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Carbon Biogeochemistry of Ground Water, Guiyang, Southwest China

机译:西南地区贵阳市地下水碳生物地球化学

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Variations in the concentrations and isotopic compositions (δ~(13)C_(DIC)) of dissolved inorganic carbon (DIG) reflect contamination and biogeochemical cycling of the carbon in ground water. In order to understand contamination and biogeochemical cycling of DIC, we carried out research on the geochemistry of ground water of Guiyang, the capital city of Guizhou Province, China. Results show that ground water is mainly characterized by SO_4·HCO_3-Ca·Mg and HCO_3Ca·Mg chemical compositions. The hydrochemical characteristics of these types of water are mainly controlled by lithology of the aquifers. HCO_3- is the dominant species of DIC in ground water and has lower concentrations and more negative values of δ~(13)C_(DIC) in the high-flow (summer monsoon) season, as compared to the low-flow season. This indicates that DIC is relatively enriched in carbon of biological origin in the high-flow season as compared to the low-flow season and that biological activities are the predominant control on shifts of stable carbon isotope values. The evidence that the δ~(13)C_(DIC) values of ground water decrease with increasing concentrations of anthropogenic species shows that the carbon isotopic composition of DIC can be a useful tracer of contamination, in addition to biogeochemical cycling of inorganic carbon in ground water. Results from this study show that ground water is impacted by significant levels of contamination from human activities, especially in the urban areas, as well as the northeast and west suburbs, in Guiyang city, southwest China.
机译:溶解的无机碳(DIG)的浓度和同位素组成(δ〜(13)C_(DIC))的变化反映了地下水中碳的污染和生物地球化学循环。为了了解DIC的污染和生物地球化学循环,我们对中国贵州省会贵阳市的地下水地球化学进行了研究。结果表明,地下水的主要化学成分为SO_4·HCO_3-Ca·Mg和HCO_3Ca·Mg。这些类型的水的水化学特征主要由含水层的岩性控制。 HCO_3-是地下水中DIC的主要种类,与低流量季节相比,高流量(夏季风)季节的δ〜(13)C_(DIC)浓度较低且负值更大。这表明与低流量季节相比,DIC在高流量季节相对富含生物来源的碳,并且生物活性是稳定碳同位素值变化的主要控制因素。地下水的δ〜(13)C_(DIC)值随人为物种浓度的增加而降低的证据表明,DIC的碳同位素组成除了可以有效控制土壤中无机碳的生物地球化学循环外,还可以作为有用的示踪剂。水。这项研究的结果表明,地下水受到人类活动造成的大量污染物的影响,特别是在中国西南部的贵阳市市区以及东北部和西部郊区。

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