首页> 外文期刊>Contributions to Mineralogy and Petrology >Hornblende dehydration reactions during magma ascent at Soufriere Hills Volcano, Montserrat
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Hornblende dehydration reactions during magma ascent at Soufriere Hills Volcano, Montserrat

机译:蒙特塞拉特Soufriere Hills Volcano岩浆上升期间的Hornblende脱水反应

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Hornblende phenocrysts in recent andesites of the Soufriere Hills Volcano display reaction rims of microcrystalline plagioclase, pyroxene, Fe-oxides and interstitial glass, formed by decompression during magma ascent. Mass balance calculations give the following reactions with mineral proportions in agreement with modal abundances:100.0hbl->49.8cpx+27.6opx+18.2plag+4.5Ti-mag 100.0hbl- >53.9cpx+24.4opx+18.1plag+1.9ilm+1.7mag These reactions require an open chemical system with exchange of selected components with surrounding melt. Volatiles, TiO_2 and alkalis are expelled and SiO_2 and FeO~T are consumed. Matrix glasses fall into two compositional groups. Glasses in pumice are relatively rich in CaO and poor in K_2O and Na_2O compared to glasses in dome samples. The former glasses formed by moderate amounts of groundmass crystallisation of plagioclase, associated with rapid magma ascent in explosive eruptions. The later glasses evolved in response to hornblende breakdown, groundmass crystallisation and mixing of melts from different levels during slow magma ascent and extended residence time in the dome. Interstitial glass compositions in reaction rims reflect the compositions of the surrounding matrix glasses, but show variable compositional differences mostly consistent with the proposed open-system reactions.
机译:Soufriere Hills火山最近的安山岩中的Hornblende phenocrysts表现出微晶斜长石,辉石,Fe-氧化物和间隙玻璃的反应边缘,它们是在岩浆上升过程中减压形成的。质量平衡计算得出以下矿物比例与模态丰度一致的反应:100.0hbl-> 49.8cpx + 27.6opx + 18.2plag + 4.5Ti-mag 100.0hbl-> 53.9cpx + 24.4opx + 18.1plag + 1.9ilm + 1.7 mag这些反应需要一个开放的化学系统,并与周围的熔体交换选定的成分。排出挥发物,TiO_2和碱,消耗SiO_2和FeO〜T。基质玻璃分为两个成分组。与圆顶样品中的玻璃相比,浮石中的玻璃钙含量相对较高,而K_2O和Na_2O含量较低。前者的玻璃是由斜长石的适量地层结晶形成的,与爆炸爆发中的岩浆迅速上升有关。后来的玻璃是在角岩浆破裂,岩浆结晶和缓慢的岩浆上升和延长的圆顶停留时间过程中,来自不同水平的熔体混合而形成的。反应边缘的间隙玻璃成分反映了周围基质玻璃的成分,但显示出可变的成分差异,大部分与建议的开放系统反应一致。

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