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Development of a new method for Pb isotopic analysis of archaeological artefacts using single-collector ICP-dynamic reaction cell-MS

机译:利用单收集器ICP-动态反应池-MS进行考古文物铅同位素分析的新方法的开发

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A new methodology has been developed for Pb isotopic analysis of different kinds of archaeological artefacts. The method has been optimized for bone tissue, soil, amphorae and lead objects dating from the Roman Era, and consists of 3 key steps: (ⅰ) sample digestion with quantitative Pb recovery, optimized using the certified reference materials NIST SRM 1400 Bone Ash, BCR CRM 141 Calcareous Loam Soil and BCR CRM 142 Light Sandy Soil, (ⅱ) quantitative isolation of the pure Pb fraction and (iii) isotope ratio measurement with a quadrupole-based ICP-mass spectrometer, equipped with a dynamic reaction cell (DRC). For Pb isolation, an extraction chromatographic column, containing a resin with a Pb-selective crown ether (4,4′(5′)-di-tert-butylcyclohexane-18-crown-6) purchased from Eichrom Technologies, was used. The Pb fraction can be obtained in a pure form and in a quantitative way after a relatively fast process, the columns can be reused and no Pb isotopic fractionation occurs on the column. The isolation process has been validated using NIST SRM 981 Common Lead, and by application to samples with a known isotopic composition. For isotope ratio measurements, the use of Ne as a collision gas in the DRC allowed an external precision below 0.17% RSD for the ~XPb/~(204)Pb ratios (where X = 206, 207, 208) and below 0.09% RSD for the ~(207)Pb/~(206)Pb, ~(208)Pb/~(206)Pb and ~(208)Pb/~(207)Pb ratios to be obtained. The accuracy of the measurement protocol was validated by comparing the results thus obtained with the corresponding MC-ICP-MS and TI-MS values. Pb isotope ratios for the certified reference materials used are given. The method was also demonstrated to work for a totally different kind of (complex) sample (lichen), and thus it is expected that the method can be used for Pb isotope ratio analysis of a wide variety of materials.
机译:已经开发出一种新的方法,用于对各种考古文物进行铅同位素分析。该方法已针对罗马时代的骨组织,土壤,安瓿和铅对象进行了优化,包括3个关键步骤:(ⅰ)使用定量的Pb回收率进行样品消化,使用经过认证的参考材料NIST SRM 1400骨灰进行了优化, BCR CRM 141石灰质壤土和BCR CRM 142轻质沙质土壤,(ⅱ)定量分离纯Pb馏分,(iii)使用配有动态反应池(DRC)的基于四极杆的ICP-质谱仪测量同位素比。对于Pb分离,使用了一种萃取色谱柱,该色谱柱包含一种树脂,该树脂具有从Eichrom Technologies购买的Pb选择性冠醚(4,4'(5')-二叔丁基环己烷-18-crown-6)。在相对快速的过程之后,可以纯净的形式和定量的方式获得Pb馏分,可以重新使用色谱柱,并且在色谱柱上不会发生Pb同位素分馏。分离过程已使用NIST SRM 981通用铅进行了验证,并已应用于具有已知同位素组成的样品中。对于同位素比测量,在〜DRb /〜(204)Pb比(其中X = 206、207、208)(相对于Xb = 206、207、208)和RSD小于0.09%的情况下,在DRC中使用Ne作为碰撞气体可实现外部精度RSD低于0.17%对于〜(207)Pb /〜(206)Pb,〜(208)Pb /〜(206)Pb和〜(208)Pb /〜(207)Pb的比率。通过将由此获得的结果与相应的MC-ICP-MS和TI-MS值进行比较,可以验证测量方案的准确性。给出了所用认证参考物质的铅同位素比。还证明了该方法适用于完全不同种类的(复杂)样品(地衣),因此有望将该方法用于各种材料的Pb同位素比分析。

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