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Phytoremediation of Jordanian Uranium-Rich Soil Using Sunflower

机译:向日葵修复约旦铀富集土壤的研究

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Uranium-contaminated environments pose a risk to human health by means of its transfer to the food chain. Overcoming this issue requires using effective methods to minimize the availability of uranium and other metals in soils. Jordan has a promising project for electricity generation from nuclear power. To move forward with this nuclear project, the Jordan Central Area has been mined for uranium. The expansion of the mining activities in this area led to elevated contents of heavy metal in the surface soil. Phytoremediation efficiency in reducing uranium content from uraniumrich carbonate soil was tested using sunflower plants. Forty-eight sunflower plants were planted in three soil samples containing three different uranium concentrations. The plants were harvested after different planting periods in order to investigate the phytoremediation efficiency over time. The ability of sunflowers to translocate uranium was investigated and the results showed that the translocated amount of uranium to plant increased as the initial concentration of uranium in the soil increased. However, most of the uranium taken up by the sunflower was accumulated in the roots, and only 3% of the uranium concentration in the roots passed to the harvestable shoots. Moreover, the biomass of the plants was not affected by increasing uranium concentration in the plants indicating that sunflower is resistant to radiation and toxicity of uranium at these levels found in the soil.
机译:铀污染的环境通过转移到食物链中,对人类健康构成威胁。为了克服这个问题,需要使用有效的方法来最大程度地减少土壤中铀和其他金属的利用率。约旦有一个充满希望的核电发电项目。为推进该核项目,约旦中心地区已开采铀。该地区采矿活动的扩大导致表层土壤中重金属的含量增加。使用向日葵植物测试了减少富铀碳酸盐土壤中铀含量的植物修复效率。在含有三种不同铀浓度的三种土壤样品中种植了48种向日葵植物。为了研究随时间推移的植物修复效率,在不同的种植期后收获了这些植物。研究了向日葵转运铀的能力,结果表明,铀向植物的转运量随土壤中铀初始浓度的增加而增加。但是,向日葵吸收的大部分铀都积累在根中,只有根中铀浓度的3%传递给可收获的芽。此外,植物中生物量不受铀浓度增加的影响,表明向日葵在土壤中发现的这些水平下对铀的辐射和毒性具有抵抗力。

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