名义上无水矿物在火山岩中作为斑晶的应用:包括喀尔巴阡-潘诺尼亚地区的案例研究

Z. Pálos, I. Kovács, D. Karátson, T. Biró, Judit Sándorné Kovács, É. Bertalan, Anikó Besnyi, G. Falus, T. Fancsik, M. Tribus, L. Aradi, C. Szabó, V. Wesztergom
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引用次数: 1

摘要

在过去的十年里,已经进行了大量关于岩浆水含量的研究,以及如何通过名义上无水矿物(NAMs)的微量结构羟基(水)含量来恢复这些含量。对斜辉石和斜长石的岩浆湿度测定进行了限制。尽管结果表明,该方法比熔体包裹体研究更灵活、更可靠,但它们也表明,微量羟基含量仍可能通过喷发前后的过程叠加。斜辉石可以比斜长石含有更多的结构羟基。提交了一份全面的审查报告,其中包括迄今为止公布的所有结果,以汇编可用的信息。作为一项案例研究,对Börzsöny Mts(喀尔巴阡山-潘诺尼地区)的一组具有代表性的斜长石斑晶进行了显微FTIR测量。选择这些样本是为了代表火山活动在时间和空间上的进展,考虑到火山产物在明确的火山地层位置的岩石学和地球化学演化。喷发前后的冷却速度似乎对保水性影响最大。这意味着对火山斑晶中水分的系统研究有助于区分火山地层单元中缓慢冷却和快速冷却的部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the use of nominally anhydrous minerals as phenocrysts in volcanic rocks: A review including a case study from the Carpathian–Pannonian Region
The past decade has seen a great number of studies dealing with magmatic water contents and how these could be retrieved by the nominally anhydrous minerals’ (NAMs) trace structural hydroxyl (water) contents. Constraints have been made to magmatic hygrometry with clinopyroxene and plagioclase. Although results suggest that the method is more flexible and reliable than melt inclusion studies, they also indicate that the trace hydroxyl contents could still be overprinted by syn- and post-eruptive processes. Clinopyroxenes can hold more structural hydroxyl than plagioclases. A comprehensive review is presented with the inclusion of all published results so far to compile the available pieces of information. As a case study, micro-FTIR measurements are made of a representative set of plagioclase phenocrysts from the Börzsöny Mts. (Carpathian–Pannonian Region). The samples were selected to represent the progress of the volcanic activity in time and space, considering the petrologic and geochemical evolution of volcanic products in well-defined volcanostratigraphic positions. The syn- and post-eruptive cooling rate seems to have the greatest effect on water retention. This means that the systematic investigation of water in volcanic phenocrysts can contribute to distinguish the slowly and rapidly cooling parts of the volcanostratigraphic units.
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来源期刊
Central European Geology
Central European Geology Earth and Planetary Sciences-Geology
CiteScore
1.40
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