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生长在受污染沉积物来源场地与基线污染水平场地的自生柳树的叶片浓度。

Foliar concentrations of volunteer willows growing on polluted sediment-derived sites versus sites with baseline contamination levels.

作者信息

Vandecasteele Bart, Quataert Paul, De Vos Bruno, Tack Filip M G, Muys Bart

机构信息

Institute for Forestry and Game Management, Ministry of the Flemish Community, Gaverstraat 4, B-9500 Geraardsbergen, Belgium.

出版信息

J Environ Monit. 2004 Apr;6(4):313-21. doi: 10.1039/b314917j. Epub 2004 Mar 9.

DOI:10.1039/b314917j
PMID:15054540
Abstract

Many alluvial soils along navigable waterways are affected by disposal of dredged sediments or overbank sedimentation and contain metal concentrations that are elevated compared to baseline levels. Uptake patterns for metals and other elements by several volunteer Salix species growing on these sites were determined during a growing season in field plots and compared with the same species growing on soils with baseline contamination levels. For Cd and Zn, foliar concentrations were clearly higher on dredged sediment landfills. Uptake patterns differed significantly between species. A high uptake of Mn and low uptake of Cu, K and S in S. cinerea was attributed to wetland soil chemistry. Site effects on metal uptake were evaluated in more detail for Salix cinerea and S. alba growing on different sediment-derived sites under field conditions. Foliar Cd concentrations were higher in S. cinerea than in S. alba. This appeared to be a genetic feature not influenced by soil chemical properties, as it was observed both on clean sites and polluted sediment-derived sites. For S. cinerea, soil chemistry was reflected in foliar concentrations, while foliar Cd concentrations and bioavailability were found to be independent of the thickness of the polluted horizon. Dredged sediment landfills and freshwater tidal marshes with comparable Cd soil pollution had significantly different foliar Cd concentrations.

摘要

许多通航水道沿岸的冲积土受到疏浚沉积物处置或漫滩沉积的影响,其金属含量相较于基线水平有所升高。在生长季节,对生长于这些场地的几种柳树志愿物种吸收金属和其他元素的模式进行了田间测定,并与生长在基线污染水平土壤上的相同物种进行了比较。对于镉和锌,疏浚沉积物填埋场上的叶片浓度明显更高。不同物种之间的吸收模式差异显著。灰柳对锰的高吸收以及对铜、钾和硫的低吸收归因于湿地土壤化学性质。在田间条件下,对生长于不同沉积物来源场地的灰柳和白柳,更详细地评估了场地对金属吸收的影响。灰柳叶片中的镉浓度高于白柳。这似乎是一种不受土壤化学性质影响的遗传特征,因为在清洁场地和受污染沉积物来源场地均观察到这一现象。对于灰柳而言,土壤化学性质反映在叶片浓度上,而叶片镉浓度和生物有效性与污染层厚度无关。镉土壤污染程度相当的疏浚沉积物填埋场和淡水潮汐沼泽,其叶片镉浓度存在显著差异。

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