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首页> 外文期刊>Contributions to Mineralogy and Petrology >Interaction of weathering solutions with oxygen and U–Pb isotopic systems of radiation-damaged zircon from an Archean granite, Darling Range Batholith, Western Australia
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Interaction of weathering solutions with oxygen and U–Pb isotopic systems of radiation-damaged zircon from an Archean granite, Darling Range Batholith, Western Australia

机译:风化溶液与氧气和U-Pb同位素系统对来自澳大利亚西部达令岭基底岩的太古代花岗岩的辐射损伤锆石的相互作用

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Zircons from Archean granites from the Darling Range Batholith in the Yilgarn Craton of Western Australia have been shown to have complexly discordant U–Pb systems with a strong component of zero age disturbance. The only geological event that has affected the granites in recent times is the pervasive regional weathering. Our aim in this study was to investigate the effects of weathering on the U–Pb and oxygen systems of the zircons, and to this end, we report secondary ion mass spectrometry (SIMS) results of OH, oxygen and U–Pb isotope systems of six typical zircons from a sample of the granite. These results confirmed the presence of OH in highly radiation-damaged parts of the zircons, demonstrating fluid interaction within grains. The presence of OH was accompanied by significant changes in the 18O/16O ratios. The data suggest trends where δ18O values in individual grains both increase and decrease with increasing OH. SIMS measurements showed the U–Pb systems are variably and unsystematically discordant in radiation-damaged parts of the zircons, particularly those with elevated OH contents. The complex U–Pb systems are interpreted in terms of multiple disturbance events between 450 and 0 Ma involving low-temperature fluid-induced movement of radiogenic Pb, decoupled from parent U and Th, within the radiation-damaged zircons, together with some Pb loss.
机译:来自西澳大利亚伊尔加尔邦克顿达令山脉基岩的太古宙花岗岩的锆石已被证明具有复杂的不协调的U–Pb系统,且具有强烈的零年龄扰动成分。近期影响花岗岩的唯一地质事件是普遍的区域风化。我们在这项研究中的目的是研究风化对锆石的U–Pb和氧气系统的影响,为此,我们报告了OH,氧气和U–Pb同位素系统的二次离子质谱(SIMS)结果。花岗岩样品中的六个典型锆石。这些结果证实了在锆石的高度辐射破坏的部分中存在OH,表明了晶粒内的流体相互作用。 OH的存在伴随着18O / 16O比值的显着变化。数据表明趋势,其中单个晶粒中的δ18O值随OH的增加而增加和减少。 SIMS测量结果显示,在锆石的辐射损坏部位,特别是OH含量较高的部位,U–Pb系统在变化和非系统上不一致。复杂的U–Pb系统是根据450至0Ma之间的多重扰动事件来解释的,涉及低温流体诱导的放射性Pb的运动,该放射性Pb在受辐射破坏的锆石中与母体U和Th分离,并伴随着某些Pb的损失。

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