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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Mineral chemistry, isotope geochemistry and petrogenesis of niobium-rich rocks from the Catalao I carbonatite-phoscorite complex, Central Brazil
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Mineral chemistry, isotope geochemistry and petrogenesis of niobium-rich rocks from the Catalao I carbonatite-phoscorite complex, Central Brazil

机译:矿物化学、同位素地球化学和niobium-rich岩石的成因Catalao我carbonatite-phoscorite复杂的中央巴西

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摘要

The Catalao I carbonatite complex is part of the Late-Cretaceous Alto Paranaiba Igneous Province (APIP) and consists of a multi-intrusion body zoned from bebedourite-(pyroxenite)-series rocks at the border to carbonatite- and phoscorite-series rocks at the core. The phoscorites consist of apatite, magnetite, and a Mg-silicate (phlogopite or olivine) and are subdivided into early-stage; olivine-bearing (P1); and more evolved, olivine-lacking rocks, dominated either by apatite (P2) or magnetite (P3). P1 rocks are typical phoscorites, whereas the late-stage P2 and P3 rocks are petrographically classified as nelsonites (apatite-magnetite rocks) and host the Nb + P + Fe mineralization of the Catalao I Complex. Dolomite carbonatite (DC) occurs in association with both P2 and P3 late-stage phoscorite, forming paired phoscorite-carbonatite sets. Mica chemistry changes from phlogopite in phoscorite through phlogopite cores with tetra-ferriphlogopite rims in apatite late-stage phoscorite to tetra-ferriphlogopite in magnetite late-stage phoscorite and dolomite carbonatite, which is similar to the Al-depletion seen in micas in phoscorites from the Kovdor and Sokli Complexes. Apatite from phoscorites is enriched in Si, whereas those from late-stage phoscorites and dolomite carbonatites are enriched in strontium. Core chemistry from both apatite and phlogopite crystals shows a trend consistent with evolution from phoscorite to dolomite carbonatite. Umenites from phoscorite are Mg-rich while those from late-stage phoscorites and dolomite carbonatites tend to consist of nearly pure FeTiO3. REE patterns are highly fractionated and indicate that all rock types are cogenetic. The discrepancy in the radiogenic signature between phoscorites and carbonatites from Catalao I suggests that a petrogenetic process, probably related to fluids, can fractionate Nd isotopes, generating different compositions within the province.
机译:Catalao我碳酸盐岩复杂的一部分晚白垩世Alto Paranaiba火成岩省(APIP)和由multi-intrusion身体(分区从bebedourite) -辉岩系列岩石碳酸盐岩,在边境phoscorite-series岩石核心。phoscorites由磷灰石、磁铁矿和aMg-silicate(金云母或橄榄石)和分为早期;(P1);通过磷灰石(P2)或磁铁矿为主(P3)。晚期P2和P3的岩石岩相学的归类为钛铁磷灰岩(apatite-magnetite岩石)和主机Nb + P +铁成矿Catalao我复杂。白云石碳酸盐岩(DC)发生在协会P2和P3晚期phoscorite,形成配对phoscorite-carbonatite集。phoscorite金云母的化学变化通过金云母核在磷灰石晚期tetra-ferriphlogopite钢圈phoscorite tetra-ferriphlogopite磁铁矿晚期phoscorite白云石碳酸盐岩,这类似于Al-depletion云母在phoscorites Kovdor Sokli复合物。如果,而晚期phoscorites和白云石碳酸盐岩是丰富的锶。金云母晶体显示趋势一致进化从phoscorite白云石碳酸盐岩。而从晚期phoscorites和白云石碳酸盐岩往往由近纯FeTiO3。并指出,所有同源捕虏体岩石类型。这种差异在放射产生的签名从Catalao phoscorites和碳酸盐岩之间我可能表明一个岩石成因的过程,与液体,可以分离和同位素,产生不同的成分在省。

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