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Data of thermal imprints of late Permian Emeishan basalt effusion: Evidence from zircon fission-track thermochronology

机译:晚二叠世峨眉山玄武岩渗流的热印数据:锆石裂变径迹热年代学证据

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摘要

We present 271 detrital single-grain zircon fission track (ZFT) ages obtained for eight sandstones, which were sampled from the southwestern Yangtze Craton, southern China. Accessory minerals were concentrated using standard crushing, sieving, electro-magnetic and heavy liquid mineral separation techniques. Zircon grains were mounted on FEP Teflon and polished to expose their internal surfaces to 4π geometry. Two to three mounts of each sample were etched in KON:NaOH eutectic melt at ∼228 °C for 12–60 hours to reveal spontaneous fission tracks. Etched mounts were covered with a uranium-free muscovite external detector for the irradiation with thermal neutrons. CN2 standard uranium glasses were embedded with the age standards (Fish Canyon Tuff zircons). After irradiation, external mica detectors were removed from sample mounts and then etched in 48% HF at room temperature for 30 min to reveal induced tracks. Fission track counting was performed using a Zeiss Axiotron microscope at a total magnification of 1250 × . Zircon fission-track ages were calculated using the ζ-calibration technique. The central ages (with 1σ error) vary from 144.7 ± 4.9 Ma to 256.7 ± 9.6 Ma, with variable P(χ2) values of 0%–75%. ZFT ages of the five Cambrian to Ordovician samples are younger than their depositional ages, and thus were fully reset by post-depositional heating. ZFT ages of three Jurassic samples are partially reset, as they overlap with or slightly younger than the corresponding depositional ages.
机译:我们目前从八块砂岩中获得了271个碎屑性单晶锆石裂变径迹(ZFT)年龄,这些年龄是从中国南部的扬子克拉通取样的。使用标准破碎,筛分,电磁和重液矿物分离技术浓缩辅助矿物。将锆石晶粒安装在FEP铁氟龙上并进行抛光,以使其内表面暴露于4π几何形状。每个样品的2至3个安装座在约228°C的KON:NaOH共晶熔体中蚀刻12–60小时,以揭示自发裂变径迹。蚀刻的底座上覆盖有无铀白云母外部探测器,用于用热中子辐照。 CN2标准铀玻璃嵌入了年龄标准(Fish Canyon Tuff锆石)。辐照后,将外部云母检测器从样品架上移开,然后在室温下于48%HF中蚀刻30分钟,以揭示诱导的轨迹。裂变径迹计数使用Zeiss Axiotron显微镜以总放大倍数1250×进行。锆石裂变径迹年龄是使用ζ校准技术计算的。中心年龄(具有1σ误差)从144.7±4.9 Ma到256.7±9.6 Ma不等,变量P(χ2)的值在0%–75%之间。五个寒武纪至奥陶纪样品的ZFT年龄均比其沉积年龄年轻,因此通过沉积后加热将其完全重置。三个侏罗纪样品的ZFT年龄被部分重置,因为它们与相应的沉积年龄重叠或更早。

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