首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >The 109 porphyry Cu deposit in the western Tianshan orogenic belt, NW China: An example of Cu mineralization in a reduced magmatic-hydrothermal system in an extensional setting
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The 109 porphyry Cu deposit in the western Tianshan orogenic belt, NW China: An example of Cu mineralization in a reduced magmatic-hydrothermal system in an extensional setting

机译:西山造口带的109斑岩Cu矿床,NW中国:在延伸设定中减少岩浆 - 水热系统中Cu矿化的一个例子

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The 109 porphyry Cu deposit in the western Tianshan orogenic belt, NW China, is hosted in albite porphyry. The albite porphyry is metaluminous to peraluminous and alkaline in terms of composition, and has an affinity of A-type granite, and is considered to have formed in an extensional tectonic setting. Zircon grains from the albite porphyry yielded a weighted mean U-238/Pb-206 age of 300 +/- 4 Ma (95% confidence) by Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICP-MS). The age can be considered to be the crystallization age of the 109 albite porphyry. The zircon grains have Ce4+/Ce3+ ranging from 10.8 to 50.5. The ore minerals. mainly include chalcopyrite, bornite and chalcocite, and the absence of magnetite, hematite and sulfates. The oxygen fugacity (fO(2)) was estimated to be below the quartz-fayalite-magnetite (QFM) + 2 buffer using the Ti-in-zircon thermometer. We therefore assumed that the 109 Cu deposit formed in a reduced magmatic-hydrothermal system, which is similar to the coeval Cu deposits elsewhere in the western Tianshan orogenic belt, indicating that they may have the same the reduced ore system is likely attribute to an extensional tectonic setting during the late Carboniferous in the western Tianshan orogenic belt. Sulfides in the ores display quench texture or exsolution texture. The rim of each sulfide grains always have delta S-34 higher than the cores, which is attributed to a fast decrease of temperature and degassing of sulfur from ore-forming fluid. The sulfur degassing may lead to the progressive increase of the fO(2) of the ore-forming fluids. The ore-forming fluids with high fO(2) can contain more sulfur leading to the formation of the 109 Cu deposits
机译:中国天山奥林斯西部的109个斑岩Cu矿床,NW中国,举办了Albate Porphyry。在组合物方面,Albate斑岩是灭菌和碱性的乳糖,并且具有型花岗岩的亲和力,并且被认为是在延伸构造环境中形成。来自阿尔比特斑岩的锆石颗粒通过激光烧蚀电感耦合等离子体质谱法(La-ICP-MS)产生加权平均U-238 / PB-206龄300 +/- 4 mA(95%置信度)。该年龄可以被认为是109 albite斑岩的结晶年龄。锆石颗粒具有10.8至50.5的CE4 + / CE3 +。矿石矿物质。主要包括黄铜矿,凤石和Chalocite,以及没有磁铁矿,赤铁矿和硫酸盐。使用Ti-In-in-in-in-in-in-in-in-in-in-tircol温度计估计氧气抗氧气性(Fo(2))低于石英-Fayalite - 磁铁矿(QFM)+ 2缓冲液。因此,我们认为,在减少的岩浆 - 水热系统中形成的109铜沉积物,其类似于西山造山带的其他地方的氏族矿床,表明它们可能具有相同的矿石系统可能归因于延长西天山造山带后期石炭系过程中的构造环境。矿物质中的硫化物显示淬火纹理或exolution纹理。每个硫化物颗粒的边缘总是比核心高的ΔS-34,这归因于从矿石液中硫的温度和脱气的快速降低。硫脱气可能导致矿石形成流体的逐渐增加(2)。具有高FO(2)的矿石形成液体可含有更多的硫,导致形成109 Cu沉积物

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