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Isotopic and Chemical Constraints on the Biogeochemistry of Dissolved Inorganic Carbon and Chemical Weathering in the Karst Watershed of Krka River (Slovenia)

机译:喀尔喀河(斯洛文尼亚)喀斯特流域溶解无机碳生物化学和化学风化的同位素和化学约束

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摘要

The hydrogeochemical and carbon isotope characteristics of the Krka River, Slovenia, were investigated to estimate the carbon transfer from the land ecosystem in the watershed. During the 3-year sampling period (2008–2010), temperature, pH, electrical conductivity, major ion content, dissolved inorganic carbon (DIC) and dissolved organic carbon content, and the isotopic composition of DIC (δ13CDIC) were monitored in the main stream of the Krka River and its tributaries. The major solute composition of analysed waters is dominated by an input of HCO3 −, Ca2+ and Mg2+ originating from carbonate dissolution. The Mg2+/Ca2+ and Mg2+/HCO3 − molar ratio values ranging from 0.24 to 0.71 and 0.05 to 0.30, respectively, indicate a high degree of dolomite dissolution relative to calcite. Dissolved CO2 concentrations in the river were up to tenfold supersaturated relative to the atmosphere, resulting in supersaturation with respect to calcite and degassing of CO2 downstream. The δ13C values in river water range from −15.6 to −9.4 ‰ and are controlled by the input of tributaries, exchange with atmospheric CO2, degradation of organic matter, and dissolution of carbonates. The mass balance calculations for riverine DIC suggest that the contribution from carbonate dissolution and degradation of organic matter have major influence, whereas the exchange with atmospheric CO2 has minor influence on the inorganic carbon pool in the Krka River.
机译:研究了斯洛文尼亚克尔卡河的水文地球化学和碳同位素特征,以估计流域内陆地生态系统的碳转移。在3年的采样期(2008-2010年)中,主要对温度,pH,电导率,主要离子含量,溶解的无机碳(DIC)和溶解的有机碳含量以及DIC的同位素组成(δ13CDIC)进行了监测。克尔卡河及其支流。被分析水的主要溶质组成主要来自碳酸盐溶解的HCO3-,Ca2 +和Mg2 +。 Mg 2+ / Ca 2+和Mg 2+ / HCO 3-的摩尔比值分别在0.24至0.71和0.05至0.30的范围内,表明白云石相对于方解石的溶解度高。相对于大气,河流中溶解的二氧化碳浓度高达十倍的过饱和度,导致方解石过饱和和下游二氧化碳的脱气。河流水中的δ13C值在-15.6至-9.4‰之间,受支流的输入,与大气中CO2的交换,有机物的降解以及碳酸盐的溶解的控制。河流DIC的质量平衡计算表明,碳酸盐溶解和有机物降解的影响很大,而与大气CO2的交换对克尔卡河的无机碳库影响较小。

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