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Ecosystem Effects of a Tropical Cyclone on a Network of Lakes in Northeastern North America

机译:热带气旋对北美东北部湖泊网络的生态影响

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摘要

Here we document the regional effects of Tropical Cyclone Irene on thermal structure and ecosystem metabolism in nine lakes and reservoirs in northeastern North America using a network of high-frequency, in situ, automated sensors. Thermal stability declined within hours in all systems following passage of Irene, and the magnitude of change was related to the volume of water falling on the lake and catchment relative to lake volume. Across systems, temperature change predicted the change in primary production, but changes in mixed-layer thickness did not affect metabolism. Instead, respiration became a driver of ecosystem metabolism that was decoupled from in-lake primary production, likely due to addition of terrestrially derived carbon. Regionally, energetic disturbance of thermal structure was shorter-lived than disturbance from inflows of terrestrial materials. Given predicted regional increases in intense rain events with climate change, the magnitude and longevity of ecological impacts of these storms will be greater in systems with large catchments relative to lake volume, particularly when significant material is available for transport from the catchment. This case illustrates the power of automated sensor networks and associated human networks in assessing both system response and the characteristics that mediate physical and ecological responses to extreme events.
机译:在这里,我们使用高频原位自动传感器网络记录了热带气旋艾琳对北美东北部9个湖泊和水库的热结构和生态系统代谢的区域影响。艾琳通过后,所有系统的热稳定性在数小时内下降,变化的幅度与落在湖泊和集水区的水量相对于湖泊量有关。在整个系统中,温度变化可预测一次生产的变化,但混合层厚度的变化不会影响新陈代谢。取而代之的是,呼吸成为生态系统新陈代谢的驱动力,而生态系统新陈代谢与湖内初级生产脱钩,这很可能是由于添加了陆生碳。就区域而言,热力结构的高能扰动比地面物质流入的扰动寿命短。鉴于预计随着气候变化而发生的强降雨事件的区域性增加,在流域相对于湖泊体积较大的系统中,这些风暴对生态的影响的幅度和持续时间将更大,特别是当有大量物质可从流域运输时。该案例说明了自动传感器网络和相关人员网络在评估系统响应以及介导对极端事件的物理和生态响应的特性方面的功能。

著录项

  • 来源
    《Environmental Science & Technology》 |2012年第21期|11693-11701|共9页
  • 作者单位

    Biology Department, Fairfield University, 1073 North Benson Road, Fairfield, Connecticut, United States;

    Biology Department, State University of New York - New Paltz, New Paltz, New York, United States;

    Program in Environmental Studies, Bates College, Lewiston, Maine, United States;

    Department of Earth & Environmental Sciences, Lehigh University, Bethlehem, Pennsylvania, United States;

    HVater Quality Modeling, New York City Department of Environmental Protection, Kingston, New York, United States;

    Departement des Sciences Biologiques, Universite du Quebec a Montreal, Montreal, Quebec, Canada;

    HVater Quality Modeling, New York City Department of Environmental Protection, Kingston, New York, United States;

    Cary Institute of Ecosystem Studies, Millbrook, New York, United States;

    Upstate Freshwater Institute, Syracuse, New York, United States;

    Upstate Freshwater Institute, Syracuse, New York, United States;

    Cary Institute of Ecosystem Studies, Millbrook, New York, 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);
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  • 正文语种 eng
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