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Insights into transport velocity of colloid-associated plutonium relative to tritium in porous media

机译:多孔介质中胶体相关p相对于tri的传输速度的见解

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Although faster transport velocities of colloid-associated actinides, bacteria, and virus than nonreactive solutes have been observed in laboratory and field experiments, some questions still need to be answered. To accurately determine the relative velocity ( U Pu/ U T) of 239Pu and tritium representative of the bulk water, a conceptual model of electrostatic interactions coupled with the parabolic water velocity profile in pore channels is developed. Based on the expression for U Pu/ U T derived from this model, we study the effects of water flow rates and ionic strengths on the U Pu/ U T. Also, the velocity relationship between Pu, tritium and Sr2+ is explored. The results show that U Pu/ U T increased fairly linearly with decreasing water flow rates; U Pu/ U T declined approximately exponentially with increasing Na+ concentrations; the charge properties of colloid-associated Pu (negative), tritium (neutral) and Sr2+ (positive) had a close association with their transport velocities as U Pu : U T : U Sr2+ = 1.41 : 1 : 0.579.
机译:尽管在实验室和现场实验中观察到胶体相关的act系元素,细菌和病毒的转运速度比非反应性溶质要快,但仍需要回答一些问题。为了准确确定代表大体积水的 239 Pu和tri的相对速度(U Pu / U T ),静电的概念模型相互作用与孔道中抛物线速度曲线相结合。基于该模型导出的U Pu / U T 的表达式,我们研究了水流量和离子强度对U Pu 的影响> / U T 。此外,还研究了Pu,and和Sr 2 + 之间的速度关系。结果表明,U Pu / U T 随水流速率的降低呈线性增长。随着Na + 浓度的升高,U Pu / U T 呈指数下降。胶体相关的Pu(负),tri(中性)和Sr 2 + (正)的电荷性质与它们的输运速度U Pu :U密切相关 T :U Sr 2 + = 1.41:1:0.579。

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