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首页> 外文期刊>Journal of Geochemical Exploration: Journal of the Association of Exploration Geochemists >A multivariate approach to study the geochemistry of urban topsoil in the city of Tampere, Finland
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A multivariate approach to study the geochemistry of urban topsoil in the city of Tampere, Finland

机译:研究芬兰坦佩雷城市城市地球化学的多元化方法

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Risk assessment of potentially toxic elements (PTEs) requires to separate their geogenic soil enrichment and anthropogenic pollution since they are two processes acting together and causing elevated concentrations of PTEs in urban topsoil. The study was aimed to analyse and compare the concentrations of various potentially harmful geochemical elements in the urban soils of the city of Tampere (Finland) to determine their spatial relations by modelling their coregionalization to isolate and display sources of variation acting at different spatial scales and define potential spatial anomalies based on the correlation structure associated at the different spatial scales. Principal Component Analysis (PCA) and Factorial Kriging Analysis (FICA) were used to analyse the geochemical data set. Principal Component Analysis (PCA) allowed to identify two groups of geochemical elements whereas FICA enabled to distinguish the correlation structure of the multivariate data at different spatial scales and to summarize the main features of the data at each spatial scale and to take into account different sources of geochemical elements concentrations. Such concentrations in topsoil of the Tampere city were explained by both geogenic and anthropogenic sources.
机译:潜在有毒元素(PTES)的风险评估需要分离其造环土壤富集和人为污染,因为它们是两种作用的过程,并在城市表土中引起升高的PTE浓度。该研究旨在分析和比较坦佩雷(芬兰)城市土壤中各种潜在有害地球化​​学元素的浓度来确定其空间关系,以确定其核心化,以隔离和显示在不同空间尺度上作用的变化来源基于在不同空间尺度相关联的相关结构来定义潜在的空间异常。主要成分分析(PCA)和因子克里格分析(FICA)用于分析地球化学数据集。主成分分析(PCA)允许识别两组地球化学元素,而FICE以区分不同空间尺度的多变量数据的相关结构,并总结每个空间刻度的数据的主要特征,并考虑不同的源地球化学元素浓度。由造工遗传和人为来源解释了坦佩雷城市表层中的这种浓度。

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