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The taphonomic characterization of a charcoal production platform. Contribution of an innovative pair of methods: Raman analysis and micromorphology

机译:木炭生产平台的术语表征。 创新对方法的贡献:拉曼分析和微观术

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During the Industrial Revolution and until the 19th century, the fuel used in metallurgy was charcoal. The frequent charcoal-making places identified in European archaeological sites are one of the only direct markers of this activity. Understanding the soil stratigraphy of these locations enables us to characterize the intensity of charcoal production and especially to grasp an insight into the forest management of the studied site during charcoal making. Two types of soil profiles have been observed in Europe. The first presents one or several sterile horizons identifiable with the naked eye, separating charcoal levels. The second, which is the most commonly observed type at European archaeological sites, is characterized by a single charcoal level of variable thickness. For the present study, located in eastern France (Franche-Comte), we propose to characterize the soil profile of a charcoal platform, which looks like the second type observed at the European scale, through the application of an innovative pair of methods: The Raman analysis and micromorphology. The Raman paleothermometer, defined by Deldicque et at. (2016) was adapted to define the temperatures reached in charcoal-making contexts. These measurements agree with the literature and experiments. These temperatures are regularly distributed over the profile, confirming the reuse of the platform. Similarly, the micromorphology of the soil profile reveals clear indicators of reuse, with no evidence of long interruptions in charcoal making.
机译:在工业革命期间,直到19世纪,冶金中使用的燃料是木炭。欧洲考古站点中识别的频繁的木炭制作场所是这项活动的唯一直接标记之一。了解这些地点的土壤层层使我们能够表征木炭生产的强度,特别是在木炭制作期间掌握研究了研究的森林管理。在欧洲观察到两种土壤曲线。首先呈现与肉眼的一个或多个无菌视野,分离木炭水平。第二种是欧洲考古位点最常见的类型,其特征在于可变厚度的单个木炭水平。对于目前的研究,位于法国东部(佛罗里达科州),我们建议以欧洲规模观察的第二种类型的炭平台的土壤剖面来表征,通过应用创新的方法:拉曼分析和微观术。拉曼苍白计,由Deldicque等定义。 (2016)适于定义在木炭制造背景下达到的温度。这些测量与文献和实验一致。这些温度经常分布在配置文件上,确认了平台的重用。同样,土壤型材的微晶显示出清晰的重用指标,没有炭制造中断的长时间。

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