首页> 外文OA文献 >Determination of volatiles in volcanic rocks and minerals with a Directly Coupled Evolved Gas Analyzing System (DEGAS) -Part I: Interpretation of degassing profiles (DEGAS-profiles) of minerals and rocks on the basis of melting experiments
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Determination of volatiles in volcanic rocks and minerals with a Directly Coupled Evolved Gas Analyzing System (DEGAS) -Part I: Interpretation of degassing profiles (DEGAS-profiles) of minerals and rocks on the basis of melting experiments

机译:用直接耦合的进化气体分析系统(DEGA)测定火山岩和矿物质中的挥发物 - 在熔化实验的基础上解释矿物质和岩石的脱气型材(Degas-culitiles)

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摘要

Volatile components in magma strongly influence many physical properties of melts and minerals. The temperature resolved degassing analysis of volcanic crystalline and vitreous rocks gives detailed information about volatile compounds in the melt. Aspecial high-temperature mass-spectrometry device in combination with a thermo-balance allows a quantitative determination of different volatile species. It enables a differentiation between the primary gas content in the magma and the gas released from decomposition of secondary alteration products. The gas release profiles give the following indications: i) during the littoral explosions of Pahoehoe lava the content of volatiles is not changed by interaction with air or sea water; ii) the degassing profiles of vitreous black sand verify the primary content of volatiles in the erupted melt, only CO2 was detected; iii) the oxygen release profile gives significant indications for oxygen undersaturation of the erupted magma; iv) remelting of black sand in air at 1450°C for 0.45 h causes an oxygen saturation of the basaltic me v) remelting of black sand in argon atmosphere confirms the oxygen undersaturation of the me vi) remelting of black sand-black shale mixtures affects a significant change in the degassing profiles, especially in CO2-release. With the first investigations we can demonstrate that gas release curves of volcanic rocks are qualified for a) detection of the primary gas content of erupted magma; b) detection of alteration processes of the igneous glass; c) detection of contamination of the magma with adjacent rocks.
机译:岩浆中的挥发性组分强烈影响许多熔体和矿物质的物理性质。温度 已解决的火山晶体和玻璃岩的脱气分析提供有关挥发性化合物的详细信息 在融化中。缺损高温质谱装置与热平衡组合使用 不同挥发物种的定量测定。它可以实现原色气之间的差异化 岩浆中的内容和释放的气体免于分解二次改变产品。气体释放 概况给出以下适应症:i)在Pahoehoe熔岩的沿海爆炸过程中挥发物的含量是 没有改变空气或海水的互动; ii)玻璃体黑色砂的脱气谱验证了主要的 爆发熔体中挥发物的含量仅检测到CO 2; iii)氧气释放型材提供了重要的适应症 用于爆发的岩浆的氧气缺氧; iv)1450°C的空气中的黑色沙子重熔0.45小时 导致玄武岩熔体的氧饱和度; v)氩气氛中的黑色沙子的重熔证实了氧气 熔体的缺点; vi)黑色沙子黑色页岩混合物的重熔会影响大量变化 脱气型材,特别是在CO2释放中。通过第一次调查,我们可以证明天然气释放 火山岩的曲线是合格的一种)检测爆发岩浆的初级气体含量; b)检测 发火玻璃的改变过程; c)检测岩浆与相邻岩石的污染。

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  • 作者

    C. M. Schmidt; K. Heide;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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