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首页> 外文期刊>Sedimentary geology >Central Antarctic provenance of Permian sandstones in Dronning Maud Land and the Karoo Basin: Integration of U-Pb and T_(DM) ages and host-rock affinity from detrital zircons
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Central Antarctic provenance of Permian sandstones in Dronning Maud Land and the Karoo Basin: Integration of U-Pb and T_(DM) ages and host-rock affinity from detrital zircons

机译:Dronning Maud土地和Karoo盆地二叠纪砂岩的中南极来源:U-Pb和T_(DM)年龄的整合以及碎屑锆石的宿主岩石亲和力

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摘要

In conjugate SE Africa and Antarctica, Early Permian sandstones of the Swartrant Formation of the Ellisras Basin, Vryheid Formation of the Karoo Basin, and Amelang Plateau Formation of Dronning Maud Land (DML) were deposited after Gondwanan glaciation on a westward paleoslope. We analysed detrital zircons for U-Pb ages by a laser ablation microprobe-inductively coupled plasma mass spectrometer (LAM-ICPMS) and attached age significance only to clusters of three or more overlapping analyses. We analysed Hf-isotope compositions by a multi-collector spectrometer (LAM-MC-ICPMS) and trace elements by electron microprobe (EMP) and ICPMS. These analyses indicate the rock type and source (whether crustal or juvenile mantle) of the host magma, and a "crustal" model age (T_(DM)~C). The integrated analysis gives a more distinctive, and more easily interpreted, picture of crustal evolution in the provenance area than age data alone. Zircons from the Ellisras Basin are aged 2700-2540 Ma with minor populations about 2815 Ma and 2040 Ma, which correspond with the ages of the upslope parts of the proximal Kaapvaal Craton and Limpopo Belt. Mafic rock is the dominant host rock, and it reflects the Archean granite-greenstone terrane of the Kaapvaal Craton. The three Karoo Basin samples and the two DML samples have zircons with these common properties: (1) 1160-880 Ma, host magma mafic granitoid (< 65% SiO_2) derived from juvenile depleted mantle sources (ε_(Hf) positive) at 1.65 Ga and 1.35 Ga, with T_(DM)~C of 2.0-0.9 Ga; (2) 760 to 480 Ma, host magma granitoid and low-heavy rare earth element rock (?alkaline rock-carbonatite), derived from mixed crustal and juvenile depleted mantle sources (ε_(Hf) positive and negative) at 1.50 Ga and 1.35 Ga, with T_(DM)~C of 2.0-0.9 Ga. Together with similar detrital zircons in Triassic sandstone of SE Australia, these properties reflect those in upslope central Antarctica, indicating a provenance of ~1000 Ma (Grenville) cratons embedded in 700-500 Ma (Pan-Gondwanaland) fold belts. Detrital zircons in Cambrian sediments of the Ellsworth-Whitmore Mountains block and Cambrian metasediments of the Welch Mountains with comparable properties suggest that the central Antarctic provenance operated also in the ~500 Ma Cambrian.
机译:在共轭东南非洲和南极洲,冈瓦南冰川作用后,向西古坡沉积了埃利斯拉斯盆地Swartant组的早二叠世砂岩,卡鲁盆地Vryheid组和Dronning Maud Land(DML)的阿米朗高原组。我们通过激光烧蚀微探针电感耦合等离子体质谱仪(LAM-ICPMS)分析了U-Pb年龄的碎屑锆石,并将年龄重要性仅附加到三个或更多重叠分析的簇上。我们通过多收集器光谱仪(LAM-MC-ICPMS)分析了Hf同位素组成,并通过电子探针(EMP)和ICPMS分析了痕量元素。这些分析表明了宿主岩浆的岩石类型和来源(无论是地壳还是少年地幔),以及“地壳”模型年龄(T_(DM)〜C)。相比单独的年龄数据,综合分析提供了一个更独特,更容易解释的物源地区地壳演化图景。 Ellisras盆地的锆石年龄为2700-2540 Ma,少数群体大约为2815 Ma和2040 Ma,与近端Kaapvaal Craton和Limpopo带上坡部分的年龄相对应。镁铁质岩石是主要的主体岩石,它反映了Kaapvaal Craton的太古代花岗岩绿岩地层。三个Karoo盆地样品和两个DML样品的锆石具有以下共同特性:(1)1160-880 Ma,宿主岩浆镁铁质花岗岩(来自贫化地幔源(ε_(Hf)阳性)的1.65%SiO_2)。 Ga和1.35 Ga,T_(DM)〜C为2.0-0.9 Ga; (2)760至480 Ma,主岩浆花岗岩和低重稀土元素岩石(碱性岩石碳酸盐岩),来自地壳和少年贫化地幔源(ε_(Hf)正负)在1.50 Ga和1.35处产生Ga,T_(DM)〜C为2.0-0.9 Ga。再加上澳大利亚东南部三叠纪砂岩中类似的碎屑锆石,这些性质反映了南极中部上坡的构造,表明在700个中埋藏了约1000 Ma(格伦维尔)克拉通。 -500马(潘-冈瓦纳兰)折叠带。 Ellsworth-Whitmore山地块的寒武纪沉积物中的碎屑锆石和Welch山的寒武纪准沉积物具有可比的性质,表明南极中部物源也在〜500 Ma寒武纪中活动。

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