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Zircon U-Pb-Hf evidence for subduction related crustal growth and reworking of Archaean crust within the Palaeoproterozoic Birimian terrane, West African Craton, SE Ghana

机译:锆石U-pb-Hf俯冲与地壳生长有关的证据以及西非克拉通,加纳东南部古生代的Birimian地体中的太古地壳的再加工

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摘要

Zircon Lu-Hf isotopic data from granites of southern and northwestern Ghana have been used to investigate the contribution of reworked Archaean bedrock to the Birimian crust of Ghana, West African Craton. Zircon from seven localities in southern Ghana and one locality in western Ghana were analysed. Combined U-Pb and Lu-Hf isotope data suggest juvenile crustal addition between 2.3–2.1 Ga, with a short period of reworking of Archaean crust. Until now, evidence for reworking of Archaean basement during Birimian magmatism in Ghana has hinged on whole-rock Nd model-ages of the Winneba pluton, and sparse inherited zircon grains from mainly northwestern Ghana. Our data suggest that reworking of Archaean crust is greater than previously inferred, but was limited to between ∼2.14–2.13 Ga. This period of reworking of older crustal components was preceded and succeeded by juvenile crustal addition. Coupled isotopic data suggest an eastward, mainly retreating arc system with a shorter pulse of accretion between ∼2.18–2.13 Ga and a rapid return to slab retreat during the growth of the Birimian terrane. The accretionary phase initiated melting of sub-continental lithospheric mantle and the overlying Archaean crust, generating magma with sub-chondritic Hf signatures. Subsequent slab retreat led to trench-ward movement of the magmatic activity and the mixture of juvenile and Archaean crust was replaced by uncontaminated juvenile magma. The 2.23 Ga age of the West Accra granodiorite (PK105) demonstrates the emplacement of felsic rocks during the Eoeburnean and pre-dates the suggested plume related rocks, contradicting suggested plume initiated subduction.
机译:来自加纳南部和西北部花岗岩的Zircon Lu-Hf同位素数据已被用于研究返工的古生代基岩对西非克拉通加纳Birimian地壳的贡献。分析了加纳南部七个地方和加纳西部一个地方的锆石。结合的U-Pb和Lu-Hf同位素数据表明,幼体地壳的添加量在2.3–2.1 Ga之间,且古生地壳的返修时间很短。到目前为止,在加纳的Birimian岩浆作用期间对太古宙地下室进行改造的证据取决于Winneba岩体的全岩Nd模型年龄,并且稀疏的遗传锆石主要来自加纳西北部。我们的数据表明,太古壳的再加工要比以前推断的要大,但仅限于约2.14–2.13 Ga之间。这个时期的旧地壳部件的再造是在幼年地壳添加之前和之后。耦合的同位素数据表明,在一个Birimian地层的生长过程中,一个向东的,主要为后退的弧系,在〜2.18–2.13 Ga之间具有较短的增生脉冲,并迅速返回到板坯后退。增生阶段引发了亚大陆岩石圈地幔和上覆的古生界地壳的融化,产生了具有次软骨性H元素特征的岩浆。随后的平板撤退导致岩浆活动向沟槽方向移动,并且未受污染的少年岩浆代替了少年壳和古生皮的混合物。西阿克拉花岗闪长岩(PK105)的2.23 Ga年龄表明,在Eoeburnean期间长英质岩石的位置,并且早于建议的羽状相关岩石,这与建议的羽状引发俯冲相矛盾。

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