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湖南雪峰山地区长界基性-超基性岩体橄榄岩地球化学特征与镍矿化成因
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作者 邹源 石少华 +3 位作者 岑敏 范鹏飞 田磊 杨斌 《桂林理工大学学报》 CAS 北大核心 2022年第2期295-304,共10页
湖南雪峰山地区长界基性-超基性岩体位于江南造山带西段,毗邻桂北宝坛地区,橄榄岩中发育低品位镍矿。岩石化学及地球化学分析结果表明,长界橄榄岩具有低SiO_(2)(36.03%~40.95%)、Al_(2)O_(3)(5.39%~6.54%)、TiO_(2)(0.42%~0.54%)和全碱(... 湖南雪峰山地区长界基性-超基性岩体位于江南造山带西段,毗邻桂北宝坛地区,橄榄岩中发育低品位镍矿。岩石化学及地球化学分析结果表明,长界橄榄岩具有低SiO_(2)(36.03%~40.95%)、Al_(2)O_(3)(5.39%~6.54%)、TiO_(2)(0.42%~0.54%)和全碱(Na_(2)O+K_(2)O,0.11%~0.36%),而高MgO(25.0%~27.5%)特征;稀土特征总体显示为稀土元素总量低(ΣREE平均为24.3×10^(-6)),轻稀土元素相对富集(LREE/HREE均值为3.61);微量元素Ba、Nb、P负异常,Rb及放射性元素Th、U正异常。结合区域构造演化和橄榄岩形成时代,推断研究区在新元古代处于造山后伸展环境,起源于受俯冲流体交代的岩浆沿构造薄弱部位上侵上涌,当侵入到现存岩浆房时,遭受了不同程度的地壳物质的同化混染作用,地壳物质加入使S达到饱和,从而发生硫化物就地熔离形成浸染状矿化。 展开更多
关键词 橄榄岩 地球化学特征 镍矿成因 造山后伸展环境 长界
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Platinum-group Elements Geochemistry of the Yangliuping Magmatic Ni-Cu-PGE Sulfide Deposit:Implications of Its Genetic Link with the Extrusive Basalts 被引量:4
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作者 ZHENGJianbin CAOZhimin +2 位作者 SONGXieyan ANWei1 LIUJi 《Journal of Ocean University of China》 SCIE CAS 2004年第1期93-98,共6页
Primitive mantle normalized Platinum group elements (PGE) concentration patterns for the Zhengziyanwo intrusion and Dashibao Formation basalts are of positive slope, similar to most of the world class magmatic Ni Cu P... Primitive mantle normalized Platinum group elements (PGE) concentration patterns for the Zhengziyanwo intrusion and Dashibao Formation basalts are of positive slope, similar to most of the world class magmatic Ni Cu PGE sulfide deposits. Characters of this intrusion and its related ores and Dashibao Formation basalts are their negative Pt anomaly and high concentration of Rh relative to Pt and Pd, facts being interpreted to be the results of crystallization and fractionation of Pt alloys and spinel phase free crystallization history for the magma, respectively. PGE parameters of the Dashibao Formation basalts are consistent with the general trend of those found for the Zhengziyanwo intrusion, and this might infer a genetic link between them. 展开更多
关键词 Magmatic Ni-Cu-PGE sulfide deposit PGE concentration pattern Pt-anomaly Yangliuping BASALT
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