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首页> 外文期刊>Journal of great lakes research >Chronicles of hypoxia: Time-series buoy observations reveal annually recurring seasonal basin-wide hypoxia in Muskegon Lake - A Great Lakes estuary
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Chronicles of hypoxia: Time-series buoy observations reveal annually recurring seasonal basin-wide hypoxia in Muskegon Lake - A Great Lakes estuary

机译:缺氧纪事:时间序列浮标的观测揭示了马斯基根湖-大湖河口每年重复发生的季节性全盆地缺氧

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摘要

We chronicled the seasonally recurring hypolimnetic hypoxia in Muskegon Lake - a Great Lakes estuary over 3 years, and examined its causes and consequences. Muskegon Lake is a mesotrophic drowned river mouth that drains Michigan's 2nd largest watershed into Lake Michigan. A buoy observatory tracked ecosystem changes in the Muskegon Lake Area of Concern (AOC), gathering vital time-series data on the lake's water quality from early summer through late fall from 2011 to 2013 (www.gvsu.edu/buoy). Observatory-based measurements of dissolved oxygen (DO) tracked the gradual development, intensification and breakdown of hypoxia (mild hypoxia 4 mg DO/L, and severe hypoxia 2 mg DO/L) below the similar to 6 m thermocline in the lake, occurring in synchrony with changes in temperature and phytoplankton biomass in the water column during July-October. Time-series data suggest that proximal causes of the observed seasonal hypolimnetic DO dynamics are stratified summer water-column, reduced wind-driven mixing, longer summer residence time, episodic intrusions of cold DO-rich nearshore lake Michigan water, nutrient run off from watershed, and phytoplankton blooms. Additional basin-wide water-column profiling (2011-2012) and ship-based seasonal surveys (2003-2013) confirmed that bottom water hypoxia is an annually recurring lake-wide condition. Volumetric hypolimnetic oxygen demand was high (0.07-0.15 m, DO/Liter/day) and comparable to other temperate eutrophic lakes. Over 3 years of intense monitoring, similar to 9-24% of Muskegon Lake's volume experienced hypoxia for similar to 29-85 days/year - with the potential for hypolimnetic habitat degradation and sediment phosphorus release leading to further eutrophication. Thus, time-series observatories can provide penetrating insights into the inner workings of ecosystems and their external drivers. (C) 2018 The Authors. Published by Elsevier B.V. on behalf of International Association for Great Lakes Research.
机译:我们记录了马克斯贡湖(大湖河口3年多)的季节性反复出现的低边际低氧,并检查了其原因和后果。马斯基根湖是一条中营养淹没的河口,将密歇根州第二大流域排入密歇根湖。一个浮标观测站追踪了关注的马斯基根湖地区(AOC)的生态系统变化,收集了从初夏到2011年至2013年秋末的有关湖水质量的重要时间序列数据(www.gvsu.edu/buoy)。基于天文台的溶解氧(DO)测量结果跟踪了湖泊中6 m以下的温跃层以下的低氧(轻度低氧<4 mg DO / L,重度低氧<2 mg DO / L)的逐渐发展,加剧和破坏。与7月至10月水柱中温度和浮游植物生物量的变化同步发生。时间序列数据表明,观测到的季节性低磁DO动力学的近因是夏季水柱分层,风驱动混合减少,夏季停留时间更长,富含DO的冷浸近岸密歇根湖水的间歇性入侵,营养物从流域流失,浮游植物开花。额外的流域级水柱剖面图(2011-2012年)和基于船的季节性调查(2003-2013年)证实,底水缺氧是湖泊范围内每年重复出现的状况。低铁氧气的需求量很高(0.07-0.15 m,DO /升/天),与其他温带富营养化湖泊相当。经过3年的严格监控,大约有9-24%的马斯基根湖经历了缺氧,每年约发生29-85天-潜在的低铁生境退化和沉积物磷释放导致进一步富营养化。因此,时间序列观测站可以提供有关生态系统内部运作及其外部驱动因素的深入见解。 (C)2018作者。由Elsevier B.V.代表国际大湖研究协会出版。

著录项

  • 来源
    《Journal of great lakes research》 |2018年第2期|219-229|共11页
  • 作者单位

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Grand Valley State Univ, Annis Water Resources Inst, 740 Shoreline Dr, Muskegon, MI 49441 USA;

    Univ Michigan, Cooperat Inst Great Lakes Res, Ann Arbor, MI 48018 USA;

    NOAA, Great Lakes Environm Res Lab, Ann Arbor, MI 48018 USA;

    NOAA, Great Lakes Environm Res Lab, Ann Arbor, MI 48018 USA;

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

    Time-series measurements; Annually recurring bottom water hypoxia; Muskegon lake area of concern; Great Lakes estuary;

    机译:时间序列测量;每年反复发生的底部缺氧;Muskegon湖地区;大湖河口;

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