Ab'/> Geochronology, geochemistry and Sr-Nd-Pb-Hf isotopes of the Early Jurassic granodiorite from the Sankuanggou intrusion, Heilongjiang Province, Northeastern China: Petrogenesis and geodynamic implications
首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Geochronology, geochemistry and Sr-Nd-Pb-Hf isotopes of the Early Jurassic granodiorite from the Sankuanggou intrusion, Heilongjiang Province, Northeastern China: Petrogenesis and geodynamic implications
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Geochronology, geochemistry and Sr-Nd-Pb-Hf isotopes of the Early Jurassic granodiorite from the Sankuanggou intrusion, Heilongjiang Province, Northeastern China: Petrogenesis and geodynamic implications

机译:来自中国东北地区黑龙江省Sankuanggou入侵的早期侏罗纪细粒机的地理学,地球化学和SR-ND-PB-HF同位素:化学性和地球动力学含义

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AbstractMesozoic granitoid rocks represent a volumetrically component of the Northeastern (NE) China and preserve useful information about the tectonomagmatic history of this region. The Sankuanggou intrusion associated with skarn Fe-Cu deposit in the Duobaoshan ore field within NE China primarily consists of granodiorite with minor alkali-feldspar granite and diorite, which intrudes the Ordovician Duobaoshan Formation in the region. Zircon LA-ICP-MS U–Pb geochronology and whole-rock geochemistry, and Sr-Nd-Pb-Hf isotope analysis were performed on the Sankuanggou intrusion to investigate the petrogenesis and geodynamic implications. Zircon U–Pb dating of magmatic zircons from the granodiorite rock suggests that the intrusion was emplaced in the Early Jurassic (177±1 Ma). Geochemically, it belongs to the metaluminous to slightly peraluminous high-K calc-alkaline I-type granitoids with a narrow range of SiO2concentration (65.73–67.33 wt.%), high Ba, Sr, LREE and LILE contents and low abundance of Rb, Y, HREE and HFSE. All of these studied samples have homogeneous initial isotope traits with (87Sr/86Sr)iranging from 0.70415 to 0.70423, εNd(t) of +3.6 to +4.0, (206Pb/204Pb)i=17.933–18.458, (207Pb/204Pb)i=15.520–15.587 and (208Pb/204Pb)i=37.523–38.087, and zircon εHf(t) values varying from +4.8 to +9.9. These results, combined with the previous data, demonstrate that the Sankuanggou granitoids were formed by partial melting of the pre-existing juvenile crust in an extensional regime related to the post-collisional setting following the closure of the CAOB rather than previously proposed continental arc setting related to Paleo-Pacific or the Mongol–Okhotsk subduction, although their potential influence should not be dismissed.Highlights?The Sankuanggou granodiorite was emplaced in 177±1Ma.?The granodiorite originated from partial melting of a juvenile crust.?The granodiorite was formed in an extensional setting.]]>
机译:<![cdata [ 抽象 中生成荫的花岗岩岩石代表东北(NE)中国的一大体成分,并保留有关Tectononomatic史的有用信息这个地区。在奈斯省内的Duobaoshan矿石领域与Skarno Fe-Cu矿床相关的Sankuanggou侵扰主要包括含有少量碱金属花岗岩和二冠状的Granodiorite,其侵入该地区的奥莫瓦伊师Duobaoshan组。锆石La-ICP-MS U-PB地理学和全岩地球化学,对Sankuanggou侵扰进行了SR-ND-PB-HF同位素分析,以研究化纤和地球动力学。锆石U-PB从Granodiorite Rock的岩浆锆石的约会表明,侵入性在早期侏罗纪(177±1 mA)。地球化学上,它属于略微衰弱的高k钙碱性I型花岗岩,窄范围的SiO 2 浓度(65.73-67.33wt。 %),高BA,SR,LREE和LILE含量以及低丰度的RB,Y,HREE和HFSE。所有这些研究的样品具有均匀的初始同位素特征( 87 sr / 86 sr) i 从0.70415到0.70423,ε nd t )+3.6至+4.0,( 206 pb / 204 pb ) i = 17.933-18.458,( 207 pb / 204 pb) i = 15.520-15.587和( 208 pb / 204> 204 pb) i = 37.523-38.087,zirconε hf t )值从+4.8到+9.9变化。这些结果与先前的数据相结合证明Sankuanggou花岗岩是通过在围攻后的围攻后的延伸制度中部分熔化而形成的少年熔化,而不是先前提出的大陆弧环境与古太平洋或蒙古 - 鄂霍次克郊区有关,尽管它们的潜在影响不应被驳回。 突出显示 Sankuanggou Granodiorite在177±1mA中被送出。 源自少年外壳的部分熔化的Granodiorite。 Granodiorite在延伸设置中形成。 ]]>

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