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首页> 外文期刊>Mineralium Deposita >Tantalite-(Mn) from the Borborema Pegmatite Province, northeastern Brazil: conditions of formation and melt- and fluid-inclusion constraints on experimental studies
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Tantalite-(Mn) from the Borborema Pegmatite Province, northeastern Brazil: conditions of formation and melt- and fluid-inclusion constraints on experimental studies

机译:来自巴西东北部Borborema伟晶岩省的钽铁矿(Mn):实验研究的形成条件以及熔体和流体包裹体的约束

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摘要

Carbon dioxide-rich fluid and carbonate-rich aluminosilicate melt inclusions in tantalite-(Mn) from the Alto do Giz pegmatite in the Borborema Pegmatite Province, northeastern Brazil were investigated to constrain the formation of the host crystals. The results demonstrate that in the Alto do Giz pegmatite, water- and alkaline carbonate-rich fluids and melts are responsible for the transport and deposition of tantalite-(Mn) at temperatures around 600°C and about 4 kbar. Moreover, evidence is presented to show that during crystallization of the tantalite-(Mn), three different components coexisted, which are now trapped as separate inclusions: two immiscible silicate melts (types A and B melt inclusions) and a CO2-rich aqueous fluid. We hypothesize that immiscible fluid separation may have been a critical factor in producing the water- and alkaline carbonate-rich fluids and melts necessary for Ta and Nb transport. Since the tantalite-(Mn) crystallized during pegmatite formation, this mechanism must also have implications for pegmatite genesis in general.
机译:研究了巴西东北部Borborema伟晶岩省的Alto do Giz伟晶岩中钽铁矿(Mn)中富含二氧化碳的流体和富含碳酸盐的铝硅酸盐熔体包裹体,以限制基质晶体的形成。结果表明,在Alto do Giz伟晶岩中,富含水和碱金属碳酸盐的流体和熔体负责钽铁矿(Mn)在600°C和约4 kbar的温度下的传输和沉积。此外,有证据表明,在钽铁矿(Mn)的结晶过程中,共存在三种不同的成分,它们被捕获为单独的夹杂物:两种不混溶的硅酸盐熔体(A和B型熔体夹杂物)和CO2 丰富的水性液体。我们假设,不混溶的流体分离可能是生产富含水和碱的碳酸盐流体以及Ta和Nb传输所必需的熔体的关键因素。由于钽铁矿-(Mn)在伟晶岩形成过程中发生结晶,因此这种机理通常也对伟晶岩的成因具有影响。

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