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The zircon story of the Nile: Time-structure maps of source rocks and discontinuous propagation of detrital signals

机译:尼罗河的锆石故事:源岩的时间结构地图和脱滴信号的不连续传播

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A new dimension has recently been added to provenance analysis by the rapid development of detrital-geochronology techniques. The application of any dating method to sediments allows the definition of a unique age pattern of parent rocks, a "time structure" that represents an essential complement to the information on their lithological structure obtained by traditional petrographic and mineralogical methods. This detrital-geochronology study illustrates the distribution of U-Pb zircon ages in all parts of the Nile catchment from its equatorial headwaters to the Delta, and surveys how the provenance signal is formed, transmitted, and modified along this huge sediment-routing system. Age-spectra obtained by targeting specific parts of zircon grains after cathodo-luminesce imaging and by our Automated Phase Mapping + LAICPMS "blind-dating strategy" were compared. The former approach emphasises specific magmatic or metamorphic events in source areas, whereas the latter aims at minimising selection bias and focuses on consistency among samples. Grain-size and hydraulic-sorting controls were also checked, but found to have only a minor effect on zircon-age distributions. The trimodal age spectrum of Kagera zircons sourced from the rift highlands of Burundi and Rwanda, characterised by prominent late Neoarchean (Aruan) and mid-Mesoproterozoic (Kibaran) peaks with a wider mid-Palaeoproterozoic (Ubendian) cluster, is lost in the Lake Victoria sediment sink. The sharp unimodal Aruan peak displayed by zircon grains in both Victoria and Albert Nile is supplemented and finally superseded by Neoproterozoic grains across the vast marshlands of South Sudan, where detritus produced in equatorial regions is eventually stored. All Nile tributaries in Sudan and Egypt carry zircon grains yielding predominantly Neoproterozoic ages, with a major peak around 0.6 Ga associated with clusters around 0.8 and 1.0 Ga. A few Oligocene zircons represent the key diagnostic feature of Ethiopian pro
机译:最近已经增加了一个新的维度来通过争取 - 地理学技术的快速发展来源分析。任何可约会方法到沉积物的应用允许定义父岩的独特年龄模式,这是一种表示通过传统岩化和矿物学方法获得的关于其岩性结构信息的基本补充的“时间结构”。该脱裂 - 地质学研究说明了从其赤道地球界面的所有部分的U-Pb锆石年龄的分布从其赤道的返波到Δ,并且调查如何沿着该巨大的沉积路由系统形成,传播和修改来源信号。通过靶向锆石粒的特定部分获得的Age-Spectra,并通过我们的自动阶段映射+ LaICPMS“盲约策略”进行了靶向锆石颗粒。前一种方法强调源区中的特定岩石或变质事件,而后者旨在最大限度地减少选择偏差并侧重于样品之间的一致性。还检查了粒度和液压排序控制,但发现对锆型分布仅有一个微小的影响。来自布隆迪和卢旺达裂谷高地的Kagera Zircons的三峰年龄谱,其特征在于古代古代古代古代(Ubendian)集群的突出晚期(ARUAN)和中产阶级古代(KIBARAN)峰值,在维多利亚湖迷失了沉积物水槽。维多利亚州和阿尔伯特尼罗河锆石谷物显示的尖锐单峰峰峰值,最后在南苏丹的庞大沼泽地谷物中占据了新隆古谷物,其中最终储存了赤道地区的碎屑。苏丹和埃及的所有尼罗河支流携带锆石谷物,主要是新蛋白古代老年,大峰值约为0.6塔与簇相关0.8和1.0 Ga。少数寡核苷酸代表埃塞俄比亚专业的关键诊断特征

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