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Strontium isotope systematics of mixing groundwater and oil-field brine at Goose Lake in northeastern Montana, USA

机译:地下水与油田卤水混合的锶同位素系统 鹅湖在东北蒙大拿,美国

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摘要

Groundwater, surface water, and soil in the Goose Lake oil field in northeastern Montana have been affected by Cl- rich oil-field brines during long-term petroleum production. Ongoing multidisciplinary geochemical and geophysical studies have identified the degree and local extent of interaction between brine and groundwater. Fourteen samples representing groundwater, surface water, and brine were collected for Sr isotope analyses to evaluate the usefulness of 87Sr/86Sr in detecting small amounts of brine. Differences in Sr concentrations and 87Sr/86Sr are optimal at this site for the experiment. Strontium concentrations range from 0.13 to 36.9 mg/L, and corresponding 87Sr/86Sr values range from 0.71097 to 0.70828. The local brine has 168 mg/L Sr and a 87Sr/86Sr value of 0.70802. Mixing relationships are evident in the data set and illustrate the sensitivity of Sr in detecting small amounts of brine in groundwater. The location of data points on a Sr isotope-concentration plot is readily explained by an evaporation-mixing model. The model is supported by the variation in concentrations of most of the other solutes.
机译:蒙大拿州东北部Goose Lake油田的地下水,地表水和土壤在长期生产石油时受到富含Cl的油田盐水的影响。正在进行的多学科地球化学和地球物理研究已经确定了盐水和地下水之间相互作用的程度和局部程度。收集了代表地下水,地表水和盐水的14个样品用于Sr同位素分析,以评估87Sr / 86Sr在检测少量盐水中的实用性。 Sr浓度和87Sr / 86Sr的差异在此实验点是最佳的。锶浓度范围为0.13至36.9 mg / L,相应的87Sr / 86Sr值范围为0.71097至0.70828。当地盐水的Sr值为168 mg / L,87Sr / 86Sr值为0.70802。混合关系在数据集中很明显,说明了Sr在检测地下水中少量盐水中的敏感性。蒸发混合模型很容易解释Sr同位素浓度图上数据点的位置。该模型得到大多数其他溶质浓度变化的支持。

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