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Sulphate Reduction Processes in Biological Permeable Reactive Barriers: Column Experimentation and Modeling

机译:生物渗透反应屏障中的硫酸盐还原过程:柱实验和建模

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In this work a mathematical model for simulating biological sulphate reduction processes was developed and validated by experimental data in fixed bed columns as lab-scale representations of permeable reactive barriers (PRBs). The model takes in consideration transport and adsorption of sulphate and heavy metals, sulphate bioreduction, bioprecipitation and chemical precipitation of metals. Firstly, the effect of sorption capacity of solid phase of column filling versus the effect of active biological mechanisms on solute removal was isolated denoting the significant contribution of sorption versus bioprecipitation of heavy metals. Subsequently, the mathematical model was validated using experimental data from laboratory column experiments and a good agreement between experimental data and simulation results was obtained. Sensitivity analysis of dynamic model showed that, after steady state was reached, parameter related to biological sulphate reduction affected the model output in the most significant way.
机译:在这项工作中,通过固定床柱中的实验数据开发和验证了用于模拟生物硫酸盐还原过程的数学模型,作为可渗透反应屏障(PRB)的实验室规模表示。该模型考虑到硫酸盐和重金属的运输和吸附,硫酸盐生物测量,生物沉淀和金属化学沉淀。首先,柱填充固相对溶质活性机制对溶质去除的影响的影响,表示吸附对重金属的显着贡献。随后,使用实验室柱实验的实验数据验证数学模型,获得了实验数据与模拟结果之间的良好一致性。动态模型的敏感性分析表明,在达到稳态之后,与生物硫酸盐减少相关的参数,以最显着的方式影响了模型输出。

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