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1860-Ma I-Shaped Mafic Sills in the Murmansk Craton, Eastern Fennoscandia: Petrology and Tectonic Setting of Within-plate Mafic Events during Nuna Assembly

机译:1860-MA I形·迈克斯特·穆斯克省Craton,东部Fennoscandia:在NUNA组装中板内迈克斯内事件的岩石学和构造环境

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1860-Ma within-plate mafic rocks of the Eastern Murman Sill Province were studied in the northern part of the Murmansk Craton, where they compose sheet bodies (sills) up to 100 m thick in Archean granitoids and gneisses. The sills have a simple inner structure, show no macroscopic signs of in situ differentiation even in large bodies, and consist of homogenous medium-grained poikilophitic dolerites weakly varying in composition. Minor variations in mineral and chemical composition of the rocks allow us to regard the mafic sills as I-shaped sills. Their homogeneity is likely caused by the rapid crystallization of aphyric magmas. The studied sills are close to N-MORB in major-element composition, but significantly differ in trace element signatures. The low Cr and Ni concentrations in the dolerites indicate the high degrees of fractional crystallization, while the low HREE and HFSE contents suggest that primary komatiite melts were formed through the high-degree melting of a depleted mantle source. The absence of phenocrysts in chilled dolerites prevented the use mineralogic and petrographic criteria for estimating the crystallization conditions in intermediate magma chambers. AlphaMELTS 1.9 and PRIMELT3 MEGA modelling results indicate that the primary melts could be formed through a high-degree melting of ascending high-temperature mantle plume, with subsequent contamination and fractional crystallization in mid-crustal intermediate magma chambers. The Nd and Sr isotopic composition of the dolerites and constituent minerals suggests that the crustal contamination included several stages. The first, most significant crustal contribution (up to 10%) was related to the contamination by Archean tonalites in the intermediate mid-crustal chambers. This provided negative epsilon(Nd) values and radiogenic Sr isotopic composition (Sr-i = 0.702-0.704) in the dolerites. The second stage included the upper-crustal contamination during lateral propagation of melts along gentle weakened zones, which resulted in the wide variations of Sr-Nd isotopic composition in rocks and minerals. The third stage was related to the contamination by Sr-87-enriched fluid that is supported by the sharp increase of Sr-i (up to 0.708) at constant Nd isotopic composition in gabbro-pegmatites. Such fluid could be formed via biotite dehydration caused by heating of host granites by large volume of emplaced mafic melts. The age, volume, and composition of the studied dolerites and similarity with coeval mafic rocks in the Superior Craton indicate that the I-shaped mafic sills in the Murmansk Craton could be formed on the periphery of the Circum Superior large igneous province. It suggests that the Murmansk Craton of the Fennoscandian Shield and the Superior Craton of the Canadian Shield at 1860 Ma were joined into a single consolidated lithospheric block that host within-plate mafic rocks and likely represented an early core of the Paleoproterozoic Nuna supercontinent.
机译:在Murmansk Craton的北部,在东部Murman Sill Poloce的1860米内迈克斯·斯利克省的迈克斯省,在那里,他们在Archean Granitoids和Fnneisses中厚度厚度100米的床单(门槛)。窗台具有简单的内部结构,即使在大型体内也没有出于原位分化的宏观迹象,并且由均匀的培养基粒细胞的波西氏细胞Dolerites弱变化。岩石的矿物和化学成分的微小变化允许我们将MAFIC SIGLS视为I形窗台。它们的均匀性可能是由透镜岩浆的快速结晶引起的。学习的门槛靠近主要元素组成中的N-Morb,但在微量元素签名中显着不同。 Dolerites中的低Cr和Ni浓度表明,低HREE和HFSE内容的高度的分数结晶表明,通过耗尽的地幔源的高度熔化形成了初级Komatiite熔化。在冷冻的d型脱毛中没有苯杂交,防止了使用矿物学和岩体标准来估算中间岩浆室中的结晶条件。 Alphamelts 1.9和Primelt3 Mega建模结果表明,初级熔化可以通过高度熔化的高温披风羽流,随后在中外中间岩浆室中的随后污染和分数结晶形成。 Dolerites和组成矿物的Nd和Sr同位素组成表明,地壳污染包括几个阶段。第一个,最显着的地壳贡献(高达10%)与中间地壳腔室中的注册四分之一的污染有关。这提供了阴性ε(Nd)值和辐射性Sr同位素组合物(SR-1 = 0.702-0.704)。第二阶段包括沿着温和弱化的区域熔体横向繁殖期间的上地壳污染,这导致岩石和矿物质中的SR-ND同位素组合物的宽变化。第三阶段与SR-87富集的液体的污染有关,该浓度由在Gabbro-Pegmatites的恒定ND同位素组合物中SR-I(高达0.708)的急剧增加而负载。这种流体可以通过通过大量施加的乳头熔体加热宿主花岗岩引起的生物偶脱水形成。学龄儿童的年龄,体积和组成与上级CRATON中的氏杆麦克风岩的相似性表明Murmansk Craton中的I形镁铁柄可以形成在恒星上的大型火虹省的周边。它表明,1860 MA的Fennoscandand盾牌和加拿大盾牌的高级克拉顿的摩尔曼斯克Craton加入了一个综合的岩石砌块,占据了板内摇晃的岩石岩石,可能代表了古木政府古乔安纳的早期核心超大围场。

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