs),并且全球约90%的农田完全缺乏科学监测数据。最重要的是,在11300个MICs中,52.4%(5915例;68.5%的地点)超过了地表水(RTLSW)或沉积物的RTL。因此,全球水资源的生物完整性面临重大风险。RTLSW超标取决于集水区大小、采样方式和采样日期;新一代杀虫剂(即拟除虫菊酯类)的超标情况明显更高;即使在环境法规严格的国家也很高。这些结果表明,需要在全球范围内改进现行农药法规和农业农药应用实践,并加强对现实世界条件下农药的存在及其影响的研究力度。

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