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Contemporary limnology of the rapidly changing glacierized watershed of the world’s largest High Arctic lake

机译:世界上最大的北极高地湖泊迅速变化的冰川流域的当代术语

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摘要

Glacial runoff is predicted to increase in many parts of the Arctic with climate change, yet little is known about the biogeochemical impacts of meltwaters on downstream freshwater ecosystems. Here we document the contemporary limnology of the rapidly changing glacierized watershed of the world’s largest High Arctic lake (Lake Hazen), where warming since 2007 has increased delivery of glacial meltwaters to the lake by up to 10-times. Annually, glacial meltwaters accounted for 62–98% of dissolved nutrient inputs to the lake, depending on the chemical species and year. Lake Hazen was a strong sink for NO3-NO2, NH4+ and DOC, but a source of DIC to its outflow the Ruggles River. Most nutrients entering Lake Hazen were, however, particle-bound and directly transported well below the photic zone via dense turbidity currents, thus reinforcing ultraoligotrophy in the lake rather than overcoming it. For the first time, we apply the land-to-ocean aquatic continuum framework in a large glacierized Arctic watershed, and provide a detailed and holistic description of the physical, chemical and biological limnology of the rapidly changing Lake Hazen watershed. Our findings highlight the sensitivity of freshwater ecosystems to the changing cryosphere, with implications for future water quality and productivity at high latitudes.
机译:预计随着气候变化,北极许多地区的冰川径流会增加,但对于融水对下游淡水生态系统的生物地球化学影响知之甚少。在这里,我们记录了世界上最大的北极湖(Hazen Hazen)迅速变化的冰川流域的当代语言学,自2007年以来的变暖使冰川融水向该湖的输送量增加了多达10倍。每年,冰川融水占湖中溶解养分输入的62-98%,具体取决于化学物种和年份。 Hazen湖是NO3 - -NO2 -,NH4 + 和DOC的强烈汇入点,但DIC是其流入Ruggles河的DIC来源。但是,进入黑岑湖的大多数营养物质都是通过颗粒结合的,并通过浓浊流直接转移到光合带下方,从而增强了湖中的超寡营养而不是克服了。我们首次将陆地到海洋的水生连续体框架应用于一个大型冰川化的流域,并提供了对快速变化的黑岑湖流域的物理,化学和生物湖泊学的详细而全面的描述。我们的发现强调了淡水生态系统对不断变化的冰冻圈的敏感性,对未来高纬度地区的水质和生产力产生了影响。

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