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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Modeling reactive transport in non-ideal aqueous-solid solution system
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Modeling reactive transport in non-ideal aqueous-solid solution system

机译:在非理想的水-固溶体系统中模拟反应输运

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摘要

The numerical simulation of reactive mass transport processes in complex geochemical environments is an important tool for the performance assessment of future waste repositories. A new combination of the multi-component mass transport code GeoSys/RockFlow and the Gibbs Energy Minimization (GEM) equilibrium solver GEM-Selektor is used to calculate the accurate equilibrium of multiple non-ideal solid solutions which are important for the immobilization of radionuclides such as Ra. The coupled code is verified by a widely used benchmark of dissolution-precipitation in a calcite-dolomite system. A more complex application shown in this paper is the transport of Ra in the near-field of a nuclear waste repository. Depending on the initial inventories of Sr, Ba and sulfate, non-ideal sulfate and carbonate solid solutions can fix mobile Ra cations. Due to the complex geochemical interactions, the reactive transport simulations can describe the migration of Ra in a much more realistic way than using the traditional linear K-D approach only.
机译:复杂地球化学环境中反应性物质传输过程的数值模拟是评估未来废物库性能的重要工具。多组分传质代码GeoSys / RockFlow和吉布斯能量最小化(GEM)平衡求解器GEM-Selektor的新组合用于计算多个非理想固溶体的精确平衡,这对于固定放射性核素至关重要作为Ra。通过方解石-白云石体系中溶解-沉淀的广泛使用的基准来验证耦合的代码。本文显示的更复杂的应用是Ra在核废料处置库的近场中的传输。根据Sr,Ba和硫酸盐的初始库存,不理想的硫酸盐和碳酸盐固溶体可以固定可移动的Ra阳离子。由于复杂的地球化学相互作用,与仅使用传统的线性K-D方法相比,反应性输运模拟可以更现实的方式描述Ra的迁移。

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