首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Open-system evolution of the Fuzes-to alkaline basaltic magma, western Pannonian Basin: Constraints from mineral textures and compositions
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Open-system evolution of the Fuzes-to alkaline basaltic magma, western Pannonian Basin: Constraints from mineral textures and compositions

机译:Pannonian盆地西部引信-碱性玄武岩浆的开放系统演化:矿物结构和成分的约束

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摘要

The crystal-rich alkaline basalt of the Fuzes-to scoria cone in the Bakony-Balaton Highland Volcanic Field, western Pannonian Basin, Hungary has a unique mineral assemblage reflecting a mixture of diverse crystals of various origins. The pheno- and microphenocrysts are represented by olivine with chromian spinel inclusions, clinopyroxene and plagioclase. The basalt contains abundant (20-40 vol.% on a vesicle-free basis) xenocrysts of olivine, orthopyroxene, colorless clinopyroxene and spinel derived from different regions of the subcontinental lithospheric mantle. Rare green clinopyroxene xenocrysts are also present. The basalt also includes numerous spinel peridotite xenoliths. In one of them we studied several silicate melt veins which contain fresh vesiculated glass, chromian spinels, clinopyroxenes and olivines. The glass has an evolved subalkaline composition (56.9-64.6 wt.% SiO2, 6.6-8.1 wt.% Na2O + K2O). Magmatic chromian spinels and clinopyroxenes in the host basalt and in the silicate melt veins of the peridotite xenolith show two compositionally distinct populations (groupl and group2). Groupl chromian spinels and clinopyroxenes both have low Cr contents (18-41 Cr# (100*Cr/(Cr + Al)) and 0.01-0.86 wt.% Cr2O3, respectively) and occur predominantly in the host basalt. Group2 chromian spinels and clinopyroxenes have higher Cr contents (46-54 Cr# and 0.34-1.8 wt.% Cr2O3, respectively) and appear mainly in the silicate melt veins. In addition, compared to the groupl clinopyroxenes, group2 clinopyroxenes have higher MgO and SiO2, and lower TiO2 and CaO contents. Based on our detailed mineral-scale study, groupl spinels and clinopyroxenes represent the host alkaline basaltic magma (magmal), while group2 crystals could have been derived from another silicate magma (magma2) that is represented by the silicate melt veins in the studied peridotite xenolith. It is notable that group2 spinels are also present in some olivine phenocrysts, and scarce groupl spinels appear in the silicate melt veins as well. In some cases, groupl and group2 chromian spinels coexist within the same olivine phe-nocryst, and clinopyroxene zones that have groupl and group2 compositions compose parts of the same clinopyroxene crystal in the host basalt. On the basis of these observations, we infer interaction between magmal and magma2. The occurrence and interaction of two distinct magma batches suggest a complex magma evolution for this otherwise simple, monogenetic volcano and imply that open-system processes operated during the evolution of the Fuzes-to alkaline basaltic magma. Our results demonstrate the importance of mineral textures and compositions for understanding the complexity of magma processes that can be manifested at small-scale basaltic volcanoes.
机译:匈牙利Pannonian盆地西部Bakony-Balaton高地火山场的Fuzes-to scoria锥富含晶体的碱性玄武岩,具有独特的矿物组合,反映了不同来源的多种晶体的混合物。苯酚和微苯酚以橄榄石为代表,并带有铬尖晶石夹杂物,斜辉石和斜长石。玄武岩包含丰富的(以无囊泡为基准,体积为20-40%)异质变石,分别来自陆下岩石圈地幔不同区域的橄榄石,邻苯二酚,无色斜cl石和尖晶石。也有稀有的绿色斜茂铁异晶。玄武岩还包括许多尖晶石橄榄岩异岩。在其中之一中,我们研究了几种硅酸盐熔体脉,其中包含新鲜的多孔玻璃,铬尖晶石,斜柏和橄榄石。该玻璃具有析出的次碱性成分(56.9-64.6重量%的SiO 2,6.6-8.1重量%的Na 2 O + K 2 O)。玄武岩异岩体的玄武岩和硅酸盐熔体脉中的岩浆铬尖晶石和斜辉石显示出两个组成上不同的种群(第1组和第2组)。铬族尖晶石和斜辉石均具有低的Cr含量(分别为18-41 Cr#(100 * Cr /(Cr + Al))和0.01-0.86 wt。%Cr2O3),并且主要存在于主体玄武岩中。第2组铬铁尖晶石和斜向辉石具有较高的Cr含量(分别为46-54 Cr#和0.34-1.8 wt。%Cr2O3),并且主要出现在硅酸盐熔体脉中。另外,与第1族环吡咯相比,第2族环吡咯具有更高的MgO和SiO 2,以及更低的TiO 2和CaO含量。根据我们详细的矿物规模研究,第1尖晶石和斜辉石代表了宿主碱性玄武岩浆(岩浆),而第2组晶体可能源自另一个硅酸盐岩浆(magma2),这是由研究的橄榄岩异岩中的硅酸盐熔体脉动代表的。 。值得注意的是,第2组尖晶石也存在于一些橄榄石的隐晶中,而稀有的第1组尖晶石也出现在硅酸盐熔体脉中。在某些情况下,第1组和第2组铬尖晶石共存于同一橄榄石浅析晶中,具有第1组和第2组组成的斜向辉石区构成了主体玄武岩中同一斜向辉石晶体的一部分。根据这些观察,我们推断岩浆和岩浆2之间的相互作用。两个不同岩浆批次的发生和相互作用表明,对于这个原本简单的单基因火山来说,岩浆演化复杂,并且暗示着在引信向碱性玄武岩浆演化过程中,开放系统过程起作用。我们的结果证明了矿物质地和成分对于理解岩浆过程的复杂性的重要性,这种复杂性可以在小规模的玄武岩火山中表现出来。

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