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Effects of Applying Potassium, Zeolite and Vermiculite on the Radiocesium Uptake by Rice Plants Grown in Paddy Field Soils Collected from Fukushima Prefecture

机译:施用钾,沸石和Ver石对福岛县稻田土壤中水稻植株吸收放射性铯的影响

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Radionuclides were released into the environment as a consequence of the Fukushima Daiichi Nuclear Power Plant accident that occurred on 11 March 2011. Radiocesium at an abnormal concentration was detected in brown rice produced in paddy fields located in northern part of Fukushima Prefecture. We examined several hypotheses that could potentially explain the excessive radiocesium level in brown rice in some of the paddy fields, including (i) low exchangeable potassium content of the soil, (ii) low sorption sites for cesium (Cs) in the soil, and (iii) radiocesium enrichment of water that is flowing into the paddy fields from surrounding forests. The results of experiments using pots with contaminated soil indicated that the concentration of radiocesium in rice plants was decreased by applying potassium or clay minerals such as zeolite and vermiculite. The obtained results indicated that high concentrations of radiocesium in rice are potentially a result of the low exchangeable potassium and sorption sites for Cs in the soils. Application of potassium fertilizer and clay minerals should provide an effective countermeasure for reducing radiocesium uptake by plants. Radiocesium-enriched water produced by leaching contaminated leaf litter was used to irrigate rice plants in the cultivation experiments. The results indicated that the radiocesium concentrations in rice plants increased when the radiocesium-enriched water was applied to the potted rice plants. This indicated the possibility that the radiocesium levels in brown rice will increase if the nuclide is transported with water into the rice paddy fields from surrounding forests.
机译:2011年3月11日发生的福岛第一核电站事故将放射性核素释放到环境中。在福岛县北部稻田中生产的糙米中检测到放射性铯的浓度异常。我们研究了几种可能解释某些稻田糙米中放射性铯水平过高的假设,包括(i)土壤中可交换的钾含量低,(ii)土壤中铯(Cs)的低吸附位,以及(iii)放射性铯富集了从周围森林流入稻田的水。使用污染土壤的花盆进行的实验结果表明,通过施用钾或粘土矿物(如沸石和ver石),水稻植株中的放射性铯浓度会降低。获得的结果表明,水稻中高浓度的放射性铯可能是土壤中Cs交换钾和吸附位低的结果。钾肥和粘土矿物的施用应提供减少植物对放射性铯吸收的有效对策。在栽培实验中,通过浸提受污染的枯枝落叶产生的富含放射性铯的水灌溉水稻。结果表明,将富含放射性铯的水施用于盆栽水稻植株后,水稻植株中的放射性铯浓度增加。这表明如果将核素与水从周围的森林中运输到稻田中,糙米中的放射性铯水平可能会增加。

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