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Petrogenesis of the microcrystalline-dioritic enclaves from Jiuling granitoids in the eastern segment of Jiangnan Orogen and constraints on magma source materials

机译:江南造山带东段九龙岭花岗岩类微晶闪长岩飞地的成因及对岩浆源的制约

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Numerous dark enclaves with different shapes are found in Jiuling Neoproterozoic granitoids.Precise LAICP-MS U-Pb dating was conducted on zircons extracted from two microcrystalline enclave samples,yielding crystallization ages of 822.6±5.8 Ma and 822.2±6.2 Ma,respectively.The consistent ages within analytical errors with the host granitoids suggested that they were the products of the same magmatism.The microcrystalline-dioritic enclaves commonly show plastic forms and contain similar plagioclase megacrysts to the host rocks,and both of the enclaves and host granitoids showed a complex composition and structural imbalance in plagioclases.Furthermore,the apatites with a euhedral acicular shape occurred widely in the microcrystalline-dioritic enclaves.All of these petrographic features above imply magma mixing is involved in their diagenesis.The enclaves and host granitoids show a marked zircon trace element difference and Hf isotopic signatures without correlation in zircon trace element pairs but form their own system between enclaves and host granitoids.Additionally,most of the zircons show extremely high εHf (t) with εHf (t) =3.54?11.94 from the southern samples,and εHf (t) =1.0?9.09 from the central region.Some zircons with the higher εHf (t) are similar to the zircons from the juvenile island arc in the eastern segment of Jiangnan Orogen.Integrated geological and Hf isotopic characteristics suggest microcrystalline-dioritic enclaves were derived from the partial melting process of the Mesoproterozoic crust which enriched juvenile island arc materials and mixed with the granitic magma that remelted from the Mesoproterozoic continental crust which relatively enriched ancient sediments and mixed with the host granitoid in diagenesis.
机译:九龙岭新元古代花岗岩中发现了许多形状各异的暗地。对两个微晶飞地样品中提取的锆石分别进行了精确的LAICP-MS U-Pb定年,其结晶年龄分别为822.6±5.8 Ma和822.2±6.2 Ma。宿主花岗岩在分析误差范围内的年龄表明它们是相同岩浆作用的产物。微晶-闪长岩飞地通常表现出塑性形式,并含有与宿主岩石相似的斜长石大晶,并且飞地和主体花岗岩均显示出复杂的成分此外,在微晶-闪长岩飞地中广泛存在具有正针状形状的磷灰石。以上所有这些岩相特征都暗示了岩浆混合作用的成岩作用。飞地和宿主花岗岩显示出明显的锆石微量元素。锆石微量元素中无相关性的氢差和同位素标记nt对却在飞地和宿主花岗石之间形成了自己的系统。此外,大多数锆石显示出极高的εHf(t),其中南部样本的εHf(t)= 3.54?11.94,而南部样本的εHf(t)= 1.0?9.09某些εHf(t)较高的锆石与江南造山带东部段幼年岛弧中的锆石相似。综合的地质和Hf同位素特征表明,微晶-闪长岩飞地是由于部分熔融过程形成的。中生代地壳富集了幼年岛弧物质,​​并混合了由中生代大陆壳重熔而成的花岗质岩浆,后者在成岩作用中相对富集了古代沉积物并与宿主花岗质混合。

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