Laser heating effect on Raman analysis of CO2 co-existing as liquid and vapor in olivine-hosted melt inclusion bubbles

IF 2.5 Q2 Earth and Planetary Sciences
C. DeVitre, Kyle Dayton, E. Gazel, A. Pamukçu, G. Gaetani, P. Wieser
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引用次数: 2

Abstract

Raman spectroscopy has become the tool of choice for analyzing fluid inclusions and melt inclusion (MI) vapor bubbles as it allows the density of CO2-rich fluids to be quantified. Measurements are often made at ambient temperature (Tamb ~18-25 °C), resulting in reported bulk densities between 0.2 and 0.7 g/mL despite that single-phase CO2 under these conditions is thermodynamically unstable and instead consists of a liquid (~0.7 g/mL), and a vapor phase (~0.2 g/mL). Here, we present results from experiments conducted at Tamb and 37 °C (above the CO2 critical temperature) on 14 natural CO2-rich MI bubbles from Mount Morning, Antarctica. Here, we show that at Tamb, laser power strongly affects the CO2 Raman spectrum of MI bubbles with bulk densities within the miscibility gap. High-power laser heating and low spectral resolution explain why published measurements have reported such bulk densities at Tamb even when using an instrument-specific calibration.
激光加热对CO2在含橄榄石的熔体包裹体气泡中液相和水蒸气共存的拉曼分析的影响
拉曼光谱已经成为分析流体包裹体和熔融包裹体(MI)蒸汽气泡的首选工具,因为它可以量化富含二氧化碳的流体的密度。测量通常在环境温度下进行(Tamb ~18-25°C),结果报告的堆积密度在0.2到0.7 g/mL之间,尽管在这些条件下单相CO2是热力学不稳定的,而是由液体(~0.7 g/mL)和气相(~0.2 g/mL)组成。在这里,我们介绍了在Tamb和37°C(高于二氧化碳临界温度)下对来自南极洲莫宁山的14个天然富含二氧化碳的MI气泡进行的实验结果。本文表明,在Tamb,激光功率强烈影响混相间隙内体积密度的MI气泡的CO2拉曼光谱。高功率激光加热和低光谱分辨率解释了为什么即使在使用特定仪器校准时,发表的测量结果也报告了Tamb的体积密度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Volcanica
Volcanica Earth and Planetary Sciences-Geology
CiteScore
4.40
自引率
0.00%
发文量
21
审稿时长
21 weeks
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