Advances in Archaeological Soil Chemistry in Central Europe

IF 0.2 Q4 ANTHROPOLOGY Interdisciplinaria Archaeologica Pub Date : 2020-12-17 DOI:10.24916/iansa.2020.2.5
R. Salisbury
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引用次数: 6

Abstract

Analytical technologies for the evaluation of archaeological soils have developed rapidly in recent decades, and now support a range of innovative research and interpretations of archaeological sites and landscapes. Established methods, including phosphates and multi-element ICP-MS/OES, have provided interpretations of the use of space within settlements and houses, and the function of specific archaeological features. Recently, portable X-Ray Fluorescence has been introduced to archaeological soil science, but published results have generated knowledge gaps. The correspondence between archaeological geochemical anomalies and specific human activities is partly dependent on geology (including sediment type and relative acidity and permeability of the soil), topography, and formation processes, as well as influence of human activities. At the same time, which elements, and fractions of elements, are measured is largely dependent on instrument parameters and extraction methods. This paper provides an overview of archaeological soil chemistry in Central Europe, and the current state-of-the-art, followed by an assessment of future developments in archaeological soil chemistry, molecular biogeochemistry, and the significance of geoarchaeology in multi-disciplinary research.
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中欧考古土壤化学研究进展
近几十年来,考古土壤评价的分析技术发展迅速,现在支持了一系列考古遗址和景观的创新研究和解释。现有的方法,包括磷酸盐和多元素ICP-MS/OES,对住区和房屋内空间的使用以及具体考古特征的功能提供了解释。最近,便携式x射线荧光已被引入考古土壤科学,但已发表的结果产生了知识空白。考古地球化学异常与具体人类活动之间的对应关系部分取决于地质(包括沉积物类型和土壤的相对酸度和渗透性)、地形和形成过程,以及人类活动的影响。同时,测量哪些元素和元素的组分在很大程度上取决于仪器参数和提取方法。本文概述了中欧的考古土壤化学,以及目前的最新进展,随后评估了考古土壤化学、分子生物地球化学的未来发展,以及地质考古学在多学科研究中的意义。
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来源期刊
Interdisciplinaria Archaeologica
Interdisciplinaria Archaeologica Arts and Humanities-Archeology (arts and humanities)
CiteScore
1.00
自引率
0.00%
发文量
15
审稿时长
24 weeks
期刊最新文献
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