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U-Pb LA-(MC)-ICP-MS dating of rutile: new reference materials and applications to sedimentary provenance

机译:金红石的U-Pb LA-(MC)-ICP-MS测年:新的参考材料及其在沉积物来源中的应用

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摘要

In response to the general lack of sufficiently abundant and high quality rutile Usingle bondPb reference materials for in situ geochronology, we have characterised two new potential rutile ~ 1.8 Ga reference materials (Sugluk-4 and PCA-S207) from granulite facies belts of the Canadian Shield, namely the northern Cape Smith Belt of Quebec and the Snowbird Tectonic Zone (Sasatchewan). Characterisation includes ID-TIMS and LA-ICP-MS Usingle bondPb dating, imaging, and trace element analysis. We compare these materials with existing rutiles used already (R19 and R10; Luvizotto et al., 2009 and Zack et al., 2011) and show that the measured Usingle bondPb compositions (i.e. including any common Pb) of our rutiles are considerably more homogeneous. This makes possible a Usingle bondPb normalisation procedure (not reliant upon a common Pb correction) that results in a significant decrease in the uncertainty contribution from the common Pb correction and better reproducibility of reference materials and unknowns for provenance analysis and other applications. The reproducibility is 2–4% (2RSD) for 206Pb/238U and 207Pb/206Pb, only slightly greater than long-term data for zircon reference materials. We show in a rutile provenance study from young orogens (Bhutan Himalaya and Canadian Cordillera) that the sensitivity of our analytical set-up allows dating of ~ 90% of rutiles in a sediment using a 50 μm laser ablation spotsize within samples containing rutile as young as 10–20 Ma, and obviates the requirement for U concentration pre-screening, thus reducing or eliminating rutile selection bias. Unsuccessful analyses are due to poor quality rutiles with predominant common Pb, 207Pb signal below detection, or U content below ~ 1–2 ppm. We have used the ‘207Pb-method’ (using the Tera-Wasserburg diagram) to correct for substantial common Pb in very young and/or very low-U rutiles, rather than developing an on-line correction. Since rutile ages reflect mainly the time of cooling, rutile is a sensitive recorder of metamorphic thermochronological information and therefore is an excellent complement to detrital zircon U207Pb data. The contrast between zircon and rutile signatures in Himalayan samples with rutile as young as 10 Ma is shown to be very dramatic (most zircons from the same sample are > 480 Ma, with only a few grains or metamorphic rims reflecting Miocene metamorphism); as such rutile provides complementary information about the thermal events within the source regions of the grains. Rutile Usingle bondPb dating is an underexploited provenance method with wide applicability to sedimentary provenance studies.
机译:针对普遍缺乏足够丰富和高质量的金红石原位年代学Usingle bondPb参考材料,我们从加拿大花岗石相带中鉴定了两种新的潜在金红石〜1.8 Ga参考材料(Sugluk-4和PCA-S207)。盾牌,即魁北克的史密斯角北部带和雪鸟构造带(萨斯喀彻温省)。表征包括ID-TIMS和LA-ICP-MS Usingle bondPb测年,成像和微量元素分析。我们将这些材料与已经使用的现有金红石(R19和R10; Luvizotto等,2009和Zack等,2011)进行了比较,结果表明,我们的金红石中测得的Usele bondPb成分(即包括任何常见的Pb)相当均匀。这使得Usele bondPb归一化程序成为可能(不依赖于普通的Pb校正),从而导致普通Pb校正的不确定性贡献显着降低,并且可以更好地再现标准物质和未知物,以进行来源分析和其他应用。 206Pb / 238U和207Pb / 206Pb的重现性为2-4%(2RSD),仅略高于锆石参考材料的长期数据。我们在来自年轻造山带(不丹喜马拉雅山和加拿大山脉)的金红石来源研究中表明,我们的分析设置的敏感性允许使用含金红石的样品中的50μm激光烧蚀斑点对约90%的金红石进行测年。为10-20 Ma,并且消除了对U浓度预筛选的要求,从而减少或消除了金红石选择偏倚。分析不成功是由于金红石质量差,常见的Pb,207Pb信号低于检测值或U含量低于1-2 ppm。我们已经使用“ 207Pb方法”(使用Tera-Wasserburg图)来校正非常年轻和/或非常低U的金红石中的大量普通Pb,而不是开发在线校正。由于金红石年龄主要反映了冷却时间,所以金红石是变质热年代学信息的敏感记录者,因此是碎屑锆石U207Pb数据的极佳补充。喜马拉雅金红石年龄低至10 Ma的样本中的锆石和金红石特征之间的对比非常显着(同一样本中的大多数锆石> 480 Ma,只有少数晶粒或变质边缘反映了中新世变质作用);因为这种金红石提供了有关谷物源区域内热事件的补充信息。金红石型Usingle bondPb年代测定法是一种未充分利用的方法,广泛适用于沉积物来源研究。

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