Variability of Concentrations of Potentially Toxic Metals in the Topsoil of Urban Forest Parks (Southern Poland)

IF 4.7 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-06-12 DOI:10.3390/f15061020
O. Rahmonov, Agnieszka Kowal, M. Rahmonov, Sławomir Pytel
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Abstract

Forest ecosystems and urban parks are an integral part of the natural environment and the natural system of a city, where they form a mosaic of habitats resulting from the variation in soil cover due to human activities. The study was conducted in urban forests in five urban parks in Upper Silesia (southern Poland) and investigated the chemical properties and content of potentially toxic metals (PTMs) in the topsoil, which had an average thickness of 15 cm for all samples. The soil reaction ranged from acidic (pH = 4.7–5.1, in KCl) to slightly acidic (pH = 5.6, to neutral—6.6–7.2) at most sites. The organic carbon (OC) content was relatively high at all sites, ranging from 1.19 to 14.3%, with the highest total nitrogen (Nt) content being 0.481%. The average total phosphorus (Pt) content in the parks ranged from 310 mg kg−1 to 684 mg kg−1, while the highest values were 1840 mg kg−1. The total Cr, Cu, Co and Ni content was within acceptable limits, while the Zn, Pb, Cd, As, Sr and Ba exceeded acceptable standards. In terms of content, Zn dominated the PTMs at each site (Zn > Pb > Ba > Sr > Cu > Cr > As > Ni > Cd > Co), while Ba and Pb alternated in taking second place (Zn > Ba > Pb > Sr > Cu > Cr > Ni > As > Co > Cd). Environmental indicators, such as the geoaccumulation index (Igeo), enrichment factor (EF) and potential ecological risk index (RI), showed that the analyzed soils are highly contaminated with PTMs. Among the sources of pollution in the urban forest are low emissions from coal combustion, industrial activities, water runoff from streets and proximity to transportation routes. Identification of PTM levels in urban parks will provide valuable information on the behavior of these metals, which is important in sustainable development and can help evaluate the local spatial development plans of urbanized areas.
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城市森林公园表土中潜在有毒金属浓度的变化(波兰南部)
森林生态系统和城市公园是城市自然环境和自然系统不可分割的一部分,由于人类活动造成的土壤植被变化,它们在城市中形成了错落有致的栖息地。这项研究在上西里西亚(波兰南部)五个城市公园的城市森林中进行,调查了表层土壤的化学特性和潜在有毒金属 (PTM) 的含量,所有样本的平均厚度为 15 厘米。大多数地点的土壤反应从酸性(pH=4.7-5.1,以氯化钾计)到微酸性(pH=5.6,到中性-6.6-7.2)不等。所有地点的有机碳 (OC) 含量都相对较高,从 1.19% 到 14.3% 不等,总氮 (Nt) 含量最高,为 0.481%。公园的平均总磷(Pt)含量介于 310 毫克/千克-1 至 684 毫克/千克-1 之间,最高值为 1840 毫克/千克-1。总铬、铜、钴和镍的含量在可接受范围内,而锌、铅、镉、砷、锶和钡的含量超过了可接受标准。就含量而言,锌在各个地点的 PTMs 中占主导地位(Zn > Pb > Ba > Sr > Cu > Cr > As > Ni > Cd > Co),而钡和铅则交替占据第二位(Zn > Ba > Pb > Sr > Cu > Cr > Ni > As > Co > Cd)。地质累积指数(Igeo)、富集因子(EF)和潜在生态风险指数(RI)等环境指标表明,所分析的土壤受到了 PTMs 的高度污染。城市森林的污染源包括燃煤产生的低浓度排放、工业活动、街道径流以及靠近交通路线。城市公园中 PTM 含量的鉴定将为这些金属的行为提供有价值的信息,这对可持续发展非常重要,有助于评估城市化地区的地方空间发展规划。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
期刊介绍: ACS Applied Bio Materials is an interdisciplinary journal publishing original research covering all aspects of biomaterials and biointerfaces including and beyond the traditional biosensing, biomedical and therapeutic applications. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrates knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important bio applications. The journal is specifically interested in work that addresses the relationship between structure and function and assesses the stability and degradation of materials under relevant environmental and biological conditions.
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