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对用于清理低水平铀污染土壤的植物提取法进行了评估。

Phytoextraction for clean-up of low-level uranium contaminated soil evaluated.

作者信息

Vandenhove H, Van Hees M

机构信息

Belgian Nuclear Research Centre, SCK-CEN, Radioecology Section, Radiation Protection Department, Boeretang 200, B-2400 Mol, Belgium.

出版信息

J Environ Radioact. 2004;72(1-2):41-5. doi: 10.1016/S0265-931X(03)00184-X.

Abstract

Spills in the nuclear fuel cycle have led to soil contamination with uranium. In case of small contamination just above release levels, low-cost yet sufficiently efficient remedial measures are recommended. This study was executed to test if low-level U contaminated sandy soil from a nuclear fuel processing site could be phytoextracted in order to attain the required release limits. Two soils were tested: a control soil (317 Bq 238U kg(-1)) and the same soil washed with bicarbonate (69 Bq 238U kg(-1)). Ryegrass (Lolium perenne cv. Melvina) and Indian mustard (Brassica juncea cv. Vitasso) were used as test plants. The annual removal of soil activity by the biomass was less than 0.1%. The addition of citric acid (25 mmol kg(-1)) 1 week before the harvest increased U uptake up to 500-fold. With a ryegrass and mustard yield of 15,000 and 10,000 kg ha(-1), respectively, up to 3.5% and 4.6% of the soil activity could be removed annually by the biomass. With a desired activity reduction level of 1.5 and 5 for the bicarbonate-washed and control soil, respectively, it would take 10-50 years to attain the release limit. However, citric acid addition resulted in a decreased dry weight production.

摘要

核燃料循环中的泄漏导致土壤被铀污染。对于略高于释放水平的小范围污染,建议采取低成本但足够有效的补救措施。本研究旨在测试来自核燃料处理场地的低水平铀污染砂质土壤是否可以通过植物提取来达到所需的释放限值。测试了两种土壤:一种对照土壤(317 Bq 238U kg(-1))和用碳酸氢盐冲洗过的相同土壤(69 Bq 238U kg(-1))。黑麦草(Lolium perenne cv. Melvina)和印度芥菜(Brassica juncea cv. Vitasso)被用作测试植物。生物量对土壤放射性的年去除率小于0.1%。收获前1周添加柠檬酸(25 mmol kg(-1))可使铀吸收量增加高达500倍。黑麦草和芥菜的产量分别为15,000和10,000 kg ha(-1)时,生物量每年可去除高达3.5%和4.6%的土壤放射性。对于用碳酸氢盐冲洗过的土壤和对照土壤,期望的放射性降低水平分别为1.5和5,达到释放限值需要10至50年。然而,添加柠檬酸导致干物质产量下降。

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