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Characterization and Sources of PAHs and Potentially Toxic Metals in Urban Environments of Sevilla (Southern Spain)

机译:塞维利亚(西班牙南部)城市环境中多环芳烃和有毒金属的特征和来源

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The purpose of this study was to determine the degree of PAH contamination and the association of PAHs with metals in urban soil samples from Sevilla (Spain). Fifteen polycyclic aromatic hydro-carbons-PAHs (naphthalene, acenaphthene, fluorene, phenanthrene, anthracene, fluoranthene, pyrene, benzo[a]anthracene, chrysene, benzo[b]fluoranthene, benzo[k]fluoranthene, benzo[a]pyrene, dibenzo[a,h] anthracene, benzo[g,h,i]perylene, indeno[l,2,3-c,d] pyrene) and seven metals (Cd, Cr, Cu, Mn, Ni, Pb, Zn) have been evaluated in representative urban soil samples. Forty-one top soils (0-10 cm) under different land use (garden, roadside, riverbank and agricultural allotment) were selected. PAHs from soil samples were extracted by sonication using dichloromethane. The simultaneous quantification of 15 different PAH compounds were carried out by HPLC using multiple wavelength shift in the fluorescence detector. For qualitative analysis a photo diode-array detector was used. Metal (pseudo-total) analysis was carried out by digestion of the soils with aqua regia in microwave oven. The mean concentration of each PAH in urban soils of Sevilla showed a wide range, they are not considered highly contaminated. The results of the sum of 15 PAHs in Sevilla soils are in the range 89.5-4004.2 μg kg~(-1), but there seems not to be a correlation between the concentration of PAHs and the land use. Of the 15 PAHs examined, phenanthrene, fluoranthene and pyrene were present at the highest concentrations, being the sum of these PAHs about 40% of the total content. Although metal content were not especially high in most soils, there are significant hints of moderate pollution in some particular spots. Such spots are mainly related with some gardens within the historic quarters of the city. The associations among metals and PAHs content in the soil samples was checked by principal components analysis (PCA). The largest values both for 'urban' metals (Pb, Cu and Zn) and for PAHs were mainly found in sites close to the historic quarters of the city in which a heavy traffic of motor vehicles is suffered from years.
机译:这项研究的目的是确定塞维利亚(西班牙)城市土壤样品中多环芳烃的污染程度以及多环芳烃与金属的关系。十五种多环芳烃-PAH(萘,,芴,菲,蒽,荧蒽,pyr,苯并[a]蒽,苯,苯并[b]荧蒽,苯并[k]荧蒽,苯并[a] py,二苯[a,h]蒽,苯并[g,h,i] per,茚并[1,2,3-c,d])和七种金属(Cd,Cr,Cu,Mn,Ni,Pb,Zn)具有在代表性的城市土壤样本中进行了评估。选择了不同土地利用(花园,路边,河岸和农业用地)下的41个表土(0-10厘米)。通过使用二氯甲烷超声处理从土壤样品中提取PAHs。使用荧光检测器中的多个波长偏移,通过HPLC对15种不同的PAH化合物进行同时定量。为了进行定性分析,使用了光电二极管阵列检测器。金属(拟总量)分析是通过在微波炉中使用王水消化土壤来进行的。塞维利亚城市土壤中每种PAH的平均浓度范围很广,不被认为是高度污染的。塞维利亚土壤中15种PAHs的总和在89.5-4004.2μgkg〜(-1)范围内,但PAHs的浓度与土地利用之间似乎没有相关性。在所检查的15种PAH中,菲,荧蒽和pyr的含量最高,这些PAH的总和约为总含量的40%。尽管在大多数土壤中金属含量不是特别高,但在某些特定地点有明显的中等污染迹象。这些景点主要与城市历史区的一些花园有关。土壤中金属和PAHs含量之间的联系通过主成分分析(PCA)进行了检查。 “城市”金属(铅,铜和锌)和多环芳烃的最大价值主要出现在该城市历史悠久的街区附近,在这些街区中,数年来机动车交通十分繁忙。

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