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Georeferenced soil provenancing with digital signatures

机译:具有数字签名的地理参考土壤源

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摘要

The provenance or origin of a soil sample is of interest in soil forensics, archaeology, and biosecurity. In all of these fields, highly specialized and often expensive analysis is usually combined with expert interpretation to estimate sample origin. In this proof of concept study we apply rapid and non-destructive spectral analysis to the question of direct soil provenancing. This approach is based on one of the underlying tenets of soil science – that soil pedogenesis is spatially unique, and thus digital spectral signatures of soil can be related directly, rather than via individual soil properties, to a georeferenced location. We examine three different multivariate regression techniques to predict GPS coordinates in two nested datasets. With a minimum of data processing, we show that in most instances Eastings and Northings can be predicted to within 20% of the range of each within the dataset using the spectral signatures produced via portable x-ray fluorescence. We also generate 50 and 95% confidence intervals of prediction and express these as a range of GPS coordinates. This approach has promise for future application in soil and environmental provenancing.
机译:土壤样品的来源或起源与土壤法医学,考古学和生物安全有关。在所有这些领域中,通常将高度专业化且通常昂贵的分析与专家解释相结合,以估计样品来源。在概念验证研究中,我们将快速无损光谱分析应用于直接土壤起源问题。这种方法基于土壤科学的基本原则之一,即土壤成岩作用在空间上是唯一的,因此土壤的数字光谱特征可以直接关联到地理参考位置,而不是通过单独的土壤特性。我们研究了三种不同的多元回归技术来预测两个嵌套数据集中的GPS坐标。通过最少的数据处理,我们显示出在大多数情况下,使用通过便携式X射线荧光产生的光谱特征,可以将Eastings和Northings预测为数据集中每个范围的20%以内。我们还会生成50%和95%的预测置信区间,并将其表示为GPS坐标范围。这种方法有望在土壤和环境来源中进一步应用。

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