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Geochemical and isotopic constraints on the interaction between saline lakes and groundwater in southeast Australia

机译:澳大利亚东南部盐湖与地下水相互作用的地球化学和同位素约束

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摘要

Major ion and stable isotope geochemistry allow groundwater/surface-water interaction associated with saline to hypersaline lakes from the Willaura region of Australia to be understood. Ephemeral lakes lie above the water table and locally contain saline water (total dissolved solids, TDS, contents up to 119,000 mg/L). Saline lakes that lack halite crusts and which have Cl/Br ratios similar to local surface water and groundwater are throughflow lakes with high relative rates of groundwater outflows. Permanent hypersaline lakes contain brines with TDS contents of up to 280,000 mg/L and low Cl/Br ratios due to the formation of halite in evaporite crusts. These lakes are throughflow lakes with relatively low throughflow rates relative to evaporation or terminal discharge lakes. Variations in stable isotope and major ion geochemistry show that the hypersaline lakes undergo seasonal cycles of mineral dissolution and precipitation driven by the influx of surface water and evaporation. Despite the generation of highly saline brines in these lakes, leakage from the adjacent ephemeral lakes or saline throughflow lakes that lack evaporite crusts is mainly responsible for the high salinity of shallow groundwater in this region.
机译:主要的离子和稳定的同位素地球化学使人们可以理解与盐水相关的地下水/地表水与来自澳大利亚维拉拉地区的高盐湖之间的相互作用。暂时的湖泊位于地下水位上方,局部含有盐水(总溶解固体,TDS含量高达119,000 mg / L)。盐湖缺乏盐岩结壳,Cl / Br比与局部地表水和地下水相似,是通流湖,地下水出流率相对较高。永久性高盐度湖泊包含的盐水中TDS含量高达280,000 mg / L,并且由于在蒸发性地壳中形成了盐岩,因此Cl / Br比率较低。这些湖泊是通流湖泊,相对于蒸发或终端排放湖泊而言,通流速率相对较低。稳定同位素和主要离子地球化学的变化表明,高盐湖经历了地表水涌入和蒸发驱动的矿物溶解和降水的季节性循环。尽管在这些湖泊中产生了高盐度的盐水,但邻近的短暂湖泊或缺乏蒸发性结壳的盐水通流湖泊的渗漏仍是造成该地区浅层地下水高盐度的主要原因。

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