Sun Xiaotong, Kobayashi Shizusa, Tokue Ai, Itabashi Hideyuki, Mori Masanobu
Graduate School of Science and Technology, Gunma University, 1-5-1, Tenjin-cho, Kiryu, Gunma, 376-8515, Japan.
Graduate School of Agriculture, Hokkaido University, 9-9, Kita-ku, Kita, 060-8589, Japan.
J Environ Radioact. 2019 Jun;202:59-65. doi: 10.1016/j.jenvrad.2019.02.008. Epub 2019 Feb 22.
There are ongoing problems with radioactive cesium (Cs) contaminated agricultural soil after the Fukushima Daiichi Nuclear Power Plant accident. In this study, the behavior of Cs uptake by rice plants grown in soil sprayed with fermented bark amendment (FBA) was investigated. In rice cultivation by pot, the application of FBA resulted in the acceleration of Cs uptake by rice plants. This might be related to the reduction of oxidation reduction potential in the soil caused by spraying FBA. Also, when 0.1 wt% ammonium sulfate was used as a fertilizer in Cs-contaminated soil, the bioconcentration factor (BCF) of Cs taken up into rice straw was 1.4-times higher than that in soil sprayed with FBA. The Cs uptake effect was further enhanced by the combination of 1 wt% FBA with 0.1 wt% ammonium sulfate to soil where the BCF was enhanced to 1.8-times higher than that in soil sprayed with FBA alone. The enhanced uptake into rice was likely because of accelerated uptake of leachable forms of Cs based on the cation-exchange to NH in soil; this was confirmed by the Cs fractionation by sequential extraction procedures. The phytoremediation capability of rice is considered to be lower than that of commonly used phytoremediation plants, but supplementation with FBA and ammonium salt could enhance Cs accumulation even for low-efficiency phytoremediation plants.
福岛第一核电站事故后,受放射性铯(Cs)污染的农业土壤一直存在问题。在本研究中,调查了在喷洒了发酵树皮改良剂(FBA)的土壤中种植的水稻植株吸收Cs的行为。在盆栽水稻种植中,施用FBA导致水稻植株吸收Cs的速度加快。这可能与喷洒FBA导致土壤氧化还原电位降低有关。此外,当在受Cs污染的土壤中使用0.1 wt%硫酸铵作为肥料时,水稻秸秆中吸收的Cs的生物浓缩系数(BCF)比喷洒FBA的土壤高1.4倍。将1 wt% FBA与0.1 wt%硫酸铵结合施用于土壤时,Cs的吸收效果进一步增强,此时BCF比仅喷洒FBA的土壤提高了1.8倍。水稻对Cs吸收的增强可能是由于土壤中基于阳离子交换为NH的可淋溶态Cs的吸收加速;通过连续萃取程序对Cs进行分级分离证实了这一点。水稻的植物修复能力被认为低于常用的植物修复植物,但补充FBA和铵盐即使对于低效率的植物修复植物也能增强Cs的积累。