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A sensibility analysis of model selection in modeling the reactive transport of cesium in crushed granite

机译:铯在碎花岗岩中反应性传输过程建模中模型选择的敏感性分析

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We performed a sensibility analysis of model selection in modeling the reactive transport of cesium in crushed granite through model calibration and validation. Based on some solid phase analysis data and kinetic batch experimental results, we hypothesized three two-site sorption models in the LEHGC reactive transport model to fit the breakthrough curves (BTCs) from the corresponding column experiments. The analysis of breakthrough curves shows that both the empirical two-site kinetic linear sorption model and the semi-mechanistic/semi-empirical two-site kinetic surface complexation model, regardless of their complexity, can match our experimental data fairly well under given test conditions. A numerical experiment to further compare the two models shows that they behave differently when the pore velocity is not of the same order of magnitude as our test velocities. This result indicates that further investigations to help determine a better model are needed. We suggest that a multistage column experiment, which tests over the whole range of practical flow velocities, should be conducted to help alleviate inadequate hypothesized models.
机译:我们通过模型校准和验证,对压碎花岗岩中铯的反应性传输进行建模时,对模型选择进行了敏感性分析。基于一些固相分析数据和动力学批次实验结果,我们在LEHGC反应性传输模型中假设了三个两点吸附模型,以拟合相应柱实验的穿透曲线(BTC)。突破曲线的分析表明,无论是经验性的两点动力学线性吸附模型还是半力学/半经验的两点动力学表面络合模型,无论它们的复杂性如何,在给定的测试条件下都能很好地匹配我们的实验数据。进一步比较这两个模型的数值实验表明,当孔隙速度与我们的测试速度不在同一数量级时,它们的行为会有所不同。该结果表明需要进一步研究以帮助确定更好的模型。我们建议应该进行多阶段柱实验,以测试整个实际流速范围,以帮助减轻假设模型的不足。

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