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加济安泰普(土耳其)路边果园土壤中潜在有毒元素(PTE)污染的现状、来源与评估。

Status, Sources and Assessment of Potentially Toxic Element (PTE) Contamination in Roadside Orchard Soils of Gaziantep (Türkiye).

机构信息

Biology Department, Faculty of Art and Sciences, Gaziantep University, University Boulevard, Şehitkamil, 27310 Gaziantep, Türkiye.

Soil Science Department, Regional and Environmental Sciences, Trier University, Campus II, D-54286 Trier, Germany.

出版信息

Int J Environ Res Public Health. 2023 Jan 30;20(3):2467. doi: 10.3390/ijerph20032467.

Abstract

To identify the sources of contamination with potentially toxic elements (PTEs) in roadside orchard soils and to evaluate the potential ecological and environmental impacts in Gaziantep, soil samples from 20 mixed pistachio and olive orchards on roadsides with different traffic densities and at different distances to the roads were analyzed. Concentrations were 23,407.36 ± 4183.76 mg·kg for Fe, 421.78 ± 100.26 mg·kg for Mn, 100.20 ± 41.92 mg·kg for Ni, 73.30 ± 25.58 mg·kg for Cr, 65.03 ± 12.19 mg·kg for Zn, 60.38± 7.91 mg·kg for Pb, 17.74 ± 3.35 mg·kg for Cu, 14.93 ± 4.94 mg·kg for Co, and 0.30 ± 0.12 mg·kg for Cd. It was found that the Ni content in 51% and the Cr content in 18% of orchard soils were above the legal limits for agricultural soils (pH > 6) in Türkiye. Factor analysis (FA) showed that Co, Cr, Cu, Fe, Mn, Ni, and Pb loaded on the first factor (FC1), while Cd and Zn loaded mostly on the second factor (FC2). It was found that Cr, Ni, and Pb were primarily enriched through pedogenic processes, whereas Cd most likely originated from agricultural activities, while the impact of road traffic as source of PTE contamination was insignificant. It has been revealed that the soils are of low quality for agricultural production due to PTE contamination ( ≥ 1). The values from environmental and ecological individual indices showed that the soil pollution level was moderate for Cd, Ni, and Pb, and low for Cr. The soil pollution index () proved to be suitable for evaluating and comparing PTE pollution in regions with different soil properties.

摘要

为了识别路边果园土壤中潜在有毒元素(PTEs)的污染源,并评估加济安泰普的潜在生态和环境影响,对 20 个位于不同交通密度道路不同距离的混合开心果和橄榄果园的土壤样本进行了分析。Fe 的浓度为 23407.36 ± 4183.76mg·kg,Mn 的浓度为 421.78 ± 100.26mg·kg,Ni 的浓度为 100.20 ± 41.92mg·kg,Cr 的浓度为 73.30 ± 25.58mg·kg,Zn 的浓度为 65.03 ± 12.19mg·kg,Pb 的浓度为 60.38 ± 7.91mg·kg,Cu 的浓度为 17.74 ± 3.35mg·kg,Co 的浓度为 14.93 ± 4.94mg·kg,Cd 的浓度为 0.30 ± 0.12mg·kg。研究发现,51%的果园土壤中 Ni 含量和 18%的 Cr 含量超过了土耳其农业土壤(pH>6)的法定限值。因子分析(FA)表明,Co、Cr、Cu、Fe、Mn、Ni 和 Pb 加载在第一个因子(FC1)上,而 Cd 和 Zn 主要加载在第二个因子(FC2)上。研究发现,Cr、Ni 和 Pb 主要通过成土过程富集,而 Cd 很可能来源于农业活动,而道路交通作为 PTE 污染的来源影响不大。研究表明,由于 PTE 污染(≥1),土壤质量较差,不适合农业生产。环境和生态个体指数的值表明,Cd、Ni 和 Pb 的土壤污染水平为中度,Cr 的土壤污染水平为低度。土壤污染指数(PI)被证明适用于评估和比较不同土壤性质地区的 PTE 污染。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d299/9916285/1d89bf7c0e43/ijerph-20-02467-g001.jpg

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