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

机译:两次风暴的故事:极端降雨事件对风暴的影响苏必利尔湖的生物地球化学

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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 non-plume 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 (TN), total phosphorous (TP) and CDOM to the system. In the 2016 storm event, carbon cycling parameters (acidity, total inorganic carbon (TIC), and dissolved organic carbon (DOC), and ammonia levels were elevated within the plume. In neither storm event was there a significant difference in chlorophyll a between plume and non-plume waters during our samplingcruises. These two plume events were similar in amount of precipitation, buttheir effect on the biogeochemistry of Lake Superior varied due to differencesin the watersheds where the rain fell. The studied plume events were dynamic,changing with currents, winds and the settling of suspended sediments.
机译:预计气候变化将对北美大湖地区产生深远影响。降雨事件的强度和频率的增加预计将带来更多的径流,并增加苏必利尔湖生态系统的河流投入。在苏必利尔湖流域发生两次“ 500年”洪水事件之后,通过耦合卫星数据,水柱传感器剖面图和离散地表水采样,分析了这些变化对关键生物地球化学参数的影响。这项研究提供了羽流如何在生态系统中相互作用的空间和时间感。我们还确定了羽毛水和非泡沫水的水质参数之间的显着差异。这两个羽流对于营养物质的输送,沉积物和有色溶解有机物(CDOM)的可变输送非常重要。 2012年风暴事件的数据显示,系统中大量输入了总氮(TN),总磷(TP)和CDOM。在2016年的暴风雨中,烟羽中的碳循环参数(酸度,总无机碳(TIC)和溶解的有机碳(DOC)以及氨水平)均升高,在这两次暴风雨中,烟羽之间的叶绿素a均无显着差异。和我们采样期间的非软水巡游。这两个羽流事件的降水量相似,但它们对苏必利尔湖生物地球化学的影响因差异而异在下雨的流域。研究的羽流事件是动态的,随着海流,风和悬浮沉积物的沉降而变化。

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