G'/> Base metal mineral segregation and Fe-Mg exchange inducing extreme compositions of olivine and chromite from the Xiadong Alaskan-type complex in the southern part of the Central Asian Orogenic Belt
首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Base metal mineral segregation and Fe-Mg exchange inducing extreme compositions of olivine and chromite from the Xiadong Alaskan-type complex in the southern part of the Central Asian Orogenic Belt
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Base metal mineral segregation and Fe-Mg exchange inducing extreme compositions of olivine and chromite from the Xiadong Alaskan-type complex in the southern part of the Central Asian Orogenic Belt

机译:基础金属矿物隔离和Fe-Mg交换诱导中南部南部南部XIADONG阿拉斯加型复合物的极端组成的橄榄石和铬铁矿

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Graphical abstractDisplay OmittedHighlights?Distinctive compositional features of olivine and chromite in Xiadong complexes.?Base metal mineral segregation inducing Fe and Ni depletions in olivine.?Fe-Mg exchange between olivine and chromite.AbstractThe Xiadong Alaskan-type complex shares much in common with typical Alaskan-type complexes worldwide, while showing some unique features in terms of mineral compositions. Olivine from the Xiadong dunites is characterized by extremely high Fo component of 91.7–96.7 and anomalously negative correlation of Fo with NiO, while chromite is featured by high 100×Fe3+/(Fe3++Cr+Al) (>70), high 100×Fe2+/(Fe2++Mg) (>70), high 100×Cr/(Cr+Al) (>90), low MnO (<0.6wt%) and TiO2contents (<0.5wt%). To investigate these particular features, we conducted petrographic observation and mineral composition analyses for the Xiadong dunite. A number of Fe and/or Ni sulfides and alloys occurring as inclusions in olivine and chromite indicate that base metal mineral segregation took place prior to crystallization of olivine and chromite and probably induced Fe and Ni depletions in olivine. The FeO and MgO variations in profile analyses from chromite to adjacent olivine are compatible with Fe-Mg exchange. The diffusion mechanism of Fe from olivine to chromite and Mg from chromite to olivine may have elevated both Fo of olivine and 100×Fe2+/(Mg+Fe2+) ratio of chromite and furtherenhanced the decoupling of Fo and NiO in olivine. We thus suggest that base metal mineral segregation and Fe-Mg exchange play important roles in the extreme compositions of the Xiadong dunite. The Ni depletion of olivine and degree of Fe-Mg exchange between olivine and chromite may be used as indicators of mineralization in mafic-ultramafic intrusions.]]>
机译:<![cdata [ 图形摘要 显示省略 突出显示 < CE:简单段ID =“SP0010”View =“全部”> 小东复合物中橄榄石和铬铁矿的独特作用特征。 基础金属矿物隔离诱导Fe和Ni耗尽在橄榄石。 橄榄石和铬铁矿之间的FE-MG交换。 抽象 Xiadong Alaskan型复杂股份与全球典型的阿拉斯加型复合体相同,同时显示一些矿物组合物方面的独特特征。来自XIADONG DUNITES的橄榄石的特点是极高的FO组分为91.7-96.7的组成部分,并且通过NIO的异常负相关,而铬铁矿由高100×FE 3 + /(fe 3 + + cr + al)(> 70),高100×Fe 2+ < / ce:sup> /(fe 2 + + mg)(> 70),高100×Cr /(Cr + Al)(> 90),低MnO(<0.6wt%)和tio 2 内容(<0.5wt%)。为了研究这些特定的特征,我们对小东区的岩体观察和矿物成分分析进行了分析。在橄榄石和铬铁矿中夹杂物发生的许多Fe和/或Ni硫化物和合金表明,在橄榄石和铬铁矿结晶之前发生基础金属矿物隔离,并且可能在橄榄石中诱导Fe和Ni耗尽。从铬铁矿到相邻橄榄石的曲线分析的FeO和MgO变化与Fe-Mg交换相容。从橄榄石到铬铁矿的Fe的扩散机制和铬铁矿的Mg可升高Olivine和100×Fe:Sup =“post”> 2 + /(Mg + Fe < CE:Sup =“post”> 2 + )比率和铬铁矿的比例,ob of Olivine中的去耦和Nio。因此,我们建议基础金属矿物隔离和Fe-Mg交换在小东区的极端组成中起重要作用。橄榄石和铬铁矿之间的橄榄石和Fe-Mg交换的Ni耗尽可以用作Mafic-UltramfiC入侵中的矿化指标。 ]]]>

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