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Internal Phosphorus Storage in Two Headwater Agricultural Streams in the Lake Erie Basin

机译:伊利湖流域两条源头农业流中的内部磷存储

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摘要

Internal phosphorus (P) in sediments plays an important role in the nutrient dynamics of lakes, sometimes long after external loads have been reduced. Similarly, internal P sources may drive the nutrient dynamics of small agricultural streams that drain to larger rivers and lakes, despite best management practices intended to reduce external P loads from adjacent fields. Here, internal P concentrations were measured with sequential extraction on cores collected in spring and summer from two small agricultural streams in the drainage basin of Lake Erie, a large, eutrophic lake experiencing increasing SRP loads. Average total extractable P concentrations were similar to within 5% during spring and summer, but mobile P binding fractions nearly doubled in summer, possibly due to accelerated rates of organic matter mineralization or iron reduction beneath suboxic, stagnant surface waters. One site had chronically greater internal P concentrations by 25—75%, despite the implementation of best management practices such as grass buffers. The site also had more aquatic vegetation that restricted the flow, less dissolved oxygen in surface water, and greater organic matter in sediments during both seasons, suggesting that variations in hydrology, sediment composition, and vegetation influence hot spots of P retention throughout small agricultural streams.
机译:沉积物中的内部磷(P)在湖泊养分动态中起着重要作用,有时在减少外部负荷后很长时间。同样,尽管有最佳的管理方法旨在减少相邻田地的外部磷负荷,但内部的磷源可能会驱动流向较大河流和湖泊的小型农业流的养分动态。在这里,通过依次萃取从春季和夏季从伊利湖流域(两个大的富营养化湖,SRP负荷不断增加)的两条小农业流中采集的岩心中测定了内部P浓度。在春季和夏季,平均总可萃取P浓度在5%之内,但夏季时可移动的P结合分数几乎翻了一番,这可能是由于在低氧,停滞的地表水下有机物矿化或铁还原的加快。尽管实施了最佳管理措施(例如草木缓冲液),但一个地点的内部P浓度长期会升高25-75%。该地点还具有更多的水生植被,限制了流量,在两个季节中地表水中的溶解氧更少,沉积物中的有机物更多,这表明水文,沉积物组成和植被的变化会影响整个农业小溪中磷的保留热点。 。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第1期|176-183|共8页
  • 作者

  • 作者单位

    School of Earth Sciences The Ohio State University Columbus Ohio 43210 United States;

    USDA-ARS Soil Drainage Research Unit Columbus Ohio 43210 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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