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The effects of physical and geochemical heterogeneities on hydro-geochemical transport and effective reaction rates

机译:物理和地球化学非均质性对水地球化学传输和有效反应速率的影响

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摘要

The role of coupled physical and geochemical heterogeneities in hydro-geochemical transport is investigated by simulating three-dimensional transport in a heterogeneous system with kinetic mineral reactions. Ensembles of 100 physically heterogeneous realizations were simulated for three geochemical conditions: 1) spatially homogeneous reactive mineral surface area, 2) reactive surface area positively correlated to hydraulic heterogeneity, and 3) reactive surface area negatively correlated to hydraulic heterogeneity. Groundwater chemistry and the corresponding effective reaction rates were calculated at three transverse planes to quantify differences in plume evolution due to heterogeneity in mineral reaction rates and solute residence time (τ). The model is based on a hypothetical CO_2 intrusion into groundwater from a carbon capture utilization and storage (CCUS) operation where CO_2 dissolution and formation of carbonic acid created geochemical dis-equilibrium between fluids and the mineral galena that resulted in increased aqueous lead (Pb~(2+)) concentrations. Calcite dissolution buffered the pH change and created conditions of galena oversaturation, which then reduced lead concentrations along the flow path. Near the leak kinetic geochemical reactions control the release of solutes into the fluid, but further along the flow path mineral solubility controls solute concentrations. Simulation results demonstrate the impact of heterogeneous distribution of geochemical reactive surface area in coordination with physical heterogeneity on the effective reaction rate (K_(rxn,eff)) and Pb~(2+) concentrations within the plume. Dissimilarities between ensemble Pb~(2+) concentration and K_(rxn,eff) are attributed to how geochemical heterogeneity affects the time (τ_(eq)) and therefore advection distance (L_(eq)) required for the system to re-establish geochemical equilibrium. Only after geochemical equilibrium is re-established, K_(rxn,eff) and Pb~(2+) concentrations are the same for all three geochemical conditions. Correlation between reactive surface area and hydraulic conductivity, either positive or negative, results in variation in τ_(eq) and L_(eq).
机译:通过模拟具有动力学矿物反应的非均质系统中的三维运移,研究了物理和地球化学非均质耦合在水-地球化学运移中的作用。针对三个地球化学条件模拟了100个物理异质实现的集合:1)空间均匀的反应性矿物表面积,2)与水力非均质性正相关的反应性表面积,和3)与水力非均质性负相关的反应性表面积。在三个横向平面上计算了地下水化学成分和相应的有效反应速率,以量化由于矿物反应速率和溶质停留时间(τ)的不均一性而产生的羽状流的差异。该模型基于碳捕集利用和封存(CCUS)作业中假设的CO_2侵入地下水的情况,其中CO_2的溶解和碳酸的形成在流体和矿物方铅矿之间造成地球化学失衡,从而导致含水铅(Pb〜 (2+))浓度。方解石的溶解缓冲了pH的变化,并形成了方铅矿过饱和的条件,从而降低了沿流路的铅浓度。在泄漏附近,动力学地球化学反应控制了溶质向流体中的释放,但进一步沿着流动路径,矿物溶解度控制了溶质浓度。模拟结果表明,地球化学反应表面积的非均匀分布与物理非均质性对烟羽中有效反应速率(K_(rxn,eff))和Pb〜(2+)浓度的影响。整体Pb〜(2+)浓度与K_(rxn,eff)之间的差异归因于地球化学异质性如何影响时间(τ_(eq))以及因此系统重建所需的对流距离(L_(eq))地球化学平衡。只有在重新建立地球化学平衡之后,这三个地球化学条件下的K_(rxn,eff)和Pb〜(2+)浓度才相同。反应表面积和水力传导率之间的相关性(正值或负值)都会导致τ_(eq)和L_(eq)的变化。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2014年第9期|53-64|共12页
  • 作者单位

    Department of Geology & Geological Engineering, USA Hydrological Science & Engineering, USA,Earth and Environmental Sciences Division, Los Alamos National Laboratory, Los Alamos, NM, USA;

    Department of Geology & Geological Engineering, USA Hydrological Science & Engineering, USA;

    Department of Geology & Geological Engineering, USA Hydrological Science & Engineering, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydro-geochemical transport; Physical and geochemical heterogeneities; Effective reaction rate;

    机译:水力地球化学运输;物理和地球化学异质性;有效反应率;
  • 入库时间 2022-08-17 13:40:00

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