首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Analysis of Cs-134 and Cs-137 distribution in soil of Fukushima prefecture and their specific adsorption on clay minerals
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Analysis of Cs-134 and Cs-137 distribution in soil of Fukushima prefecture and their specific adsorption on clay minerals

机译:福岛县土壤中Cs-134和Cs-137的分布及其对黏土矿物的特异性吸附

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摘要

We collected surface soil samples within 60 km from the Fukushima Daiichi Nuclear Power Plants (FDNPP) and analyzed spatial and temporal radiocesium distributions. No large change in vertical distribution pattern of radiocesium has been observed on the samples collected in April 2011 and April 2012 at the same sampling points, suggesting strong adsorption of Cs-134 and Cs-137 on soil. Cesium is known to be adsorbed specifically on clay minerals in soil. To confirm the specific adsorption of Cs on clay minerals in these samples, we divided the soil into different particle sizes and measured the activity in each size fraction. The activity was highest in the clay fraction (< 2 mu m) and tended to decrease as the particle size increases. The radiocesium interception potential (RIP), which is defined by the product of the frayed edge sites (FES) capacity and Cs-K selectivity coefficient, was measured using carrier-free Cs-137. No correlation between the value of RIP and the penetration depth of radiocesium was observed, probably suggesting other important physicochemical factors.
机译:我们收集了距离福岛第一核电站(FDNPP)60公里以内的表层土壤样品,并分析了空间和时间上的放射性铯分布。 2011年4月和2012年4月在相同采样点采集到的样品中,放射性铯的垂直分布格局没有发现大的变化,表明Cs-134和Cs-137在土壤上的强烈吸附。已知铯特别吸附在土壤中的粘土矿物上。为了确认这些样品中粘土矿物上Cs的特异性吸附,我们将土壤分为不同的粒径,并测量了每个粒径部分的活性。活性在粘土级分(<2μm)中最高,并随着粒度的增加而降低。使用无载体的Cs-137测量了由ces边缘位点(FES)容量和Cs-K选择性系数的乘积定义的放射性铯截留电位(RIP)。 RIP值与放射性铯的渗透深度之间没有相关性,可能暗示了其他重要的理化因素。

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