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A biogeochemical approach to evaluate the optimization and effectiveness of hypolimnetic withdrawal

机译:一种评价低估戒断优化和有效性的生物地球化学方法

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摘要

Hypolimnetic withdrawal (HW) is a lake restoration method that is based on the removal of phosphorus (P) along with near-bottom water. While it has often proven to be effective, the method also sets challenges: it is about balancing between effective P removal and maintenance of the thermal stratification of the lake. The success of different HW projects has been reviewed in some studies retrospectively, but scientific literature still lacks studies that use detailed data on the lake biogeochemistry to scale and optimize the method in advance, and to predict the outcomes of the restoration measure. In the current study, we investigated the seasonal biogeochemistry, P stocks and thermal stratification of a eutrophic lake (Lake Kymijarvi/Myllypohja basin, southern Finland) to determine an optimal withdrawal rate, to assess its effects on stratification, and to evaluate the expected success of HW. We found that by adjusting HW with P diffusive fluxes from the sediment (diffusion-adjusted HW), it is possible to remove a notable part of the cycling P without causing major disturbances to the thermal stratification even in a relatively shallow lake. Our results show that HW can have great potential in lake restoration: diffusion-adjusted HW in our study lake could increase the annual P output by 35-46%, shifting the P budget of the lake to negative. We thus propose a novel approach to optimize HW on the basis of the diffusive flux of P from the sediment, with the goal of extracting P continuously at an equivalent rate to the diffusive flux. We finally discuss how this can be achieved more effectively with HW based on a closed-circuit system.
机译:低潜气戒断(HW)是一种湖泊恢复方法,基于去除磷(P)以及近底水。虽然它经常被证明是有效的,但该方法还设定了挑战:它是关于平衡有效的P脱离和维护湖的热分层。在一些研究中,在一些研究中审查了不同HW项目的成功,但科学文献仍然缺乏在湖泊生物地球化学上使用详细数据来预先使用和优化方法的研究,并预测恢复措施的结果。在目前的研究中,我们调查了季节性生物地球化学,P股和富营养化湖的热分层(Kyhijarvi / Myllypohja Basin,南部南部)来确定最佳的提取率,以评估其对分层的影响,并评估预期的成功HW。我们发现,通过从沉积物(扩散调节的HW)的PW与P扩散通量调整,即使在相对浅的湖泊中,也可以去除循环P的显着部分,而不会对热分层产生重大扰动。我们的研究结果表明,HW可以在湖泊恢复中具有很大的潜力:我们研究中的扩散调整的HW可以将年度P输出增加35-46%,将湖泊的P预算转移到负面。因此,我们提出了一种新颖的方法来基于来自沉积物的P的扩散通量来优化HW,其目标是以等效率与扩散通量连续提取P.我们终于讨论了基于闭路系统的HW可以更有效地实现这一点。

著录项

  • 来源
    《The Science of the Total Environment》 |2021年第2期|143202.1-143202.14|共14页
  • 作者单位

    Ecosystems and Environment Research Program University of Helsinki Viikinkaari 1 P.O. Box 65 00014 Finland;

    Ecosystems and Environment Research Program University of Helsinki Viikinkaari 1 P.O. Box 65 00014 Finland;

    Department of Hydraulic and Water Resources Engineering Budapest University of Technology and Economics Mueegyetem rkp.3 1111 Budapest Hungary;

    Ecosystems and Environment Research Program University of Helsinki Viikinkaari 1 P.O. Box 65 00014 Finland;

    Department of Hydraulic and Water Resources Engineering Budapest University of Technology and Economics Mueegyetem rkp.3 1111 Budapest Hungary;

    Department of Hydraulic and Water Resources Engineering Budapest University of Technology and Economics Mueegyetem rkp.3 1111 Budapest Hungary;

    Ecosystems and Environment Research Program University of Helsinki Viikinkaari 1 P.O. Box 65 00014 Finland;

    Ecosystems and Environment Research Program University of Helsinki Viikinkaari 1 P.O. Box 65 00014 Finland;

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

    Lake restoration; Phosphorus; Sediment; Eutrophication; Internal loading; Thermal stratification;

    机译:湖恢复;磷;沉淀;富营养化;内部装载;热分层;

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