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SIMS analysis of lead isotope composition in ancient Chinese metallic artefacts

机译:中国古代金属制品中铅同位素组成的SIMS分析

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An attempt on the use of secondary ion mass spectroscopy (SIMS) in studying ancient Chinese bronze is reported with an evaluation of the suitability of SIMS for the provenance study of ancient bronze objects. The advantage of using SIMS in the study of the lead isotope ratio is the high sensitivity that enables the examination of small fragments of valuable relies that are often difficult to collect. The application of SIMS in this direction widens the sampling area, which is limited by the use of thermal ionization mass spectroscopy (TIMS). The focus of the study has been placed on the precision of SIMS when compared to TIMS and the effect of sample matrices on the precision. Samples of Chinese bronze artefacts and a standard lead sample (SRM 981) were tested for their lead isotope ratios using both SIMS and TIMS. A comparison of the data obtained using the two techniques showed that SIMS results have a relatively large standard deviation, which was attributed to the non-uniformity of the ancient samples and the single-isotope detection system of the SIMS set-up used, Matrix effects were found to be small among bronze samples of different compositions. Non-conducting samples can also be analysed when a specimen isolation technique is employed. Although SIMS gave higher uncertainties than TIMS, the SIMS technique can be applied easily to differentiate the high radiogenic lead in Shang bronze artefacts from common lead. Copyright (C) 2000 John Wiley & Sons, Ltd. [References: 15]
机译:据报道,尝试使用二次离子质谱(SIMS)研究中国古代青铜器,并评估了SIMS在古代青铜器物源研究中的适用性。在铅同位素比研究中使用SIMS的优点是灵敏度高,可以检查通常难以收集的有价值的小碎片。 SIMS在此方向上的应用扩大了采样面积,这受到使用热电离质谱(TIMS)的限制。与TIMS相比,研究的重点放在SIMS的精度上,以及样本矩阵对精度的影响。使用SIMS和TIMS对中国青铜文物样品和标准铅样品(SRM 981)的铅同位素比进行了测试。使用这两种技术获得的数据的比较表明,SIMS结果具有相对较大的标准偏差,这归因于古代样品的不均匀性以及所用SIMS装置的单一同位素检测系统矩阵效应被发现在不同成分的青铜样品中很小。当采用样品隔离技术时,也可以分析非导电样品。尽管SIMS的不确定性比TIMS高,但SIMS技术可以轻松地用于区分尚青铜制品中的高放射性铅与普通铅。版权所有(C)2000 John Wiley&Sons,Ltd. [参考:15]

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