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Effect of low molecular weight organic acids on the uptake of Ra-226 by corn (Zea mays L.) in a region of high natural radioactivity in Ramsar-Iran

机译:低分子量有机酸对拉姆萨尔-伊朗天然高放射性地区玉米(Zea mays L.)吸收Ra-226的影响

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摘要

To study the benefit of including citric and oxalic acid treatments for phytoremediation of Ra-226 contaminated soils a greenhouse experiment with corn was conducted. A soil was sampled from a region of high natural Ra-226 radioactivity in Ramsar, Iran. After cultivation of corn seed and using organic acid treatments at 1,10 and 100 mM concentrations, plants (shoots and roots) were harvested, digested and prepared to measure Ra-226 activity. Simultaneously, sequential selective extraction were performed to estimate the partitioning of Ra-226 among geochemical extraction. Results showed that the maximum uptake of Ra-226 in plants was observed in citric acid (6.3%) and then oxalic acid (6%) at 100 mM concentration. These treatments increased radium uptake by a factor of 1.5 than the control. Enhancement of radium uptake by plants was related to soil pH reduction of organic acids in comparison to control. Also, the maximum uptake of this radionuclide in all treatments was obtained in roots compared to shoots. Ra-226 fractionations results revealed that 91.8% of radium was in the residual phase of the soil and the available fractions were less than 2%. As the main percent of Ra-226 was in the residual phase of the soil in this region, it seems that organic acids had not significant effect on the uptake of Ra-226 for phytoremediation by corn in this condition. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了研究包括柠檬酸和草酸处理对Ra-226污染土壤进行植物修复的益处,进行了玉米温室试验。从伊朗拉姆萨尔(Ramsar)高天然Ra-226放射性区域采样土壤。种植玉米种子并以1,10和100 mM的浓度使用有机酸处理后,收获,消化并准备用于测量Ra-226活性的植物(芽和根)。同时,进行了顺序选择性萃取以估计Ra-226在地球化学萃取中的分配。结果表明,在浓度为100 mM的柠檬酸(6.3%)和草酸(6%)中观察到了Ra-226在植物中的最大吸收。这些处理使镭的吸收比对照提高了1.5倍。与对照相比,植物对镭的吸收增加与土壤有机酸的pH降低有关。而且,与芽相比,在所有处理中该放射性核素的最大吸收均在根部获得。 Ra-226分级分离结果表明,91.8%的镭处于土壤残留相中,可利用的级分少于2%。由于Ra-226的主要百分比处于该区域的土壤残留相中,因此在这种条件下,有机酸似乎对玉米对Ra-226的吸收没有显着影响,从而可以进行植物修复。 (C)2016 Elsevier Ltd.保留所有权利。

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