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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >Application of brine differentiation and Langelier-Ludwig plots to fresh-to-brine waters from sedimentary basins: Diagnostic potentials and limits
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Application of brine differentiation and Langelier-Ludwig plots to fresh-to-brine waters from sedimentary basins: Diagnostic potentials and limits

机译:盐水区分法和Langelier-Ludwig图在沉积盆地新鲜至盐水中的应用:诊断潜力和极限

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摘要

Classical chemical classification plots that use major anions and cations can discern between different water facies but they do not offer sufficient discriminatory power for salt waters from sedimentary basins, whose origin is therefore frequently misunderstood. The Brine Differentiation Plot (BDP) was proposed by Hounslow (1995) in order to investigate the brine genesis, principally evaporite dissolution, alkali lakes and oilfield brines. However, its diagnostic potential has been undervalued so far. In this paper, the potential of BDP was tested and compared with the classical Langelier-Ludwig plot using concentration of major dissolved constituents of fresh to brine waters from different sedimentary basins (Northern Apennine Foredeep, Italy; Provence Basin, Western Mediterranean; Caucasus; Trinidad). Mixing processes between different water types as evaluated by these diagrams would seem to be constrained by the boron-chloride plot.
机译:使用主要阴离子和阳离子的经典化学分类图可以区分不同的水相,但是它们不能为沉积盆地的盐水提供足够的区分能力,因此其来源经常被误解。 Hounslow(1995)提出了盐水分化图(BDP),以研究盐水的成因,主要是蒸发岩的溶解,碱化湖泊和油田盐水。但是,到目前为止,它的诊断潜力被低估了。本文对BDP的潜力进行了测试,并将其与经典的Langelier-Ludwig图进行了比较,使用了不同沉积盆地(意大利北部亚平宁福雷迪普;地中海南部的普罗旺斯盆地;高加索;特立尼达)的淡水到盐水的主要溶解成分的浓度)。这些图所评估的不同水类型之间的混合过程似乎受到氯化硼曲线的限制。

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