G'/> Metallogenic age and hydrothermal evolution of the Jidetun Mo deposit in central Jilin Province, northeast China: Evidence from fluid inclusions, isotope systematics, and geochronology
首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Metallogenic age and hydrothermal evolution of the Jidetun Mo deposit in central Jilin Province, northeast China: Evidence from fluid inclusions, isotope systematics, and geochronology
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Metallogenic age and hydrothermal evolution of the Jidetun Mo deposit in central Jilin Province, northeast China: Evidence from fluid inclusions, isotope systematics, and geochronology

机译:吉林省中部吉林省矿床的成矿年龄和水热演变,来自中国东北地区:来自流体包裹物,同位素系统的证据和地理学

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Graphical abstractDisplay OmittedHighlights?The Jidetun Mo deposit was formed at 168.9±1.9Ma.?Porphyritic granodiorite from the Jidetun ore district was formed at 173.5±1.5Ma.?Mo mineralization is closely related to porphyritic granodiorite.?The ore-forming fluids originated from porphyritic granodiorite.AbstractThe Jidetun deposit is a large porphyry Mo deposit that is located in central Jilin Province, northeast China. The Mo mineralization occurs mainly at the edge of porphyritic granodiorite, as well as the adjacent monzogranite. Field investigations, cross-cutting relationships, and mineral paragenetic associations indicate four stages of hydrothermal activity. To determine the relationships between mineralization and associated magmatism, and better understand the metallogenic processes in ore district, we have undertaken a series of studies incluiding molybdenite Re–Os and zircon U–Pb geochronology, fluid inclusions microthermometry, and C–H–O–S–Pb isotope compositions. The molybdenite Re–Os dating yielded a well-defined isochron age of 168.9±1.9Ma (MSWD=0.34) that is similar to the weighted mean206Pb/238U age of 173.5±1.5Ma (MSWD=1.8) obtained from zircons from the porphyritic granodiorite. The results lead to the conclusion that Mo mineralization, occurred in the Middle Jurassic (168.9±1.9Ma), was spatially, temporally, and genetically related to the porphyritic granodiorite (173.5±1.5Ma) rather than the older monzogranite (180.1±0.6Ma). Fluid inclusion and stable (C–H–O) isotope data indicate that the initial H2O–NaCl fluids of mineralization stage I were of high-temperature and high-salinity affinity and exsolved from the granodiorite magma as a result of cooling and fractional crystallization. The fluids then evolved during mineralization stage II into immiscible H2O–CO2–NaCl fluids that facilitated the transport of metals (Mo, Cu, and Fe) and their separation from the ore-bearing magmas due to the influx of abundant external CO2and heated meteoric water. Subsequently, during mineralization stage III and IV, increase of pH in residual ore-forming fluids on account of CO2escape, and continuous decrease of ore-forming temperatures caused by the large accession of the meteoric water into the fluid system, reduced solubility and stability of metal clathrates, thus facilitating the deposition of polymetallic sulfides.]]>
机译:<![cdata [ 图形摘要 显示省略 突出显示 < CE:简单段ID =“SP0010”View =“全部”> JIDETUN MO押金以168.9±1.9ma形成。 jidetun矿区的Porphyritic Granodiorite在173.5±1.5mA中形成。 < / ce:list-item id =“o0015”> mo矿化密切关注与卟啉graneodiorite相关。 形成矿石的流体源自卟啉graneodiorite。 抽象 JidetUN存款是位于吉林省中部,东北部的大型斑岩莫存款中国。 Mo矿化主要发生在卟啉籽粒二极管的边缘,以及相邻的蒙扎石。现场调查,横切关系和矿物性阴茎术协会表明了水热活性的四个阶段。为了确定矿化与相关岩岩之间的关系,更好地了解矿区的成矿过程,我们已经开展了一系列研究,包括钼重新OS和锆石U-PB地理学学,流体夹杂物微摩和C-H-O- S-Pb同位素组合物。钼重新OS约会产生了68.9±1.9mA(Mswd = 0.34)的明确定义的同胞年龄,类似于加权平均值 206 pb / < CE:Sup =“pre”> 238> 238:Sup> U年龄为173.5±1.5mA(MSWD = 1.8),从卟啉颗粒二极管从锆石获得。结果导致莫矿化发生在中间侏罗纪(168.9±1.9mA)中,在空间,临时,遗传上与卟啉血管素(173.5±1.5mA)而不是较旧的蒙扎石(180.1±0.6mA) )。流体包容性和稳定(C-H-O)同位素数据表明初始H 2 O-NaCl流体的矿化阶段I具有高温和高 - 由于冷却和分数结晶,从Granodiorite Magma中排出和剥离。然后将流体在矿化阶段II期间进化到不混溶的H 2 O-CO 2 -NACL促进金属(Mo,Cu和Fe)运输的流体及其与携带矿棉的分离,由于丰富的外部CO 2 和加热的陨石水。随后,在矿化阶段III和IV期间,由于CO 2 逃逸,并持续降低矿石形成温度的矿物质阶段III和IV的含量增加。通过将气象的大加入流体系统,降低了金属克拉碱的溶解度和稳定性,从而促进了多金属硫化物的沉积。 ]]]>

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