Gunasekaran S, Anbalagan G
PG& Research Department of Physics, Pachaiyappa's College, Chennai 600030, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2008 Apr;69(4):1246-51. doi: 10.1016/j.saa.2007.06.036. Epub 2007 Jul 10.
The process and the formation of new minerals upon heating the carbonate rocks containing clay minerals, together with calcite are determined with thermal analysis, X-ray diffraction, infrared and Raman spectroscopy. The calcite-calcium oxide phase transition sequence was followed up to 947 degrees C in naturally occurring limestone samples. The spectral variations of the internal modes of the carbonate trigonal (nu(1), nu(2), nu(3) and nu(4)) were used to probe the structural phase transitions. The calcium oxide phase (which on reaction with atmospheric water forms portlandite) with an onset temperature of around 950 degrees C was also characterized by the appearance of the infrared mode around 450 cm(-1). The minerals, which were formed upon heating the calcite, were calcium oxide and wollastonite.
通过热分析、X射线衍射、红外光谱和拉曼光谱来确定加热含粘土矿物的碳酸盐岩以及方解石时新矿物的形成过程。在天然石灰石样品中,追踪方解石-氧化钙的相变序列直至947摄氏度。利用碳酸盐三角体内部模式(ν(1)、ν(2)、ν(3)和ν(4))的光谱变化来探测结构相变。氧化钙相(与大气中的水反应形成氢氧化钙)起始温度约为950摄氏度,其特征还在于在450厘米-1左右出现红外模式。加热方解石时形成的矿物为氧化钙和硅灰石。