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Analysis of rock samples collected from rock hewn churches of Lalibela, Ethiopia using laser-induced breakdown spectroscopy

机译:使用激光诱导击穿光谱法分析从埃塞俄比亚拉利贝拉的岩石凿教堂收集的岩石样品

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With the aim to study alteration processes of the rock hewn churches from Lalibela (Ethiopia), we applied Laser Induced Breakdown Spectroscopy (LIBS) technique to measure the elemental composition both of the bulk rock materials and their external layers, exposed to the environmental factors. The analytical plasma was generated by nanosecond pulses of an Nd: YAG laser emitting at 1064 nm. Different major and minor sample constituents were detected, including Ca, Mg, Na, Fe, Ti, Al and K. The detected O emission originates both from air surrounding and the sample, while the intensity of N lines, coming exclusively from air, was used for the LIBS signal normalization. By depth profiling of the weathered basalt rock, we observed a lower presence of K in the external layers, corresponding to the first 5 laser shots. The emission from this element is anti-correlated with the line intensities from O, and this was attributed to the variations in relative abundances of clay minerals and K-feldspar. The analogue measurements were performed on the tuff rock, and compared to the spectra from powder samples containing only the external soft material, scratched from the rocks. These analyses show an abundance of H in the weathered, wetted layers and suggest that cations are lost from the constituent primary minerals and replaced by H+; this process disrupts the lattice structure and causes a marked loss of strength. The studies presented here demonstrate that LIBS is a useful technique for studying the alteration processes in the rocks, caused by environmental factors.
机译:为了研究拉利贝拉(埃塞俄比亚)的岩石凿教堂的变更过程,我们应用了激光诱导击穿光谱(LIBS)技术来测量暴露于环境因素的大块岩石材料及其外层的元素组成。通过在1064 nm处发射的Nd:YAG激光的纳秒脉冲生成分析等离子体。检测到了不同的主要和次要样品成分,包括Ca,Mg,Na,Fe,Ti,Al和K。检测到的O排放均来自周围的空气和样品,而N线的强度仅来自空气。用于LIBS信号归一化。通过对风化玄武岩的深度剖析,我们观察到外层中K的含量较低,对应于前5次激光发射。该元素的发射与O的线强度呈反相关,这归因于粘土矿物和钾长石的相对丰度变化。在凝灰岩上进行模拟测量,并将其与仅包含外部软质材料的粉末样品(从岩石上刮擦)的光谱进行比较。这些分析表明,在风化的湿润层中有大量的H,表明阳离子从组成的主要矿物质中流失了,并被H +替代。该过程破坏了晶格结构并导致强度显着降低。本文介绍的研究表明,LIBS是研究岩石中由环境因素引起的蚀变过程的有用技术。

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