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Mortar Radiocarbon Dating: Preliminary Accuracy Evaluation of a Novel Methodology

机译:砂浆放射性碳测年:一种新方法的初步准确性评估

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Mortars represent a class of building and art materials that are widespread at archeological sites from the Neolithic period on. After about 50 years of experimentation, the possibility to evaluate their absolute chronology by means of radiocarbon (~(14)C) remains still uncertain. With the use of a simplified mortar production process in the laboratory environment, this study shows the overall feasibility of a novel physical pretreatment for the isolation of the atmospheric ~(14)CO_(2) (i.e., binder) signal absorbed by the mortars during their setting. This methodology is based on the assumption that an ultrasonic attack in liquid phase isolates a suspension of binder carbonates from bulk mortars. Isotopic (~(13)C and ~(14)C), percent C, X-ray diffractometry (XRD), and scanning electron microscopy (SEM) analyses were performed to characterize the proposed methodology. The applied protocol allows suppression of the fossil carbon (C) contamination originating from the incomplete burning of the limestone during the quick lime production, providing unbiased dating for "laboratory" mortars produced operating at historically adopted burning temperatures.
机译:砂浆代表一类建筑和艺术材料,自新石器时代以来一直在考古现场广泛使用。经过约50年的实验,通过放射性碳(〜(14)C)评估其绝对年代的可能性仍然不确定。通过在实验室环境中使用简化的砂浆生产工艺,本研究表明了一种新颖的物理预处理方法在隔离砂浆在吸收过程中吸收的大气〜(14)CO_(2)(即粘合剂)信号方面的整体可行性。他们的设置。该方法基于以下假设:液相中的超声波侵蚀将散装砂浆中的粘合剂碳酸盐悬浮液隔离。进行同位素(〜(13)C和〜(14)C),百分比碳,X射线衍射法(XRD)和扫描电子显微镜(SEM)分析来表征所提出的方法。所应用的协议可以抑制在快速石灰生产过程中源自石灰石不完全燃烧的化石碳(C)污染,为在历史上采用的燃烧温度下生产的“实验室”砂浆提供了无偏差的日期。

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