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首页> 外文期刊>Ecological Monographs: Official Publication of the Ecological Society of America >Lake dissolved inorganic carbon and dissolved oxygen: Changing drivers from days to decades
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Lake dissolved inorganic carbon and dissolved oxygen: Changing drivers from days to decades

机译:湖泊中溶解的无机碳和溶解的氧:驱动因素从数天变为数十年

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Dissolved inorganic carbon (DIC) and dissolved oxygen (DO) are commonly measured to compute metabolism of aquatic ecosystems. However, concentrations of DIC and DO depend on many factors in addition to ecosystem metabolism, such as water temperature, gas exchange with the atmosphere, abiotic chemical reactions, and inputs in precipitation, groundwater, and surface water. We used 20-year time series from seven lakes to understand how DIC and DO concentrations are controlled as a function of time scale. Diel cycles of both solutes are controlled primarily by metabolism, exchange with the atmosphere, and temperature. At seasonal and annual scales, metabolism is important, but physical processes associated with spring and autumn mixing, as well as solute loading from the watershed, have comparably large effects. At decadal scales, effects of metabolism are negligible. Controls of the two solutes diverge, with variance in DIC explained largely by solute inputs and variance in DO explained largely by water temperature. Like other indicators in many ecosystems, variability of DIC and DO is strongly scale dependent and associated with different drivers depending on the time scale of the analysis.
机译:通常测量溶解的无机碳(DIC)和溶解的氧(DO)来计算水生生态系统的代谢。但是,DIC和DO的浓度除了取决于生态系统的代谢外还取决于许多因素,例如水温,与大气的气体交换,非生物化学反应以及降水,地下水和地表水中的投入。我们使用了来自七个湖泊的20年时间序列,以了解DIC和DO的浓度如何随时间尺度而变化。两种溶质的Diel循环主要受新陈代谢,与大气的交换和温度控制。在季节和年度尺度上,新陈代谢很重要,但是与春季和秋季混合相关的物理过程以及流域中的溶质负荷具有相对较大的影响。在十年尺度上,新陈代谢的影响可以忽略不计。两种溶质的控制不同,DIC的差异主要由溶质输入解释,DO的差异主要由水温解释。像许多生态系统中的其他指标一样,DIC和DO的可变性在很大程度上取决于尺度,并取决于分析的时间尺度与不同的驱动因素有关。

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