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在疏浚底泥富集土壤上种植的食用作物和杨树插条中的痕量金属(类金属)积累

Trace Metal(oid) Accumulation in Edible Crops and Poplar Cuttings Grown on Dredged Sediment Enriched Soil.

作者信息

Assad Mohamad, Chalot Michel, Tatin-Froux Fabienne, Bert Valérie, Parelle Julien

出版信息

J Environ Qual. 2018 Nov;47(6):1496-1503. doi: 10.2134/jeq2018.03.0106.

Abstract

The development of a biomonitor in the context of multiple-element contamination in urban environments was tested by comparing element transfer in edible crops and poplar ( Torr. × A. Henry cutlivar 'Skado'). A multielemental analysis was performed with various common edible crops (cucumber [ L.], pepper [ L.], cabbage [ L.], and lettuce [ L.]) and the Skado poplar cultivar grown on soils that received sediments dredged from water canals in the 1960s. Sediments were distributed unevenly on the soil, allowing us to sample two types of areas that were either weakly (Area 1) or highly (Area 2) contaminated, mainly by Cd, Pb, and Zn. We registered an accumulation of Cd and Zn in the edible parts of crops, with higher values recorded for leafy vegetables than for fruit vegetables. We did not detect any accumulation of Pb in the plant species studied. We calculated the fresh mass that must be consumed daily to reach tolerable daily intake (TDI) recommendations for each element and found evidence that Cd could be ingested in sufficient amounts to reach the TDI in this context. Poplar and pepper leaves accumulated more Cd and Zn than the edible parts of the study crops grown on both substrates, which suggests that poplar and pepper may be suitable species for biomonitoring element transfer to vegetation in this context.

摘要

通过比较可食用作物和杨树(毛果杨×A.亨利栽培品种‘斯卡多’)中的元素转移,对城市环境中多元素污染背景下生物监测器的开发进行了测试。对多种常见可食用作物(黄瓜[葫芦科]、辣椒[茄科]、卷心菜[十字花科]和生菜[菊科])以及在20世纪60年代从水道疏浚的沉积物上生长的斯卡多杨树品种进行了多元素分析。沉积物在土壤上分布不均,使我们能够对两种类型的区域进行采样,即污染程度较低的区域(区域1)和污染程度较高的区域(区域2),主要污染物为镉、铅和锌。我们记录到作物可食用部分中镉和锌的积累,叶菜类蔬菜中的含量高于果菜类蔬菜。在所研究的植物物种中未检测到铅的积累。我们计算了每天必须食用的新鲜质量,以达到每种元素的每日耐受摄入量(TDI)建议,并发现有证据表明,在此背景下,镉的摄入量可能足以达到TDI。杨树和辣椒叶中积累的镉和锌比在两种基质上生长的研究作物的可食用部分更多,这表明在这种情况下,杨树和辣椒可能是用于生物监测元素向植被转移的合适物种。

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