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QU Hongying PEI Rongfu FEI Hongcai LI Jinwen WANG Yonglei WANG Haolin YAO Lei 《《地质学报》英文版》2012,86(3):700-718
The Fenghuangshan skarn-type Cu deposit, Tongling Ore Cluster, Anhui Province, is an important component in the Middle–Lower Yangtze River ore-forming belt. To better understand magmatism and its relationship to mineralization, we investigated geochemical features, ore-forming fluids, and geochronology of the Xinwuli intrusion and the related Fenghuangshan Cu deposit. Lithogeochemical characteristics show that the Xinwuli quartz monzodiorite is formed by mixing magma derived from upper mantle alkaline basalt that has been contaminated by crust materials. C, H and O isotopes indicate that ore-forming fluids mainly come from the magma, with minor amounts of meteoric fluids involved at the late stage. S and Pb isotopic components indicate that ore-forming materials are derived from the mantle. Molybdenite Re–Os isotopic dating yields Re–Os model ages ranging from 139.1±2.4 Ma to 142.0±2.2 Ma, with an isochronal age of 141.1±1.4 Ma, which is consistent with sensitive, high-resolution ion microprobe (SHRIMP) zircon U–Pb ages of quartz monzodiorite and granodiorite in the mining area. Dating analysis yields ages from 136.0±2.0 Ma to 143.0±2.4 Ma for the quartz monzodiorite (a weighted average of 139.4±1.2 Ma) and ages from 136.7±2.0 Ma to 145.3±2.4 Ma for granodiorite (a weighted average of 141.0±1.1 Ma). 相似文献
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This paper discusses the strategy for successfully predicting the location of potential hidden ore bodies in aged ore field,and presents the result of location prediction of hidden ore bodies in Fenghuangshan ore field,Tongling.Innovative conceptual targeting procedures based on a genetic understanding of mineralization systems,carefully geological investigation and correct deduction,together with new geochemical and geophysical technology and integrating of comprehensive information are all very important for the successful prediction.In the aged Fenghuangshan ore field,through researching by application of the metallogenic theory of polygenetic compound ore deposits and triple-frequency induced polarization method and exploration tectono-geochemical method,we predicted location and quality of hidden ore bodies.According to the prediction,hidden high quality Cu-Au ore bodies of skarn type and porphyry type have been discovered. 相似文献
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北大巴山凤凰山基底隆起晚中生代构造隆升历史 总被引:8,自引:0,他引:8
