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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Temporal and spatial variability of dissolved inorganic carbon in a boreal stream network: Concentrations and downstream fluxes
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Temporal and spatial variability of dissolved inorganic carbon in a boreal stream network: Concentrations and downstream fluxes

机译:北方河网中溶解的无机碳的时空变化:浓度和下游通量

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摘要

Carbon dioxide (CO_2) and dissolved inorganic carbon (DIC) concentrations and export were analyzed throughout a 67 km2 boreal stream network in northern Sweden. 700 DIC and CO_2 samples from 14 subcatchments were collected in 2006 and 2007. All sites were consistently supersaturated in CO_2 with respect to the atmosphere. Temporal variability of DIC and CO_2 concentration was best correlated with discharge, with concentrations generally diluting at high discharge. However, the variability in CO_2 concentration was also dependent on the specific pH range of the stream, as variability was greatest in acidic headwater streams and lowest in larger circumneutral streams. In the larger ones the increase in the CO_2 proportion of DIC at increased discharge counteracts the dilution of CO_2. The shift toward proportionally more CO_2 of the DIC at higher discharge is caused by decline in pH. Spatial patterns showed that DIC and CO_2 concentrations were best correlated with peatland coverage of the subcatchment. The highest concentrations were found in headwater streams draining peatlands. The downstream export of DIC from the catchment outlet constitutes 19% of the total downstream export of carbon (DIC + DOC), or 0.7 (0.09) g C m~(?2) yr~(?1). This study demonstrates the importance of including fluvial fluxes of inorganic carbon in landscape carbon budgets via runoff, and also highlights the need to account for stream evasion of CO_2 to the atmosphere in such estimates since it can be larger than the downstream DIC export.
机译:在瑞典北部整个67 km2的北方河流网络中分析了二氧化碳(CO_2)和溶解的无机碳(DIC)的浓度和出口。在2006年和2007年,从14个子汇水区收集了700个DIC和CO_2样品。就大气而言,所有站点的CO_2都一直处于过饱和状态。 DIC和CO_2浓度的时间变异性与排放量最佳相关,浓度通常在高排放量时稀释。但是,CO_2浓度的变化也取决于物流的特定pH范围,因为在酸性源水物流中变化最大,而在较大的中性物流中变化最小。在较大的排放中,DIC的CO_2比例在排放增加时增加,抵消了CO_2的稀释。 pH下降导致DIC在较高放电时向比例更大的CO_2的转变。空间格局表明,DIC和CO_2浓度与子汇水面积的泥炭地覆盖最相关。在排放泥炭地的源头水流中发现最高浓度。来自集水区出口的DIC下游出口占总碳下游出口(DIC + DOC)的19%,即0.7(0.09)g C m〜(?2)yr〜(?1)。这项研究表明了通过径流将无机碳的通量包括在景观碳预算中的重要性,并且还强调了在这种估计中必须考虑到CO_2向大气中的流散发,因为它可能大于下游DIC的出口。

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