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High-Resolution Historical Record of Plant Protection Product Deposition Documented by Target and Nontarget Trend Analysis in a Swiss Lake under Anthropogenic Pressure

机译:在人为压力下瑞士湖的目标和非明显趋势分析植物保护产品沉积的高分辨率历史记录

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摘要

A multiproxy workflow was used to assess >60 plant protection products (PPPs) in sediment samples from a Swiss lake under heavy agricultural pressure. The results show the appearance of PPPs for the first time in the early 1960s with an overall detection of 34 PPPs and with herbicides and fungicides found in equal proportions. Paleolimnological data [e.g., chronology, hyperspectral imaging of sedimentary green pigments, and semiquantitative elemental composition (μXRF scans)] suggest that PPP concentrations and fluxes to the sediment over time are not related to land surface processes such as soil erosion or lake biogeochemistry but are attributed mainly to PPP application (inferred from sales) or regulatory measures (bans). Additional compounds with similar sources of contamination as the target PPPs captured by nontarget trend analysis (≥2000 unknown profiles) reveal significant inputs of contaminants to the lake starting in the 1970s, followed by a decrease of contamination at the beginning of the 1990s and a constant increase by ~28% of the unknown compounds since the year 2000. An ecological risk assessment conducted on detected PPPs indicates that since the 1980s, the sediment quality is insufficient with risk quotient values displaying maximum levels in the most recent sediments (~2010) despite bans of specific PPPs and environmental regulations.
机译:多XY工作流程用于评估瑞士湖的沉积物样本中的> 60种植物保护产品(PPP)。结果表明,在20世纪60年代初期,PPPS首次出现了PPP,总体检测为34个PPP,除草剂和除草剂,杀菌剂在平等的比例中发现。古肌电学数据[例如,年代学,沉积绿色颜料的高光谱成像,以及半定位元素组成(μXRF扫描)]表明PPP浓度和对沉积物的通量随着时间的推移与土地侵蚀或生物地球化学等土地表面方法无关,但是主要归因于PPP申请(从销售)或监管措施(禁令)。具有与Nontarget趋势分析(≥2000个未知配置文件)捕获的目标PPP类似污染源的额外化合物,从20世纪70年代揭示了湖泊污染物的大量投入,然后在20世纪90年代初减少了污染和常数自2000年以来增加了〜28%的未知化合物。在检测到的PPP上进行的生态风险评估表明,自20世纪80年代以来,沉积物质量不足以虽然最近的沉积物(〜2010),仍然存在最大水平的风险商。特定PPP和环境法规的禁令。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第20期|13090-13100|共11页
  • 作者单位

    Institute of Geography and Oeschger Center for Climate Change Research University of Bern Bern 3012 Switzerland;

    Institute of Geography and Oeschger Center for Climate Change Research University of Bern Bern 3012 Switzerland;

    Climate System Research Center Department of Geosciences University of Massachusetts Amherst Amherst 01003 United States;

    Department of Chemistry and Biochemistry and Oeschger Centre for Climate Change Research University of Bern Bern 3012 Switzerland;

    Eawag Swiss Federal Institute of Aquatic Science and Technology Duebendorf 8600 Switzerland Department of Earth Sciences ETH Zuerich 8006 Zuerich Switzerland;

    Institute of Geography and Oeschger Center for Climate Change Research University of Bern Bern 3012 Switzerland;

  • 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
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  • 入库时间 2022-08-18 22:37:05

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