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Bridging The Gap Between Batch And Column Experiments: A Case Study Of Cs Adsorption On Granite

机译:缩小批处理和色谱柱实验之间的差距:以花岗岩中铯吸附为例

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摘要

Both batch and column methods are conventionally utilized to determine some critical parameters for assessing the transport of contaminants of concern. The validity of using these parameters is somewhat confusing, however, since outputs such as distribution coefficient (K_d) from these two approaches are often discrepant. To bridge this gap, a!! possible factors that might contribute to this discrepancy were thoroughly investigated in this report by a case study of Cs sorption to crushed granite under various conditions. Our results confirm an important finding that solid/liquid (S/L) ratio is the dominant factor responsible for this discrepancy. As long as the S/L ratio exceeds 0.25, a consistent K_d value can be reached by the two methods. Under these conditions (S/L ratios > 0.25), the sorption capacity of the solid is about an order of magnitude less than that in low S/L ratios (<0.25). Although low sorption capacity is observed in the cases of high S/L ratios, the sorption usually takes place preferentially on the most favorable (thermodynamically stable) sorption sites to form a stronger binding. This is verified by our desorption experiments in which a linear isotherm feature is shown either in deionized water or in 1 M of ammonium acetate solutions. It may be concluded that batch experiment with an S/L ratio exceeding 0.25 is crucial to obtain convincing K_d values for safety assessment of radioactive waste repository.
机译:传统上,间歇和柱方法都用于确定一些关键参数,以评估所关注污染物的传输。但是,使用这些参数的有效性有些令人困惑,因为来自这两种方法的输出(例如分配系数(K_d))通常是不一致的。为了弥合这一差距,一个!在本报告中,通过对Cs在各种条件下对碎花岗岩的吸附的案例研究,彻底调查了可能导致这种差异的可能因素。我们的结果证实了一个重要发现,即固/液(S / L)比是造成此差异的主要因素。只要S / L比超过0.25,两种方法就可以达到一致的K_d值。在这些条件下(S / L比> 0.25),固体的吸附能力比低S / L比(<0.25)低约一个数量级。尽管在高S / L比的情况下观察到低吸附能力,但通常优先在最有利(热力学稳定)的吸附位上发生吸附,以形成更强的结合力。我们的解吸实验证实了这一点,在去离子水中或1 M乙酸铵溶液中均显示出线性等温线特征。可以得出结论,S / L比超过0.25的批处理实验对于获得令人信服的K_d值对于放射性废物处置库的安全评估至关重要。

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