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临界事故后在日本核燃料转换公司厂区采集的土壤岩心样本中铀同位素的测定。

Determination of uranium isotopes in soil core samples collected on the JCO grounds after the criticality accident.

作者信息

Yoshida S, Muramatsu Y, Tagami K

机构信息

Environmental and Toxicological Sciences Research Group, National Institute of Radiological Sciences, Chiba-shi, Chiba, Japan.

出版信息

Environ Sci Technol. 2001 Nov 1;35(21):4174-9. doi: 10.1021/es0106265.

Abstract

To evaluate the impact of the 1999 criticality accident in Tokai-mura on the U isotope composition in soils, U isotopes (235U and 238U) were determined with inductively coupled plasma-mass spectrometry (ICP-MS) for soil core samples collected on the JCO grounds after the accident. The 235U/238U ratios were higher than the natural ratio in most samples. The highest ratio observed was 0.0262. Although vertical profiles of the 235U/238U ratio differed among the soil cores, the ratios tended to be high at the surface and decreased with depth. The U concentration also changed with depth. The percentages of 235U in the excess U, estimated from the positive correlation between U concentration and the 235U/238U ratio in soil samples, were less than 4% by mass (mostly 1-3%) and were much lower than the enrichment of the U used in the uranium conversion building at the time of the criticality accident (18.8%). These findings indicate that enriched U had been released before the criticality accident during the U processing at JCO in connection with the reconversion of light water reactor fuel. Since the range of the U concentrations found was comparable to the range of uncontaminated Japanese surface soils, the amount of U added to the soil was judged negligible from a radiation protection viewpoint.

摘要

为评估1999年东海村临界事故对土壤中铀同位素组成的影响,采用电感耦合等离子体质谱法(ICP-MS)测定了事故后从日本核燃料转换公司(JCO)厂区采集的土壤岩芯样品中的铀同位素(235U和238U)。大多数样品中的235U/238U比值高于天然比值。观测到的最高比值为0.0262。尽管不同土壤岩芯中235U/238U比值的垂直分布有所不同,但该比值在地表往往较高,并随深度降低。铀浓度也随深度变化。根据土壤样品中铀浓度与235U/238U比值之间的正相关关系估算,过量铀中235U的质量百分比小于4%(大多为1%-3%),远低于临界事故发生时铀转换厂房中所使用铀的富集度(18.8%)。这些发现表明,在临界事故发生前,与轻水反应堆燃料再转换相关的铀加工过程中,JCO已释放了浓缩铀。由于所发现的铀浓度范围与未受污染的日本地表土壤范围相当,从辐射防护角度判断,添加到土壤中的铀量可忽略不计。

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