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Comparison of different interpolation methods and sequential Gaussian simulation to estimate volumes of soil contaminated by As, Cr, Cu, PCP and dioxins/furans

机译:比较不同插值方法和顺序高斯模拟,以估算被As,Cr,Cu,PCP和二恶英/呋喃污染的土壤量

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摘要

Understanding the spatial distribution of organic and/or inorganic contaminants is crucial to facilitate decision-making of rehabilitation strategies in order to ensure the most appropriate management of contaminated sites in terms of contaminant removals efficiencies and operating costs. For these reasons, various interpolation methods [Thiessen Polygon (TP) method, inverse of distance (IDW) method, ordinary kriging (OK), as well as sequential Gaussian simulations (SGS)] were used to better understand the spatial distribution of As, Cr, Cu, pentachlorophenol (PCP) and dioxins and furans (PCDD/F) found onto a specific industrial site. These methods do not only vary in complexity and efficiency but also lead to different results when using values coming from the same characterization campaign. Therefore, it is often necessary to evaluate their relevance by performing a comparative analysis. The results showed that ordinary kriging (OK) was a better estimator of the mean and more advanced compared to the two other methods of interpolation (TP and IDW). However, it appeared that SGS has the same power than OK but it also permitted to calculate a reliable value of the probabilities of exceeding regulatory cut-offs of contamination. (C) 2019 Elsevier Ltd. All rights reserved.
机译:了解有机和/或无机污染物的空间分布对于促进康复策略的决策至关重要,以确保就污染物去除效率和运营成本而言,对污染场所进行最适当的管理。由于这些原因,为了更好地理解As的空间分布,人们使用了各种插值方法[Thiessen Polygon(TP)方法,距离倒数(IDW)方法,普通kriging(OK)以及顺序高斯模拟(SGS)]。在特定的工业场所发现了Cr,Cu,五氯苯酚(PCP)和二恶英和呋喃(PCDD / F)。这些方法不仅在复杂性和效率上有所不同,而且在使用来自同一表征活动的值时会导致不同的结果。因此,通常需要通过进行比较分析来评估它们的相关性。结果表明,与其他两种插值方法(TP和IDW)相比,普通克里金法(OK)对均值的估计更好,并且更先进。然而,看起来SGS具有与OK相同的功效,但它也允许计算超出污染的法定临界值的概率的可靠值。 (C)2019 Elsevier Ltd.保留所有权利。

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