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首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Columbitization of fluorcalciopyrochlore by hydrothermalism at the Saint-Honoré alkaline complex, Québec (Canada): New insights on halite in carbonatites
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Columbitization of fluorcalciopyrochlore by hydrothermalism at the Saint-Honoré alkaline complex, Québec (Canada): New insights on halite in carbonatites

机译:Saint-Honoré碱性综合体的水热学荧光碱综合症,Québec(加拿大):Carbonatites中宿舍的新见解

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Graphical abstractDisplay OmittedHighlights?Fluorcalciopyrochlore is altered into columbite-(Fe) by columbitization.?Vacancies in A-site of fluorcalciopyrochlore suggest alteration is hydrothermal.?There is a chemical enrichment in columbite-(Fe), such as HREEs and Cl.?Halite is demonstrated as being from a magmatohydrothermal origin.?Na released from columbitization is expected to contribute to fenitization.AbstractNiobium (Nb) in carbonatite is mainly hosted in fluorcalciopyrochlore and columbite-(Fe). Information related to Nb petrogenesis is useful for understanding the processes related to Nb mineralization and carbonatite evolution. The Saint-Honoré, Quebec, alkaline complex offers a rare opportunity for studying these processes as the complex is not affected by post-emplacement deformation, metamorphism nor weathering. Columbite-(Fe) is shown to be an alteration product of fluorcalciopyrochlore (columbitization). Columbitization is characterized by the leaching of Na and F from the A- and Y-sites of the pyrochlore crystal structure. As alteration increases, Fe and Mn are slowly introduced while Ca is simultaneously leached. Leached Ca and F then crystallize as inclusions of calcite and fluorite within the columbite-(Fe). A-site cations and vacancies in the crystal structure of fresh and altered pyrochlores demonstrate that pyrochlore alteration is hydrothermal in origin. Moreover, halite is a ubiquitous mineral in the Saint-Honoré alkaline complex. Petrographic evidence shows that halite forms in weakly altered pyrochlores, suggesting halite has a secondary origin. As alteration increases, halite is expelled by the hydrothermal fluid and is carried farther into the complex, filling factures throughout the carbonatite. The hydrothermal hypothesis is strengthened by significant enrichments in Cl and HREEs in columbite-(Fe). Chlorine is most likely introduced by a hydrothermal fluid that increases the solubility of REEs.]]>
机译:<![cdata [ 图形摘要 显示省略 突出显示 < CE:简单段ID =“SP0010”View =“全部”> 荧光碱素曲线通过小组改变为Columbite-(Fe)。 在哥伦比特(Fe)中有化学富集,例如Hrees和Cl. < CE:标签>? Harite被证明为来自MagmatoHydrohothothothothotmal的原点。 从小组释放的na释放,有助于义目。 抽象 碳酸盐铌(NB)主要载于氟氯吡罗科尔和哥伦比特 - (Fe)。与Nb Petrogenesis相关的信息可用于理解与Nb矿化和碳酸石进化有关的过程。 Saint-Honoré,魁北克州碱性综合体提供了难得的学习这些过程的机会,因为复杂不受施加后变形,变质性也不容易的影响。 Columbite-(Fe)被证明是氟碱(圆柱化)的改变产物。小师的特征在于斑林晶体结构的A和Y位点的Na和F的浸出。随着改变的增加,在CA同时浸出时,慢慢引入Fe和Mn。浸出的Ca和F然后在核素(Fe)内作为方解石和萤石的夹杂物结晶。新鲜和改变的烧火晶体结构的现场阳离子和空位表明,烧纤维的变化是源性的。此外,宿舍是Saint-Honoré碱性络合物中普遍存在的矿物质。岩体证据表明,霉菌改变的盐酸盐形成,表明宿舍具有二次起源。随着改变的增加,宿骨被水热流体排出,并且在整个碳酸盐岩中的复合物填充物填充的含量进展。水热假设通过Cl和Hrees在Columbite-(Fe)中的显着富集来加强。氯最有可能被加氢流体引入,水热流体增加了REES的溶解度。 ]]>

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