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首页> 外文期刊>Isotopes in environmental and health studies >Stable isotope mass balances versus concentration differences of dissolved inorganic carbon - implications for tracing carbon turnover in reservoirs
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Stable isotope mass balances versus concentration differences of dissolved inorganic carbon - implications for tracing carbon turnover in reservoirs

机译:稳定的同位素质量平衡与溶解的无机碳的浓度差-跟踪储层碳周转的意义

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摘要

The aim of this study was to identify sources of carbon turnover using stable isotope mass balances. For this purpose, two pre-reservoirs in the Harz Mountains (Germany) were investigated for their dissolved and particulate carbon contents (dissolved inorganic carbon (DIC), dissolved organic carbon, particulate organic carbon) together with their stable carbon isotope ratios. DIC concentration depth profiles from March 2012 had an average of 0.33 mmol L-1. Increases in DIC concentrations later on in the year often corresponded with decreases in its carbon isotope composition (C-13(DIC)) with the most negative value of -18.4 parts per thousand in September. This led to a carbon isotope mass balance with carbon isotope inputs of -28.5 parts per thousand from DOC and -23.4, -31.8 and -30.7 parts per thousand from algae, terrestrial and sedimentary matter, respectively. Best matches between calculated and measured DIC gains were achieved when using the isotope composition of algae. This shows that this type of organic material is most likely responsible for carbon additions to the DIC pool when its concentrations and C-13(DIC) values correlate negatively. The presented isotope mass balance is transferable to other surface water and groundwater systems for quantification of organic matter turnover.
机译:这项研究的目的是使用稳定的同位素质量平衡来确定碳营业额的来源。为此,对德国哈尔茨山脉的两个储层的溶解碳和颗粒碳含量(溶解的无机碳(DIC),溶解的有机碳,颗粒有机碳)及其稳定的碳同位素比进行了研究。从2012年3月开始,DIC浓度深度曲线的平均值为0.33 mmol L-1。 DIC浓度在今年晚些时候增加,通常与其碳同位素组成(C-13(DIC))减少相对应,9月的负值最高为千分之-18.4。这导致了碳同位素质量平衡,DOC的碳同位素输入量为千分之-28.5,千藻,陆地和沉积物的碳同位素输入量分别为-23.4,千分之-31.8和-30.7。当使用藻类的同位素组成时,可以在计算出的DIC增益和测得的DIC增益之间实现最佳匹配。这表明,当DIC池中的碳浓度与C-13(DIC)值呈负相关时,这种有机材料最有可能将碳添加到DIC库中。所提出的同位素质量平衡可以转移到其他地表水和地下水系统,以量化有机物的周转率。

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