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首页> 外文期刊>Natural hazards and earth system sciences >Assessment of atmospheric trace element concentrations by lichen-bag near an oil/gas pre-treatment plant in the Agri Valley (southern Italy)
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Assessment of atmospheric trace element concentrations by lichen-bag near an oil/gas pre-treatment plant in the Agri Valley (southern Italy)

机译:在阿格里谷地(意大利南部)的一个油气预处理厂附近的地衣袋中评估大气中痕量元素的浓度

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The atmospheric concentrations of 17 trace elements (Al, Ca, Cd, Cr, Cu, Fe, K, Li, Mg, Mn, Na, Ni, P, Pb, S, Ti and Zn) were measured by means of the "lichenbag" technique in the Agri Valley (southern Italy). The lichen samples were collected from an unpolluted site located in Rifreddo forest (southern Italy), about 30 km away from the study area along the north direction. The bags were exposed to ambient air for 6 and 12 months. The exposedto-control (EC) ratio values highlighted that the used lichen species were suitable for biomonitoring investigations. The results showed that the concentrations of almost all the examined trace elements increased with respect to the control after 6-12-month exposures. Furthermore, Ca, Al, Fe, K, Mg and S were the most abundant trace elements both in the 6-month and 12-month-exposed samples. Moreover, principal component analysis (PCA) results highlighted that the major sources of the measured atmospheric trace elements were related both to anthropogenic contributions due to traffic, combustion processes agricultural practices, construction and quarrying activities, and to natural contributions mainly represented by the re-suspension of local soil and road dusts. In addition, the contribution both of secondary atmospheric reactions involving Centro Olio Val d'Agri (COVA) plant emissions and the African dust long-range transport were also identified.
机译:通过“地衣袋”测量了17种微量元素(Al,Ca,Cd,Cr,Cu,Fe,K,Li,Mg,Mn,Na,Ni,P,Pb,S,Ti和Zn)的大气浓度”技术在农业谷(意大利南部)。地衣样品是从位于北距研究区域约30公里的Rifreddo森林(意大利南部)的一个无污染的地点采集的。将袋子暴露于环境空气中6个月和12个月。暴露控制(EC)比值突出表明所用的地衣物种适合进行生物监测研究。结果表明,在暴露6-12个月后,几乎所有检测到的痕量元素的浓度均相对于对照增加。此外,Ca,Al,Fe,K,Mg和S在暴露6个月和12个月的样品中都是最丰富的微量元素。此外,主成分分析(PCA)结果突出表明,测得的大气微量元素的主要来源与交通,燃烧过程,农业实践,建筑和采石活动引起的人为贡献以及主要由再利用代表的自然贡献有关。悬浮局部土壤和道路灰尘。此外,还确定了涉及阿里奥谷中心(COVA)工厂排放的二次大气反应和非洲粉尘远程运输的贡献。

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