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The Ore Genesis of Kalatongke Cu-Ni Sulfide Deposits,West China:Constrains from Volatile,Petrogeochemical and C-Sr-Nd Isotopic Compositions

机译:Kalakongke Cu-Ni硫化物沉积物的矿石创群:挥发性,岩石化学和C-SR-ND同位素组合物的约束

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The ore genesis of Kalatongke Cu-Ni sulfide deposits in the Central Asian Orogenic Belt (CAOB) has been investigated based on volatiles and petrogeochemical compositions as well as C-Sr-Nd isotopic compositions.Kalatongke intrusions show similar geochemical characters to coeval Santanghu basalts,implied their genetic relation.Primary magma was produced by 7-8% partial melting of depleted mantle peridotite,ore-forming parental magma experienced ~15% of olivine crystallization and crustal contamination.The dominant H2O (av.~92 mol%) with high contents of H2,CO2,H2S and SO2 in volatiles of ore-forming magma suggested a high fO2 condition associated with subduction.Supercritical state of CO2 may play a key role for the enrichment of Cu and Ni elements under mantle high temperature and pressure.Olivine fractional crystallization at depth,selective assimilation of crustal sulfur and high CO2 oxidized volatile media may trigger sulfur saturation and sulfide segregation in the parental magma of the Kalatongke intrusions.PGE depletion in the sulfide ores is most likely due to sulfide retention in the source mantle because of a relatively low degree of partial melting.
机译:喀拉通克铜镍硫化物矿床中亚造山带(CAOB)矿床成因一直是以挥发物和岩石地球化学成分,以及C-的Sr-Nd同位素compositions.Kalatongke入侵调查显示出类似的地球化学特征,以同时代三塘湖玄武岩,隐含其遗传relation.Primary岩浆用7-8%部分熔融亏损地幔橄榄岩,矿石形成母岩浆经历橄榄石结晶和地壳contamination.The主导H2O的高〜15%(平均。〜92摩尔%)矿石形成的岩浆挥发H2,CO2,H2S和SO2的含量建议与CO 2的subduction.Supercritical状态相关联的可以玩Cu和Ni元素的地幔高温和pressure.Olivine下富集关键作用的一个高FO2条件分级结晶在深度,氧化性介质可以触发硫饱和和硫化物偏析在母岩浆Ò地壳硫和高CO 2的选择性同化f在硫化物矿石的喀拉intrusions.PGE耗尽是最可能是由于因为相对低程度的部分熔融的在源地幔硫化物保留。

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