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首页> 外文期刊>Acta Geologica Sinica >Organic Geochemistry of Sedimentary Rock-hosted Disseminated Gold in Southwestern Guizhou Province, China
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Organic Geochemistry of Sedimentary Rock-hosted Disseminated Gold in Southwestern Guizhou Province, China

机译:黔西南地区沉积岩中散布的金的有机地球化学特征

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Sedimentary rock-hosted disseminated gold (SRHDG) deposits in the Youjiang-Nanpanjiang Basin, southwestern Guizhou Province are commonly hosted by the same fold crests that commonly contain a remarkable amount of organic material. The total organic carbon (TOC) contents of the ores and host rocks are usually less than 1 percent. The reflectance of vitrinite and pyrobitumen in the ores and the host rocks ranges from 1.5 percent to 4.5 percent, often in the range of 2 percent to 3 percent. In the Lannigou deposit, the reflectance of vitrinite and pyrobitumen in the ores is usually somewhat higher than those within the host rocks, indicating a hydrothermal impact on the organic matter in the altered host rocks. On the contrary, the estimated maximum paleotemperatures of the Getang and Zimudang deposits are higher than the homogenization temperatures of the fluid inclusions in the ores, signifying that the organic matter maturation predated Au mineralization. No correlation between the organic matter contents and Au concentrations were recognized in the ores. However, the most striking observation is that there is a positive correlation between the S2 (a parameter of Rock-Eval analysis), Au and As contents of the ores in the Lannigou deposit. Organic matter maturation and migration is apparent from the TOC vs. HCI diagram. Furthermore, group analysis of the dichloromethane extractable organic component of the ores and host rocks shows that the maturation degree of the organic matter in the ores is slightly higher than that of the host rocks in the Lannigou gold deposit. However, the compositions of their alkanes, steranes and terpenes, which serve as biomarkers, are quite similar; this suggests that the organic matter found in the ores and host rocks has a common marine source. Organic matter probably contributed to the preconcentration of Au in the host rocks. Hydrocarbons in the system, on the other hand, clearly contributed to the emplacement of the gold mineralization through thermal sulfate reduction. Organic matter in the solution might have increased the potential of the hydrothermal solution to transport Au.
机译:贵州西南部右江—南盘江盆地沉积岩成岩的散布型金(SRHDG)矿床通常由相同的褶皱顶蕴藏,这些褶皱顶通常含有大量的有机物质。矿石和基质岩石中的总有机碳(TOC)含量通常不到1%。矿石和母岩中镜质和焦晶石的反射率在1.5%至4.5%的范围内,通常在2%至3%的范围内。在Lannigou矿床中,矿石中的镜质体和焦土石的反射率通常比基质岩中的反射率高一些,这表明水热对蚀变的基质岩中的有机质产生影响。相反,Getang和Zimudang矿床的估计最高古温度高于矿石中流体包裹体的均化温度,这表明有机物成熟早于Au矿化。在矿石中未发现有机物含量与Au浓度之间的相关性。然而,最引人注目的观察结果是,兰尼沟矿床的矿石S2(岩石-Eval分析的参数),Au和As含量之间存在正相关。从TOC与HCI的关系图中可以明显看出有机物的成熟和迁移。此外,对矿石和基质岩石中可二氯甲烷萃取的有机成分的组分析表明,矿石中有机物的成熟度略高于兰尼沟金矿床中基质的成熟度。但是,用作生物标记的烷烃,甾烷和萜烯的组成非常相似。这表明在矿石和母岩中发现的有机物具有共同的海洋来源。有机物可能有助于金在母岩中的富集。另一方面,系统中的碳氢化合物显然通过热硫酸盐还原而促进了金矿化。溶液中的有机物可能增加了水热溶液运输Au的潜力。

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