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首页> 外文期刊>The Science of the Total Environment >Lithological and pedological influences on the magnetic susceptibility of soil: Their consideration in magnetic pollution mapping
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Lithological and pedological influences on the magnetic susceptibility of soil: Their consideration in magnetic pollution mapping

机译:岩性和土壤学对土壤磁化率的影响:在磁污染测绘中的考虑

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摘要

Magnetic susceptibility measurements are widely used to map and monitor the heavy metal pollution of soils. However, the magnetic properties of soils are influenced significantly by the bedrock lithology and soil-forming processes. Therefore, a main challenge in the data interpretation is to filter out the anthropogenic pollution signal. In this study we address this problem by analysing susceptibility values, heavy metal concentrations, as well as pedological parameters in a large soil data set from the eastern segment of Austria, covering a wide range of different lithologies and soil types. The statistic assessment demonstrates an influence of lithology and soil type on the magnetic susceptibility signal. Therefore anomalies are defined in sub sets of different soil types separately. Three different methods were applied to detect susceptibility anomalies: the median absolute deviation method, the boxplot method, and the population modelling method. These methods evaluate topsoil data only and can therefore also be applied to field measurements of magnetic susceptibility. The results were compared to the conventional method of calculating the difference of topsoil and subsoil susceptibility. All three approaches identify the main anomalies in the study area and are successful in circumventing the problem of erroneous anomaly definition due to pedological processes. However, knowledge of the lithological background is still necessary for a meaningful interpretation and can only be substituted by a large amount of data. The tested methods lead to thresholds of different height and therefore act as filters of different strength for the definition of anomalies.
机译:磁化率测量被广泛用于绘制和监测土壤中的重金属污染。然而,土壤的磁特性受到基岩岩性和成土过程的显着影响。因此,数据解释中的主要挑战是滤除人为污染信号。在这项研究中,我们通过分析来自奥地利东部地区的大型土壤数据中的磁化率值,重金属浓度以及土壤学参数来解决此问题,该数据涵盖了广泛的不同岩性和土壤类型。统计评估证明了岩性和土壤类型对磁化率信号的影响。因此,在不同土壤类型的子集中分别定义了异常。三种不同的方法用于检测磁化率异常:中位数绝对偏差法,箱线图法和总体建模法。这些方法仅评估表土数据,因此也可以应用于磁化率的现场测量。将结果与常规方法计算表层土壤和下层土壤敏感性的差异进行了比较。所有这三种方法都可以确定研究区域中的主要异常,并且成功地避免了由于病因学过程而导致的错误异常定义问题。但是,岩性背景知识对于有意义的解释仍然是必需的,并且只能由大量数据替代。经过测试的方法导致阈值不同,因此对于异常的定义起着不同强度的过滤器的作用。

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