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Phosphorus in archeological ceramics as evidence of the use of pots for cooking food

机译:考古陶瓷中的磷作为使用锅做饭的证据

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The presence of phosphorus in samples of soil, sediments and water is traditionally considered to be an important indicator of human activity, either archeological or contemporary. Traditionally, the presence of phosphorus in archeological ceramics is attributed to adsorption from the soil subsequent to the discarding of utensils or the presence of the element in the raw material, although a few authors support the hypothesis of the contamination of pots by food during cooking. Given these conflicting views, the present study investigated experimentally the incorporation of phosphorus (and also calcium) into ceramic pots through trials that simulated cooking conditions to verify the potential of the elements as archeological evidence. The material was analyzed using XRD, total chemical analyses, and SEM/SED. The results indicated clearly that both elements were incorporated through the cooking process. The chemical affinity of phosphorus with aluminum makes this element a potentially important archeological record of function. Crystalline phases of the variscite type are formed after 600 h of cooking and depend on the amount of time the pot is in contact with the experimental solution. In contrast, the incorporation of calcium is readily reversible, and the cooking time necessary for the formation of phases is much greater than the working lifespan of a ceramic pot. In other words, calcium cannot be used as archeological evidence of cooking. (C) 2015 Published by Elsevier B.V.
机译:传统上认为在土壤,沉积物和水中的样本中存在磷是考古或当代人类活动的重要指标。传统上,考古陶瓷中磷的存在归因于丢弃器皿后土壤中的吸附或原料中元素的存在,尽管一些作者支持烹饪过程中食物污染锅的假设。鉴于这些相互矛盾的观点,本研究通过模拟烹饪条件的实验研究了磷(以及钙)在陶瓷锅中的掺入,以验证这些元素作为考古证据的潜力。使用XRD,总化学分析和SEM / SED对材料进行分析。结果清楚地表明,两种元素都通过蒸煮过程而结合在一起。磷与铝的化学亲和力使该元素成为潜在的重要考古功能记录。蒸煮600小时后形成方晶类型的晶相,并且取决于锅与实验溶液接触的时间。相反,钙的掺入是可逆的,并且形成相所需的烹饪时间比陶瓷锅的工作寿命长得多。换句话说,钙不能用作烹饪的考古证据。 (C)2015由Elsevier B.V.发布

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