Some Notes on Dense Structures Present in Archaeological Plant Remains: X-ray Fluorescence Computed Tomography Applications

沉积岩 出处 矿物学 矿化(土壤科学) 基质(水族馆) X射线荧光 地质学 化学 材料科学 荧光 地球化学 物理 土壤水分 土壤科学 光学 海洋学
作者
Cristina Marilin Calo,M. A. Rizzutto,Carlos A. Pérez,R. Machado,Cauê G. Ferreira,Natasha F. Aguero,Laura Pereira Furquim,Eduardo Góes Neves,Francisco Pugliese
出处
期刊:Minerals [MDPI AG]
卷期号:12 (9): 1130-1130
标识
DOI:10.3390/min12091130
摘要

This study describes the composition and provenance of dense bodies or structures present in uncharred plant vestiges recovered at Monte Castelo (6000–700 cal. AP-SW Amazonia). It aimed to disclose some aspects of this plant remains’ interactions with the sedimentary matrix of the site over the 200 years (at least) since its initial deposit, from the point of view of the soft tissue mineralization processes. Two specimens were examined using XFCT, X-ray MicroCT, and SEM-EDS techniques to reveal the presence and distribution of Ca, K, Mn, Fe, Ti, Si, S, Cu, Br, Rb, Sr, Zn, and Zr. These attributes were integrated with compositional ED-XRF and XRD measured data from the sedimentary substrate. Results show that some of the chemical elements present in solid bodies and anatomical structures of the plant remains refer to the sedimentary environment, while others have an endogenous origin. These include mainly Rb and Br, which were interpreted as the result of degradation processes of the internal tissues, where they are mainly present. Except Sr and Zr, a portion of all the other elements entered and disperse into the sample structures from the sedimentary substrate. Its presence is attributable to mechanisms such as attachment, diffusion and impregnation through the outermost tissues, where they are mostly concentrated. The composition of most of the dense bodies consists of both endogenous and exogenous elements.

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