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首页> 外文期刊>Journal of Hydrology >Numerical modeling of subsurface release and fate of benzene and toluene in coastal aquifers subjected to tides
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Numerical modeling of subsurface release and fate of benzene and toluene in coastal aquifers subjected to tides

机译:潮汐含水层中苯和甲苯的地下释放和命运的数值模拟

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A numerical study was undertaken to investigate subsurface release and fate of benzene and toluene in a tidally influenced beach. The simulations were conducted by using a numerical model BIOMARUN, which coupled a multi-Monad kinetic model BIOB to a density-dependent variably saturated groundwater flow model MARUN. The fate and transport of the contaminant plume were characterized by computing its centroid trajectory, spreading area and percentage of biodegradation in beach saturated and unsaturated zone, respectively. Key factors likely affecting this process were investigated, including tide amplitude, capillarity and hydraulic conductivity. It was found that aerobic biodegradation was the major fate of the contaminant plume in the beach. Tidal action twisted the centroid of the contaminant plume during its migration in the beach, which increased the residence time of the plume in the beach. High tidal range significantly altered the spatial distribution of the contaminant biodegradation in the beach. In contrast, the capillary fringe had impacts on the percentage of benzene biodegraded in the saturated and unsaturated zone of the beach. The increase in capillary fringe enhanced the percentage of the contaminant biodegraded in the unsaturated zone, up to 40%, which is comparable to that in the saturated zone. Hydraulic conductivity seemed to have large impacts on the biodegradation rate of the contaminant in the beach. Higher hydraulic conductivity induced faster contaminant biodegradation in the beach. (C) 2016 Elsevier B.V. All rights reserved.
机译:进行了一项数值研究,以研究苯和甲苯的地下释放和苯苯的命运。通过使用数值模型生物arun进行模拟,该模型生物arun将多半导体动力学模型BIOB耦合到密度依赖性可变饱和地下水流量模型Marun。通过计算其质心轨迹,分散区域和海滩饱和和不饱和区的生物降解率和百分比的特征在特征。研究了可能影响该过程的关键因素,包括潮汐幅度,毛细管性和液压导电性。发现有氧生物降解是海滩中污染羽流的主要命运。在海滩的迁移过程中,潮汐动作扭曲了污染羽流的质心,这增加了羽流在海滩的停留时间。高潮汐范围显着改变了海滩中污染物生物降解的空间分布。相比之下,毛细血管条纹对海滩饱和和不饱和区中苯生物降解的百分比的百分比产生了影响。毛细纹条纹的增加增强了不饱和区中生物降解的污染物的百分比,高达40%,其与饱和区中的相当。液压导电似乎对海滩中污染物的生物降解率产生了大的影响。液压导电性更高的液压导电诱导在海滩中更快的污染物生物降解。 (c)2016 Elsevier B.v.保留所有权利。

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