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首页> 外文期刊>RSC Advances >Isotope geochemistry, hydrochemistry, and mineralogy of a river affected by acid mine drainage in a mining area, South China
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Isotope geochemistry, hydrochemistry, and mineralogy of a river affected by acid mine drainage in a mining area, South China

机译:中国南部某矿区受酸性矿山排水影响的河流的同位素地球化学,水化学和矿物学

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The Hengshi River is a classic example of an acid mine drainage (AMD)-affected river located in the Dabaoshan mining area in southern China. This work utilized stable isotopes (δ34S and δ18O) and hydrochemical data of surface water samples as well as the mineralogical composition of sediment samples to evaluate the processes that affect the sulfate content in water of the Hengshi River. High concentrations of heavy metals (e.g. Fe: >347.78 mg L?1; Zn: >96.48 mg L?1) in the mud impoundment and relatively stable S isotope values (δ34S: ?1.53‰ ~ ?0.88‰) in the upper stream suggested that most of the sulfates were derived from sulfide oxidation. Dilution and mineralization could decrease SO42? concentration, but had no significant influence on the isotope composition of SO42?. However, δ34S and δ18O increased with the decrease of SO42? concentration, accompanied by the elevation of pH and adequate organic matter being available, suggesting that bacterial (dissimilatory) sulfate reduction played an important role in the transformation of sulfate downstream. The methods used in this study can also be used in other natural systems. Furthermore, it is important to understand the causes of environmental pollution and to help environmental remediation.
机译:横式河是位于中国南方大宝山矿区的一条受酸性矿山排水(AMD)影响的河流的经典例子。这项工作利用了稳定同位素(δ 34 S和δ 18 地表水样品的水化学数据以及沉积物样品的矿物组成,以评估影响横式河水中硫酸盐含量的过程。高浓度重金属(例如:Fe:> 347.78 mg L ?1 ;锌:> 96.48 mg L ? 1 )在泥质蓄积区中且相对稳定的S同位素值(δ 34 S:?1.53‰〜)上游的[0.88‰]表明大多数硫酸盐是来自硫化物的氧化。稀释和矿化可以降低SO 4 2? 的浓度,但对SO的同位素组成没有显着影响 4 2? 。但是,δ 34 S和δ 18 O随SO 4 2? 浓度的降低而增加,伴随着pH值的升高和有机质的增加可以利用,表明细菌(异化)硫酸盐的还原在下游硫酸盐的转化中起重要作用。本研究中使用的方法也可以在其他自然系统中使用。此外,重要的是要了解环境污染的原因并帮助环境修复。

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