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Remains of the day-preservation of organic micro-residues on stone tools

机译:石材工具上的有机微残留物保留日的残留

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摘要

Here I report on the decay processes of microscopic organic residues left on stone tool surfaces after their use. Residue analysis on ancient stone tools facilitates reconstruction of past activities. This study enables predictions about the circumstances under which ancient residues preserve. Experimental tool sets with modern residues were buried for a year in separate deposits at Sterkfontein, Sibudu (South Africa) and Zelhem (the Netherlands) whose pH and geomorphology varied, they were then analysed using light microscopy. Biological weathering mainly causes residue decay. In unstable environments rich in microbes and micro-organisms, residues decay quickly. From an archaeological perspective this means that sites that are stable, desiccated, waterlogged, extremely acidic or alkaline and extremely cold or hot sites. Different residue types have different preservation optima and this may lead to a preservation and perhaps interpretation bias. The preliminary predictive models presented in this paper could aid in the considered selection of sites and samples.
机译:在这里,我报告了使用后残留在石材工具表面的微观有机残留物的衰减过程。对古代石器工具的残留分析有助于重建过去的活动。这项研究可以预测古代残留物的保存环境。具有现代残留物的实验工具集在pH和地貌变化的Sterkfontein,Sibudu(南非)和Zelhem(荷兰)的单独矿床中埋葬了一年,然后使用光学显微镜对其进行了分析。生物风化主要导致残留物腐烂。在富含微生物和微生物的不稳定环境中,残留物会迅速腐烂。从考古学的角度来看,这意味着地点是稳定,干燥,涝渍,极度酸性或碱性以及极冷或极热的地点。不同的残基类型具有不同的保存最佳状态,这可能导致保存并可能导致解释偏差。本文介绍的初步预测模型可以帮助考虑地点和样本的选择。

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