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BIOAVAILABILITY OF URANIUM AND NICKEL TO VEGETATION IN A CONTAMINATED RIPARIAN ECOSYSTEM

机译:污染的日本生态系统中铀和镍对植物的生物利用度

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The lower portion of Tims Branch (TB), a second-order stream system on the Savannah River site (SC, USA), receives influx of mixed waste-contaminated sediments from Steed Pond, a former settling basin for target processing wastes for over three decades. The magnitude and distribution of U, Ni, and other metals and the potential for trophic movement were studied to facilitate risk assessment and determine potential remedial action. Total and sequential extraction of TB soils demonstrated contaminant heterogeneity both spatially and between operationally defined fractions. Metal concentrations were elevated within riparian zone soils in contrast to stream sediments, suggesting off-site transport. Leaf tissue from TB contained an order of magnitude more Ni than tissue from reference sites. Leaves from streamside trees contained no U but elevated Ni up to 75.4 (+-25) mg/kg dry weight (dry wt). Understory flora (Discanthelium sp. and Andropogon sp.) contained high concentrations of U associated with leaves up to 518 (+-7.5) mg/kg dry weight U. The contrast in contaminant content and ratio of streamside and understory vegetation may result from resuspension of paniculate U and Ni onto leaf surfaces and represents a potential pathway for trophic movement. The findings of this study have important ramifications for remediation of the ecosystem, suggesting that a strategy based on contaminant immobilization may be the most appropriate.
机译:蒂姆斯分公司(TB)的下部是萨凡纳河站点(美国南卡罗来纳州)的二级水流系统,接收了来自Steed Pond的混合废物污染的沉积物的流入,后者以前是一个沉淀池,用于处理三类以上的目标废物几十年。研究了U,Ni和其他金属的大小和分布以及营养运动的可能性,以促进风险评估和确定潜在的补救措施。全面和连续提取结核病土壤在空间上和在操作定义的各部分之间均表现出污染物异质性。与河道沉积物相比,河岸带区土壤中的金属浓度升高,表明其为非现场运输。来自结核的叶组织比参考部位的组织含有更多的镍。溪流树的叶子不含U,但Ni升高至干重(干重)75.4(+ -25)mg / kg。地下植物区系(Discanthelium sp。和Andropogon sp。)含有与叶片相关的高浓度的U,最高干重为518(+ -7.5)mg / kg。重悬浮可能导致污染物含量以及河边和林下植被的污染物含量对比圆锥形的U和Ni在叶片表面上的分布,代表营养运动的潜在途径。这项研究的发现对修复生态系统具有重要影响,表明基于污染物固定化的策略可能是最合适的。

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