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首页> 外文期刊>Vadose Zone Journal >Incorporating Aqueous Reaction Kinetics and Biodegradation into TOUGHREACT: Applying a Multiregion Model to Hydrobiogeochemical Transport of Denitrification and Sulfate Reduction
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Incorporating Aqueous Reaction Kinetics and Biodegradation into TOUGHREACT: Applying a Multiregion Model to Hydrobiogeochemical Transport of Denitrification and Sulfate Reduction

机译:将水反应动力学和生物降解纳入TOUGHREACT:将多区域模型应用于反硝化和硫酸盐还原的水生地球化学运输

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Received for publication 5 September 2006. The need to consider aqueous and sorption reaction kinetics and microbiological processes arises in many subsurface problems. By adding these processes to the TOUGH family code, more complex problems can be addressed that involve multiphase fluid and heat flow, and geochemical interaction. This paper presents a formulation for incorporating kinetic rates among primary species into mass-balance equations. The space discretization used is based on a flexible integral finite difference approach that uses irregular gridding to model biogeologic structures. A general multiregion model for hydrological transport interacted with microbiological and geochemical processes is proposed. A one-dimensional reactive transport problem with kinetic biodegradation and sorption was used to test the enhanced simulator, which involves the processes that occur when a pulse of water containing nitrylotriacetate (NTA) and cobalt is injected into a column. The current simulation results agree very well with those obtained with other simulators. The applicability of this general multiregion model was validated by results from a published column experiment of denitrification and sulfate reduction. The matches with measured nitrate and sulfate concentrations were adjusted with the interfacial area between mobile and immobile regions. Results suggest that TOUGHREACT not only is useful interpretative tool for biogeochemical experiments but also can produce insight into processes and parameters of microscopic diffusion and their interplay with biogeochemical reactions.
机译:已收到,将于2006年9月5日发布。在许多地下问题中都需要考虑水和吸附反应动力学以及微生物过程。通过将这些过程添加到TOUGH系列代码中,可以解决更复杂的问题,涉及多相流体和热流以及地球化学相互作用。本文提出了将原始物种之间的动力学速率纳入质量平衡方程的公式。所使用的空间离散化基于灵活的积分有限差分方法,该方法使用不规则网格来对生物地质结构进行建模。提出了与微生物和地球化学过程相互作用的水文运输的通用多区域模型。使用具有动力学生物降解和吸附作用的一维反应性运输问题来测试增强型模拟器,该问题涉及将一束含有硝酸三乙酸钠(NTA)和钴的水脉冲注入色谱柱时发生的过程。当前的模拟结果与其他模拟器获得的结果非常吻合。该通用的多区域模型的适用性已通过已发表的反硝化和硫酸盐还原柱实验的结果得到验证。硝酸盐和硫酸盐浓度与实测值的匹配通过可移动区域和不可移动区域之间的界面面积进行调整。结果表明,TOUGHREACT不仅是生物地球化学实验的有用解释工具,而且可以深入了解微观扩散的过程和参数以及它们与生物地球化学反应的相互作用。

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