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Tributary discharge, lake circulation and lake biology as drivers of water quality in the Canadian Nearshore of Lake Ontario

机译:支流,湖泊环流和湖泊生物学是加拿大安大略湖近岸水质的驱动力

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摘要

A combination of data from shipboard and deployed sensors, nutrient and major ion concentration data, and tributary discharge and current data was used to assess water quality patterns on the Canadian nearshore of Lake Ontario in 2008 and the factors that impact these patterns. Mixing areas at tributary mouths were characterized by high spatial and temporal variability in water quality. Conductivity at sensors offshore from tributaries was variably correlated with discharge, with the correspondence most evident during high spring flow. Tracers of land runoff were positively correlated with tributary discharge at three of five study locations. The spatial distribution of water quality was strongly influenced by the predominating alongshore circulations, with gradients frequently observed parallel to the shoreline away from tributary mouths. Upwelling, evident from temperature bands along the coastline, periodically created onshore-offshore gradients in chlorophyll a and dissolved inorganic nitrogen. Lake whiting, starting in July, further enhanced the effect of upwelling by accentuating differences in water clarity, suspended solids, and ionic composition between surface and bottom strata. In general, turbidity decreased and water clarity increased with lake depth. Gradients in water clarity and chlorophyll a suggestive of dreissenid mussel feeding were uncommon. Interacting land- and lake-based factors contributed to heterogeneous water quality over the coastline of Lake Ontario highlighting needs for water resource assessment methods sensitive to the temporal and spatial scales of problems as well as the connectivity between the land and the lake.
机译:结合船上和部署的传感器数据,营养物质和主要离子浓度数据以及支流流量和当前数据,这些数据被用于评估2008年加拿大安大略湖近岸的水质模式以及影响这些模式的因素。支流口的混合区域的特征是水质的时空变化很大。从支流离岸的传感器的电导率与流量成变量相关,在高弹簧流量期间,这种对应关系最为明显。在五个研究地点中的三个地点,土地径流的示踪剂与支流流量呈正相关。水质的空间分布受到主要的沿海环流的强烈影响,经常观察到平行于远离支流口的海岸线的梯度。从沿海岸线的温度带可以明显看出,上升流周期性地在叶绿素a和溶解的无机氮中形成了近岸-近海梯度。 7月开始的白垩纪白垩化,通过强调表层和底层之间的水透明度,悬浮固体和离子组成的差异,进一步增强了上升流的影响。通常,随着湖泊深度的增加,浊度降低,水的透明度增加。水的澄清度和叶绿素的梯度并不常见,暗示着杜鹃贻贝的摄食。基于土地和湖泊的相互作用因素导致安大略湖海岸线上的水质异质性,突显了对水资源评估方法的需求,这些方法对问题的时空和规模以及土地与湖泊之间的连通性都很敏感。

著录项

  • 来源
    《Journal of great lakes research》 |2012年第s4期|47-61|共15页
  • 作者单位

    Environmental Monitoring and Reporting Branch, Ontario Ministry of the Environment, 125 Resources Road, Toronto, Ontario, Canada M9P 3V6;

    Department of Biology, University of Waterloo, 200 University Avenue West, Waterloo, Ontario, Canada N2L 3C1;

    Environmental Monitoring and Reporting Branch, Ontario Ministry of the Environment, 125 Resources Road, Toronto, Ontario, Canada M9P 3V6;

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

    lake ontario; nearshore; water quality; land runoff; outfalls; circulation;

    机译:安大略湖近岸水质;土地径流;排污口;循环;

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