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Mineral precipitation-induced porosity reduction and its effect on transport parameters in diffusion-controlled porous media

机译:扩散控制的多孔介质中矿物沉淀引起的孔隙度降低及其对输运参数的影响

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摘要

BackgroundIn geochemically perturbed systems where porewater and mineral assemblages are unequilibrated the processes of mineral precipitation and dissolution may change important transport properties such as porosity and pore diffusion coefficients. These reactions might alter the sealing capabilities of the rock by complete pore-scale precipitation (cementation) of the system or by opening new migration pathways through mineral dissolution. In actual 1D continuum reactive transport codes the coupling of transport and porosity is generally accomplished through the empirical Archie’s law. There is very little reported data on systems with changing porosity under well controlled conditions to constrain model input parameters. In this study celestite (SrSO4) was precipitated in the pore space of a compacted sand column under diffusion controlled conditions and the effect on the fluid migration properties was investigated by means of three complementary experimental approaches: (1) tritiated water (HTO) tracer through diffusion, (2) computed micro-tomography (µ-CT) imaging and (3) post-mortem analysis of the precipitate (selective dissolution, SEM/EDX).
机译:背景技术在孔隙水和矿物组合不平衡的地球化学扰动系统中,矿物的沉淀和溶解过程可能会改变重要的输运特性,例如孔隙度和孔隙扩散系数。这些反应可能会通过系统的完整孔隙尺度沉淀(胶结)或通过矿物溶解打开新的迁移途径而改变岩石的封闭能力。在实际的一维连续介质反应性输运编码中,通常通过经验阿奇定律实现输运与孔隙度的耦合。在控制良好的条件下,为限制模型输入参数而改变孔隙度的系统,几乎没有报道的数据。在这项研究中,在扩散控制的条件下,天青石(SrSO4)沉淀在压实砂柱的孔隙中,并通过三种补充实验方法研究了对流体迁移特性的影响:(1)tri水(HTO)示踪剂通过扩散,(2)计算机断层扫描(µ-CT)成像和(3)沉淀物的事后分析(选择性溶解,SEM / EDX)。

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