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Trends and seasonality of river nutrients in agricultural catchments: 18 years of weekly citizen science in France

机译:农业流域河流养分的趋势和季节性:法国18年每周公民科学

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摘要

Agriculture and urbanization have disturbed three-quarters of global ice-free land surface, delivering huge amounts of nitrogen and phosphorus to freshwater ecosystems. These excess nutrients degrade habitat and threaten human food and water security at a global scale. Because most catchments are either currently subjected to, or recovering from anthropogenic nutrient loading, understanding the short- and long-term responses of river nutrients to changes in land use is essential for effective management. We analyzed a never-published, 18-year time series of anthropogenic (NO3−and PO43−) and naturally derived (dissolved silica) riverine nutrients in 13 catchments recovering from agricultural pollution in western France. In a citizen science initiative, high-school students sampled catchments weekly, which ranged from 26 to 1489km2. Nutrient concentrations decreased substantially over the period of record (19 to 50% for NO3−and 14 to 80% for PO43−), attributable to regional, national, and international investment and regulation, which started immediately prior to monitoring. For the majority of catchments, water quality during the summer low-flow period improved faster than during winter high-flow conditions, and annual minimum concentrations improved relatively faster than annual maximum concentrations. These patterns suggest that water-quality improvements were primarily due to elimination of discrete nutrient sources with seasonally-constant discharge (e.g. human and livestock wastewater), agreeing with available land-use and municipal records. Surprisingly, long-term nutrient decreases were not accompanied by changes in nutrient seasonality in most catchments, attributable to persistent, diffuse nutrient stocks. Despite decreases, nutrient concentrations in almost all catchments remained well above eutrophication thresholds, and because additional improvements will depend on decreasing diffuse nutrient sources, future gains may be much slower than initial rate of recovery. These findings demonstrate the value of citizen science initiatives in quantifying long-term and seasonal consequences of changes in land management, which are necessary to identify sustainable limits and predict recovery timeframes.
机译:农业和城市化扰乱了全球四分之三的无冰陆地表面,为淡水生态系统提供了大量的氮和磷。这些过量的营养物在全球范围内破坏了栖息地,并威胁着人类的粮食和水安全。由于大多数流域目前正在遭受人为养分的吸收或正在从人为养分的恢复中恢复,因此了解河流养分对土地利用变化的短期和长期响应对于有效管理至关重要。我们分析了法国西部13个受农业污染影响的流域的人为(NO3-和PO43-)和天然来源(溶解的二氧化硅)河流养分的从未公布的18年时间序列。在一项公民科学计划中,高中学生每周对集水区进行采样,面积从26到1489 km2。在记录期间,养分浓度显着下降(NO3−的浓度为19%至50%,PO43−的浓度为14%至80%),这归因于在监测之前即开始的区域,国家和国际投资与法规。对于大多数集水区,夏季低流量时期的水质改善要快于冬季高流量条件下的水质,并且年度最低浓度的提高相对快于年度最高浓度。这些模式表明水质的改善主要是由于消除了具有季节性恒定排放量的离散养分源(例如人畜污水),与现有土地利用和市政记录相一致。令人惊讶的是,大多数流域的养分长期减少并没有伴随着养分季节性的变化,这归因于持久的,分散的养分储量。尽管减少,但几乎所有流域的养分浓度仍远高于富营养化阈值,并且由于进一步的改善将取决于减少的分散养分来源,因此未来的获取可能比最初的恢复速度要慢得多。这些发现证明了公民科学计划在量化土地管理变化的长期和季节性后果方面的价值,这对于确定可持续的极限和预测恢复时间框架是必要的。

著录项

  • 来源
    《The Science of the Total Environment》 |2018年第may15期|845-858|共14页
  • 作者单位

    Brigham Young University, Department of Plant and Wildlife Sciences,ECOBIO, OSUR, CNRS;

    University François-Rabelais Tours;

    Laboratoire des Sciences de l'Environnement Marin (LEMAR UMR 6539 CNRS UBO IRD IFREMER), Institut Universitaire Européen de la Mer, Université de Bretagne Occidentale,Observatoire Marin (UMS 3113 CNRS), Institut Universitaire Européen de la Mer, Université de Bretagne Occidentale;

    UMR SAS, INRA, AGROCAMPUS OUEST;

    Observatoire Marin (UMS 3113 CNRS), Institut Universitaire Européen de la Mer, Université de Bretagne Occidentale;

    Laboratoire des Sciences de l'Environnement Marin (LEMAR UMR 6539 CNRS UBO IRD IFREMER), Institut Universitaire Européen de la Mer, Université de Bretagne Occidentale;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Eutrophication; Nitrogen; Phosphorus; Silica; Time series analysis; Citizen science;

    机译:富营养化;氮;磷;二氧化硅;时间序列分析;公民科学;

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