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pXRF method development for elemental analysis of archaeological soil

机译:考古土元素分析的PXRF方法开发

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Portable X-ray fluorescence (pXRF) is now widely used for detecting the elemental composition of a material. Elemental analysis can enhance archaeological interpretations, such as mapping, preservation analysis and identifying anthropogenic activities. However, validated and reproducible protocols for analysing archaeological soil are still required. The elemental concentrations detected with three sets of preparation methods were compared:in-situ(no preparation), in-field (analysing through plastic bags) andex-situanalysis (laboratory-based preparation). Influential factors were also investigated: calibration parameter, moisture, homogeneity, sieve size and soil type. In-field analysis attempted to improve reliability without offsite processing, but instead substantially reduced elemental concentrations and skewed the proportional distributions.Ex-situanalysis significantly increased elemental concentrations and reduced variation. Proportional distribution was different between the three methods, but unchanged following homogenizing and sieving. These comparisons demonstrated thatex-situanalysis maximizes detection and ensures consistent samples.
机译:现在广泛用于检测材料的元素组成,便携式X射线荧光(PXRF)。元素分析可以增强考古解释,例如映射,保存分析和鉴定人为活动。然而,仍然需要进行验证和可重复的分析考古土壤的协议。比较了用三组制备方法检测的元素浓度:原位(无制剂),现场(通过塑料袋分析)Andex-宿煤(基于实验室的制剂)。还研究了影响因素:校准参数,水分,均匀性,筛尺寸和土壤类型。现场分析试图改善无线处理的可靠性,而是显着降低了元素浓度​​,并且比例分布倾斜。 - 泰安分析显着增加了元素浓度​​和降低的变化。三种方法之间的比例分布不同,但在均质化和筛选后保持不变。这些比较显示术语 - 占星分析最大化检测并确保一致的样品。

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