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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Relationships between fluid-rock interactions and the electrical conductivity of sandstones
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Relationships between fluid-rock interactions and the electrical conductivity of sandstones

机译:流体-岩石相互作用与砂岩电导率之间的关系

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Batch and flow-through experiments were performed on quartz-feldspar granular aggregates and sandstone samples to investigate time-dependent effects of fluid-rock interactions on fluid and rock conductivity, respectively. The experiments were conducted at temperatures up to 164 °C, at confining and pore pressures up to 10 and 5 MPa, respectively, and for up to 136 days. It showed that changes in rock conductivity were unequivocally related to changes in pore fluid conductivity. It is inferred that these changes were dependent on kinetically controlled dissolution reactions between the mineral grains and the fluid. The time-dependent signature of rock conductivity implied a detectable transition from initial dissolution toward some state of equilibrium. The response of rock conductivity to temperature changes followed an Arrhenius-type behavior. An exploratory kinetic evaluation of the conductivity data for sandstone samples yielded an apparent activation energy Eaa? - of approximately 32 kJ/mol. A concurrent chemical fluid analysis showed that this is an integrated value over all reactions occurring in parallel within a sample. These reactions namely concern silica and silicate dissolution but also the dissolution of accessory salt minerals. It is concluded that measuring the evolution of rock conductivity in combination with chemical pore fluid analysis constitutes a powerful and quantitative tool for monitoring time-dependent changes in pore fluid chemistry and thus fluid-rock interactions in real time.
机译:在石英-长石粒状骨料和砂岩样品上进行了批处理和流通实验,分别研究了流体-岩石相互作用对流体和岩石电导率的时间依赖性影响。实验是在最高164°C的温度,分别在最高10 MPa和5 MPa的约束压力和孔隙压力下进行的,长达136天。结果表明,岩石电导率的变化与孔隙流体电导率的变化是明确相关的。可以推断,这些变化取决于矿物颗粒和流体之间的动力学控制的溶解反应。岩石电导率随时间变化的特征暗示了从初始溶解到某种平衡状态的可检测过渡。岩石电导率对温度变化的响应遵循Arrhenius型行为。对砂岩样品电导率数据进行的探索性动力学评估得出了明显的活化能Eaa?。 -约为32kJ / mol。同时进行的化学流体分析表明,这是样品中平行发生的所有反应的综合值。这些反应既涉及二氧化硅和硅酸盐的溶解,也涉及辅助盐矿物的溶解。结论是,结合化学孔隙流体分析来测量岩石电导率的演变构成了一种强大且定量的工具,可实时监测孔隙流体化学随时间的变化,从而实时监测流体与岩石的相互作用。

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