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首页> 外文期刊>Chemosphere >Evaluation of a method for removing cesium and reducing the volume of leaf litter from broad-leaved trees contaminated by the Fukushima Daiichi nuclear accident during the Great East Japan Earthquake
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Evaluation of a method for removing cesium and reducing the volume of leaf litter from broad-leaved trees contaminated by the Fukushima Daiichi nuclear accident during the Great East Japan Earthquake

机译:东日本大地震中被福岛第一核电站事故污染的阔叶树中的铯去除方法和减少枯枝落叶量的方法的评价

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The town of Marumori in southern Miyagi Prefecture borders on Fukushima Prefecture, and following the accident at the Fukushima Daiichi nuclear power plant, there were concerns about cesium deposition in forested areas. One of the authors of this paper has continually surveyed leaf litter from the forested areas. As leaf litter may be a source of cesium contamination from the forest to downstream areas, we considered a simplified version of wet oxidation, a method previously presented by one of the authors of this study, as a technology to reduce leaf litter weight and cesium concentration, separating radioactive nuclides from non-radioactive ones, in leaf litter. We tested our method in three experiments. Experiment 1 used new leaf litter (232 Bq/kg) from the surface of a small stream at the forest edge nearby an area with air dose level higher than the national standard threshold of 0.23 mu Sv/h for the implementation of governmental decontamination works. Experiment 2 applied wet oxidation to older leaf litter (705 Bq/kg) harvested from a pasture nearby the stream mentioned above. We also used the same leaf litter in experiment 3 for a cesium release tests using pure water. In experiment 1 and 2 we treated leaf litter with a sodium hypochlorite solution, optimizing sodium hypochlorite concentration and reaction temperature. We measured a 50-60% decrease in the leaf litter weight and a 60% decrease in the cesium concentration. Moreover, we also measured the amount of cesium washout. The cesium budget of experiment 1 showed no cesium gasification (wet oxidation avoids airborne cesium as this element is prone to be volatile at 600 degrees C), and that high sodium hypochlorite concentration and high temperature had a strong positive effect on leaf litter volume reduction and cesium decontamination. Experiment 2 confirmed the reproducibility of these results in leaves with different cesium concentration and harvested in different conditions. We could also explain the mechanism behind leaf litter weight and cesium concentration reduction. Experiment 3 helped us to investigate the effects of the matter present on the surface of the water and the contribution of water soluble cesium. Concurrent experiments on changes in leaf litter chemical composition confirmed that our modified wet oxidation method had an effect on the removal of acid-insoluble lignin. Removal of lignin, a refractory component, might allow for a better utilization of the residue left after implementation of the proposed simplified wet oxidation. Thus, real wastes could be smaller than the residues. Together with the observed smaller cesium concentration in the residue, the proposed method in this study is expected to contribute to mitigate the risk due to the fallen leaves containing cesium. (C) 2017 Elsevier Ltd. All rights reserved.
机译:宫城县南部的丸盛市与福岛县接壤,福岛第一核电站发生事故后,人们担心森林地区的铯沉积。本文的一位作者一直在调查森林地区的落叶。由于树叶凋落物可能是从森林到下游地区的铯污染的源头,因此我们考虑了湿氧化的简化形式(该研究的一位作者先前提出的一种方法),作为减少树叶凋落物重量和铯浓度的技术。 ,将凋落物中的放射性核素与非放射性核素分开。我们在三个实验中测试了我们的方法。实验1在空气剂量水平高于国家标准阈值0.23μSv/ h的附近森林边缘的一条小溪表面使用了一条新的枯枝落叶(232 Bq / kg),用于实施政府的净化工作。实验2对从上述溪流附近的牧场收获的较旧的叶子凋落物(705 Bq / kg)进行了湿式氧化。我们还在实验3中使用相同的叶子凋落物进行了使用纯水的铯释放测试。在实验1和2中,我们用次氯酸钠溶液处理了枯枝落叶,优化了次氯酸钠的浓度和反应温度。我们测得叶子凋落物重量减少了50-60%,铯浓度减少了60%。此外,我们还测量了铯冲洗量。实验1的铯预算显示没有铯气化(湿式氧化避免了空气中的铯,因为该元素在600摄氏度时易挥发),并且高次氯酸钠浓度和高温对减少凋落物的体积和铯净化。实验2证实了这些结果在不同铯浓度和不同条件下收获的叶片中的可重复性。我们还可以解释叶片凋落物重量和铯浓度降低的机理。实验3帮助我们研究了物质在水表面的影响以及水溶性铯的贡献。对叶片凋落物化学成分变化的并行实验证实,我们改进的湿式氧化方法对酸不溶性木质素的去除有影响。去除木质素(一种难熔成分)可能会更好地利用建议的简化湿式氧化后残留的残渣。因此,实际废物可能少于残留物。连同观察到的残留物中较小的铯浓度,预计本研究中建议的方法将有助于减轻由于落叶中含有铯而导致的风险。 (C)2017 Elsevier Ltd.保留所有权利。

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