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135Cs activity and 135Cs/137Cs atom ratio in environmental samples before and after the Fukushima Daiichi Nuclear Power Plant accident

机译:福岛第一核电站事故前后环境样品中的135Cs活性和135Cs / 137Cs原子比

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摘要

135Cs/137Cs is a potential tracer for radiocesium source identification. However, due to the challenge to measure 135Cs, there were no 135Cs data available for Japanese environmental samples before the Fukushima Daiichi Nuclear Power Plant (FDNPP) accident. It was only 3 years after the accident that limited 135Cs values could be measured in heavily contaminated environmental samples. In the present study, activities of 134Cs, 135Cs, and 137Cs, along with their ratios in 67 soil and plant samples heavily and lightly contaminated by the FDNPP accident were measured by combining γ spectrometry with ICP-MS/MS. The arithmetic means of the 134Cs/137Cs activity ratio (1.033 ± 0.006) and 135Cs/137Cs atom ratio (0.334 ± 0.005) (decay corrected to March 11, 2011), from old leaves of plants collected immediately after the FDNPP accident, were confirmed to represent the FDNPP derived radiocesium signature. Subsequently, for the first time, trace 135Cs amounts before the FDNPP accident were deduced according to the contribution of global and FDNPP accident-derived fallout. Apart from two soil samples with a tiny global fallout contribution, contributions of global fallout radiocesium in other soil samples were observed to be 0.338%–52.6%. The obtained 135Cs/137Cs database will be useful for its application as a geochemical tracer in the future.
机译: 135 Cs / 137 Cs是放射性铯源识别的潜在示踪剂。但是,由于测量 135 Cs的挑战,在福岛第一核电站(FDNPP)事故发生之前,日本环境样品没有可用的 135 Cs数据。事故发生仅三年之后,就可以在严重污染的环境样本中测量出有限的 135 Cs值。在本研究中, 134 Cs, 135 Cs和 137 Cs的活性以及它们在67个土壤和植物样品中的比重和通过将γ光谱法与ICP-MS / MS结合使用,对FDNPP事故造成的轻度污染进行了测量。 134 Cs / 137 Cs活性比(1.033±0.006)和 135 Cs / 137 的算术平均值FDNPP事故后立即收集的植物老叶中的Cs原子比(0.334±0.005)(衰减校正至2011年3月11日)被证实代表FDNPP衍生的放射性铯特征。随后,首次根据全球和FDNPP事故后果的贡献推导了FDNPP事故之前的痕迹 135 Cs量。除了两个土壤污染物对全球沉降的贡献很小以外,其他土壤样品中全球放射性放射性铯的贡献为0.338%–52.6%。所获得的 135 Cs / 137 Cs数据库在将来作为地球化学示踪剂的应用将很有用。

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