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Modeling of natural organic matter transport processes in groundwater.

机译:地下水中天然有机物运输过程的建模。

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摘要

A forced-gradient tracer test was conducted at the Georgetown site to study the transport of natural organic matter (NOM) in groundwater. In particular, the goal of this experiment was to investigate the interactions between NOM and the aquifer matrix. A detailed three-dimensional characterization of the hydrologic conductivity heterogeneity of the site was obtained using slug tests. The transport of a conservative tracer (chloride) was successfully reproduced using these conductivity data. Despite the good simulation of the flow field, NOM breakthrough curves could not be reproduced using a two-site sorption model with spatially constant parameters. Preliminary results suggest that different mechanisms for the adsorption/desorption processes, as well as their spatial variability, may significantly affect the transport and fate of NOM.
机译:在乔治敦工地进行了强制梯度示踪剂测试,以研究地下水中天然有机物(NOM)的运输。特别地,该实验的目的是研究NOM与含水层基质之间的相互作用。使用段塞测试获得了该站点水文电导率非均质性的详细三维特征。使用这些电导率数据成功地再现了保守示踪剂(氯化物)的传输。尽管对流场进行了良好的模拟,但使用具有空间常数参数的两点吸附模型无法重现NOM突破曲线。初步结果表明,吸附/解吸过程的不同机制及其空间变异性可能会显着影响NOM的运输和命运。

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