Estudio experimental de alteración térmica sobre exoesqueletos de moluscos marinos (nacella magellanica) y sus implicancias para la interpretación de conjuntos arqueomalacológicos de concheros en patagonia argentina

Heidi Hammond, M. L. Ciampagna
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引用次数: 1

Abstract

The results of the experimental program on current calcareous exoskeletons of Nacella magellanica (Patellidae, Gasteropoda) are presented. This species of mollusc is one of the main that composes the archaeological shell middens in continental Patagonia argentine. We sought to obtain evidence of diagnostic features and modifications generated on the exoskeletons as a consequence of the thermal exposure process. Different samples were submitted to controlled burning under laboratory conditions in a muffle with digital thermocouple to obtain greater control over temperatures (from 0°C to 700°C). Structural, chromatic and textural analysis of samples exposed to heat were carried out. A first approach to the application of the indicators obtained in the experimental program for the analysis and interpretation of arqueomalacologicas assemblages recovered in systematic excavations in shell middens on the northern coast of Santa Cruz, Patagonia Argentina, was performed. This information was complemented with anthracological studies of carbons recovered in the same sites. The analysis of the experimental results and archaeomalacological remains allowed us to estimate that archaeological shells would have been subjected to temperatures of between 300°C and 400°C. Finally, the importance of the experimental approach is highlighted to understand characteristics of materials that make up the archaeological sites.
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阿根廷巴塔哥尼亚海洋软体动物(nacella magellanica)外骨骼热变化的实验研究及其对贝壳考古组解释的意义
本文介绍了麦哲伦Nacella magellanica (patellaceae, Gasteropoda)现有钙质外骨骼的实验结果。这种软体动物是阿根廷巴塔哥尼亚大陆考古贝壳丘的主要组成部分之一。我们试图获得诊断特征和外骨骼由于热暴露过程而产生的变化的证据。不同的样品在实验室条件下在带有数字热电偶的消声器中进行控制燃烧,以获得更好的温度控制(从0°C到700°C)。对受热试样进行了结构、颜色和质地分析。对在阿根廷巴塔哥尼亚圣克鲁斯北部海岸的贝壳丘系统挖掘中恢复的arqueomalacologicas组合进行了分析和解释,对实验方案中获得的指标进行了首次应用。在同一地点回收的碳的人类学研究补充了这一信息。通过对实验结果和考古遗迹的分析,我们估计考古贝壳的温度在300°C到400°C之间。最后,强调了实验方法对了解构成考古遗址的材料特征的重要性。
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