Provenance study of marble artifacts from the Berenike (Egypt) archaeological site based on petrographic and isotopic data

IF 1.4 3区 地球科学 0 ARCHAEOLOGY Geoarchaeology-An International Journal Pub Date : 2024-06-15 DOI:10.1002/gea.22015
Maciej J. Bojanowski, Sara Mandera, Iwona Zych
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Abstract

Fragments of marble revetment and floor slabs as well as some broken statuary and vessels were recovered from the excavation of a Roman temple in the harbor town of Berenike on the Red Sea coast of Egypt. Petrographic analyses, including optical, cathodoluminescence, and scanning electron microscopy as well as isotopic analyses (δ13C, δ18O, 87Sr/86Sr), were conducted to determine the provenance of the marble. The aim was to reconstruct the commercial ties that led to this prized building stone being brought to Berenike. Most, if not all, of the slabs are of banded gray to white marble showing properties indicative of a Prokonnesian origin. This marble, exploited on Marmara Island (Sea of Marmara, Turkey) and extensively utilized throughout the Mediterranean, including Egypt from at least the second century A.D., might have been procured from the marble depots in Alexandria. This could have involved engaging a team of Bithynian master craftsmen for the project, presumably to embellish the main temple of the city during the reign of the Roman emperor Hadrian. The statuary and vessel finds are composed of white marble representing several sources. Some coarse-grained specimens were surely extracted in Prokonnesos. For others, the source is uncertain and the likely candidates are Prokonnesos, Paros (Cyclades, Aegean Sea), and Ephesos (Aegean coast of Asia Minor). The fine-grained varieties represented high-quality Dokimian (Afyon region, Asia Minor) and most likely expensive Parian (lychnites type) marble. Marble from the ancient Gebel Rokham quarries in Egypt was also examined for comparison, but its properties have excluded this source in the case of the marble artifacts from Berenike analyzed in this work.

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基于岩石学和同位素数据的埃及贝雷尼克考古遗址大理石文物产地研究
在对埃及红海沿岸港口城市贝雷尼克的一座罗马神庙进行发掘时,发现了大理石护墙板和楼板碎片以及一些破碎的雕像和器皿。为了确定大理石的来源,对其进行了岩相分析,包括光学、阴极发光和扫描电子显微镜以及同位素分析(δ13C、δ18O、87Sr/86Sr)。目的是重建导致这种珍贵建筑石材被运到贝雷尼克的商业联系。大部分(如果不是全部的话)大理石板都是灰色到白色的带状大理石,其特性表明其产地为普罗科尼西亚。这种大理石产于马尔马拉岛(土耳其马尔马拉海),至少从公元二世纪起就在包括埃及在内的整个地中海地区广泛使用。在罗马皇帝哈德良统治时期,这可能是为了点缀该城的主神庙而聘请比塞尼亚工匠团队进行的项目。出土的雕像和器皿由白色大理石组成,代表了多个来源。一些粗粒标本肯定是在普罗科尼索斯开采的。其他标本的来源则不确定,可能是普罗科尼索斯、帕罗斯(基克拉迪群岛,爱琴海)和埃菲索斯(小亚细亚爱琴海沿岸)。细粒度品种代表了优质的多基米安(小亚细亚阿菲永地区)大理石,也很可能是昂贵的帕里安(lychnites 类型)大理石。为了进行比较,还对埃及古代 Gebel Rokham 采石场的大理石进行了研究,但由于其特性,在这项工作中分析的贝雷尼克大理石文物不包括这一来源。
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来源期刊
Geoarchaeology-An International Journal
Geoarchaeology-An International Journal 地学-地球科学综合
CiteScore
3.60
自引率
5.90%
发文量
51
审稿时长
>12 weeks
期刊介绍: Geoarchaeology is an interdisciplinary journal published six times per year (in January, March, May, July, September and November). It presents the results of original research at the methodological and theoretical interface between archaeology and the geosciences and includes within its scope: interdisciplinary work focusing on understanding archaeological sites, their environmental context, and particularly site formation processes and how the analysis of sedimentary records can enhance our understanding of human activity in Quaternary environments. Manuscripts should examine the interrelationship between archaeology and the various disciplines within Quaternary science and the Earth Sciences more generally, including, for example: geology, geography, geomorphology, pedology, climatology, oceanography, geochemistry, geochronology, and geophysics. We also welcome papers that deal with the biological record of past human activity through the analysis of faunal and botanical remains and palaeoecological reconstructions that shed light on past human-environment interactions. The journal also welcomes manuscripts concerning the examination and geological context of human fossil remains as well as papers that employ analytical techniques to advance understanding of the composition and origin or material culture such as, for example, ceramics, metals, lithics, building stones, plasters, and cements. Such composition and provenance studies should be strongly grounded in their geological context through, for example, the systematic analysis of potential source materials.
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