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Carbon K-edge spectra of carbonate minerals

机译:碳酸盐矿物的碳K边谱

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Carbon K-edge X-ray spectroscopy has been applied to the study of a wide range of organic samples, from polymers and coals to interstellar dust particles. Identification of carbonaceous materials within these samples is accomplished by the pattern of resonances in the 280-320 eV energy region. Carbonate minerals are often encountered in the study of natural samples, and have been identified by a distinctive resonance at 290.3 eV. Here C K-edge and Ca L-edge spectra from a range of carbonate minerals are presented. Although all carbonates exhibit a sharp 290 eV resonance, both the precise position of this resonance and the positions of other resonances vary among minerals. The relative strengths of the different carbonate resonances also vary with crystal orientation to the linearly polarized X-ray beam. Intriguingly, several carbonate minerals also exhibit a strong 288.6 eV resonance, consistent with the position of a carbonyl resonance rather than carbonate. Calcite and aragonite, although indistinguishable spectrally at the C K-edge, exhibited significantly different spectra at the Ca L-edge. The distinctive spectral fingerprints of carbonates provide an identification tool, allowing for the examination of such processes as carbon sequestration in minerals, Mn substitution in marine calcium carbonates (dolomitization) and serpentinization of basalts.
机译:碳K边缘X射线光谱法已被用于研究各种有机样品,从聚合物和煤到星际尘埃颗粒。这些样品中含碳物质的鉴定是通过280-320 eV能量区域中的共振模式完成的。碳酸盐矿物在自然样品的研究中经常遇到,并且通过在290.3 eV处的独特共振得以识别。这里介绍了一系列碳酸盐矿物的C K边缘和Ca L边缘光谱。尽管所有碳酸盐均表现出尖锐的290 eV共振,但该共振的精确位置和其他共振的位置在矿物之间都不同。不同碳酸盐共振的相对强度也随晶体对线性偏振X射线束的取向而变化。有趣的是,几种碳酸盐矿物也表现出强大的288.6 eV共振,与羰基共振而非碳酸盐共振的位置一致。方解石和文石尽管在C K边缘光谱上无法区分,但在Ca L边缘处显示出明显不同的光谱。碳酸盐的独特光谱指纹提供了一种识别工具,可用于检查矿物中的碳固存,海洋碳酸钙中的Mn取代(白云石化)和玄武岩的蛇纹石化等过程。

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