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Strategies towards robust interpretations of in situ zircon Lu-Hf isotope analyses 被引量:7
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作者 C.J.Spencer C.L.Kirkland +2 位作者 n.m.w.roberts N.J.Evans J.Liebmann 《Geoscience Frontiers》 SCIE CAS CSCD 2020年第3期843-853,共11页
The combination of U-Pb and Lu-Hf compositions measured in zircon crystals is a remarkably powerful isotopic couplet that provides measures on both the timing of mineral growth and the radiogenic enrichment of the sou... The combination of U-Pb and Lu-Hf compositions measured in zircon crystals is a remarkably powerful isotopic couplet that provides measures on both the timing of mineral growth and the radiogenic enrichment of the source from which the zircon grew.The U-Pb age documents the timing of zircon crystallization/recrystallization and Hf isotopes inform on the degree to which the host melt was derived from a radiogenic reservoir(e.g.depleted mantle) versus an unradiogenic reservoir(e.g.ancient continental crust),or some mixture of these sources.The ease of generating large quantities of zircon U-Pb and Lu-Hf data has been in large part facilitated by instrument advances.However,the dramatic increase in time constrained zircon Lu-Hf analyses in the Earth science community has brought to the fore the importance of careful data collection and reduction workflows,onto which robust geological interpretations may be based.In this work,we discuss the fundamentals of Lu-Hf isotopes in zircon,which then allows us to provide a robust,accessible,methodology for the assessment of data quality.Additionally,we discuss some novel techniques for:data visualization—that facilitates better transparency of data interpretation;integration of geographic information—that may reveal spatial trends where temporal trends were only apparent before;and some novel statistical evaluation tools—that may provide more rigorous interand intra-sample comparisons. 展开更多
关键词 ZIRCON GEOCHRONOLOGY Isotope geochemistry LU-HF ISOTOPES GEOSTATISTICS Data visualization
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锆石高温蚀变过程中的快速氧扩散
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作者 n.m.w.roberts Q.-Y.Yang +1 位作者 M.Santosh 夏群科 《矿物岩石地球化学通报》 CAS CSCD 北大核心 2018年第2期315-315,共1页
锆石是最广泛应用于记录火成岩和变质岩历史的矿物。一些研究已证实在"干"的条件下,氧在锆石内的扩散十分缓慢。只有经历了热液流体蚀变的锆石的氧同位素特征才会偏离原始特征,趋同于流体。然而对于锆石在"干"或"湿"体系下的扩散... 锆石是最广泛应用于记录火成岩和变质岩历史的矿物。一些研究已证实在"干"的条件下,氧在锆石内的扩散十分缓慢。只有经历了热液流体蚀变的锆石的氧同位素特征才会偏离原始特征,趋同于流体。然而对于锆石在"干"或"湿"体系下的扩散数据的使用,是有争议的,因为大部分天然数据表明缓慢扩散与"干"的扩散速率更匹配。 展开更多
关键词 氧同位素
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