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Origin and metamorphic evolution of rocks with braunite and pyrophanite from the Iberian Massif (SW Spain)

机译:来自伊比利亚地块的褐铁矿和斑岩石的岩石的起源和变质演化(西班牙西南)

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摘要

Rocks containing braunite from the Ossa-Morena central belt (Iberian Massif, SW Spain) have been studied; these include nodules and layers of braunite (association I), Mn-slates (association II) and Mn-metatuffs (associations III and IV). Geochemical features of braunite nodules such as Mn/Fe ratios around 2, positive Ce-anomalies and good correlations among Mn, Fe, Co, Cu and REE contents indicate that the protolith of the braunite-nodules was precipitated from oxidising sea water. Greenschist facies Hercynian metamorphism reduced initial Mn~(4+) to Mn~(3+) and Mn~(2+). High initial fO_2 of oxide beds (association I) limited reduction to the formation of braunite. Reduction continued until the formation of garnet + piemontite (associations II and III), and pyroxmangite + pyrophanite (association IV). Ti-rich braunites (up to 6.8 percent) of TiO_2) occur in slates and metatuffs in which the (Mn + Fe)/Ti ratio of the whole rock is lower than 30, while braunites have lower Ti contents in slates and metatuffs with (Mn + Fe)/Ti ratios around 90. Fe-rich braunite crystallized in rocks with Mn~(2+) oxide and silicate where low Mn~(3+)/Mn~(2+) H in the whole rock facilitated substitution of Fe~(3+) for Mn~(3+).
机译:研究了Ossa-Morena中央带(西班牙西南部伊比利亚地块)中含褐铁矿的岩石;这些包括结节和层状的褐铁矿(协会I),锰板岩(协会II)和锰-焦炭(协会III和IV)。褐铁矿结核的地球化学特征,如Mn / Fe比在2附近,正的Ce异常以及Mn,Fe,Co,Cu和REE含量之间的良好相关性表明,褐铁矿结核的原生石是从氧化海水中沉淀出来的。 Greenschist相海西变质作用将初始Mn〜(4+)还原为Mn〜(3+)和Mn〜(2+)。氧化床的高初始fO_2(缔合I)将还原作用限制为褐铁矿的形成。还原继续进行,直到形成石榴石+蒙脱石(缔合II和III)和焦石锰铁+吡phan石(缔合IV)。富含钛的TiO_2(最多6.8%)的布拉尼特出现在板岩和变质岩中,其中整个岩石的(Mn + Fe)/ Ti比率低于30,而布拉尼特在板岩和变质岩中的Ti含量较低,其中( Mn + Fe)/ Ti比约为90。富含Fe的褐铁矿在含有Mn〜(2+)氧化物和硅酸盐的岩石中结晶,其中整个岩石中的Mn〜(3 +)/ Mn〜(2+)H低Fe〜(3+)表示Mn〜(3+)。

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