首页> 外文期刊>Environmental Science and Pollution Research >Approach to spatialize local to long-range atmospheric metal input (Cd, Cu, Hg, Pb) in epiphytic lichens over a meso-scale area (Pyr,n,es-Atlantiques, southwestern France)
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Approach to spatialize local to long-range atmospheric metal input (Cd, Cu, Hg, Pb) in epiphytic lichens over a meso-scale area (Pyr,n,es-Atlantiques, southwestern France)

机译:在中尺度范围内(法国西南,Pyr,n,es-Atlantiques)的附生地衣中将本地到远程大气金属输入(Cd,Cu,Hg,Pb)空间化的方法

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Geographically based investigations into atmospheric bio-monitoring usually provide information on concentration or occurrence data and spatial trends of specific contaminants over a specified study area. In this work, an original approach based on geographic information system (GIS) was used to establish metal contents (Hg, Cu, Pb, and Cd) in epiphytic lichens from 90 locations as atmospheric bio-monitors over a meso-scale area (Pyr,n,es-Atlantiques, southwestern France). This approach allows the integration of the heterogeneity of the territory and optimization of the sampling sites based on both socioeconomical and geophysical parameters (hereafter defined as urban, industrial, agricultural, and forested areas). The sampling strategy was first evaluated in several sites (n = 15) over different seasons and years in order to follow the temporal variability of the atmospheric metal input in lichens. The results demonstrate that concentration ranges remain constant over different sampling periods in "rural" areas (agricultural and forested). Higher variability is observed in the "anthropized" urban and industrial areas in relation to local atmospheric inputs. In this context, metal concentrations in lichens over the whole study show that (1) Hg and Cd are homogeneous over the whole territory (0.14 +/- 0.04 and 0.38 +/- 0.26 mg/kg, respectively), whereas (2) Cu and Pb are more concentrated in "anthropized" areas (9.3 and 11.9 mg/kg, respectively) than in "rural" ones (6.8 and 6.0 mg/kg, respectively) (Kruskall-Wallis, K(Cu) = 13.7 and K(Pb) = 9.7, p < 0.00001). They also showed a significant local enrichment for all metals in many locations in the Pays Basque (West) mainly due to metal and steel industrial activities. This confirms the local contribution of this contamination source over a wider geographic scale. A multiple linear regression model was applied to give an integrated spatialization of the data. This showed significant relationships for Pb and Cu (adjusted r (2) of 0.39 and 0.45, respectively), especially with regards to variables such as industry and road densities (source factors) and elevation or water balance (remote factors). These results show that an integrated GIS-based sampling strategy can improve biomonitoring data distribution and allows better differentiation of local and long-range contamination.
机译:基于地理的大气生物监测调查通常会提供有关特定研究区域内特定污染物的浓度或发生数据以及空间趋势的信息。在这项工作中,基于地理信息系统(GIS)的原始方法被用来在90个位置的附生地衣中建立金属含量(Hg,Cu,Pb和Cd),作为中尺度范围内的大气生物监测器(Pyr ,n,es-Atlantiques,法国西南)。这种方法允许基于社会经济和地球物理参数(以下定义为城市,工业,农业和森林地区)整合区域的异质性并优化采样地点。为了跟踪地衣中大气金属输入的时间变化,首先在不同季节和年份的几个地点(n = 15)评估了采样策略。结果表明,在“农村”地区(农业和森林地区)的不同采样期间,浓度范围保持恒定。在“人工化”的城市和工业区中,与当地大气输入有关的变异性更高。在这种情况下,整个研究中地衣中的金属浓度显示:(1)汞和镉在整个区域内均质(分别为0.14 +/- 0.04和0.38 +/- 0.26 mg / kg),而(2)铜和铅在“人工”区域(分别为9.3和11.9 mg / kg)比在“农村”区域(分别为6.8和6.0 mg / kg)集中(Kruskall-Wallis,K(Cu)= 13.7和K( Pb)= 9.7,p <0.00001)。他们还显示,在Pays Basque(西部)的许多地方,所有金属的本地富集都显着,这主要归功于金属和钢铁工业活动。这证实了这种污染源在更广泛的地理范围内的本地贡献。应用了多元线性回归模型来提供数据的整体空间化。这表明Pb和Cu具有显着的关系(分别将r(2)调整为0.39和0.45),特别是在诸如工业和道路密度(源因子)以及海拔或水平衡(远程因子)等变量方面。这些结果表明,基于GIS的集成采样策略可以改善生物监测数据的分布,并可以更好地区分本地和远程污染。

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