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Relationship between the radiocesium interception potential and the transfer of radiocesium from soil to soybean cultivated in 2011 in Fukushima Prefecture, Japan

机译:日本福岛县2011年种植的土壤中放射性铯的截留潜力与放射性铯的转移之间的关系

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摘要

The concentration of radiocesium (~(134)Cs and ~(137)Cs) in agricultural fields around Fukushima Dai-ichi Nuclear Power Plant (FDNPP) was elevated after the accident in March 2011. Evaluation of soil properties that influence phytoavailability of radiocesium is important for optimal soil management to minimize radiocesium transfer to crops. In this study, soybean grain and soil samples (0-15 cm) were collected from 46 locations in Fukushima Prefecture in 2011, and ~(137)Cs concentrations were measured. ~(137)Cs concentration ranges were 11-329 Bq kg~(-1)-dry in soybean grain samples, and 0.29-2.49 kBq kg~(-1)-dry in soil samples. The radiocesium interception potential (RIP) values in the soil samples ranged from 0.30 to 8.61 mol kg~(-1). RIP negatively correlated with total carbon content and oxalate-extractable Si and Al + 1/2 Fe in the soils, suggesting that soils rich in organic matter and poorly crystalline clays tended to have lower RIP in this region. The soil-to-plant transfer factor for ~(137)Cs, analyzed in relation with various soil characteristics, varied by two orders of magnitude and was significantly negatively correlated with RIP and exchangeable K concentration in soil. The results show that RIP is useful for evaluating the efficiency of radiocesium transfer from soil to plants in this region.
机译:2011年3月事故发生后,福岛第一核电站(FDNPP)周围农田中的放射性铯(〜(134)Cs和〜(137)Cs)浓度升高。对影响放射性铯植物利用率的土壤特性的评估为对于优化土壤管理以最大程度地减少radio向作物的转移至关重要。在这项研究中,2011年从福岛县的46个地点收集了大豆谷物和土壤样品(0-15厘米),并测量了〜(137)Cs浓度。大豆籽粒样品中〜(137)Cs的浓度范围为11-329 Bq kg〜(-1)-干,土壤样品中〜(137)Cs的浓度范围为0.29-2.49 kBq kg〜(-1)-干。土壤样品中的放射性铯截留电位(RIP)值范围为0.30至8.61 mol kg〜(-1)。 RIP与土壤中的总碳含量和草酸盐可萃取的Si和Al + 1/2 Fe呈负相关,这表明富含有机质和结晶性较差的粘土的土壤RIP较低。分析了〜(137)Cs的土壤-植物转移因子,与各种土壤特征相关,变化了两个数量级,并且与土壤中的RIP和可交换的K浓度显着负相关。结果表明,RIP可用于评估该地区放射性铯从土壤到植物的转移效率。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2014年第11期|119-124|共6页
  • 作者单位

    Institute for Environmental Sciences, 1-7 Ienomae, Obuchi, Rokkasho-mura, Kamikita-gun, Aomori 039-3212, Japan;

    Institute for Environmental Sciences, 1-7 Ienomae, Obuchi, Rokkasho-mura, Kamikita-gun, Aomori 039-3212, Japan,Institute of Environmental Radioactivity, Fukushima University, 1 Kanayagawa, Fukushima-City 960-1296, Japan;

    National Institute for Agro-Environmental Sciences, 3-1-3 Kan-nondai, Tsukuba, Ibaraki 305-8604, Japan;

    Fukushima Agricultural Technology Center, 116 Shimonakamichi, Takakura, Hiwada-Machi, Koriyama, Fukushima 963-0531, Japan;

    Fukushima Agricultural Technology Center, 116 Shimonakamichi, Takakura, Hiwada-Machi, Koriyama, Fukushima 963-0531, Japan;

    Graduate School of Life and Environmental Sciences, Kyoto Prefectural University, 1-5 Hangi-cho, Shimogamo, Sakyo-ku, Kyoto 606-8522, Japan;

    Institute for Environmental Sciences, 1-7 Ienomae, Obuchi, Rokkasho-mura, Kamikita-gun, Aomori 039-3212, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ~(137)Cs; Exchangeable K; RIP; Transfer factor;

    机译:〜(137)碳;可交换的K;RIP;转移因子;

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