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首页> 外文期刊>Reviews in mineralogy and geochemistry >Resolving Time-dependent Evolution of Pore-Scale Structure, Permeability and Reactivity using X-ray Microtomography
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Resolving Time-dependent Evolution of Pore-Scale Structure, Permeability and Reactivity using X-ray Microtomography

机译:使用X射线显微断层摄影技术解决孔尺度结构,渗透性和反应性随时间变化的演变

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Dissolution and precipitation reactions are the primary mechanisms that occur when a rock (i.e., a mineral assemblage) is in contact with a fluid out of equilibrium. They play a critical role in natural processes (e.g., weathering, compaction, meteoric and marine diagenesis) and anthropogenic processes (e.g., reservoir acidizing, CO_2 sequestration, acid mine drainage, contaminant mobility, bioremediation). Such fluid-rock interactions result in complex changes in pore structure and mineral composition, leading in turn to changes in flow, mechanical, and transport properties, such as permeability, dispersivity, strength, and pore accessibility. Consequently, geochemical disequilibrium can lead to complex modifications of hydrodynamic and transport properties in porous and fractured rocks.
机译:溶解和沉淀反应是岩石(即矿物组合)与不平衡流体接触时发生的主要机理。它们在自然过程(例如,风化,压实,陨石和海洋成岩作用)和人为过程(例如,储层酸化,CO_2隔离,酸性矿山排水,污染物迁移,生物修复)中起关键作用。这种流体-岩石相互作用导致孔隙结构和矿物成分的复杂变化,进而导致流量,机械和传输特性(例如渗透率,分散性,强度和孔隙可及性)的变化。因此,地球化学的不平衡会导致多孔和裂隙岩石中流体动力和输运特性的复杂变化。

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