首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >U-Pb zircon dating, geochemical and Sr-Nd-Hf isotopic compositions of Motuo quartz-monzonite: Implication for the genesis and diversity of the high Ba-Sr granitoids in orogenic belt
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U-Pb zircon dating, geochemical and Sr-Nd-Hf isotopic compositions of Motuo quartz-monzonite: Implication for the genesis and diversity of the high Ba-Sr granitoids in orogenic belt

机译:墨脱石英蒙脱石的U-Pb锆石定年,地球化学和Sr-Nd-Hf同位素组成:对造山带中高Ba-Sr花岗岩类的成因和多样性的启示

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Early Paleogene granitoids in Southern Lhasa subterrane have been widely investigated and many petrogenesis and geodynamic models have been proposed in the past few years. However, contemporaneous granitoids in the Motuo tectono-magmatic belt, southeast Lhasa terrane, are still limitedly studied. Here we present the petrology, zircon U-Pb geochronology, whole-rock geochemistry, and Sr-Nd-Hf isotope data of the Damu and 52 K quartz-monzonite in the Motuo area. LA-ICP-MS U-Pb zircon dating shows that they have magma crystallization ages of 49 and 69 Ma, respectively. The Damu quartz-monzonite (SiO2 = 63.76-6833 wt.%) is high-K calc-alkaline (K2O = 2.54-4.02 wt.% with K2O/Na2O = 0.59-1.09) and metaluminous to weakly peraluminous (A/CNK = 0.99-1.07). The 52 K quartz-monzonite (SiO2 = 61.12-66.12 wt.%) shows slightly higher K2O contents (3.80-528 wt.% with K2O/Na2O = 1.03-1.45) and metaluminous series (A/CNK = 0.96-1.00). The analyzed samples are characterized by high Ba (850-2573 ppm), Sr (534-986 ppm) contents, and fractionated REE patterns ((La/Yb)(N) = 22-72 and (Sm/Yb)(N) = 4.55-8.24). These geochemical features are comparable with those of high Ba-Sr granite. They display weakly evolved Sr-Nd-Hf compositions (whole-rock (Sr-87/Sr-86)(0) = 0.7068 to 0.7086, epsilon(Nd)(t) = -4.20 to -3.41, and zircon epsilon(Hf)(t) = -5.2 to -0.9). Geochemical and Sr-Nd-Hf isotopic data reflect that the Damu and 52 K quartz-monzonite represent residual magma from AFC processes of litho spheric mantle-derived mafic melts. The over-thickened lower crust in the eastern Lhasa terrane had been delaminated during ca. 83-70 Ma, which led to the replacement of ancient lithospheric mantle by the juvenile lithospheric mantle. The juvenile mantle wedge in the study area was suspected to be metasomatized by melts that were derived from the foundering arc root, rather than the subducted sediments. Thus, the early Paleogene high Ba-Sr magmas from the SE Lhasa terrane may provide evidence for recycling of continental lithosphere by density destruction. (C) 2015 Elsevier B.V. All rights reserved.
机译:在拉萨南部地下,早期的古近纪花岗岩被广泛研究,并且在过去几年中提出了许多成岩作用和地球动力学模型。但是,对拉萨地貌东南部的莫托构造-岩浆岩带中的当代花岗岩类仍进行了有限的研究。在这里,我们介绍了Motuo地区Damu和52 K石英蒙脱石的岩石学,锆石U-Pb地质年代学,全岩地球化学和Sr-Nd-Hf同位素数据。 LA-ICP-MS U-Pb锆石测年表明,它们的岩浆结晶年龄分别为49 Ma和69 Ma。 Damu石英蒙脱石(SiO2 = 63.76-6833 wt。%)是高K钙碱性盐(K2O = 2.54-4.02 wt。%,K2O / Na2O = 0.59-1.09),并且是金属铝至弱铝质(A / CNK = 0.99-1.07)。 52 K石英蒙脱石(SiO2 = 61.12-66.12 wt。%)显示出稍高的K2O含量(3.80-528 wt。%,K2O / Na2O = 1.03-1.45)和金属系列(A / CNK = 0.96-1.00)。分析样品的特征在于高Ba(850-2573 ppm),Sr(534-986 ppm)含量和分馏的REE模式((La / Yb)(N)= 22-72和(Sm / Yb)(N) = 4.55-8.24)。这些地球化学特征与高Ba-Sr花岗岩具有可比性。它们显示出弱演化的Sr-Nd-Hf成分(整个岩石(Sr-87 / Sr-86)(0)= 0.7068至0.7086,epsilon(Nd)(t)= -4.20至-3.41,以及锆石epsilon(Hf )(t)= -5.2至-0.9)。地球化学和Sr-Nd-Hf同位素数据表明,Damu和52 K石英蒙脱石代表岩石圈地幔衍生的镁铁质熔体的AFC过程中的残留岩浆。拉萨地区东部的地壳下层厚度过大,大约在2000年被分层。 83-70 Ma,导致少年岩石圈地幔取代了古代岩石圈地幔。研究区的地幔楔被怀疑是由弧形根的熔体而不是俯冲的沉积物交代的。因此,东南拉萨地体的早期古近纪高Ba-Sr岩浆可能为密度破坏破坏了大陆岩石圈的再循环提供了证据。 (C)2015 Elsevier B.V.保留所有权利。

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