对采自于北大巴山凤凰山基底隆起8个样品的磷灰石裂变径迹年代学分析和热历史模拟表明,凤凰山基底隆起陆内造山运动结束后的隆升历史大致可以划分为2个阶段:早白垩世中晚期(135±5~95±5 Ma)缓慢隆升,晚白垩世(95±5~65±5 Ma)快速隆升。大巴山北缘韧性剪切带黑云母40Ar/39Ar坪年龄证实大巴山北缘中晚侏罗世(165.7±1.9 Ma~161.2 Ma)存在快速隆升剥蚀,其与大巴山强烈陆内造山作用阶段有关; 早白垩世中晚期缓慢隆升代表了陆内造山结束后的稳定阶段; 晚白垩世快速隆升为一次区域性隆升事件,在秦岭、大别和武当等地区均有反映,隆升过程中伴随着强烈的伸展垮塌作用,沿秦岭造山带发育一系列伸展断陷盆地。区域对比分析表明,凤凰山基底隆起隆升历史与黄陵、汉南地块接近,但与武当地块存在明显区别,反映了秦岭造山带的不均一隆升过程。南大巴山前陆带1个样品的热史模拟结果显示,南大巴山前陆带自早白垩世以来与凤凰山基底隆起经历了一致的隆升过程。 相似文献
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安徽铜陵凤凰山夕卡岩型铜矿床中辉钼矿Re-Os同位素年龄及其地质意义 总被引:5,自引:2,他引:3
铜陵矿集区是我国长江中下游Cu-Au-Fe-Mo成矿带中最重要的有色金属基地之一,凤凰山矿床是铜陵矿集区的重要组成部分,为一个典型的夕卡岩型铜矿床。本文利用Re-Os同位素定年方法对凤凰山铜矿床进行了成矿时代测定,获得了辉钼矿的Re-Os同位素模式年龄范围为139.1±2.4~142.0±2.2Ma,等时线年龄为141.1±1.4Ma,与矿区内石英二长闪长岩和花岗闪长岩SHRIMP锆石U-Pb年龄(144.2±2.3Ma)相吻合,也与铜陵地区其他矿田的成矿时代基本一致,可能为岩石圈减薄事件的成矿响应。 相似文献
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对采自于北大巴山凤凰山基底隆起8个样品的磷灰石裂变径迹年代学分析和热历史模拟表明,凤凰山基底隆起陆内造山运动结束后的隆升历史大致可以划分为2个阶段:早白垩世中晚期(135±5~95±5 Ma)缓慢隆升,晚白垩世(95±5~65±5 Ma)快速隆升。大巴山北缘韧性剪切带黑云母40Ar/39Ar坪年龄证实大巴山北缘中晚侏罗世(165.7±1.9 Ma~161.2 Ma)存在快速隆升剥蚀,其与大巴山强烈陆内造山作用阶段有关; 早白垩世中晚期缓慢隆升代表了陆内造山结束后的稳定阶段; 晚白垩世快速隆升为一次区域性隆升事件,在秦岭、大别和武当等地区均有反映,隆升过程中伴随着强烈的伸展垮塌作用,沿秦岭造山带发育一系列伸展断陷盆地。区域对比分析表明,凤凰山基底隆起隆升历史与黄陵、汉南地块接近,但与武当地块存在明显区别,反映了秦岭造山带的不均一隆升过程。南大巴山前陆带1个样品的热史模拟结果显示,南大巴山前陆带自早白垩世以来与凤凰山基底隆起经历了一致的隆升过程。 相似文献
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安徽铜陵凤凰山石英二长闪长岩和花岗闪长岩锆石SHRIMP U-Pb年龄及其地质意义 总被引:2,自引:0,他引:2
为建立矿区内岩浆演化序列、探讨成岩成矿关系,选取凤凰山石英二长闪长岩和花岗闪长岩进行锆石SHRIMP U-Pb精确定年。石英二长闪长岩样品测年获得年龄数据为(136.0±2.0)~(143.0±2.4)Ma,加权平均值为(139.4±1.2)Ma(n=15,MSWD=0.76);花岗闪长岩样品测年获得年龄数据为(136.7±2.0)~(145.3±2.4)Ma,加权平均值为(141.0±1.1)Ma(n=17,MSWD=1.5)。岩体侵位年代为晚侏罗世、燕山晚期,与铜陵矿集区主要成矿岩体的形成时代一致。辉钼矿Re-Os等时线年龄与花岗闪长岩侵位年龄一致,老于石英二长闪长岩侵位年龄,说明花岗闪长岩为凤凰山矽卡岩型铜矿床的主成矿岩体,成岩成矿关系密切,它们为同期产物。同位素组成表明,幔源岩浆分异的深部流体参与了成矿作用。岩体侵位、岩石圈整体加厚产生的伸展作用和软流圈地幔、上覆地壳减压熔融产生玄武岩浆底侵作用有关。 相似文献
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To study the geochemical anomaly structure of multi-element associations in the South Mining District of the Fenghuangshan Copper Mine,samples were collected and analyzed for their trace element contents.Multi-element anomaly associations were divided according to the correlations between Cu and each of the other elements,and the distribution characteristics of multi-element anomaly associations were also described.Among them,the anomaly distribution of metallogenic element Cu indicates the environment of mineralization.This study provided the basis for research on the metallogenic prediction and geochemistry of the Fenghuangshan Copper Mine. 相似文献