首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Petrological and geochemical features of the early Paleozoic granitic gneisses and iron ores in the Tianhu iron deposit, Eastern Tianshan, NW China: Implications for ore genesis
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Petrological and geochemical features of the early Paleozoic granitic gneisses and iron ores in the Tianhu iron deposit, Eastern Tianshan, NW China: Implications for ore genesis

机译:天山东部古古古古古古古古代花岗岩片和铁矿石的岩石和地球化学特征,NW中国东部岩山:对矿石创世纪的影响

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This paper reports whole-rock geochemical, zircon U-Pb and Hf isotopic data for ore-hosted granitic gneisses, mineral compositions of oxides, and sulfur isotopic data for sulfides in iron ores from the Tianhu deposit, central part of the Eastern Tianshan. Our results can provide crucial constraints on the genesis of granitic gneisses and early Paleozoic tectonic setting of the Eastern Tianshan. LA-ICP-MS U-Pb dating on magmatic zircons yielded weighted mean Pb-206/U-238 ages of 463 to 438 Ma, interpreted as the crystallization ages of the granitic protoliths and the formation ages of the Tianhu Group. Zircon U-Pb age of ore-hosted granitic gneiss (ca. 459 Ma) can provide reliable constrains on upper limit for iron mineralization age in the Tianhu deposit. Geochemical characteristics suggest that the protoliths of the Tianhu granitic gneisses are metaluminous to weakly peraluminous high-K calc-alkaline granitic rocks, exhibiting typical subduction-related features such as strong enrichment in LREE and LILE and depletion in HFSE. Zircon Hf isotopic compositions show a positive trend from similar to 463 to similar to 438 Ma, indicating that similar to 460 Ma magmas came from both ancient and juvenile sources, whereas similar to 438 Ma magmas involved more juvenile material. Some early Paleozoic granitoids were recently identified in the Eastern Tianshan with the ages between ca. 475 and ca. 425 Ma. The formation of these early Paleozoic granitoids was in response to subduction processes, suggesting that subduction of Junggar Ocean probably began in the Early Ordovician and lasted until Late Silurian.
机译:本文报告了全岩地球化学,锆石U-PB和HF同位素数据,用于矿石花岗岩片,氧化物矿物组合物,硫化物中硫化物的硫化物,来自天山东部的中央部分。我们的结果可以为天山东部的花岗岩片生长和早古生代构造环境提供至关重要的约束。 La-ICP-MS U-PB在岩浆氧化锆上的约会,得到了463至438 mA的加权平均Pb-206 / U-238岁,以花岗岩原料的结晶年龄和天湖集团的形成年龄解释为463至438 mA。锆石U-PB矿床宿主花岗岩(CA.459MA)的年龄可以为天胡氏矿床的铁矿化年龄的上限提供可靠的限制。地球化学特征表明,天虎花岗岩的促果实是弱衰弱的高k钙碱性花岗岩的金属溶解,呈现出典型的俯冲相关特征,例如在HFSE中含有强烈的富集和枯竭。锆石HF同位素组合物显示出类似于463的正趋势,类似于438 mA,表明类似于460 mA岩浆来自古代和少年来源,而438 ma魔法粘的粘玛斯涉及更多的少年材料。最近在东山东部鉴定了一些早期的古生代花岗岩,同时在CA之间的年龄。 475和CA。 425 mA。这些早期古生代花岗岩的形成是为了应对俯冲过程,暗示Junggar海洋的俯冲可能在早期的奥陶诺维安开始,持续到迟到的秘书处。

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