Patrick A. Carr, Emeline Moreira, Leonid Neymark, Marc D. Norman, Julien Mercadier
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Incorporation of this excess variance in cassiterite ages is necessary for realistic uncertainties. <sup>207</sup>Pb-<sup>206</sup>Pb ages are advantageous for dating Precambrian cassiterite such as SPG compared with U-Pb ages as matrix effect on instrumental mass fractionation of Pb isotopes are generally considered to be minor. We note minor bias in <sup>207</sup>Pb/<sup>206</sup>Pb vs. <sup>208</sup>Pb/<sup>206</sup>Pb isochron ages (~ 0.6%) when using either the NIST SRM 614 or 91500 zircon reference materials and emphasise the requirement for uncertainty propagation of all sources of error and reference materials with comparable U and Pb mass fraction to the cassiterite. The <sup>238</sup>U/<sup>206</sup>Pb isotopic ratios from normalisation to matrix-mismatched reference materials show varied results, which emphasises the need to use matrix-matched reference materials for calculating U-Pb ages. 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引用次数: 1
摘要
激光烧蚀电感耦合等离子体质谱法(LA-ICP-MS)用于比较四种锡石(SnO2)材料(SPG、Yankee、AY-4和Jian-1)和三种基质不匹配的参考材料(NIST SRM 612、NIST SRM 614和91500锆石)对锡石中U-Pb和Pb-Pb同位素比率归一化的适用性。由LA-ICP-MS确定的207Pb/206Pb年龄与208Pb/206bb等时线年龄的超额方差估计为±0.33% ± 1.8%和U-Pb年龄。对于现实的不确定性,锡石年龄中的这种过度变化是必要的。与U-Pb年龄相比,207Pb-206Pb年龄有利于确定前寒武纪锡石(如SPG)的年代,因为通常认为对Pb同位素的仪器质量分馏的基体影响很小。我们注意到207Pb/206Pb与208Pb/206Pb-等时线年龄之间的微小偏差(~ 0.6%),并强调所有误差源和具有与锡石相当的U和Pb质量分数的参考材料的不确定度传播要求。从归一化到基质不匹配的参考材料的238U/206Pb同位素比值显示出不同的结果,这强调了使用基质匹配的参考物质计算U-Pb年龄的必要性。当相互交叉校准时,约1535 Ma SPG、约245 Ma Yankee和约155 Ma Jian-1锡石的LA-ICP-MS U-Pb年龄均与其ID-TIMS值一致。
A LA-ICP-MS Comparison of Reference Materials Used in Cassiterite U-Pb Geochronology
Laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) is used to compare the suitability of four cassiterite (SnO2) materials (SPG, Yankee, AY-4 and Jian-1), and three matrix-mismatched reference materials (NIST SRM 612, NIST SRM 614 and 91500 zircon) for normalisation of U-Pb and Pb-Pb isotope ratios in cassiterite. The excess variance of ages determined by LA-ICP-MS is estimated to be ±0.33% for 207Pb/206Pb vs. 208Pb/206Pb isochron ages and ± 1.8% and for U-Pb ages. Incorporation of this excess variance in cassiterite ages is necessary for realistic uncertainties. 207Pb-206Pb ages are advantageous for dating Precambrian cassiterite such as SPG compared with U-Pb ages as matrix effect on instrumental mass fractionation of Pb isotopes are generally considered to be minor. We note minor bias in 207Pb/206Pb vs. 208Pb/206Pb isochron ages (~ 0.6%) when using either the NIST SRM 614 or 91500 zircon reference materials and emphasise the requirement for uncertainty propagation of all sources of error and reference materials with comparable U and Pb mass fraction to the cassiterite. The 238U/206Pb isotopic ratios from normalisation to matrix-mismatched reference materials show varied results, which emphasises the need to use matrix-matched reference materials for calculating U-Pb ages. When cross-calibrated against each other, LA-ICP-MS U-Pb ages of the ca. 1535 Ma SPG, ca. 245 Ma Yankee and ca. 155 Ma Jian-1 cassiterites are all consistent with their ID-TIMS values.
期刊介绍:
Geostandards & Geoanalytical Research is an international journal dedicated to advancing the science of reference materials, analytical techniques and data quality relevant to the chemical analysis of geological and environmental samples. Papers are accepted for publication following peer review.