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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Application of laser ablation ICP-MS and traditional micromorphological techniques to the study of an Alfisol (Sardinia, Italy) in thin sections: Insights into trace element distribution
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Application of laser ablation ICP-MS and traditional micromorphological techniques to the study of an Alfisol (Sardinia, Italy) in thin sections: Insights into trace element distribution

机译:激光烧蚀ICP-MS和传统微形态技术在薄壁Alfisol(意大利撒丁岛)研究中的应用:洞察微量元素分布

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摘要

An innovative methodological approach is proposed in this study, based on the chemical analysis of different portions of soil horizons (illuvial pedofeatures, pedogenic matrix and skeletal parent rock fragments) by laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS), associated with traditional micromorphological (optical and scanning electron microscopy) techniques. Validation of the LA-ICP-MS technique provides in situ accurate and reproducible (RSD 13-18%) analysis of low concentration trace elements and rare earth elements (REE) in soil samples (0.001-0.1 ppm).Analyses were carried out on thin sections prepared from undisturbed soil samples, collected from three different Bt (argillic, i.e. clay-illuviated) horizons in an Alfisol from the Muravera area (southeastern Sardinia, Italy). The main aims were (i) to develop and test the reliability of a LA-ICP-MS analytical method on soil thin sections and (ii) to explore the idea that concentrations of trace and rare earth elements in the different portions of a soil profile can be used to investigate their distribution, as a response to pedogenetic processes. The three horizons show similar features, particularly in terms of element concentrations and patterns. By comparing the concentration of REE and other trace elements in the clay coatings, the soil matrix and the skeletal rock fragments in the same horizon, a general enrichment trend is observed from the parent rock to the pedogenic matrix up to the illuvial pedofeatures, suggesting a prominent role of pedogenetic processes in element fractionation and distribution during weathering. In particular, the highest concentration of trace elements (and specifically REE) in clay coatings, which represent the most mobile solid phase in the soil profile, indicates that the former can be used as a reliable indicator of soil weathering if a preliminary assessment of the presence of clay coatings is achieved. In addition, the discontinuous trend of some trace elements among soil features of different horizons is consistent with field evidence of slope dynamics, marked by an erosive and depositional discontinuity along the soil profile.
机译:在这项研究中,提出了一种创新的方法学方法,该方法基于对土壤层位的不同部分(冲积岩性,成岩基质和骨骼母岩碎片)进行化学分析,采用激光消融电感耦合等离子体质谱法(LA-ICP-MS)用传统的微观形态学(光学和扫描电子显微镜)技术。 LA-ICP-MS技术的验证提供了对土壤样品(0.001-0.1 ppm)中低浓度痕量元素和稀土元素(REE)的原位准确且可重复的分析(RSD 13-18%)。由未扰动的土壤样品制备的薄切片,是从Muravera地区(意大利东南撒丁岛)的Alfisol中的三个不同的Bt(砾石化,即粘土激发的)层中采集的。主要目的是(i)开发和测试LA-ICP-MS分析方法在土壤薄片上的可靠性,以及(ii)探索在土壤剖面不同部分中痕量和稀土元素的浓度的想法可以用来调查它们的分布,作为对成岩过程的响应。三个视野显示出相似的特征,尤其是在元素浓度和样式方面。通过比较同一地层中粘土层,土壤基质和骨架岩石碎片中REE和其他微量元素的浓度,观察到从母体岩石到成岩基质直至白垩化土壤特征的总体富集趋势,这表明风化过程中成岩作用在元素分级和分布中的重要作用。特别是,粘土涂层中痕量元素(尤其是REE)的最高浓度代表了土壤剖面中最易移动的固相,表明如果对土壤进行初步评估,前者可以用作土壤风化的可靠指标。实现了粘土涂料的存在。此外,不同层位土壤特征中某些微量元素的不连续趋势与边坡动力学的现场证据一致,其特征是沿土壤剖面的侵蚀和沉积不连续。

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