磁性微观考古学:对考古土壤微观形态样本进行岩石磁性微观成因分析的方法,以西班牙阿尔科伊的埃尔盐为案例进行研究

IF 2.1 2区 地球科学 Q1 ANTHROPOLOGY Archaeological and Anthropological Sciences Pub Date : 2024-02-24 DOI:10.1007/s12520-024-01946-1
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引用次数: 0

摘要

摘要 对于地质考古学家来说,在研究考古材料的沉积背景时,使用多代理和多方法的综合方法已成为一种普遍做法。本文介绍了一种将岩石磁性分析与微观形态分析相结合的新方法。我们首先对微观形态学中使用的有机树脂的磁性进行了简要研究,以了解树脂和制造工艺对磁性特征的潜在影响。了解样品的原始生产过程以确保内热反应不会损害磁性数据至关重要。我们通过对西班牙阿尔科伊埃尔盐尼安德特人考古遗址中的一个坑炉进行案例研究,说明了这种方法的优势。本研究利用了 Leierer 等人最初描述的坑式炉台(燃烧结构 H77)的存档微观形态样本(J Archaeol Sci 123:105237, 2020 年)。对多种磁性参数(包括磁感应强度、自然剩磁和渐进等温剩磁)进行的岩石磁性分析表明,每种微岩层类型都表现出独特的磁性模式,即使某些磁性参数的特征存在重叠。对磁性数据的解释与 Leierer 等人之前提供的结果和微地层描述一致(J Archaeol Sci 123:105237, 2020 年),进一步支持了将燃烧特征解释为在原地反复使用的历史。本文介绍的方法为微地貌学家提供了一个增强工具,使他们能够以更高的分辨率更好地了解微地貌单元的磁性特征,并建立与微地貌结果的直接联系。
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Magnetic micro-archaeology: a method for conducting rock magnetic microfacies analysis on archaeological soil micromorphology samples, with a case study from El Salt, Alcoy, Spain

Abstract

For geoarchaeologists the use of multiproxy and multimethod integrative approaches has become common for studying the sedimentary context of archaeological materials. In this paper, we introduce a novel approach that combines rock magnetic analysis with micromorphological analysis. We first conduct a brief examination of the magnetic properties of organic resins used in micromorphology to understand the potential impact of the resin and manufacturing process on the magnetic signature. It is crucial to understand the original production of the samples to ensure that endothermic reactions do not compromise the magnetic data. We illustrate the advantages of this approach through a case study of a pit hearth from the Neanderthal archaeological site of El Salt in Alcoi, Spain. This study utilises archived micromorphological samples of a pit hearth (combustion structure H77) initially described by Leierer et al. (J Archaeol Sci 123:105237, 2020). Rock magnetic analysis of multiple magnetic parameters—including magnetic susceptibility, natural remanent magnetization, and progressive isothermal remanent magnetization—reveals that each microfacies type exhibits a unique magnetic pattern, even if there is overlapping in signatures across some magnetic parameters. The interpretation of the magnetic data aligns with the results and microfacies descriptions previously provided by Leierer et al. (J Archaeol Sci 123:105237, 2020), further supporting the interpretation of the combustion feature as being in situ with a history of repeated use. The approach presented here offers an enhanced tool for micromorphologists to better understand the magnetic characteristics of microfacies units in higher resolution and establish direct connections to the micromorphological results.

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来源期刊
Archaeological and Anthropological Sciences
Archaeological and Anthropological Sciences GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
4.80
自引率
18.20%
发文量
199
期刊介绍: Archaeological and Anthropological Sciences covers the full spectrum of natural scientific methods with an emphasis on the archaeological contexts and the questions being studied. It bridges the gap between archaeologists and natural scientists providing a forum to encourage the continued integration of scientific methodologies in archaeological research. Coverage in the journal includes: archaeology, geology/geophysical prospection, geoarchaeology, geochronology, palaeoanthropology, archaeozoology and archaeobotany, genetics and other biomolecules, material analysis and conservation science. The journal is endorsed by the German Society of Natural Scientific Archaeology and Archaeometry (GNAA), the Hellenic Society for Archaeometry (HSC), the Association of Italian Archaeometrists (AIAr) and the Society of Archaeological Sciences (SAS).
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