Holocene coastal evolution and environmental changes in the lower Río Guadiaro valley, with particular focus on the Bronze to Iron Age harbour ‘Montilla’ of Los Castillejos de Alcorrín (Málaga, Andalusia, Spain)

IF 1.4 3区 地球科学 0 ARCHAEOLOGY Geoarchaeology-An International Journal Pub Date : 2023-01-01 DOI:10.1002/gea.21943
Simon Matthias May, Helmut Brückner, Maike Norpoth, Anna Pint, Dennis Wolf, Dominik Brill, César León Martín, Hans-Peter Stika, José Suárez Padilla, Pierre Moret, Dirce Marzoli
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Abstract

Phoenicians were the first to systematically develop the area surrounding the Strait of Gibraltar at the end of the 9th century B.C. Following pioneering studies in the Río Guadiaro estuary (Málaga/Cádiz) in the 1980s, a German‐Spanish cooperation project focussed on the role of indigenous people in the Phoenician colonisation trading networks at Los Castillejos de Alcorrín (Manilva, Málaga), one of the most important Early Iron Age settlements in southwestern Iberia. In the recent past, combined with systematic archaeological surveys, geoarchaeological research embedded in the interdisciplinary project ‘Archeostraits’ aimed at (i) deciphering palaeoenvironmental and coastal changes in the surroundings of Los Castillejos de Alcorrín throughout the mid‐ to late Holocene; (ii) constraining palaeoenvironmental conditions during early Phoenician colonisation; and (iii) better understanding human–environment interactions during the Final Bronze and Early Iron Age (i.e., end of 9th and 8th centuries B.C.). Coring transects along the Río Guadiaro allowed for differentiating successive palaeoenvironments and for establishing a chrono‐stratigraphy for the Holocene sedimentary infill of the valley. Based on these results, the deposition of shallow marine sands, overlying deltaic deposits of alternating sand and mud, and the subsequent development of lagoonal conditions in the lower Guadiaro valley took place before the Phoenicians established the first settlements along the coast.

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瓜迪亚罗河谷下游的全新世海岸演变和环境变化,特别关注Los Castillejos de Alcorrín(西班牙安达卢西亚马拉加)青铜至铁器时代的港口“蒙蒂利亚”
公元前9世纪末,腓尼基人是第一个系统开发直布罗陀海峡周围地区的人。20世纪80年代,在瓜迪亚罗河口(马拉加/加的斯)进行了开创性研究后,德西合作项目重点关注土著人在洛斯卡蒂勒霍斯-德阿尔科林(马拉加马尼尔瓦)腓尼基亚殖民贸易网络中的作用,伊比利亚西南部铁器时代早期最重要的定居点之一。在最近的一段时间里,结合系统的考古调查,地质考古研究嵌入了跨学科项目“Archeostraits”,旨在(i)破译整个全新世中后期Los Castillejos de Alcorrín周围的古环境和海岸变化;(ii)制约腓尼基早期殖民时期的古环境条件;以及(iii)更好地了解青铜时代末期和铁器时代早期(即公元前9世纪和8世纪末)的人类与环境相互作用。沿着Río Guadiaro取芯样带可以区分连续的古环境,并为山谷的全新世沉积填充建立年代地层学。基于这些结果,在腓尼基人沿着海岸建立第一个定居点之前,浅层海沙的沉积、上覆的砂和泥交替的三角洲沉积,以及随后Guadiaro河谷下游泻湖条件的发展。
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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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