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The oxygen isotope relationship between the phosphate and structural carbonate fractions of human bioapatite

机译:人类生物磷灰石的磷酸盐和碳酸盐结构部分之间的氧同位素关系

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Oxygen isotope analysis of archaeological human dental enamel is widely used as a proxy for the drinking water composition (δ O _(DW)~(18)) of the individual and thus can be used as an indicator of their childhood place of origin. In this paper we demonstrate the robustness of structural carbonate oxygen isotope values (δ O _C~(18)) in bioapatite to preserve the life signal of human tooth enamel by comparing it with phosphate oxygen isotope values (δ O _P~(18)) derived from the same archaeological human tooth enamel samples. Methods: δ O _C~(18) analysis was undertaken on 51 archaeological tooth enamel samples previously analysed for δ O _P~(18) values and strontium isotopes. δ O _C~(18) values were determined on a GV IsoPrime dual inlet mass spectrometer, following a series of methodological tests to assess: (1) The reaction time needed to ensure complete release of CO _2 from structural carbonate in the enamel; (2) The effect of an early pre-treatment with dilute acetic acid to remove diagenetic carbonate; (3) Analytical error; (4) Intra-tooth variation; and (5) Diagenetic alteration. Results: This study establishes a direct relationship between δ O _C~(18) and δ O _P~(18) values from human tooth enamel (δ O _P~(18)a=1.0322= O _C~(18) - 9.6849). We have combined this equation with the drinking water equation of Daux et al. (J. Hum. Evol. 2008, 55, 1138) to allow direct calculation of δ O _(DW)~(18) values from human bioapatite δ O _C~(18) (δ O _(DW)~(18)a=1. 590×- δ O _C~(18) - 48.634). Conclusions: This is the first comprehensive study of the relationship between the ionic forms of oxygen (phosphate oxygen and structural carbonate) in archaeological human dental enamel. The new equation will allow direct comparison of data produced by the different Methods: and allow drinking water values to be calculated from structural carbonate data with confidence.
机译:考古人类牙釉质的氧同位素分析被广泛用作个人饮用水成分(δO _(DW)〜(18))的代表,因此可以用作其童年起源地的指标。通过与磷氧同位素值(δO _P〜(18))进行比较,我们证明了生物磷灰石中结构碳酸盐氧同位素值(δO _C〜(18))的鲁棒性以保留人牙釉质的生命信号。来自相同的考古人类牙釉质样品。方法:对先前分析过的51个考古牙釉质样品进行δO _C〜(18)分析,分析其δO _P〜(18)值和锶同位素。遵循一系列方法测试,在GV IsoPrime双入口质谱仪上测定δO _C〜(18)值:(1)确保搪瓷中结构碳酸盐完全释放出CO _2所需的反应时间; (2)早期用稀乙酸预处理以去除成岩碳酸盐的效果; (3)分析误差; (4)齿内变化; (5)成岩作用改变。结果:本研究建立了人类牙釉质的δO _C〜(18)和δO _P〜(18)值之间的直接关系(δO _P〜(18)a = 1.0322 = O _C〜(18)-9.6849) 。我们已经将该方程与Daux等人的饮用水方程相结合。 (J. Hum。Evol。2008,55,1138)允许直接根据人体生物磷灰石δO _C〜(18)(δO _(DW)〜(18)计算δO _(DW)〜(18)值。 a = 1。590×-δO _C〜(18)-48.634)。结论:这是考古人类牙釉质中氧的离子形式(磷酸盐氧和结构碳酸盐)之间关系的第一个综合研究。新的等式将允许直接比较由不同方法产生的数据:并允许从结构碳酸盐数据中可靠地计算出饮用水值。

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