工业城市(乌克兰北部草原)平台槭和刺槐重金属积累

IF 0.8 Q2 Environmental Science Biosystems Diversity Pub Date : 2023-06-04 DOI:10.15421/012327
V. Lovynska, K. Holoborodko, I. Ivanko, S. Sytnyk, O. Zhukov, I. Loza, O. Wiche, H. Heilmeier
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引用次数: 1

摘要

在城市生态系统人为压力增加的背景下,树种作为重金属生物积累工具的作用是当前的一个重要问题。本文介绍了第聂伯罗市绿地土壤重金属污染水平及原生树种和引种树种重金属积累过程的研究结果。采用电感耦合等离子体质谱法(ICP-MS)测定了土壤样品中重金属(Zn、Cu、Cd、Pb)的浓度以及刺槐(Robinia pseudoacacia)和枫(Acer platanoides)树木的同化成分。城市绿色基础设施内不同研究点土壤重金属平均浓度(mg/kg)为:Zn 30.7 ~ 185.5, Cu 5.7 ~ 22.4, Pb 9.0 ~ 31.3, Cd 0.213 ~ 0.598。四种重金属浓度均以冶金学家广场地区最高,而第聂伯罗城郊区的Pridneprovsky公园最低。与土壤相比,两种树种叶片中所有金属的含量均显著降低。在土壤-植物系统中重金属的迁移过程中,发现植物体内的生态污染物浓度与土壤环境中重金属含量的关系并不密切。两树种重金属生物积累系数均< 1。然而,引种树种和本地树种叶片重金属浓度的测定结果证明了它们在重金属生物积累中的特殊作用。与伪金合欢相比,platanoides等本土物种是重金属环境污染的更“敏感”的生物指标。种植速生树种,如刺槐和白刺槐,可以在短时间内成为一种环境适宜和经济有效的措施,以减轻重金属对环境的不利影响。
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Heavy metal accumulation by Acer platanoides and Robinia pseudoacacia in an industrial city (Northern Steppe of Ukraine)
The role of tree species as a tool for bioaccumulation of heavy metals is an important current issue within the context of the increase of anthropogenic pressure in urban ecosystems. The article presents the results of research on the level of soil contamination with heavy metals and the processes of their accumulation by native and introduced tree species in green spaces of Dnipro city. Inductively coupled plasma mass spectrometry (ICP-MS) was used to detect concentrations of heavy metals (Zn, Cu, Cd, Pb) in soil samples and the assimilation component in trees of black locust (Robinia pseudoacacia) and Norway maple (Acer platanoides). The ranges of mean concentrations of heavy metals at different study sites within the city’s green infrastructure were as follows (mg/kg): 30.7–185.5 for Zn, 5.7–22.4 for Cu, 9.0–31.3 for Pb, and 0.213–0.598 for Cd. With respect to all four of these metals, the soils of the Metallurgists Square location were characterized by the highest concentrations of the metals, and the Pridneprovsky Park in the area of the outskirts of Dnipro city was characterized by the lowest ones. Compared to soils, the two investigated tree species had a significantly lower content of all studied metals in leaves. The heavy metal accumulations in the leaves of both R. pseudoacacia and A. platanoides were observed in the following decreasing order: Zn > Cu > Pb > Cd. Regarding the migration of heavy metals in the soil-plant system, the concentrations of ecopollutants in the plants were found not to be dependent on their content in the soil environment. The calculated bioaccumulation coefficients of heavy metals for both tree species were < 1. However, the results of heavy metal concentration in leaves of both introduced and native tree species evidenced their special role in heavy metal bioaccumulation. Compared to R. pseudoacacia, such native species as A. platanoides can be considered to be a more “sensitive” bioindicator of environmental pollution caused by heavy metals. Planting fast-growing tree species such as R. pseudoacacia and A. platanoides can in a short time be an environmentally appropriate and cost-effective measure to mitigate the unfavourable effects of heavy metals on the environment.
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