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首页> 外文期刊>Minerals >Ore Genesis of Shanmen Ag Deposit in Siping Area of Southern Jilin Province, NE China: Constraints from Fluid Inclusions and H-O, S, Pb Isotopes
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Ore Genesis of Shanmen Ag Deposit in Siping Area of Southern Jilin Province, NE China: Constraints from Fluid Inclusions and H-O, S, Pb Isotopes

机译:吉林省南部四平地区山门银矿床的成矿作用:流体包裹体和H-O,S,Pb同位素的约束

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The Shanmen Ag deposit, located in the southeastern part of the Siping area, Jilin Province, is one of the large-scale Ag deposits in Northeastern (NE) China. Almost all Ag orebodies, Ag-bearing quartz-sulfide veins are strictly controlled by NE-trending faults or brittle fractures and are hosted in the Yanshanian monzonite and quartz diorite. In terms of deposit geology, three mineralization stages are recognized: the pyrite-quartz stage (I), the quartz-Ag-polymetallic sulfide stage (II), and the carbonate-quartz stage (III). The research results of the fluid inclusions in the different stages indicate that the early stage (Stage I) mainly contains three types of fluid inclusions: liquid-rich two-phase (L-type), vapor-rich two-phase (V-type), and CO 2 aqueous multi-phase (C-type). The fluid belongs to a medium–high temperature and medium–low salinity H 2 O-NaCl-CO 2 system and has boiling characteristics. The middle stage (Stage II) is mainly characterized by liquid-rich two-phase (L-type) and vapor-rich two-phase (V-type) inclusions, in which the mixing of fluids of different nature leads to the escape of CO 2 . Only liquid-rich two-phase (L-type) inclusions are distinguished in the late stage (Stage III). The fluids of two later stages belong to the medium-low-temperature and low-salinity H 2 O-NaCl system. Homogenization temperatures from the early to late stages range from 272.2 to 412.5 °C, 124.1 to 313.3 °C, and 128.6 to 224 °C, respectively. Fluid salinities in the early to late stages range from 1.6 to 12.1, 1.4 to 8.9, and 0.4 to 5.8 wt.% NaCl equivalent, respectively. The gradually decreasing trends of homogenization temperatures and salinities and the reduction in the CO 2 content indicate that the release of CO 2 and the low-temperature environment are important causes of the precipitation of Ag-bearing minerals. The δ 18 O H2O values of the ore-bearing quartz veins in the different stages range from ?3.7 to +8.1‰, and the δD values of fluid inclusions in the quartz range from ?113 to ?103‰, indicating that the initial ore-forming fluid was mainly derived from magma and that the input of meteoric water gradually increased during the mineralization process. The δ 34 S values (ranging from ?11.4‰ to +1.8‰) and Pb isotope compositions ( 206 Pb/ 204 Pb = 18.143–18.189, 207 Pb/ 204 Pb = 15.543–15.599, 208 Pb/ 204 Pb = 38.062–38.251) of sulfides suggest that the ore-forming materials have mixed mantle and crustal sources. Therefore, we propose that the release of CO 2 and the low-temperature environment are important conditions for silver minerals precipitation, and the mixing of fluids of different nature is the dominant mechanism causing precipitation. The Shanmen Ag deposit can be classified as an intrusion-related medium–low temperature hydrothermal vein-type deposit.
机译:位于吉林省四平地区东南部的山门银矿床,是中国东北地区大型的银矿床之一。几乎所有含银的矿体,含银的石英硫化物脉都受到NE向断裂或脆性断裂的严格控制,并且主要存在于燕山期的蒙脱石和石英闪长岩中。在矿床地质方面,可识别出三个矿化阶段:黄铁矿-石英阶段(I),石英-Ag-多金属硫化物阶段(II)和碳酸盐-石英阶段(III)。不同阶段流体包裹体的研究结果表明,早期(阶段I)主要包含三种类型的流体包裹体:富液两相(L型),富蒸气两相(V型)。 )和CO 2水性多相(C型)。该流体属于中高温和中低盐度H 2 O-NaCl-CO 2系统,具有沸腾特性。中间阶段(第二阶段)的主要特征是富含液体的两相(L型)和富含蒸汽的两相(V型)夹杂物,其中不同性质的流体混合导致油液逸出。 CO 2。在后期(阶段III),只有富液体的两相(L型)夹杂物才被区分出来。后两个阶段的流体属于中低温和低盐度H 2 O-NaCl系统。从早期到后期的均质温度分别为272.2至412.5°C,124.1至313.3°C和128.6至224°C。早期至晚期的流体盐度范围分别为1.6至12.1、1.4至8.9和0.4至5.8 wt%NaCl当量。均质温度和盐度的逐渐下降趋势以及CO 2含量的降低表明,CO 2的释放和低温环境是引起含Ag矿物沉淀的重要原因。含矿石英脉在不同阶段的δ18 O H2O值在?3.7至+ 8.1‰范围内,石英中流体包裹体的δD值在?113至?103‰范围内,表明初始矿石成矿流体主要来自岩浆,在成矿过程中,流水的输入逐渐增加。 δ34 S值(在?11.4‰至+ 1.8‰之间)和Pb同位素组成(206 Pb / 204 Pb = 18.143-18.189,207 Pb / 204 Pb = 15.543-15.599,208 Pb / 204 Pb = 38.062-38.251硫化物)表明成矿物质具有地幔源和地壳源。因此,我们提出CO 2的释放和低温环境是银矿物沉淀的重要条件,并且不同性质的流体的混合是引起沉淀的主要机理。山门银矿床可归为与侵入有关的中低温热液脉型矿床。

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