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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Metasomatic silicate chemistry at the Bayan Obo Fe-REE-Nb deposit,Inner Mongolia,China: Contrasting chemistry and evolution of fenitising and mineralising fluids
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Metasomatic silicate chemistry at the Bayan Obo Fe-REE-Nb deposit,Inner Mongolia,China: Contrasting chemistry and evolution of fenitising and mineralising fluids

机译:中国内蒙古巴彦鄂博Fe-REE-Nb矿床的交代硅酸盐化学:对比化学和of化矿化液的演化

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Fenite aureoles around carbonatite dykes,and alteration associated with Fe-REE-Nb ore bodies at Bayan Obo,Inner Mongolia,China,show alkali silicate assemblages containing aegirine-augite,(magnesio-)riebeckite,(magnesio-)arfvedsonite,and phlogopite,accompanied by varying amounts of apatite,albite and quartz.In both fenites and orebodies simple thermodynamic constraints indicate mineral parageneses are consistent with rock buffered cooling accompanied by the infiltration of a range of externally buffered hydrothermal fluids.Statistical analysis of amphibole chemistry indicates that even in apparently texturally well constrained paragenetic stages wide variations in chemistry occur in both the ore bodies and fenites.Much of this variation is attributable to the Mg and F content of amphibole,and is therefore interpreted as a result of variation in externally controlled variables (P,T,initial fluid composition) rather than internally controlled variables such as protolith composition.Similarities in chemistry exist between fenite and some ore body amphiboles.Thermodynamic analysis of the composition of biotite and apatite allows constraints to be placed on the F-content of hydrothermal fluids,and indicates relatively consistent compositions in fenites and orebodies (log a_(HF)/a_(H_2O)=- 3.8 to -3.6 at 300 deg C and 1 kbar).Amphibole and biotite associated with niobate mineralization are both enriched in fluorine relative to the rest of the paragenesis,and biotite compositions indicate significantly higher HF activities in the hydrothermal fluid (log a_(HF)/a_(H_2O)= -2.6 at 300 deg C and 1 kbar).The data presented here reinforce previous interpretations of the complex,multistage nature of mineralisation at Bayan Obo,but are still consistent with a direct involvement of carbonatite derived fluids during ore genesis.
机译:内蒙古巴彦奥博的碳酸盐岩脉带中的辉状辉绿岩及与铁REE-Nb矿体有关的蚀变,显示出含硅藻土-金铁矿,(镁-)丽贝石,(镁-)钠铁矿和金云母的碱性硅酸盐组合物,在石和矿体中,简单的热力学约束表明矿物副生与岩石缓冲冷却相伴而来,并伴有一系列外部缓冲的热液渗透。对闪石化学的统计分析表明,即使在显然在构造上受约束的共生阶段在矿体和fenite中都发生了广泛的化学变化。这种变化大部分归因于闪石的Mg和F含量,因此可以解释为外部控制变量的变化(P, T,初始流体组成)而不是内部控制变量,例如原生石组成.Simila镍铁矿和某些矿体闪石之间存在化学上的联系。对黑云母和磷灰石组成的热力学分析允许对热液中F的含量施加限制,并表明在铁矿和矿体中的组成相对一致(对数a_(HF) / a_(H_2O)=-3.8至-3.6在300摄氏度和1 kbar时)。与铌酸盐矿化有关的闪石和黑云母相对于其余的同生生物均富含氟,并且黑云母的组成表明,在该生物中的HF活性明显更高热液(在300℃和1 kbar下,log a_(HF)/ a_(H_2O)= -2.6)。此处提供的数据加强了对Bayan Obo矿化复杂,多阶段性质的先前解释,但仍与在成矿过程中直接涉及碳酸盐岩衍生流体。

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