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首页> 外文期刊>Isotopes in environmental and health studies >Multiple sulphur and oxygen isotopes reveal microbial sulphur cycling in spring waters in the Lower Engadin, Switzerland
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Multiple sulphur and oxygen isotopes reveal microbial sulphur cycling in spring waters in the Lower Engadin, Switzerland

机译:多种硫和氧同位素揭示了瑞士下恩加丁泉水中微生物的硫循环

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摘要

Highly mineralized springs in the Scuol-Tarasp area of the Lower Engadin and in the Albula Valley near Alvaneu, Switzerland, display distinct differences with respect to the source and fate of their dissolved sulphur species. High sulphate concentrations and positive sulphur (delta S-34) and oxygen (delta O-18) isotopic compositions argue for the subsurface dissolution of Mesozoic evaporitic sulphate. In contrast, low sulphate concentrations and less positive or even negative delta S-34 and delta O-18 values indicate a substantial contribution of sulphate sulphur from the oxidation of sulphides in the crystalline basement rocks or the Jurassic sedimentary cover rocks. Furthermore, multiple sulphur (delta S-34, Delta S-33) isotopes support the identification of microbial sulphate reduction and sulphide oxidation in the subsurface, the latter is also evident through the presence of thick aggregates of sulphide-oxidizing Thiothrix bacteria.
机译:在下恩加丁地区的斯库尔-塔拉斯(Scuol-Tarasp)地区和瑞士阿尔瓦努(Alvaneu)附近的阿尔布拉谷(Albula Valley)中,高度矿化的泉水在其溶解硫物种的来源和归宿方面表现出明显差异。高浓度的硫酸盐和正硫(δS-34)和氧(δO-18)同位素组成表明,中生代蒸发性硫酸盐在地下溶解。相反,低的硫酸盐浓度和较小的正S-34和负O-值或负O-18值表明,结晶基岩或侏罗纪沉积盖层中硫化物的氧化对硫酸硫的贡献很大。此外,多种硫(δS-34,δS-33)同位素支持识别地下的微生物硫酸盐还原和硫化物氧化,后者也可通过存在被硫化物氧化的硫磷细菌的厚聚集体而明显。

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