Key Laboratory of Marginal Sea Geology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Xingang West Road 164, Guangzhou 510301, Guangdong Province, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2013 Aug;112:95-100. doi: 10.1016/j.saa.2013.04.049. Epub 2013 Apr 19.
A series of samples from different growth bands of Porites coral skeleton were studied using Raman, infrared reflectance methods. The Raman spectra proved that skeleton samples from different growth bands have the same mineral phase as aragonite, but a band at 133 cm(-1) for the top layer shows a transition from 120 cm(-1) for vaterite to ~141 cm(-1) for aragonite. It is inferred that the vaterite should be the precursor of aragonite of coral skeleton. The positional shift in the infrared spectra of the skeleton samples from growth bands correlate significantly to their minor elements (Li, Mg, Sr, Mn, Fe and U) contents. Mg, Sr and U especially have significant negative correlations with the positions of the antisymmetric stretching band ν3 at ~1469 cm(-1). And Li shows a high negative correlation with ν2 band (855 cm(-1)), while Sr and Mn show similar negative correlation with ν4 band (712 cm(-1)). And Mn also shows a negative correlation with ν1 band (1082 cm(-1)). A significantly negative correlation is observed for U with ν1+ν4 band (1786 cm(-1)). However, Fe shows positive correlation with ν1, ν2, ν3, ν4 and ν1+ν4 bands shifts, especially a significant correlation with ν1 band (1082 cm(-1)). New insights into the characteristics of coral at different growth bands of skeleton are given in present work.
对来自不同生长带的多孔螅珊瑚骨骼的一系列样本进行了拉曼、红外反射方法研究。拉曼光谱证明,来自不同生长带的骨骼样本具有相同的矿物相方解石,但顶层的 133 cm(-1) 处的一个带显示出从水碳酸钙的120 cm(-1)向方解石的141 cm(-1)的转变。推断出水碳酸钙应该是珊瑚骨骼方解石的前体。来自生长带的骨骼样本的红外光谱的位置偏移与它们的微量元素(Li、Mg、Sr、Mn、Fe 和 U)含量有显著的相关性。Mg、Sr 和 U 与1469 cm(-1)处的反对称伸缩带 ν3 的位置有显著的负相关。Li 与 ν2 带(855 cm(-1))有很高的负相关性,而 Sr 和 Mn 与 ν4 带(712 cm(-1))有相似的负相关性。Mn 也与 ν1 带(1082 cm(-1))有负相关性。U 与 ν1+ν4 带(1786 cm(-1))有显著的负相关性。然而,Fe 与 ν1、ν2、ν3、ν4 和 ν1+ν4 带的位移呈正相关,特别是与 ν1 带(1082 cm(-1))有显著的相关性。本工作为不同生长带珊瑚骨骼的特点提供了新的见解。