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Origin and Evolution of Ore-Forming Fluid and Gold-Deposition Processes at the Sanshandao Gold Deposit, Jiaodong Peninsula, Eastern China

机译:中国东部胶东半岛三山岛金矿床成矿流体及金沉积过程的起源与演化

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The Early Cretaceous Sanshandao gold deposit, the largest deposit in the Sanshandao-Cangshang goldfield, is located in the northwestern part of the Jiaodong peninsula. It is host to Mesozoic granitoids and is controlled by the north by northeast (NNE) to northeast (NE)-trending Sanshandao-Cangshang fault. Two gold mineralizations were identified in the deposit’s disseminated and stockwork veinlets and quartz–sulfide veins, which are typically enveloped by broad alteration selvages. Based on the cross-cutting relationships and mineralogical and textural characteristics, four stages have been identified for both styles of mineralization: Pyrite–quartz (stage 1), quartz–pyrite (stage 2), quartz–pyrite–base metal–sulfide (stage 3), and quartz–carbonate (stage 4), with gold mainly occurring in stages 2 and 3. Three types of fluid inclusion have been distinguished on the basis of fluid-inclusion assemblages in quartz and calcite from the four stages: Pure CO 2 gas (type I), CO 2 –H 2 O inclusions (type II), and aqueous inclusions (type III). Early-stage (stage 1) quartz primary inclusions are only type II inclusions, with trapping at 280–400 °C and salinity at 0.35 wt %–10.4 wt % NaCl equivalent. The main mineralizing stages (stages 2 and 3) typically contain primary fluid-inclusion assemblages of all three types, which show similar phase transition temperatures and are trapped between 210 and 320 °C. The late stage (stage 4) quartz and calcite contain only type III aqueous inclusions with trapping temperatures of 150–230 °C. The δ 34 S values of the hydrothermal sulfides from the main stage range from 7.7‰ to 12.6‰ with an average of 10.15‰. The δ 18 O values of hydrothermal quartz mainly occur between 9.7‰ and 15.1‰ (mainly 10.7‰–12.5‰, average 12.4‰); calculated fluid δ 18 O values are from 0.97‰ to 10.79‰ with a median value of 5.5‰. The δD water values calculated from hydrothermal sericite range from ?67‰ to ?48‰. Considering the fluid-inclusion compositions, δ 18 O and δD compositions of ore-forming fluids, and regional geological events, the most likely ultimate potential fluid and metal would have originated from dehydration and desulfidation of the subducting paleo-Pacific slab and the subsequent devolatilization of the enriched mantle wedge. Fluid immiscibility occurred during the main ore-forming stage due to pressure decrease from the early stage (165–200 MPa) to the main stage (90–175 MPa). Followed by the changing physical and chemical conditions, the metallic elements (including Au) in the fluid could no longer exist in the form of complexes and precipitated from the fluid. Water–rock sulfidation and pressure fluctuations, with associated fluid unmixing and other chemical changes, were the two main mechanisms of gold deposition.
机译:三山岛-苍山金矿区最大的白垩纪三山岛金矿位于胶东半岛的西北部。它是中生代花岗岩的宿主,由北向东北(NNE)至东北(NE)趋势的三山岛-仓上断裂控制。在矿床的散布矿床和细矿脉以及石英-硫化物矿脉中发现了两个金矿,这些矿脉通常被宽广的蚀变边缘包裹着。根据横切关系以及矿物学和质地特征,确定了两种矿化类型的四个阶段:黄铁矿-石英(阶段1),石英-黄铁矿(阶段2),石英-黄铁矿-基体金属-硫化物(阶段) 3)和石英-碳酸盐(第4阶段),金主要发生在第2和第3阶段。根据石英和方解石在四个阶段的流体包裹体组合,已将三种类型的流体包裹体区分开:纯CO 2气体(I型),CO 2 -H 2 O夹杂物(II型)和水相夹杂物(III型)。早期(第1阶段)石英初级夹杂物仅是II型夹杂物,在280–400°C时会被捕集,当盐度为0.35 wt%–10.4 wt%NaCl当量时。主要的矿化阶段(阶段2和3)通常包含所有三种类型的主要流体包裹体组合,它们显示出相似的相变温度,并且被困在210至320°C之间。后期(阶段4)石英和方解石仅包含III型含水夹杂物,捕集温度为150–230°C。主阶段热液硫化物的δ34 S值在7.7‰至12.6‰之间,平均为10.15‰。热液石英的δ18 O值主要在9.7‰和15.1‰之间(主要是10.7‰–12.5‰,平均12.4‰)。计算出的流体δ18 O值为0.97‰至10.79‰,中值为5.5‰。由水热绢云母计算出的δD水值范围为?67‰至?48‰。考虑到流体包裹体成分,成矿流体的δ18 O和δD成分以及区域地质事件,最有可能的最终潜在流体和金属将来自俯冲古太平洋板块的脱水和脱硫以及随后的脱挥发分。丰富的地幔楔。由于从早期阶段(165-200 MPa)到主要阶段(90-175 MPa)的压力降低,在主矿形成阶段发生了流体不混溶。随着物理和化学条件的变化,流体中的金属元素(包括金)将不再以络合物的形式存在并从流体中沉淀出来。水岩硫化和压力波动,以及伴随的流体分解和其他化学变化,是金沉积的两个主要机理。

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