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Modeling the Fate of Root Exudates and Their Effects on Cesium Partitioning in the Rhizosphere

机译:建模根部渗出物的命运及其对根际铯分区的影响

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A conceptual model is being developed for prediction of cesium (Cs) partitioning between bound (Cs_b), aqueous (Cs_a), and phytoextracted (Cs_p) phases in the rhizosphere. The model categorizes the processes that impact cesium partitioning into six sub-models: geochemistry, physical factors, root density, microorganisms, nutrients, and root exudates. A seventh sub-model (Cs fate) describes Cs movement between the three phases. Functional relationships and parametric values within and between the sub-models are being developed based on literature, field characterization, and laboratory experiments. Sensitivity analyses were conducted to evaluate the effects of root density, microbial population, potassium requirement and concentration, and moisture content on the concentration of root exudates ([E]) and consequently on Cs partitioning. In summary, the model provides a framework for better understanding the fundamental processes that control Cs fate in the rhizosphere. The ability to better understand, predict, and control Cs solubilization could be applied to other metals in the future. Ultimately, the model will be used as a tool for enhancing field implementation of in situ solubilization of metals for a variety of remedial activities.
机译:概念模型正在为界(CS_B)之间分配铯的预测(CS),水(CS_A)开发,并且phytoextracted在根际(Cs_p)相。该模型分类的流程,冲击铯划分为六个子模型:地球化学,物理因素,根密度,微生物,营养素,和根分泌物。第七子模型(CS命运)描述了三个阶段之间的铯运动。根据文献,现场鉴定和实验室实验中和子模型之间的功能关系和参数值正在制定中。灵敏度分析以评价根的密度,微生物种群,钾要求和浓度,和水分含量的上根分泌物([E]),并因此在Cs的分区的浓度的影响。总之,该模型提供了一个框架,为了更好地理解基本流程,控制铯的命运在根际。以更好的能力,理解,预测和控制铯溶解可以应用到未来的其他金属。最终,该模型将被用作在金属原位溶解增强领域实施的各种补救活动的工具。

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