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Tale of Two Storms: Impact of Extreme Rain Events on the Biogeochemistry of Lake Superior

机译:两种风暴的故事:极端雨季事件对湖泊生物地球化学的影响

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摘要

Climate change is expected to profoundly affect the Great Lakes region of North America. An increase in intensity and frequency of rain events is anticipated to deliver more runoff and to increase riverine inputs to Lake Superior's ecosystem. The effects of these changes on key biogeochemical parameters were analyzed by coupling satellite data, water column sensor profiles, and discrete surface-water sampling after two "500-year" flood events in the Lake Superior basin. This study provides both a spatial and a temporal sense of how plumes interacted within the ecosystem. We also determined the significant differences in water quality parameters for plume versus nonplume waters. These two plumes were important for delivery of nutrients, with variable transport of sediments and colored dissolved organic matter (CDOM). Data from the 2012 storm event showed a significant input of total nitrogen, total phosphorus, and CDOM to the system. In the 2016 storm event, carbon cycling parameters (acidity, total inorganic carbon, and dissolved organic carbon) and ammonia levels were elevated within the plume. In neither storm event was there a significant difference in chlorophyll a between plume and nonplume waters during our sampling cruises. These two plume events were similar in amount of precipitation, but their effect on the biogeochemistry of Lake Superior varied due to differences in the watersheds where the rain fell. The studied plume events were dynamic, changing with currents, winds, and the settling of suspended sediments.
机译:预计气候变化将深受北美大湖区的影响。预计雨雨事件的强度和频率的增加将提供更多的径流,并将河流投入增加到优越的生态系统。通过耦合卫星数据,水柱传感器轮廓和在湖泊高级盆地的两个“500年”洪水事件后,通过耦合卫星数据,水柱传感器轮廓和离散的表面水采样来分析这些变化对关键生物地球化学参数的影响。本研究提供了空间和时间意识的羽毛在生态系统内的互动。我们还确定了羽流水质参数的显着差异,而不是非发水。这两种羽毛对营养成分的交付是重要的,具有可变的沉积物和有色溶解有机物(CDOM)。 2012 Storm事件的数据显示出对系统的总氮,总磷和CDOM的显着输入。在2016年风暴事件中,在羽流内升高了碳循环参数(酸度,总无机碳和溶解的有机碳)和氨水量。在我们的采样巡航期间羽流和非发水之间的叶绿素A有没有显着差异,在我们的采样游轮中存在显着差异。这两羽事件是在降水量相似,但它们对苏必利尔湖的生物地球化学作用变化是由于在下雨的分水岭差异。学习的羽流事件是动态的,随着电流,风和悬浮沉积物的沉降而变化。

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