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Effects of hazardous pollutants on the walls of Valence Aqueduct (Istanbul) by Raman spectroscopy, SEM-EDX and Geographical Information System

机译:拉曼光谱,SEM-EDX和地理信息系统对有害污染物对价槽渡槽(伊斯坦布尔)壁的影响

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摘要

This study involves Raman spectroscopic (176-2900 cm(-1)), SEM-EDX and Geographical Information System studies of the pollutants on the walls of Valence Aqueduct (Bozdogan Kemeri), Istanbul, Turkey. Raman spectroscopy is a useful analytical method in characterization of painting materials and corrosion products. Especially, when it is not possible to take the samples from the place they exist, handheld Raman spectrometers play an important role to identify the materials in these samples. Furthermore, more information could be gathered when it is combined with SEM-EDX studies. On the other hand, regarding the cultural heritage, it is crucial to determine precise coordinates of the historical peninsula and the samples which have been exposed to pollutants, by Geographical Information Systems in order to study them and take precautions for the future. Handheld Raman spectrometer (NanoRam by B&Wrek) allows recording of acceptable and good quality spectra of a large majority of minerals outdoors. Raman spectra of minerals and pollutants in this study were obtained using 785 nm laser excitation source. Observed Raman bands are found at correct wavenumber positions within +/- 3 cm(-1) compared to reference values in the literature. Taking into account the resolution of the spectrometer (9 cm(-1)), the results are still reliable and applicable on such systems. Areas of potential applications of these instruments include all kind of common geoscience work outdoors. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究涉及土耳其伊斯坦布尔的Valence渡槽(Bozdogan Kemeri)墙壁上的污染物的拉曼光谱仪(176-2900 cm(-1)),SEM-EDX和地理信息系统研究。拉曼光谱法是表征涂料和腐蚀产物的有用分析方法。特别是,当不可能从其存在的地方获取样品时,手持式拉曼光谱仪在识别这些样品中的材料方面起着重要的作用。此外,将其与SEM-EDX研究结合时可以收集更多信息。另一方面,关于文化遗产,至关重要的是要通过地理信息系统确定历史半岛和暴露于污染物的样本的精确坐标,以便对其进行研究并采取预防措施。手持式拉曼光谱仪(B&Wrek的NanoRam)可记录大多数户外矿物的可接受质量的光谱。本研究中的矿物和污染物的拉曼光谱是使用785 nm激光激发源获得的。与文献中的参考值相比,在+/- 3 cm(-1)内的正确波数位置发现了观察到的拉曼谱带。考虑到光谱仪的分辨率(9 cm(-1)),结果仍然可靠,并且适用于此类系统。这些仪器的潜在应用领域包括户外各种常见的地球科学工作。 (C)2015 Elsevier B.V.保留所有权利。

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