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An integrated interdisciplinary approach to evaluate potentially toxic element sources in a mountainous watershed

机译:一种综合的跨学科方法,以评估山地流域潜在有毒元素源

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摘要

Potentially toxic elements (PTEs, i.e., Cd, Ni, Cr) and their source apportionment in waters are of major environmental concern. Different approaches can be used to evaluate PTEs sources in environment, but single-way approaches are often limited and can easily fail. PTEs sources apportionment should include the evaluation of geochemical background and spatiotemporal trends analyses. We propose an integrated approach, and we apply it to a mountain catchment in the Italian central Alps, where ultramafic terranes crop out. We collected water and glacial sediment samples during the melting season. Then, we analyzed major ions and PTEs in waters, and we quantified the total PTEs load in sediments through acid digestion. Data were then processed through spatial and temporal trends analysis, clustering of variables and the evaluation of partition between the different compartments. We found a high geochemical background of part of the PTEs, consistently with results from other areas worldwide on mafic and ultramafic terranes (high concentrations of Ni, Cr and Fe), while we identified an additional atmospheric deposition source for Zn, Cd and Ag. Also, redundant observations on Cu, As and Pb indicated a possible mixed source. This study elucidates the need for an integrated approach to avoid unnecessary or misleading assumptions in the PTE's source appointment. A single-way approach application, in fact, can fail in understanding element source in a complicated and dynamic compartment like surface water.
机译:水域潜在的有毒元素(PTE,即CD,NI,CR)及其在水域中的源分配是重大的环境问题。不同的方法可用于评估环境中的PTES源,但单向方法通常有限,可以很容易地失败。 PTES资源分配应包括地球化学背景和时空趋势分析的评估。我们提出了一种综合的方法,我们将其应用于意大利中央阿尔卑斯山的山地集水区,其中奥特拉姆带来的河流涌出。我们在熔化季节收集了水和冰川泥沙样品。然后,我们分析了水中的主要离子和PTE,我们通过酸消化量化了沉积物中的总PTEs负载。然后通过空间和时间趋势分析,变量聚类和不同隔间之间的分区评估来处理数据。我们发现一部分PTE的高层地球化学背景,始终如一,始终如一的是麦克风和超空地地区(高浓度的Ni,Cr和Fe)的结果,而我们鉴定了Zn,Cd和Ag的额外大气沉积源。此外,对Cu的冗余观察,AS和PB表示可能的混合源。本研究阐明了需要综合方法,以避免PTE的源预约中不必要或误导性的假设。事实上,单向方法应用程序可以在类似于地表水的复杂和动态隔间的理解元素源中失败。

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