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Formation of corundum in metapelites around ultramafic bodies. An example from the Saualpe region, Eastern Alps

机译:刚玉在超镁铁质体周围的变质岩中形成。 Saualpe地区的一个例子,东阿尔卑斯山

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This paper describes corundum formation in a metasomatic reaction zonation around an ultramafic body within a metapelitic sequence. The investigated body is about 100m in diameter and is located in the Saualpe of the Austroalpine nappe complex in the Eastern Alps. The body is surrounded by a 10m wide reaction zone (here called zone 3) containing the paragenesis garnet-staurolite-biotite-margarite-chlorite-corandum. Beyond a further metasomatic transition zone (here called zone 2), there are undisturbed metapelitic host rocks (zone 1) that have the metamorphic peak paragenesis garnet-biotite-plagioclase-staurolite-muscovite-quartz. It is shown that reaction zonation formed around 7.2kbar and 615 deg C during regional metamorphism, just above the serpentine breakdown reactions in the system MgO-SiO_2-H_2O. Detailed analysis of the whole rock compositions shows that the reaction zonation formed by infiltration metasomatism that caused significant mass loss in the two alteration zones. These zones are particularly depleted in SiO_2, Na_2O and possibly K_2O. An Na_2O-SiO, thermodynamic pseudosection is presented that includes the parageneses of both the unaltered metapelitic host rock and the corundum-bearing parageneses. This suggests that the metasomatic process can be explained by the transfer of SiO_2 and Na_2O alone. We interpret that the process is driven by water liberated from the previously serpentinised ultramafic body during prograde dehydration during regional Eo-Alpine metamorphism. This fluid flowed outwards from the ultramafic body depleting the surrounding pelites in silica and causing margarite formation from plagioclase and muscovite. This interpretation of the driving mechanism is consistent with our knowledge of the low water activities of the Saualpe during the Eo-Alpine orogenic cycle.
机译:本文描述了在刚成岩序列中超镁铁质体周围的变质反应区中刚玉的形成。被调查者的身体直径约100m,位于东阿尔卑斯山的奥索品纳推覆复合体的索瓦尔普。尸体被一个10m宽的反应区(这里称为3区)围绕,该反应区包含共生石榴石,十字花岗石,黑云母,玛格丽特,绿泥石-刚玉。除了一个进一步的变质过渡带(这里称为2区)外,还有未变质的变质宿主岩(1区),它们具有变质峰共生石榴石-黑云母-斜长石-辉石-白云母-石英。结果表明,在区域变质过程中,反应区带在7.2kbar和615℃左右形成,刚好在MgO-SiO_2-H_2O体系中的蛇形分解反应之上。对整个岩石成分的详细分析表明,渗透交代作用形成的反应带在两个蚀变区引起了明显的质量损失。这些区域特别贫化了SiO_2,Na_2O和可能的K_2O。提出了一个Na_2O-SiO热力学假剖面,其中包括未改变的变质主岩和刚玉质的副岩。这表明交代过程可以通过单独转移SiO_2和Na_2O来解释。我们解释说,该过程是由在区域Eo-Alpine变质过程中进行级脱水时从先前蛇形化的超镁铁质体内释放的水驱动的。该流体从超镁铁质岩体中流出,耗尽了周围的硅质岩,并导致斜长石和白云母形成了玛格石。这种对驱动机制的解释与我们对萨奥普山脉在Eo-Alpine造山循环中低水活动的认识相一致。

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