首页> 外文期刊>Journal of forest research >Effect of mass of organic layers on variation in Cs-137 distribution in soil in different forest types after the Fukushima nuclear accident
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Effect of mass of organic layers on variation in Cs-137 distribution in soil in different forest types after the Fukushima nuclear accident

机译:有机层质量对福岛核事故后不同林类型土壤中CS-137分布变异的影响

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摘要

Forests over a wide area were contaminated with radiocesium following the Fukushima nuclear accident in March 2011. Most radiocesium in the forests migrated into the soil a year after the accident and it is therefore necessary to clarify the distribution pattern of radiocesium in soil to evaluate the actual state and possible future changes of the radiocesium cycle in forest ecosystems. We investigated the stock and vertical distribution patterns of Cs-137 in soil under evergreen and deciduous tree species from 2012 to 2014 in a mountainous area in Fukushima Prefecture. The Cs-137 stock in soil was higher in evergreen forests than in deciduous forests. This was likely caused by the difference in tree leaf biomass at the time of the initial deposition, when deciduous trees were defoliated. The organic layer (particularly the humified layer) retained Cs-137 in high concentration and stock, indicating limited migration of Cs-137 into the mineral layer during the study period. This may reflect the incorporation of Cs-137 into organic matter and the retention of fungi in the organic layer. Analyses of these data and those from other studies conducted in regions contaminated by the accident showed that the ratio of radiocesium stock in the organic layer to the total amount in soil was positively correlated with the mass of the organic layer (organic layers with a mass of &2.0kg/m(2) retained more than 50% of total radiocesium). Thus, the status of the organic layer is an important factor regulating the downward migration of radiocesium.
机译:在2011年3月福岛核事故后,广域森林污染了无线电织物。森林中大多数云钾在事故发生后一年迁移到土壤中,因此有必要澄清土壤中辐射铯的分布模式来评估实际森林生态系统中的辐射铯循环的状态和未来变化。从2012年至2014年在福岛县的山区调查了Evergreen和落叶树种下土壤中CS-137的股票和垂直分布模式。常绿林中的土壤中的CS-137库存比落叶林更高。这可能是由于在初始沉积时的树叶生物量差异,当落叶树落下时。有机层(特别是湿度层)以高浓度和原料保留CS-137,在研究期间表明CS-137的迁移有限地迁移到矿物层中。这可能反映CS-137的掺入有机物和有机层中真菌的保留。这些数据的分析与由事故污染的区域进行的其他研究的分析表明,有机层中的无线电铯原料与土壤中总量的比例与有机层的质量正相关(有机层的质量& 2.0kg / m(2)保留超过含土的50%)。因此,有机层的状态是调节无线电织的向下迁移的重要因素。

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