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不同的 CO2 和 CH4 表观气体交换系数:整个生长季比较北方森林带的一个棕色水湖泊和一个清水湖泊。

Different Apparent Gas Exchange Coefficients for CO2 and CH4: Comparing a Brown-Water and a Clear-Water Lake in the Boreal Zone during the Whole Growing Season.

机构信息

Department of Physics, University of Helsinki , P.O. Box 48, 00014 University of Helsinki, Finland.

Department of Environmental Sciences, University of Helsinki , P.O. Box 65, 00014, Finland.

出版信息

Environ Sci Technol. 2015 Oct 6;49(19):11388-94. doi: 10.1021/acs.est.5b01261. Epub 2015 Sep 24.

Abstract

The air-water exchange of carbon dioxide (CO2) and methane (CH4) is a central process during attempts to establish carbon budgets for lakes and landscapes containing lakes. Lake-atmosphere diffusive gas exchange is dependent on the concentration gradient between air and surface water and also on the gas transfer velocity, often described with the gas transfer coefficient k. We used the floating-chamber method in connection with surface water gas concentration measurements to estimate the gas transfer velocity of CO2 (kCO2) and CH4 (kCH4) weekly throughout the entire growing season in two contrasting boreal lakes, a humic oligotrophic lake and a clear-water productive lake, in order to investigate the earlier observed differences between kCO2 and kCH4. We found that the seasonally averaged gas transfer velocity of CH4 was the same for both lakes. When the lakes were sources of CO2, the gas transfer velocity of CO2 was also similar between the two study lakes. The gas transfer velocity of CH4 was constantly higher than that of CO2 in both lakes, a result also found in other studies but for reasons not yet fully understood. We found no differences between the lakes, demonstrating that the difference between kCO2 and kCH4 is not dependent on season or the characteristics of the lake.

摘要

二氧化碳(CO2)和甲烷(CH4)的气-水交换是建立包含湖泊的湖泊和景观碳预算过程中的核心过程。湖泊-大气扩散气体交换取决于空气和地表水之间的浓度梯度,以及气体转移速度,通常用气体转移系数 k 来描述。我们使用浮室法结合地表水气体浓度测量,每周在两个对比的北方湖泊(一个腐殖质贫营养湖和一个清澈多产的湖泊)整个生长季节估算 CO2(kCO2)和 CH4(kCH4)的气体转移速度,以调查之前观察到的 kCO2 和 kCH4 之间的差异。我们发现,两个湖泊的季节性平均 CH4 气体转移速度相同。当湖泊是 CO2 的源时,两个研究湖泊的 CO2 气体转移速度也相似。在两个湖泊中,CH4 的气体转移速度始终高于 CO2,这在其他研究中也有发现,但原因尚未完全清楚。我们没有发现湖泊之间的差异,这表明 kCO2 和 kCH4 之间的差异不取决于季节或湖泊的特征。

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