Provenance Study of Archaeological Ceramics from Syria Using XRF Multivariate Statistical Analysis and Thermoluminescence Dating

IF 18.6 1区 材料科学 Q1 MATERIALS SCIENCE, CERAMICS
E. Bakraji, R. Abboud, H. Issa
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引用次数: 2

Abstract

Thermoluminescence (TL) dating and multivariate statistical methods based on radioisotope X-ray fluorescence analysis have been utilized to date and classify Syrian archaeological ceramics fragment from Tel Jamous site. 54 samples were analyzed by radioisotope X-ray fluorescence; 51 of them come from Tel Jamous archaeological site in Sahel Akkar region, Syria, which fairly represent ceramics belonging to the Middle Bronze Age (2150 to 1600 B.C.) and the remaining three samples come from Mar-Takla archaeological site fairly representative of the Byzantine ceramics. We have selected four fragments from Tel Jamous site to determinate their age using thermoluminescence (TL) method; the results revealed that the date assigned by archaeologists was good. An annular 109Cd radioactive source was used to irradiate the samples in order to determine their chemical composition and the results were treated statistically using two methods, cluster and factor analysis. This treatment revealed two main groups; the first one contains only the three samples M52, M53, and M54 from Mar-Takla site, and the second one contains samples that belong to Tel Jamous site (local).
利用XRF多元统计分析和热释光测年技术研究叙利亚考古陶瓷的来源
利用基于放射性同位素x射线荧光分析的热释光(TL)测年和多元统计方法对Tel Jamous遗址的叙利亚考古陶瓷碎片进行了测年和分类。对54份样品进行放射性同位素x射线荧光分析;其中51件来自叙利亚萨赫勒阿卡尔地区的Tel Jamous考古遗址,这相当代表了青铜时代中期(公元前2150年至公元前1600年)的陶瓷,其余3件来自Mar-Takla考古遗址,相当代表了拜占庭陶瓷。我们选择了来自Tel Jamous遗址的4个碎片,用热释光(TL)法测定了它们的年龄;结果表明,考古学家确定的年代是正确的。采用环形109Cd放射源照射样品,测定其化学成分,并采用聚类分析和因子分析两种方法对结果进行统计学处理。这种治疗显示了两个主要群体;第一个只包含了来自Mar-Takla遗址的M52, M53和M54三个样本,第二个包含了属于Tel Jamous遗址(当地)的样本。
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来源期刊
Journal of Advanced Ceramics
Journal of Advanced Ceramics MATERIALS SCIENCE, CERAMICS-
CiteScore
21.00
自引率
10.70%
发文量
290
审稿时长
14 days
期刊介绍: Journal of Advanced Ceramics is a single-blind peer-reviewed, open access international journal published on behalf of the State Key Laboratory of New Ceramics and Fine Processing (Tsinghua University, China) and the Advanced Ceramics Division of the Chinese Ceramic Society. Journal of Advanced Ceramics provides a forum for publishing original research papers, rapid communications, and commissioned reviews relating to advanced ceramic materials in the forms of particulates, dense or porous bodies, thin/thick films or coatings and laminated, graded and composite structures.
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