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Mineralogy and Trace Element Chemistry of Ferberite/Reinite from Tungsten Deposits in Central Rwanda

机译:卢旺达中部钨矿床中钙铁矿/莱尼铁矿的矿物学和微量元素化学

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Tungsten mineralization in hydrothermal quartz veins from the Nyakabingo, Gifurwe and Bugarama deposits in central Rwanda occurs as the iron-rich endmember of the wolframite solid solution series (ferberite) and in the particular form of reinite, which represents a pseudomorph of ferberite after scheelite. Primary ferberite, reinite and late secondary ferberite are characterized by their trace element chemistry and rare earth element patterns. The replacement of scheelite by ferberite is also documented in the trace element composition. Primary ferberite shows high Mg, Zn, Sc, V, Nb, In and Sn concentrations, but very low Ca, Pb, Sr and Ba contents. Reinite and late secondary ferberite display an uncommon trace element composition containing high concentrations of Ca, Pb, Sr, Ba, As and Ga, but very low levels in Sn, Zr, Hf, In, Ti, Sc, Nb, Ta, Mg and Zn. Late secondary ferberite replacing primary ferberite is characterized by additional enrichments in Bi, Pb, As and Sb. The rare earth element patterns of reinite and secondary ferberite are also similar to hydrothermal scheelite. The formation of the tungsten deposits in central Rwanda is interpreted to be epigenetic in origin, and the hydrothermal mineralizing fluids are related to the intrusion of the G4-granites.
机译:来自卢旺达中部Nyakabingo,Gifurwe和Bugarama矿床的热液石英脉中的钨矿化作用发生在黑钨矿固溶体系列(铁锰矿)中富铁的端基上,并且以特殊的莱尼铁矿形式出现,这代表了白铁矿之后白铁矿的假晶型。初级铁素体,蓝铁矿和晚期次级铁素体的特征在于其痕量元素化学和稀土元素模式。微量元素组成中也记录了用白铁矿替代白钨矿。初级铁素体显示出高的Mg,Zn,Sc,V,Nb,In和Sn浓度,但Ca,Pb,Sr和Ba的含量非常低。蓝铁矿和晚生次辉铁矿显示出罕见的痕量元素组成,其中含有高浓度的Ca,Pb,Sr,Ba,As和Ga,但Sn,Zr,Hf,In,Ti,Sc,Nb,Ta,Mg和S中的含量非常低。锌晚期次生铁素体替代一次铁素体的特征是Bi,Pb,As和Sb进一步富集。脉钙石和次生锰铁矿的稀土元素形态也类似于热液白钨矿。卢旺达中部钨矿床的形成被认为是成岩成因的,而热液矿化流体与G4花岗岩的侵入有关。

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