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Improved U-Th-total Pb dating of zircons by electron microprobe using a simple new background modeling procedure and Ca as a chemical criterion of fluid-induced U-Th-Pb discordance in zircon

机译:通过电子微探针使用简单的新背景建模程序和以Ca为锆石中流体引起的U-Th-Pb不一致性的化学标准,改进了锆石的U-Th-总Pb定年

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We present a simple new background modeling method particularly for the determination of trace concentrations of Pb, U and Th to date zircons chemically by electron microprobe. This method reduces the acquisition time considerably, and at the same time increases the precision of a single Pb, U and Th analysis. Depending on the analytical conditions, theoretical detection limits down to 45 ppm (99% confidence level) for U, Th and Pb could be obtained. The final precision on age for a single measurement was between +/-8 and +/-35% (1 sigma) at Pb concentrations between 100 and 200 ppm in Proterozoic zircons. Precise U, Th and Pb analyses, however, do not necessarily facilitate a straightforward chemical age calculation. U-Th-total Pb data of zircons from four granites could not be objectively interpreted because of a severe disturbance of the U-Th-Pb system. However, it is shown that chemical ages derived only from zircon areas containing less than similar to 0.2 wt.% CaO agree very well with published conventional radiometric ages of these rocks. We propose a model which explains the Ca gain and Pb loss of zircons which have not undergone any metamorphism after emplacement to be the result of a hydration of radiation damaged zircon domains through low temperature aqueous solutions. It is suggested that the Ca content can be used independently from U, Th and Pb analyses as a chemical criterion to discriminate between altered zircon domains, having suffered a low temperature fluid-induced Pb-loss, and non-altered zircon domains for which there is a high probability that they will give concordant U-Th-Pb ages. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 58]
机译:我们提出了一种简单的新的背景建模方法,特别是用于通过电子探针化学测定痕量浓度的铅,铀和and迄今为止的锆石。这种方法大大减少了采集时间,同时提高了单个Pb,U和Th分析的精度。根据分析条件,可以得到U,Th和Pb的理论检出限低至45 ppm(99%置信度)。在元古代锆石中,铅的浓度在100至200 ppm之间时,单次测量的最终最终精度在+/- 8至+/- 35%(1 sigma)之间。但是,精确的U,Th和Pb分析不一定有助于简单的化学年龄计算。由于U-Th-Pb系统受到严重干扰,因此无法客观地解释来自四个花岗岩的锆石的U-Th-总Pb数据。但是,已表明仅源自锆石区域的CaO含量小于或等于0.2 wt。%CaO的化学年龄与这些岩石的常规放射线测量年龄非常吻合。我们提出了一个模型,该模型解释了放置后未经历任何变质的锆石的Ca增益和Pb损失,这是辐射损伤的锆石域通过低温水溶液水合的结果。建议将Ca含量与U,Th和Pb分析无关地用作化学判据,以区分遭受低温流体诱导的Pb损失的锆石结构域和未改变的锆石结构域。他们很有可能会给出一致的U-Th-Pb年龄。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:58]

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