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Impacts of freeze-thaw processes and subsequent runoff on ~(137)Cs washoff from bare land in Fukushima

机译:冻融过程的影响和随后的径流〜(137)CS冲洗从福岛的裸机擦洗

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摘要

The deposited ~(137)Cs is one of the long-lived radionuclides, that was released following the Fukushima Dai-ichi Nuclear Power Plant (FDNPP) accident, has been hydrologically transported as particulates in the terrestrial environment of the Fukushima region. The impact of freeze-thaw processes and subsequent runoff affecting the ~(137)Cs flux and concentration in sediment discharge were revealed in bare land erosion plot following the FDNPP accident by detailed monitoring and laser scanner measurement on the soil surface. We found that surface topographic changes due to the frost-heaving during the winter-spring period, and rill formation during the summer. We also found the evident seasonal changes in ~(137)Cs concentration; high during the early spring and gradually decreased thereafter, then surface runoff from the plot frequently occurred during spring and autumn when rainfall was high and reached a maximum in summer. From these results, the higher ~(137)Cs concentration in spring was caused by a mixture of unstable surface sediment following freeze-thaw processes and then transported in the early spring, but erosion amount is not significant because of the less rainfall event. The sediment with a lower ~(137)Cs concentration, which was supplied from the rill erosion and its expansion, was wash-offed during the summer, contributing most of the flux from erosion in bare land in Fukushima region. In case, heavy rainfall occurs in the early spring, caution is required because high concentrations of cesium may flow down into the river.
机译:沉积的〜(137)Cs是长期的放射性核素之一,在福岛Dai-Ichi核电站(FDNPP)事故之后被释放,已在福岛地区的陆地环境中进行水文转运。通过在土壤表面的详细监测和激光扫描仪测量,在FDNPP事故下,在FDNPP事故下,在土壤表面上的详细监测和激光扫描仪测量后,在裸陆侵蚀地块中揭示了影响〜(137)CS通量和浓度的冻结径流和浓度。我们发现由于冬季春季期间的霜冻和夏天的橄榄石植物形成,因此表面地形改变。我们还发现〜(137)CS浓度的明显季节变化;在早春期间高,此后逐渐减少,然后在春季和秋季的剧情中发生表面径流,当降雨很高时,夏季最大达到最大值。从这些结果来看,弹簧中的较高〜(137)Cs浓度是由冻融过程中不稳定的表面沉积物的混合物引起的,然后在早春在早春运输,但由于降雨量较少,侵蚀量并不显着。夏季,植物侵蚀和膨胀的沉积物较低的沉积物,其浓度从溃落侵蚀及其扩张中受到冲击,有助于福岛地区裸机侵蚀的大部分助焊剂。如果发生大雨,在早春发生大量,需要小心,因为高浓度的铯可能流入河流。

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  • 来源
    《Science of the total environment》 |2021年第15期|144706.1-144706.9|共9页
  • 作者单位

    Institute of Environmental Radioactivity Fukushima University 1 Kanayagawa Fukushima-shi Fukushima 960-1296 Japan;

    Department of Integrative Environmental Sciences Faculty of Life and Environmental Sciences University of Tsukuba 1-1-1 A-405 Tennodai Tsukuba-shi Ibaraki 305-8572 Japan;

    Institute of Environmental Radioactivity Fukushima University 1 Kanayagawa Fukushima-shi Fukushima 960-1296 Japan;

    Sector of Fukushima Research and Development Japan Atomic Energy Agency 45-169 Sukakeba Kaibana Haramachi-ku Minamisoma City Fukushima 975-0036 Japan;

    Department of Integrative Environmental Sciences Faculty of Life and Environmental Sciences University of Tsukuba 1-1-1 A-405 Tennodai Tsukuba-shi Ibaraki 305-8572 Japan;

    Ministry of the Environment 1-2-2 Kasumigaseki Chiyoda-ku Tokyo 100-8975 Japan;

    Disaster Prevention Technology Division Geo-hazard & Risk Mitigation Railway Technical Research Institute 2-8-38 Hikari-cho Kokubunji-shi Tokyo 185-8540 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Seasonal sediment transport; ~(137)Cs concentration; ~(137)Cs wash-off; Soil erosion; Frost-heaving; Freeze-thaw processes;

    机译:季节性沉积物运输;〜(137)Cs浓度;〜(137)CS洗掉;水土流失;霜冻;冻融过程;

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