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Magma reservoir dynamics at Toba caldera Indonesia recorded by oxygen isotope zoning in quartz

机译:印度尼西亚多巴破火山口的岩浆储层动力学通过石英中的氧同位素分区记录

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摘要

Quartz is a common phase in high-silica igneous rocks and is resistant to post-eruptive alteration, thus offering a reliable record of magmatic processes in silicic magma systems. Here we employ the 75 ka Toba super-eruption as a case study to show that quartz can resolve late-stage temporal changes in magmatic δ18O values. Overall, Toba quartz crystals exhibit comparatively high δ18O values, up to 10.2‰, due to magma residence within, and assimilation of, local granite basement. However, some 40% of the analysed quartz crystals display a decrease in δ18O values in outermost growth zones compared to their cores, with values as low as 6.7‰ (maximum ∆core−rim = 1.8‰). These lower values are consistent with the limited zircon record available for Toba, and the crystallisation history of Toba quartz traces an influx of a low-δ18O component into the magma reservoir just prior to eruption. Here we argue that this late-stage low-δ18O component is derived from hydrothermally-altered roof material. Our study demonstrates that quartz isotope stratigraphy can resolve magmatic events that may remain undetected by whole-rock or zircon isotope studies, and that assimilation of altered roof material may represent a viable eruption trigger in large Toba-style magmatic systems.
机译:石英是高硅质火成岩中的常见相,可抵抗喷发后的蚀变,从而提供了硅质岩浆系统中岩浆过程的可靠记录。在这里,我们以75 ka Toba超级喷发为例,研究表明石英可以解决岩浆δ 18 O值的后期时间变化。总的来说,由于岩浆存在于局部花岗岩基底中并被其吸收,Toba石英晶体具有较高的δ 18 O值,高达10.2‰。但是,分析的石英晶体中约有40%的最外层生长区的δ 18 O值比其核心降低,值低至6.7‰(最大∆core-rim = 1.8‰ )。这些较低的值与可用于多巴的有限锆石记录一致,并且多巴石英的结晶历史表明,在喷发之前,低δ 18 O组分流入岩浆储层。在这里,我们认为这种后期的低δ 18 O成分是由水热改变的屋面材料得到的。我们的研究表明,石英同位素地层学可以解决整个岩石或锆石同位素研究仍未发现的岩浆事件,并且同化改变的屋面材料可能代表了大型多巴式岩浆系统的可行喷发触发。

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