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TECTONOMAGMATIC ACTIVATION AND THE PREDICTION OF SAXI-CHANG PUSHANG PORPHYRE COPPER DEPOSIT, CENTRAL ANHUI PROVINCE,EAST CHINA
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《Geotectonica et Metallogenia》 1994年第Z2期83-84,共2页
关键词 EAST CENTRAL ANHUI PROVINCE EAST CHINA TECTONOMAGMATIC ACTIVATION AND THE PREDICTION OF SAXI-CHANG PUSHANG porphyre COPPER DEPOSIT
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Geochemistry of the Eocene Felsic Porphyric Rocks and High-Mg Potassic Rocks along JARSZ:Implication for the Tectonic Evolution in Eastern Tibet 被引量:3
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作者 CHEN Jianlin XU Jifeng +1 位作者 WANG Baodi KANG Zhiqiang 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2010年第6期1448-1460,共13页
Eocene felsic porphyric rocks and the high-Mg potassic volcanic rocks(HMPR) occur along the Jinshajiang-Ailao Shan-Red River shear zone(JARSZ) in eastern Tibet.Compared with the HMPR,which are generally believed t... Eocene felsic porphyric rocks and the high-Mg potassic volcanic rocks(HMPR) occur along the Jinshajiang-Ailao Shan-Red River shear zone(JARSZ) in eastern Tibet.Compared with the HMPR,which are generally believed to be sourced from an enriched mantle,the felsic porphyric rocks show similar K_2O contents,enrichment in LREE and LILE,particularly radiogenic isotope(e.g.Sr and Nd) features much similar to the former,implying generation of the felsic porphyric rocks most likely related to the HMPR,although they both have clearly different major and trace element compositions. The close relationship in spatial-temporal distribution and similar Sr-Nd characteristics between the felsic porphyric rocks and HMPR in eastern Tibet indicate that both of them were possibly formed by a similar tectonic process(event).Combining the basic dikes in southern and eastern Tibet,we suggest that the break-off of north-dipping Neo-Tethyan slab in southern Tibet during 50-40 Ma,triggered formation of high-Mg potassic magma.This led to developing felsic porphyric magma production by partial melting of underplating HMPR in the lower crust,or fractionation crystallization of the high-Mg potassic magmas.The break-off of slab in the Eocene may also have contributed to the abundant ore-forming material related to earlier subduction events,resulting in formation of the porphyric deposits along JARSZ in eastern Tibet. 展开更多
关键词 EOCENE felsic porphyric rocks HMPR break-off eastern Tibet
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Zijinshan-Bitian Cu-Au-Mo orefield, SW Fujian——An example of gold-rich PCS zoning
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作者 QI Jianzhong~1, LI Zhaonai~2, ZHANG Dequan~3, FANG Xiheng~4 and XIAO Huiliang~1 1. Nanjing Institute of Geology and Mineral Resources, Chinese Academy of Geological Sciences, Nanjing 210016, China 2. Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037, China +1 位作者 3. Institute of Mineral Deposits, Chinese Academy of Geological Sciences, Beijing 100037, China 4. Institute of Geology, Ministry of Nuclear Industry, Beijing 100013, China 《Chinese Science Bulletin》 SCIE EI CAS 1999年第S2期134-135,共2页
THE Zijinshan-Bitian Cu-Au-Mo orefield is spread to north of the Shanghang County, SW Fujian.In geological structure it is located at the plunging end of NE-trending Xuanhe anticlinorium, in the NE rim ofthe NW trendi... THE Zijinshan-Bitian Cu-Au-Mo orefield is spread to north of the Shanghang County, SW Fujian.In geological structure it is located at the plunging end of NE-trending Xuanhe anticlinorium, in the NE rim ofthe NW trending Shanghang volcano-sedimentary basin. Orefield basement is composed of the Archean-Middle Proterozoic low-grade metamorphic rock formations, containing marine basic metavolcanic sequenses. Lower Cretaceous subaerial volcanic rocks of andesite-trachy andesite-rhyolite composition fill inthe volcano-sedimentary basin. Pre-mineralization granitic batholith dated 145Ma(Rb-Sr)and 157Ma(U-Pb) occupies the axial part of the plunging anticlinorium, which was regarded as crust-remelting typegranitoids. Mineralization-affiliated subvolcanic dacite porphyrite, co-volcanic granodiorite and quartzdiorite porphyrite (102.2 Ma(Rb-Sr), Sr<sub>1</sub> = 0.708 9) belong to syntactic type in genesis and 展开更多
关键词 gold-rich porphyre copper system ZONING Fujian Zijinshan.
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