首页> 外文期刊>Journal of Asian earth sciences >Fluid inclusion, rare earth element geochemistry, and isotopic characteristics of the eastern ore zone of the Baiyangping polymetallic Ore district, northwestern Yunnan Province, China
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Fluid inclusion, rare earth element geochemistry, and isotopic characteristics of the eastern ore zone of the Baiyangping polymetallic Ore district, northwestern Yunnan Province, China

机译:云南西北白洋坪多金属矿区东矿带流体包裹体,稀土元素地球化学及同位素特征

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The Baiyangping Cu-Ag polymetallic ore district is located in the northern part of the Lanping-Simao foreland fold belt, which lies between the Jinshajiang-Ailaoshan and Lancangjiang faults in western Yunnan Province, China. The source of ore-forming fluids and materials within the eastern ore zone were investigated using fluid inclusion, rare earth element (REE), and isotopic (C, 0, and S) analyses undertaken on sulfides, gangue minerals, wall rocks, and ores formed during the hydrothermal stage of mineralization. These analyses indicate: (1) The presence of five types of fluid inclusion, which contain various combinations of liquid (1) and vapor (v) phases at room temperature: (a) H_2O (1), (b) H_2O (1) + H_2O (v), (c) H_2O (v), (d) C_mH_n (v), and (e) H_2O (1) + CO_2 (1), sometimes with CO_2 (v). These inclusions have salinities of 1.4-19.9 wt.% NaCI equivalents, with two modes at approximately 5-10 and 16-21 wt.% Nad equivalent, and homogenization temperatures between 101 ℃ and 295℃. Five components were identified in fluid inclusions using Raman microspectrometry: H_2O, dolomite, calcite, CH_4, and N_2. (2) Calcite, dolomitized limestone, and dolomite contain total REE concentrations of 3.10-38.93 ppm, whereas wall rocks and ores contain REE concentrations of 1.21-196 ppm. Dolomitized limestone, dolomite, wall rock, and ore samples have similar chondrite-normalized REE patterns, with ores in the Huachangshan, Xiaquwu, and Dongzhiyan ore blocks having large negative SCe and 5Eu anomalies, which may be indicative of a change in redox conditions during fluid ascent, migration, and/or cooling. (3) δ~(34)S values for sphalerite, galena, pyrite, and tetrahedrite sulfide samples range from -7.3‰ to 2.1‰, a wide range that indicates multiple sulfur sources. The basin contains numerous sources of S, and deriving S from a mixture of these sources could have yielded these near-zero values, either by mixing of S from different sources, or by changes in the geological conditions of seawater sulfate reduction to sulfur. (4) The C-0 isotopic analyses yield δ~(13)C values from ca. zero to -10‰, and a wider range of δ~(18)O values from ca. +6 to +24‰, suggestive of mixing between mantle-derived magma and marine carbonate sources during the evolution of ore-forming fluids, although potential contributions from organic carbon and basinal brine sources should also be considered. These data indicate that ore-forming fluids were derived from a mixture of organism, basinal brine, and mantle-derived magma sources, and as such, the eastern ore zone of the Baiyangping polymetallic ore deposit should be classified as a "Lanping-type" ore deposit.
机译:白杨坪铜银多金属矿区位于中国云南西部金沙江-哀牢山断裂带和澜沧江断裂带之间的兰坪-思茅前陆褶皱带北部。使用对硫化物,脉石矿物,围岩和矿石进行的流体包裹体,稀土元素(REE)和同位素(C,0和S)分析,对东部矿区的成矿流体和材料来源进行了研究。在矿化的热液阶段形成。这些分析表明:(1)存在五种类型的流体夹杂物,它们在室温下包含液相(1)和气相(v)的各种组合:(a)H_2O(1),(b)H_2O(1) + H_2O(v),(c)H_2O(v),(d)C_mH_n(v)和(e)H_2O(1)+ CO_2(1),有时带有CO_2(v)。这些夹杂物的盐度为1.4-19.9 wt。%NaCl当量,在大约5-10和16-21 wt。%Nad当量下具有两种模式,均质温度在101℃至295℃之间。使用拉曼光谱法确定了流体包裹体中的五个成分:H_2O,白云石,方解石,CH_4和N_2。 (2)方解石,白云石化石灰石和白云石的总REE浓度为3.10-38.93 ppm,而围岩和矿石的REE浓度为1.21-196 ppm。白云石化的石灰岩,白云岩,围岩和矿石样品具有相似的球粒陨石归一化REE模式,华昌山,下曲屋和东直岩矿块中的矿石具有较大的负SCe和5Eu异常,这可能表明氧化还原条件在流体上升,迁移和/或冷却。 (3)闪锌矿,方铅矿,黄铁矿和四面体硫化物样品的δ〜(34)S值范围为-7.3‰至2.1‰,这表明存在多种硫源。该盆地含有大量的S来源,通过混合不同来源的S或改变海水中硫酸盐还原成硫的地质条件,从这些来源的混合物中获得S可能会产生接近零的值。 (4)C-0同位素分析从ca得出δ〜(13)C值。从0到-10‰,并且从δ到(δ)(18)O值的范围更大。 +6至+ 24‰,这暗示着成矿流体演化过程中地幔源岩浆和海相碳酸盐源之间的混合,尽管也应考虑有机碳和盆地盐水源的潜在贡献。这些数据表明,成矿流体是来自生物体,盆地盐水和地幔衍生的岩浆源的混合物,因此,白洋坪多金属矿床的东矿带应归类为“兰坪型”。矿床。

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