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Applications of melt inclusions to problems in igneous petrogenesis.

机译:熔体包裹体在火成岩成因问题中的应用。

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摘要

Understanding the different igneous processes that magmas undergo is important for a variety of reasons including potential hazards associated with volcanoes in populated regions, magmatic hydrothermal ore deposition, and tectonic processes. One method of obtaining geochemical data that can help constrain petrogenetic processes is through the study of melt and fluid inclusions. The research presented here examines melt inclusions through experimental, analytical and field studies to better understand igneous petrogenesis.; One potential problem associated with melt inclusions is water-loss during laboratory heating. A Raman spectroscopic technique was developed to determine water contents of silicate glasses, and this technique was applied to monitor water loss from natural melt inclusions that were heated for varying lengths of time. The results suggest that water loss is insignificant when heated for less than 12 hours but significant water loss can occur with longer duration heating.; The distribution of trace elements between silicate melts and phenocrysts growing from that melt can constrain igneous processes such as fractional crystallization, assimilation, and partial melting. Partition coefficients were determined for syngenetic clinopyroxene, orthopyroxene, and plagioclase in equilibrium with a dacitic melt using the Melt Inclusion-Mineral (MIM) technique. Melt inclusion chemistry is the same regardless of mineral host phase, suggesting that the melt inclusions have not been subjected to re-equilibration processes or boundary layer development. Partition coefficients from this study are similar but typically lower than published values.; Three closely-spaced monogenetic eruptive units from the active Campi Flegrei volcanic system (Italy) with similar eruptive styles were examined to better understand the evolution of the magmatic system. Results suggest fractional crystallization as the dominant process taking place over time but that magma mixing was significant for one of the eruptions. Trace element geochemical data suggest a mixed magma source of within-plate and volcanic arc components, and still retain a T-MORB signature from the subducting slab.
机译:出于多种原因,了解岩浆经历的不同火成过程非常重要,包括与人口稠密地区的火山相关的潜在危害,岩浆热液矿石的沉积以及构造过程。获得有助于限制成岩过程的地球化学数据的一种方法是通过研究熔体和流体包裹体。这里进行的研究通过实验,分析和现场研究来检查熔体夹杂物,以更好地了解火成岩。与熔体夹杂物相关的一个潜在问题是实验室加热期间的水分流失。开发了拉曼光谱技术来确定硅酸盐玻璃的水含量,并将该技术应用于监测加热了不同时间长度的天然熔体夹杂物的水分流失。结果表明,加热少于12小时时,水分损失不明显,但加热时间更长,则水分损失可能会很大。硅酸盐熔体和从该熔体中生长出的隐晶之间的微量元素分布会限制火成过程,例如分步结晶,同化和部分熔化。使用熔体夹杂矿物(MIM)技术确定了与洋甘菊熔体平衡时的同生型次生辉石,邻苯二酚和斜长石的分配系数。熔体夹杂物的化学性质相同,而与矿物主体相无关,这表明熔体夹杂物尚未经过重新平衡过程或边界层形成。该研究的分配系数相似,但通常低于公布的值。研究了来自活跃的Campi Flegrei火山系统(意大利)的三个紧密间隔的单基因喷发单元,它们具有相似的喷发样式,以更好地了解岩浆系统的演化。结果表明,随着时间的流逝,部分结晶是主要的过程,但是岩浆混合对于其中一种喷发很重要。痕量元素地球化学数据表明板内和火山弧成分的混合岩浆源,并且仍保留着俯冲板块的T-MORB特征。

著录项

  • 作者

    Severs, Matthew J.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Geology.; Geochemistry.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 126 p.
  • 总页数 126
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;地质学;
  • 关键词

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