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Improving degradation of emerging organic compounds by applying chaotic advection in Managed Aquifer Recharge in randomly heterogeneous porous media

机译:随机非均质多孔介质中管理含水层补给的混沌平流改善新兴有机物降解

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摘要

Improving degradation rates of emerging organic compounds (EOCs) in groundwater is still a challenge. Although their degradation is not fully understood, it has been observed that some substances are preferably degraded under specific redox conditions. The coupling of Managed Aquifer Recharge with soil aquifer remediation treatment, by placing a reactive layer containing organic matter at the bottom of the infiltration pond, is a promising technology to improve the rate of degradation of EOCs. Its success is based on assuming that recharged water and groundwater get well mixed, which is not always true. It has been demonstrated that mixing can be enhanced by inducing chaotic advection through extraction-injection-engineering. In this work, we analyze how chaotic advection might enhance the spreading of redox conditions with the final aim of improving degradation of a mix of benzotriazoles: benzotriazole, 5-methyl-benzotriazole, and 5-chloro-benzotriazole. The degradation of the first two compounds was fastest under aerobic conditions whereas the third compound was best degraded under denitrification conditions. We developed a reactive transport model that describes how a recharged water rich in organic matter mixes with groundwater, how this organic matter is oxidized by different electron acceptors, and how the benzotriazoles are degraded attending for the redox state. The model was tested in different scenarios of recharge, both in homogenous and in heterogenous media. It was found that chaotic flow increases the spreading of the plume of recharged water. Consequently, different redox conditions coexist at a given time, facilitating the degradation of EOCs.
机译:改善地下水中新兴有机化合物(EOC)的降解率仍然是一个挑战。尽管尚未完全了解它们的降解,但已观察到某些物质最好在特定的氧化还原条件下降解。通过在渗透池的底部放置一个包含有机物的反应层,将管理含水层补给与土壤含水层修复相结合,是提高EOC降解速率的一项有前途的技术。它的成功是基于假设补给水和地下水混合得很好,但并非总是如此。已经证明,通过提取-注入工程技术引起混沌对流可以增强混合。在这项工作中,我们分析了混沌平流如何增强氧化还原条件的扩散,最终目的是改善苯并三唑混合物的降解:苯并三唑,5-甲基-苯并三唑和5-氯-苯并三唑。前两种化合物在有氧条件下降解最快,而第三种化合物在反硝化条件下降解最好。我们开发了一种反应性运输模型,该模型描述了富含有机物的补给水如何与地下水混合,该有机物如何被不同的电子受体氧化以及苯并三唑如何因氧化还原状态而降解。在同质和异质介质中,在不同的补给场景下测试了该模型。发现混乱的流动增加了补给水的羽流的扩散。因此,在给定的时间共存不同的氧化还原条件,从而促进了EOC的降解。

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