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Infrared and Raman spectroscopic characterization of the carbonate mineral huanghoite - and in comparison with selected rare earth carbonates

机译:碳酸盐矿物黄铁矿的红外和拉曼光谱表征-并与部分稀土碳酸盐进行比较

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摘要

Raman spectroscopy complimented with infrared spectroscopy has been used to study the rare earth based mineral huanghoite with possible formula given as BaCe(CO3)2F and compared with the Raman spectra of a series of selected natural halogenated carbonates from different origins including bastnasite, parisite and northupite. The Raman spectrum of huanghoite displays three bands are at 1072, 1084 and 1091 cm−1 attributed to the symmetric stretching vibration. The observation of three symmetric stretching vibrations is very unusual. The position of symmetric stretching vibration varies with mineral composition. Infrared spectroscopy of huanghoite show bands at 1319, 1382, 1422 and 1470 cm−1. No Raman bands of huanghoite were observed in these positions. Raman spectra of bastnasite, parisite and northupite show a single band at 1433, 1420 and 1554 cm−1 assigned to the ν3 (CO3)2− antisymmetric stretching mode. The observation of additional Raman bands for the ν3 modes for some halogenated carbonates is significant in that it shows distortion of the carbonate anion in the mineral structure. Four Raman bands for huanghoite are observed at 687, 704, 718 and 730 cm−1and assigned to the (CO3)2− ν2 bending modes. Raman bands are observed for huanghoite at around 627 cm−1 and are assigned to the (CO3)2− ν4 bending modes. Raman bands are observed for the carbonate ν4 in phase bending modes at 722 cm−1 for bastnasite, 736 and 684 cm−1 for parisite, 714 cm−1 for northupite. Raman bands for huanghoite observed at 3259, 3484 and 3589 cm−1 are attributed to water stretching bands. Multiple bands are observed in the OH stretching region for bastnasite and parisite indicating the presence of water and OH units in their mineral structure. Vibrational spectroscopy enables new information on the structure of huanghoite to be assessed.
机译:拉曼光谱法与红外光谱法相辅相成,已被用于研究稀土基矿物黄铁矿,其可能的分子式为BaCe(CO3)2F,并与一系列来自不同来源的精选天然卤代碳酸盐的拉曼光谱进行了比较,这些碳酸盐包括玄武岩,方铁矿和褐铁矿。 。黄土矿的拉曼光谱显示三个带分别在1072、1084和1091 cm-1处,这归因于对称拉伸振动。观察到三个对称拉伸振动非常不寻常。对称拉伸振动的位置随矿物成分而变化。 huanghoite的红外光谱显示在1319、1382、1422和1470 cm-1处的谱带。在这些位置上没有观察到黄hoite拉曼带。韧皮石,绢云母和褐铁矿的拉曼光谱显示,在1433、1420和1554 cm-1处有一个谱带分配给ν3(CO3)2-反对称拉伸模式。对于某些卤代碳酸根在ν3模式下观察到的其他拉曼谱带很重要,因为它显示出矿物结构中碳酸根阴离子的变形。分别在687、704、718和730 cm-1处观察到了针对huanghoite的四个拉曼带,并将其指定为(CO3)2-v2弯曲模式。在约627 cm-1处观察到黄土矿的拉曼带,并被指定为(CO3)2-v4弯曲模式。碳酸盐ν4在相弯曲模式下观察到的拉曼谱带为韧皮石为722 cm-1,寄生岩为736和684 cm-1,北浮石为714 cm-1。在3259、3484和3589 cm-1处观察到的黄褐土拉曼谱带归因于水拉伸谱带。在OH伸展区中观察到了多个韧带和头孢母虫的条带,表明矿物质结构中存在水和OH单元。振动光谱法可以评估有关黄铁矿结构的新信息。

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