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Dynamic Coupling of Iron, Manganese, and Phosphorus Behavior in Water and Sediment of Shallow Ice-Covered Eutrophic Lakes

机译:浅水覆盖富营养化湖泊水和沉积物中铁,锰和磷行为的动态耦合

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摘要

Decreasing duration and occurrence of northern hemisphere ice cover due to recent climate warming is well-documented; however, biogeochemical dynamics underneath the ice are poorly understood. We couple time-series analyses of water column and sediment water interface (SWI) geochemistry with hydrodynamic data to develop a holistic model of iron (Fe), manganese (Mn), and phosphorus (P) behavior underneath the ice of a shallow eutrophic freshwater bay. During periods of persistent subfreezing temperatures, a highly reactive pool of dissolved and colloidal Fe, Mn, and P develops over time in surface sediments and bottom waters due to reductive dissolution of Fe/Mn(oxy)hydroxides below the SWI. Redox dynamics are driven by benthic O_2 consumption, limited air-water exchange of oxygen due to ice cover, and minimal circulation. During thaw events, the concentration, distribution and size partitioning of all species changes, with the highest concentrations of P and "truly dissolved" Fe near the water column surface, and a relatively well-mixed "truly dissolved" Mn and "colloidal" Fe profile due to the influx of geochemically distinct river water and increased circulation. The partitioning and flux of trace metals and phosphorus beneath the ice is dynamic, and heavily influenced by climate-dependent physical processes that vary in both time and space.
机译:有文献记载,由于最近的气候变暖,北半球冰期的持续时间减少和发生。然而,人们对冰下的生物地球化学动力学知之甚少。我们将水柱和沉积物水界面(SWI)地球化学的时间序列分析与流体动力学数据结合起来,以开发浅水富营养化淡水在冰下的铁(Fe),锰(Mn)和磷(P)行为的整体模型湾。在持续的低于冰点的温度期间,由于Fe / Mn(羟基)氢氧化物在SWI以下的还原性溶解,随着时间的推移,在表面沉积物和底部水中会形成高溶解度的胶态Fe,Mn和P反应性胶体。底栖O_2消耗,冰盖导致空气与水的氧气交换有限以及循环最少,从而驱动了氧化还原动力学。在融化过程中,所有物种的浓度,分布和大小分配都会发生变化,其中P和“真正溶解”的Fe的浓度最高,靠近水柱表面,而“真正溶解”的Mn和“胶态”的Fe则相对混合地貌特征是由于涌入的地球化学独特的河水和增加的循环。冰下微量金属和磷的分配和通量是动态的,并且受气候相关的物理过程的影响,这些物理过程在时间和空间上都会变化。

著录项

  • 来源
    《Environmental Science & Technology》 |2015年第16期|9758-9767|共10页
  • 作者单位

    Department of Geology, University of Vermont, Delehanty Hall, 180 Colchester Avenue Burlington, Vermont 05405, United States ,Vermont EPSCoR, University of Vermont, Cook Physical Science Building, 82 University Place, Burlington, Vermont 05405, United States;

    Vermont EPSCoR, University of Vermont, Cook Physical Science Building, 82 University Place, Burlington, Vermont 05405, United States;

    Vermont EPSCoR, University of Vermont, Cook Physical Science Building, 82 University Place, Burlington, Vermont 05405, United States ,Rubenstein School of Environment and Natural Resources, University of Vermont, Aiken Center, 81 Carrigan Drive, Burlington, Vermont 05405, United States;

    Vermont EPSCoR, University of Vermont, Cook Physical Science Building, 82 University Place, Burlington, Vermont 05405, United States;

    Department of Geology, Middlebury College, McCardell Bicentennial Hall, 276 Bicentennial Way, Middlebury College, Middlebury, Vermont 05753, United States;

    Department of Earth Sciences, Indiana University Purdue University, Indianapolis, 723 W. Michigan Street, SL118, Indianapolis, Indiana 46202, 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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  • 入库时间 2022-08-17 13:59:51

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