首页> 外文期刊>Journal of great lakes research >Phosphorus fractionation in soil and sediments along a continuum from agricultural fields to nearshore lake sediments: Potential ecological impacts
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Phosphorus fractionation in soil and sediments along a continuum from agricultural fields to nearshore lake sediments: Potential ecological impacts

机译:从农田到近岸湖泊沉积物的连续体中土壤和沉积物中的磷分级分离:潜在的生态影响

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摘要

The movement of phosphorus (P) from agricultural fields to streams and deposition in the nearshore of the lake presents a continuum of related physical and chemical properties that act to partition P into different physico-chemical fractions. We investigated changes in soil and sediment P fractionation as material was eroded from predominantly agricultural fields, transported via stream sediments, and deposited in a nearshore lake environment. Total phosphorus content of the soils and sediment decreased from field soils with an average concentration of 553.81 mg P kg~(-1) to 202.28 mg P kg~(-1) in stream sediments to 67.47 mg P kg ' in lake sediments. Significant changes in P fractionation occurred during erosion, transport, and deposition of the particulate or sediment phase. The fractionation of P within the soils and sediments changed significantly from aluminum and organic matter associated P dominant in field soils to calcium associated P dominant in nearshore lake sediments. Various physical and chemical processes appear to be responsible for these transformations which impact the mobility and bioavailability of P. A significant amount of P was lost from field soils as they were transported and deposited. This P has either become available to biota or deposited in deeper portions of the lake system. Ultimately, the impact of P export on the nearshore lake environment may be influenced by the changes in P fractionation that occurred during transport and deposition and by the influence of macrophytes on the biogeochemical cycling of P in the sediment.
机译:磷(P)从农田到湖泊近岸的溪流和沉积物的移动呈现出一系列连续的相关物理和化学特性,这些特性可将P分为不同的物理化学成分。我们调查了土壤和沉积物P分馏的变化,因为该物质从主要的农田中被侵蚀,通过河流沉积物运输并沉积在近岸湖泊环境中。田间土壤中土壤和沉积物的总磷含量从河流沉积物中的平均浓度为553.81 mg P kg〜(-1)降至202.28 mg P kg〜(-1),而湖泊沉积物中的平均浓度为67.47 mg P kg'。在颗粒物或沉积物相的侵蚀,运输和沉积过程中,P分馏发生了重大变化。土壤和沉积物中磷的分馏从田间土壤中铝和有机质相关的P占优势显着改变为近岸湖泊沉积物中钙相关的P占优势。各种物理和化学过程似乎是造成这些转变的原因,这些转变影响了磷的迁移率和生物利用度。大量的磷在运输和沉积过程中从田间土壤中流失。该P已经变得可用于生物群或沉积在湖泊系统的更深部分。最终,磷出口对近岸湖泊环境的影响可能受到运输和沉积过程中磷分馏的变化以及大型植物对沉积物中磷生物地球化学循环的影响。

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  • 来源
    《Journal of great lakes research》 |2009年第1期|56-63|共8页
  • 作者单位

    Department of the Earth Sciences, The College at Brockport, State University of New York, 350 New Campus Drive, Brockport. NY 14420, USA;

    Department of the Earth Sciences, The College at Brockport, State University of New York, 350 New Campus Drive, Brockport. NY 14420, USA;

    Department of Environmental Science and Biology, The College at Brockport, State University of New York. 350 New Campus Drive, Brockport, NY 14420, USA;

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

    phosphorus; fractionation; soil; sediment; nearshore; macrophytes;

    机译:磷;分馏泥;沉淀;近岸大型植物;

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