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Isotopic Compositions of Sulfur in the Jinshachang Lead–Zinc Deposit, Yunnan, China, and its Implication on the Formation of Sulfur-Bearing Minerals 被引量:8
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作者 BAI Junhao HUANG Zhilong +2 位作者 ZHU Dan YAN Zaifei ZHOU Jiaxi 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2013年第5期1355-1369,共15页
The Jinshachang lead-zinc deposit is mainly hosted in the Upper Neoproterozoic carbonate rocks of the Dengying Group and located in the Sichuan-Yunnan-Guizhou (SYG) Pb-Zn-Ag multi- metal mineralization area in China... The Jinshachang lead-zinc deposit is mainly hosted in the Upper Neoproterozoic carbonate rocks of the Dengying Group and located in the Sichuan-Yunnan-Guizhou (SYG) Pb-Zn-Ag multi- metal mineralization area in China. Sulfides minerals including sphalerite, galena and pyrite postdate or coprecipitate with gangue mainly consisting of fluorite, quartz, and barite, making this deposit distinct from most lead-zinc deposits in the SYG. This deposit is controlled by tectonic structures, and most mineralization is located along or near faults zones. Emeishan basalts near the ore district might have contributed to the formation of orebodies. The j34S values of sphalerite, galena, pyrite and barite were estimated to be 3.6‰-13.4‰, 3.7‰-9.0‰, -6.4‰ to 29.2‰ and 32.1‰34.7‰, respectively. In view of the similar δ34S values of barite and sulfates being from the Cambrian strata, the sulfur of barite was likely derived from the Cambrian strata. The homogenization temperatures (T ≈ 134--383℃) of fluid inclusions were not suitable for reducing bacteria, therefore, the bacterial sulfate reduction could not have been an efficient path to generate reduced sulfur in this district. Although thermochemical sulfate reduction process had contributed to the production of reduced sulfur, it was not the main mechanism. Considering other aspects, it can be suggested that sulfur of sulfides should have been derived from magmatic activities. The δ34S values of sphalerite were found to be higher than those of coexisting galena. The equilibrium temperatures calculated by using the sulfur isotopic composition of mineral pairs matched well with the homogenization temperature of fluid inclusions, suggesting that the sulfur isotopic composition in ore-forming fluids had reached a partial equilibrium. 展开更多
关键词 sulfur isotopic composition thermochemical sulfate reduction homogenization temperature equilibrium temperature jinshachang lead-zinc deposit
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云南金沙厂铅锌矿床硫同位素地球化学特征 被引量:10
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作者 白俊豪 黄智龙 +3 位作者 朱丹 严再飞 罗泰义 周家喜 《矿物学报》 CAS CSCD 北大核心 2013年第2期256-264,共9页
金沙厂铅锌矿床位于云南省东北部,川-滇-黔铅锌成矿域的西北部,矿体主要赋存于下寒武统和上震旦统的碳酸盐地层中。该矿床的主要矿石矿物是闪锌矿和方铅矿,主要脉石矿物是重晶石、萤石和石英。闪锌矿的δ34S值分布于3.9‰~11.2‰之间,... 金沙厂铅锌矿床位于云南省东北部,川-滇-黔铅锌成矿域的西北部,矿体主要赋存于下寒武统和上震旦统的碳酸盐地层中。该矿床的主要矿石矿物是闪锌矿和方铅矿,主要脉石矿物是重晶石、萤石和石英。闪锌矿的δ34S值分布于3.9‰~11.2‰之间,平均为5.7‰;方铅矿的δ34S值在6.0‰~9.0‰之间,平均为7.1‰;两个重晶石的δ34S值分别为34.8‰和34.5‰。重晶石的δ34S值与下寒武地层硫酸盐的一致,排除其他可能来源,认为重晶石的硫来源于下寒武统地层。硫化物的硫不可能来自细菌硫酸盐还原作用,因为流体包裹体均一温度远高于细菌的存活温度。硫酸盐热化学还原作用产生的同位素分馏至多为20‰,由此可知下寒武统地层中硫酸盐发生热化学还原作用产生的还原硫δ34S值至少应为14‰,这个值远高于该矿床硫化物δ34S值,因此这种机制不是还原硫的唯一来源。矿区周围广泛分布玄武岩,并且与岩浆有关的硫化物δ34S值比较低,所以硫化物中的硫可能来自岩浆活动。在方铅矿和闪锌矿共生的样品中,闪锌矿的δ34S值大于方铅矿的δ34S值,说明成矿流体的硫同位素局部达到平衡。利用矿物对硫同位素组成计算的硫化物平衡温度与流体包裹体均一温度一致。 展开更多
关键词 金沙厂铅锌矿床 硫同位素 硫酸盐热化学还原作用 平衡温度
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