首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >CONTRASTING FLUID TYPES AT THE NEVORIA GOLD DEPOSIT' IN THE SOUTHERN GROSS GREENSTONE BELT WESTERN AUSTRALIA: IMPLICATIONS OF AURIFEROUS FLUIDS DEPOSITING ORES WITHIN AN ARCHEAN BANDED IRON-FORMATION
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CONTRASTING FLUID TYPES AT THE NEVORIA GOLD DEPOSIT' IN THE SOUTHERN GROSS GREENSTONE BELT WESTERN AUSTRALIA: IMPLICATIONS OF AURIFEROUS FLUIDS DEPOSITING ORES WITHIN AN ARCHEAN BANDED IRON-FORMATION

机译:西澳大利亚西南格林斯通带新岩金矿床中流体类型的对比:含铀成矿带状成矿作用的含金液体的含义

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Two main hydrothermal mineral assemblages have been identified in the banded iron-formation-hosted gold mine at Nevoria. The earlier quartz +- garnet +- clinopyroxene +- calcite vein group formed pre- or synmetamorphic, and the later quartz +- pyrrhotite +- pyrite vein group appears to be postmetamorphic and related to gold mineralization. Fluid inclusion characteristics are obviously different in those two vein groups. Microthermometric analysis indicates that the fluids with metamorphic alteration are aqueous, CO_2-rich or CO_2-absent solutions; no or very small amounts of CH_4 were involved in this fluid. Mineralizing fluids were a CH_4-CO_2-H_2O solution. The initial auriferous fluids were CH_4 dominant. Heterogeneous trapping, interaction of the hydrothermal fluid with graphite-bearing rocks, or fluid mixing may cause large variations of CH_4/CO_2 ratios or a X_(CH_4) of CH_4-CO_2-H_2O inclusions, particularly in mineralized quartz-pyrrhotite veins. Phase mixing or separating, resulting in an increase in pH and f_(O_2) together with loss of reduced sulfur by mineral-fluid reactions and precipitation of sulfides, led to the breakdown of the gold-transporting complexes.
机译:在Nevoria的有带状铁形成的金矿中,发现了两个主要的热液矿物组合。较早的石英+-石榴石+-斜py石+-方解石脉团形成前或同变质,而较晚的石英+-磁黄铁矿+-黄铁矿脉团似乎是后变质的,并且与金矿化有关。在这两个静脉组中,流体包裹体特征明显不同。显微热分析表明,具有变质作用的流体是水溶液,富CO_2或无CO_2溶液。这种流体中没有或很少有CH_4参与。矿化液为CH_4-CO_2-H_2O溶液。最初的含铁液体以CH_4为主。异质捕集,热液与含石墨岩石的相互作用或流体混合可能会导致CH_4 / CO_2比率或CH_4-CO_2-H_2O夹杂物的X_(CH_4)的较大变化,特别是在矿化的石英-硫铁矿脉中。相混合或分离会导致pH值和f_(O_2)的增加,以及由于矿物流体反应和硫化物的沉淀而损失的还原硫减少,从而导致金配合物的分解。

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