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In Situ Raman Spectral Mapping Study on the Microscale Fibers in Blue Coral (Heliopora coerulea) Skeletons

机译:蓝珊瑚(Heliopora coerulea)骨骼中超细纤维的原位拉曼光谱映射研究

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The presence and localization of organic matrix associated with the aragonite phase in the fibers of blue coral Heliopora coerulea skeletons were studied by in situ microRaman mapping spectra, with a spatial resolution of approx0.3 (mu)m. Spatial variations in the amounts and chemical compositions of the fibers were imaged. The results showed that the amide I and the alpha-helix of amide III were perpendicular to the c-axis of fibers' growth, whereas the beta-turns/sheet of amide III was in the parallel conformation. Visible S-S and C-S bonds were consistent with the XANES results, which indicated the existence of organic sulfur in coral skeletons. Regular cyclic changes between aragonite and organic matrix refined a stepping growth mode of the fibers' biomineralization. An inorganic PO_(4) bond was detected and exhibited the same concentration variation trends as the v_(4) aragonite bands. Instead of providing an ocean P proxy on the subseasonal to centennial scale by LA-ICPMS, the possibility was raised of producing high resolution surface ocean phosphorus records on daily environmental variation via P/Ca variation cycles determined from Raman mapping data.
机译:通过原位microRaman作图光谱研究了蓝珊瑚Heliopora coerulea骨架纤维中与文石相相关的有机基质的存在和定位,其空间分辨率约为0.3μm。对纤维的数量和化学组成的空间变化进行成像。结果表明,酰胺I和酰胺III的α-螺旋垂直于纤维生长的c轴,而酰胺III的β-转角/片呈平行构象。可见的S-S和C-S键与XANES结果一致,表明珊瑚骨骼中存在有机硫。文石和有机基质之间的规则循环变化完善了纤维生物矿化的逐步生长模式。无机PO_(4)键被检测到并表现出与v_(4)文石带相同的浓度变化趋势。代替了通过LA-ICPMS在季节下至百年尺度上提供海洋P替代物,增加了通过拉曼地图数据确定的P / Ca变化周期在每日环境变化上产生高分辨率地表海洋磷记录的可能性。

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