首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Pyrite Re-Os isotope systematics at the Zijinshan deposit of SW Fujian, China: Constraints on the timing and source of Cu-Au mineralization
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Pyrite Re-Os isotope systematics at the Zijinshan deposit of SW Fujian, China: Constraints on the timing and source of Cu-Au mineralization

机译:福建西南紫金山矿床的黄铁矿Re-Os同位素系统:铜金成矿时间和来源的制约

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Zijinsh an is the largest high-sulfidation epithermal Cu-Au deposit on mainland China. The primary mineralization at the deposit is characterized by pyrite, digenite and covellite. Although some Rb-Sr isochron ages of the fluid inclusions in quartz and the apparent K-Ar age of the Cu-bearing alunite alteration zone have been previously interpreted as the ore-forming age, the Rb-Sr and K-Ar dating systems are usually readily reset due to their closure temperature, and thus document the latest thermal event. In order to precisely determine the age of the Cu mineralization, eight-pyrite separates were Re-Os dated, and seven yielded an isochron age of 103 +/- 4 Ma with an initial Os-187/Os-188 ratio of 0.45 +/- 0.14. This date is interpreted as the age of Cu mineralization, which is in agreement with geochronological data from molybdenite and the porphyritic granodiorite that hosts Cu-Mo mineralization at Luoboling (located 2 km NE of Zijinshan), suggesting that these two deposits were formed during the same metallogenic event. The relatively low initial Os-187/Os-188 ratio indicates that the source of the Cu at Zijinshan is predominantly the crust with input from the mantle. (C) 2016 Elsevier B.V. All rights reserved.
机译:紫金矿床是中国大陆最大的高硫化超热铜金矿床。矿床的主要矿化特征是黄铁矿,地闪石和陨石。尽管先前已将石英中流体包裹体的某些Rb-Sr等时年龄和含铜亚铝酸盐蚀变带的表观K-Ar年龄解释为成矿年龄,但Rb-Sr和K-Ar测年系统是通常由于其关闭温度而容易复位,因此记录了最新的热事件。为了精确确定铜矿化的年龄,对八种黄铁矿进行了Re-Os测年,其中七种的等时年龄为103 +/- 4 Ma,初始Os-187 / Os-188比为0.45 + /。 -0.14。该日期被解释为铜矿化的年龄,这与罗布坪(位于紫金山东北2 km)的辉钼矿和斑铜质花岗闪长岩的地质年代学资料相符,而罗布坪是铜钼矿化的标志。相同的成矿事件。相对较低的初始Os-187 / Os-188比值表明,紫金山铜的来源主要是地幔,而来自地幔的输入。 (C)2016 Elsevier B.V.保留所有权利。

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