Comparative Analysis of The Results of Studying Fabrics of Knidian Amphorae by Various Natural-Scientific Methods

IF 0.8 Q3 Engineering
E. V. Kuznetsova, D. A. Shelepov, S. O. Andrushkevich
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引用次数: 0

Abstract

A comparison of the results of analyzing the main and trace elemental compositions of clays used for Knidian amphorae (using seven samples as an example) is presented; the elemental composition is studied by scanning electron microscopy with energy-dispersive X-ray analysis and inductively coupled plasma-mass spectrometry. Data are also obtained by the mineralogical and petrographic investigation of the same samples. In general, studies conducted using two different methods show similar results. The elemental analysis reveals differences in the content of individual elements (Sr, Nd, Th, Cu, and Y) in samples 55, 90, and 168. According to the petrographic study, features in the composition of artificial additives used as a thinning agent are also recorded in samples 55 and 90. The noted differences in the number of some elements in sample 166 are not recorded during the study of the petrographic thin section.

Abstract Image

用各种自然科学方法研究克尼底亚安福拉织物的结果对比分析
摘要 对用于克尼地亚长颈瓶的粘土(以七个样品为例)的主要元素和微量元素组成进行了分析比较;通过扫描电子显微镜与能量色散 X 射线分析和电感耦合等离子体质谱法对元素组成进行了研究。此外,还通过对相同样品进行矿物学和岩石学研究获得了数据。一般来说,使用两种不同方法进行的研究显示出相似的结果。元素分析显示,55、90 和 168 号样本中个别元素(锶、钕、钍、铜和钇)的含量存在差异。根据岩相学研究,在 55 号和 90 号样品中还记录了用作稀释剂的人工添加剂的成分特征。样品 166 中某些元素的数量差异在岩石薄片研究中没有记录。
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来源期刊
Nanotechnologies in Russia
Nanotechnologies in Russia NANOSCIENCE & NANOTECHNOLOGY-
CiteScore
1.20
自引率
0.00%
发文量
0
期刊介绍: Nanobiotechnology Reports publishes interdisciplinary research articles on fundamental aspects of the structure and properties of nanoscale objects and nanomaterials, polymeric and bioorganic molecules, and supramolecular and biohybrid complexes, as well as articles that discuss technologies for their preparation and processing, and practical implementation of products, devices, and nature-like systems based on them. The journal publishes original articles and reviews that meet the highest scientific quality standards in the following areas of science and technology studies: self-organizing structures and nanoassemblies; nanostructures, including nanotubes; functional and structural nanomaterials; polymeric, bioorganic, and hybrid nanomaterials; devices and products based on nanomaterials and nanotechnology; nanobiology and genetics, and omics technologies; nanobiomedicine and nanopharmaceutics; nanoelectronics and neuromorphic computing systems; neurocognitive systems and technologies; nanophotonics; natural science methods in a study of cultural heritage items; metrology, standardization, and monitoring in nanotechnology.
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