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    刘明军, 李厚民, 于仕祥, 许宗宪, 姚良德, 文屹, 赵洪振. 辽宁鞍本地区铁矿床黄铁矿和辉钼矿Re-Os同位素测年及其地质意义[J]. 中国地质, 2014, 41(6): 1821-1832.
    引用本文: 刘明军, 李厚民, 于仕祥, 许宗宪, 姚良德, 文屹, 赵洪振. 辽宁鞍本地区铁矿床黄铁矿和辉钼矿Re-Os同位素测年及其地质意义[J]. 中国地质, 2014, 41(6): 1821-1832.
    LIU Ming-jun, LI Hou-min, YU Shi-xiang, XU Zong-xian, YAO Liang-de, WEN Yi, ZHAO Hong-zhen. Re-Os isotopic dating of pyrite and molybdenite from the iron deposits in Anshan-Benxi area of Liaoning Province and its geological significances[J]. GEOLOGY IN CHINA, 2014, 41(6): 1821-1832.
    Citation: LIU Ming-jun, LI Hou-min, YU Shi-xiang, XU Zong-xian, YAO Liang-de, WEN Yi, ZHAO Hong-zhen. Re-Os isotopic dating of pyrite and molybdenite from the iron deposits in Anshan-Benxi area of Liaoning Province and its geological significances[J]. GEOLOGY IN CHINA, 2014, 41(6): 1821-1832.

    辽宁鞍本地区铁矿床黄铁矿和辉钼矿Re-Os同位素测年及其地质意义

    Re-Os isotopic dating of pyrite and molybdenite from the iron deposits in Anshan-Benxi area of Liaoning Province and its geological significances

    • 摘要: 提要:本文利用Re-Os同位素体系( ICP-MS方法) 对1件辉钼矿和10件黄铁矿样品进行定年。1件辉钼矿的Re-Os模式年龄为(2376±37)Ma,10件黄铁矿获得了3组Re-Os年龄:①(2567±36)Ma~(2540±37)Ma(模式年龄);②(2237±112)Ma(模式年龄);③(1572±140)Ma(等时线年龄)。(2376±37)Ma的辉钼矿形成于古元古代,是目前中国已知最老的辉钼矿年龄之一,其成矿物质来自地壳,(2237±112)Ma的黄铁矿属于热液成因,其成矿物质来自地壳,(2376±37)Ma~(2237±112)Ma的Re-Os年龄代表了一次重要的热液改造事件;(2567±36)Ma~(2540±37)Ma的黄铁矿是原始沉积形成的,是目前中国已知最老的黄铁矿年龄,该年龄代表了2.5Ga形成BIF的地质事件;(1572±140)Ma的黄铁矿形成于中元古代,具有明显的壳源特征,该年龄代表了一次较晚期的热液改造事件。这些年龄为确定鞍本地区铁矿的热液活动时间提供了新的重要证据,对深入认识区域成矿规律和探讨地质构造演化具有重要意义。

       

      Abstract: Abstract: Rhenium and osmium isotopes in a molybdenite sample and ten pyrite samples were used to determine the timing of mineralization by ICP-MS. Re-Os model age of the molybdenite sample is (2376±37)Ma, Re-Os ages of the ten pyrite samples yielded three kinds of ages : ① (2567±36)Ma—(2540±37)Ma (model age); ② (2237±112)Ma (model dating); ③ (1572±140)Ma (isochron age). These data suggest that the molybdenite of(2376±37)Ma was formed during early Proterozoic, and was the oldest Re-Os model age of molybdenite, the pyrite of(2237±112)Ma was formed during early Proterozoic, and both of them indicate that the molybdenite and the pyrite were derived from the crust and represented an important hydrothermal activity in 2.3 Ga; the pyrite of (2567±36)Ma—(2540±37)Ma was formed during new Archaeozoic period and yielded the oldest Re-Os model age, which indicates that the pyrite was formed with BIF in 2.5 Ga; the pyrite of(1572±140)Ma was formed during middle Proterozoic, which indicates that pyrite was derived from the crust and represented a hydrothermal activity. The Re-Os isotopic dating result provides a new proof for the existence of hydrothermal activity in iron deposits of the Anshan-Benxi area, and is also important for understanding the ore-forming processes and tectonic evolution in this area.

       

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