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Thermal treatment of weddellite—a Raman and infrared emission spectroscopic study

机译:绿钨矿的热处理-拉曼光谱和红外光谱研究

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摘要

Thermal transformations of natural calcium oxalate dihydrate known in mineralogy as weddellite have been undertaken using a combination of Raman microscopy and infrared emission spectroscopy. The vibrational spectroscopic data was complimented with high resolution thermogravimetric analysis combined with evolved gas mass spectrometry. TG–MS identified three mass loss steps at 114, 422 and 592 °C. In the first mass loss step water is evolved only, in the second and third steps carbon dioxide is evolved. The combination of Raman microscopy and a thermal stage clearly identifies the changes in the molecular structure with thermal treatment. Weddellite is the phase in the temperature range up to the pre-dehydration temperature of 97 °C. At this temperature, the phase formed is whewellite (calcium oxalate monohydrate) and above 114 °C the phase is the anhydrous calcium oxalate. Above 422 °C, calcium carbonate is formed. Infrared emission spectroscopy shows that this mineral decomposes at around 650 °C. Changes in the position and intensity of the C=O and C---C stretching vibrations in the Raman spectra indicate the temperature range at which these phase changes occur.
机译:矿物学中称为weddellite的天然草酸钙二水合物的热转化已通过拉曼显微镜和红外发射光谱法进行了研究。振动光谱数据与高分辨率热重分析结合发展的气体质谱仪相辅相成。 TG-MS在114、422和592°C下确定了三个质量损失步骤。在第一质量损失步骤中,仅放出水,在第二和第三步骤中,放出二氧化碳。拉曼显微镜和热处理台的结合清楚地表明了热处理后分子结构的变化。 Weddellite是在高达97°C的脱水前温度范围内的相。在此温度下,形成的相为辉绿石(草酸钙一水合物),高于114°C时为无水草酸钙。高于422°C,形成碳酸钙。红外发射光谱显示该矿物在约650°C时分解。拉曼光谱中C = O和C --- C拉伸振动的位置和强度的变化表明发生这些相变的温度范围。

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  • 作者

    Frost Ray L.; Weier Matt L.;

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  • 年度 2003
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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