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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Quantification of water content and speciation in natural silicic glasses (phonolite, dacite, rhyolite) by confocal microRaman spectrometry
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Quantification of water content and speciation in natural silicic glasses (phonolite, dacite, rhyolite) by confocal microRaman spectrometry

机译:用共聚焦显微拉曼光谱法定量测定天然硅玻璃(方沸石,榴辉石,流纹岩)中的水含量和形态

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摘要

The determination of total water content (H2OT: 0.1-10 wt%) and water speciation (H2Omolecular/OH) in volcanic products by confocal microRaman spectrometry are discussed for alkaline (phonolite) and calcalkaline (dacite and rhyolite) silicic glasses. Shape and spectral distribution of the total water band (H2OT) at similar to 3550 cm(-1) show systematic evolution with glass H2OT, water speciation and NBO/T. In the studied set of silicic samples, calibrations based on internal normalization of the H2OT band to a band related to vibration of alummosilicate network (TOT) at similar to 490 cm(-1) vary with glass peraluminosity. An external calibration procedure using well-characterized glass standards is less composition-dependent and provides excellent linear correlation between total dissolved water content and height or area of the H2OT Raman band. Accuracy of deconvolution procedure of the H2OT band to quantify water speciation in water-rich and depolymerized glasses depends on the strength of OH hydrogen bonding. System confocal performance, scattering from embedding medium and glass microcrystallinity have a crucial influence on accuracy of Raman analyses of water content in glass-bearing rocks and melt inclusions in crystals. (c) 2006 Elsevier Inc. All rights reserved.
机译:讨论了用共焦显微拉曼光谱法测定火山灰产品中的总水含量(H2OT:0.1-10 wt%)和水形态(H2Omolecular / OH),用于碱性(方沸石)和钙cal碱(达克石和流纹岩)硅玻璃。总水带(H2OT)的形状和光谱分布与3550 cm(-1)相似,显示了玻璃H2OT,水形态和NBO / T的系统演化。在研究的一组硅质样品中,基于H2OT谱带到与490 cm(-1)近似的铝硅酸盐网络(TOT)振动相关的谱带的内部归一化的校准随玻璃的透铝性而变化。使用性能良好的玻璃标准液进行的外部校准程序对成分的依赖性较小,并且在总溶解水含量与H2OT拉曼谱带的高度或面积之间具有出色的线性相关性。 H2OT带的反卷积程序用来量化富水和解聚玻璃中水形态的准确性取决于OH氢键的强度。系统共焦性能,包埋介质的散射和玻璃微晶度对玻璃承载岩石中的水含量和晶体中的熔体夹杂物的拉曼分析的准确性具有至关重要的影响。 (c)2006 Elsevier Inc.保留所有权利。

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