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The organic signature of an experimental meat-cooking fireplace: The identification of nitrogen compounds and their archaeological potential

机译:实验肉类烹饪壁炉的有机签名:氮素化合物的鉴定及其考古潜力

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A better understanding of the operation and use of prehistoric fires is fundamental to interpreting the organization of living spaces. Following a previous study that focused on the organic signatures of fireplaces fueled with wood and/or bones, this study targeted the completion of an experimental reference database through the addition of a wood-fueled fireplace dedicated to the cooking of meat. Different sedimentary features of this experimental fireplace were visually identified (e.g. darkening, reddening), sampled, and subjected to geochemical analysis. Corg and N contents were quantified, samples were extracted with organic solvents and analyzed through GC-MS and bulk organic matter was characterized through py(TMAH)-GC-MS. Five different samples were studied and compared with a control sample, representative of the local background. A significant increase of Corg and N contents was measured for the three samples presenting darkened or charred caracteristics. The meat-cooking fireplace seems to be characterized by the strong contribution of nitrogen, which was visible in elementary analyses as well as in the molecular composition of solvent extracts, and bulk organic matter. More specifically, compounds containing nitrile functions, amides, N-heterocyclic and N-aromatic compounds could be detected in solvent extracts. Amines, amides, N-heterocyclic and N-aromatic compounds could be identified in py(TMAH)-GC-MS. Some of these compounds present a relative stability in soils and could therefore aid in our comprehension and functional interpretations of archaeological fireplaces, and may, more particularly, make it possible to highlight the use of fireplaces for the cooking of meat. (C) 2019 Elsevier Ltd. All rights reserved.
机译:更好地了解史前火灾的操作和使用是解释生活空间组织的基础。在以前的研究中,专注于用木材和/或骨骼推动的壁炉的有机签名,这项研究通过添加了致力于肉类烹饪的木材加油壁炉来完成实验参考数据库的完成。目视鉴定该实验壁炉的不同沉积特征(例如,变暗,变红),取样,并进行地球化学分析。量化了Corg和N含量,用有机溶剂萃取样品,并通过GC-MS分析,并通过PY(TMAH)-GC-MS进行散装有机物质。研究了五种不同的样品并与对照样品进行比较,代表局部背景。测量呈现变暗或烧焦的三种样品的三种样品测量了Corg和N含量的显着增加。肉类烹饪壁炉似乎具有氮的强烈贡献,即在基本分析中可见,以及溶剂提取物的分子组合物和散装有机物。更具体地,可以在溶剂萃取液中检测含有腈官能,酰胺,N-杂环和N-芳族化合物的化合物。可以以py(tmah)-gc-ms鉴定胺,酰胺,n-杂环和n-芳族化合物。这些化合物中的一些存在于土壤中的相对稳定性,因此可以帮助我们对考古壁炉的理解和功能解释,并且更具体地说,可以突出壁炉烹饪肉类的使用。 (c)2019年elestvier有限公司保留所有权利。

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