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首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >Age of Mineralization of the Candelaria Fe Oxide Cu-Au Deposit and the Origin of the Chilean Iron Belt, Based on Re-Os Isotopes
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Age of Mineralization of the Candelaria Fe Oxide Cu-Au Deposit and the Origin of the Chilean Iron Belt, Based on Re-Os Isotopes

机译:基于Re-Os同位素的坎德拉里亚氧化铁铜金矿床成矿时代和智利铁带成因

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Re-Os isotopes are used to determine the age of iron oxide Cu-Au mineralization at Candelaria, Chile, and to explore possible genetic links with the batholithic intrusions in the area. Re-Os ages calculated from molybdenite are 114.2 +- 0.6 Ma and 115.2 +-0.6 Ma, and they are interpreted to represent the age of mineralization. These ages are consistent with previously reported ages for biotite alteration that range from 114 to 116 Ma.An isochron calculated by Re/Os ratios from hydrothermal magnetite and sulfides constrains an initial ~(187)Os/~(188)Os ratio of 0.36+- 0.10. The initial ~(187)Os/~(188)Os ratio for sulfide from Bronce mine, a small satellite of the Candelaria orebody, is 0.33+-0.01. These values are broadly similar to the calculated initial ~(187)Os/~(188)Os ratio for magmatic magnetite in nearby batholithic rocks that range from 0.20 to 0.41. The relatively radiogenic initial ~(187)Os/~(188)Os ratio represents a mixture of mantle and crustal components in the ores and batholitic rocks. The similarity in initial ~(187)Os/~(188)Os ratio of the ore and magmatic oxides suggest that the granitic plutons could be the source of metals in the Candelaria district. These data are consistent with the existence of a significant magmatic fluid component in the hydrothermal system as suggested by previously published work.In order to establish a regional perspective, we analyzed ore minerals from other Chilean deposits of the iron oxide (Cu-U-Au-rare earth elements [REE]) class. Magnetite from the Manto Verde iron oxide Cu-Au deposit has Os and Re concentrations of 11 to 17 parts per trillion (ppt) and 4 to 6 parts per billion (ppb), respectively. The initial ~(187)Os/~(188)Os ratio is approximately 0.20 and is similar to that of ore minerals from Candelaria and of the Early Cretaceous batholithic intrusions. These data indicate a similar metal source for the mineralization at Manto Verde and Candelaria.Magnetite from three magnetite-apatite deposits of the Chilean iron belt have Re concentrations between 0.8 and 3 ppb and Os concentrations between 11 and 76 ppt. Calculated initial ~(187)Os/~(188)Os ratios of these magnetites range from 1.2 to 8.4 and are distinctly different from those of the iron oxide Cu-Au deposits. The cause of the comparatively high radiogenic signatures in the magnetite-apatite ores is probably related to fluid interactions with (i.e., leaching) the surrounding sedimentary rocks during their genesis. In contrast to the iron oxide Cu-Au systems, the Os in magnetite-apatite ores could be derived from sedimentary rocks. This evidence suggests that predominantly basin-derived, nonmagmatic brines formed these magnetite-apatite deposits.
机译:Re-Os同位素用于确定智利坎德拉里亚的氧化铁Cu-Au矿化年龄,并探索与该地区岩性侵入岩的可能遗传联系。由辉钼矿计算的Re-Os年龄为114.2±0.6Ma和115.2±0.6Ma,它们被解释为代表矿化年龄。这些年龄与先前报道的黑云母蚀变年龄从114到116 Ma一致。通过热液磁铁矿和硫化物的Re / Os比计算的等时线将初始〜(187)Os /〜(188)Os比限制为0.36+ -0.10。坎德拉里亚矿体小卫星Bronce矿的硫化物的初始〜(187)Os /〜(188)Os比为0.33 + -0.01。这些值大致类似于计算出的附近岩质岩中岩浆磁铁矿的初始〜(187)Os /〜(188)Os比,范围为0.20至0.41。相对放射性的初始〜(187)Os /〜(188)Os比代表了矿石和岩质岩中地幔和地壳成分的混合物。矿石和岩浆氧化物的初始〜(187)Os /〜(188)Os比值相似,表明花岗岩类云母可能是坎德拉里亚地区的金属来源。这些数据与以前发表的工作表明在热液系统中存在着重要的岩浆流体成分是一致的。为了建立区域性的观点,我们分析了智利其他氧化铁矿床(Cu-U-Au)中的矿石矿物-稀土元素[REE])类。来自Manto Verde氧化铁Cu-Au矿床的磁铁矿的Os和Re浓度分别为11万亿分之一(ppt)至17万亿分之一(ppt)和4万亿分之六至十亿分之一(ppb)。初始〜(187)Os /〜(188)Os的比率约为0.20,与坎德拉里亚和白垩纪早期岩性侵入岩的矿石矿物相似。这些数据表明在Manto Verde和Candelaria有类似的金属成矿来源。智利铁矿带的三个磁铁矿-磷灰石矿床中的磁铁矿的Re浓度在0.8到3 ppb之间,Os的浓度在11到76 ppt之间。这些磁铁矿的初始〜(187)Os /〜(188)Os比率的计算范围为1.2至8.4,与氧化铁Cu-Au矿床的比率明显不同。磁铁矿-磷灰石矿石中较高的放射源特征的原因可能与在其形成过程中与周围沉积岩的流体相互作用(即浸出)有关。与氧化铁Cu-Au体系相反,磁铁矿-磷灰石矿石中的Os可能来自沉积岩。该证据表明,主要由盆地产生的非岩浆盐水形成了这些磁铁矿-磷灰石矿床。

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