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Lake Metabolism: Comparison of Lake Metabolic Rates Estimated from a Diel CO2- and the Common Diel O2-Technique

机译:湖泊新陈代谢:通过Diel CO2-和普通Diel O2-技术估算的湖泊新陈代谢率的比较

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摘要

Lake metabolism is a key factor for the understanding of turnover of energy and of organic and inorganic matter in lake ecosystems. Long-term time series on metabolic rates are commonly estimated from diel changes in dissolved oxygen. Here we present long-term data on metabolic rates based on diel changes in total dissolved inorganic carbon (DIC) utilizing an open-water diel CO2-technique. Metabolic rates estimated with this technique and the traditional diel O2-technique agree well in alkaline Lake Illmensee (pH of ~8.5), although the diel changes in molar CO2 concentrations are much smaller than those of the molar O2 concentrations. The open-water diel CO2- and diel O2-techniques provide independent measures of lake metabolic rates that differ in their sensitivity to transport processes. Hence, the combination of both techniques can help to constrain uncertainties arising from assumptions on vertical fluxes due to gas exchange and turbulent diffusion. This is particularly important for estimates of lake respiration rates because these are much more sensitive to assumptions on gradients in vertical fluxes of O2 or DIC than estimates of lake gross primary production. Our data suggest that it can be advantageous to estimate respiration rates assuming negligible gradients in vertical fluxes rather than including gas exchange with the atmosphere but neglecting vertical mixing in the water column. During two months in summer the average lake net production was close to zero suggesting at most slightly autotrophic conditions. However, the lake emitted O2 and CO2 during the entire time period suggesting that O2 and CO2 emissions from lakes can be decoupled from the metabolism in the near surface layer.
机译:湖泊新陈代谢是了解湖泊生态系统中能量以及有机和无机物质转换的关键因素。通常根据溶解氧的狄尔变化来估计代谢率的长期时间序列。在这里,我们介绍了基于开放水diel CO2技术基于总溶解无机碳(DIC)中diel变化的代谢率的长期数据。用这种技术估算的代谢率与传统的diel O2技术在碱性的Illmensee湖(pH约为8.5)中吻合得很好,尽管摩尔CO2浓度的狄尔变化远小于摩尔O2浓度。开放水域diel CO2和diel O2技术提供了对湖泊新陈代谢率的独立度量,这些新陈代谢率对运输过程的敏感性不同。因此,两种技术的结合可以帮助限制由于气体交换和湍流扩散而对垂直通量假设产生的不确定性。这对于估算湖泊呼吸速率特别重要,因为与基于湖泊总初级生产力的估算相比,这些速率对O2或DIC垂直通量梯度的假设更为敏感。我们的数据表明,假设垂直通量的梯度可忽略不计,而不是与大气交换气体,而忽略水柱中的垂直混合,则估计呼吸速率可能是有利的。在夏季的两个月中,平均湖泊净产量接近于零,表明至多是自养状态。但是,湖泊在整个时间段内都排放了O2和CO2,这表明湖泊的O2和CO2排放可以与近表层的新陈代谢脱钩。

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