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首页> 外文期刊>Journal of hydro-environment research >Soil erosion and transport simulation and critical erosion area identification in a headwater catchment contaminated by the Fukushima nuclear accident
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Soil erosion and transport simulation and critical erosion area identification in a headwater catchment contaminated by the Fukushima nuclear accident

机译:受福岛核事故污染的上游水源地的土壤侵蚀和运输模拟以及临界侵蚀区域识别

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Radiocesium released by the accident at the Fukushima Dai-ichi Nuclear Power Plant in 2011 contaminated a large land surface area. Due to the strong and size-dependent adsorption capability of soil particles to radio-nuclides, a better understanding of erosion and transport of soil particles and identification of erosion prone areas within watersheds are significant for contaminant management. For this purpose, we simulated soil erosion and transport in a partially forested catchment for multiple particle size classes. Critical erosion areas were identified by the spatial distribution of net soil erosion. Comparisons between simulated and measured suspended solids concentration at multiple locations throughout the catchment demonstrated successful model performance. For the period Mar. 12, 2011 through Dec. 31, 2014, model results indicated that 5500 tonnes of clay, 52000 tonnes of silt, and 22000 tonnes of sand are transported from the catchment. The results showed that soil erosion in the middle part of the catchment is greater mainly because of steep slopes and large fraction of agricultural lands. These simulations suggest that soil decontamination of erosion-prone agricultural lands in the mid- catchment areas would be effective in reducing radiocesium migration with soil particles.
机译:2011年福岛第一核电站核事故造成的放射性铯污染了大片土地。由于土壤颗粒对放射性核素的吸附能力强且取决于大小,因此,更好地了解土壤颗粒的侵蚀和迁移以及识别流域内容易侵蚀的区域对于污染物管理具有重要意义。为此,我们针对多种粒度等级模拟了部分森林集水区的土壤侵蚀和运输。通过土壤净侵蚀的空间分布确定了关键侵蚀区域。在整个流域内多个位置的模拟和测量的悬浮固体浓度之间的比较证明了成功的模型性能。在2011年3月12日至2014年12月31日期间,模型结果表明,从集水区运来了5500吨粘土,52000吨淤泥和22000吨沙子。结果表明,流域中部的水土流失较大,这主要是由于坡度陡峭和农田面积大。这些模拟表明,在集水区中部易受侵蚀的农业土地上进行土壤净化将有效减少土壤中放射性铯的迁移。

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