首页> 外文会议>International Conference on Sensors Models in Remote Sensing Photogrammetry >DRILL CORE MINERAL ANALYSIS BY MEANS OF THE HYPERSPECTRAL IMAGING SPECTROMETER HySpex, XRD AND ASD IN PROXIMITY OF THE MYTINA MAAR, CZECH REPUBLIC
【24h】

DRILL CORE MINERAL ANALYSIS BY MEANS OF THE HYPERSPECTRAL IMAGING SPECTROMETER HySpex, XRD AND ASD IN PROXIMITY OF THE MYTINA MAAR, CZECH REPUBLIC

机译:钻芯矿物分析通过高光谱成像光谱仪Hyspex,XRD和Asd,捷克共和国迈蒂娜·迈尔·迈尔蒂娜·迈尔(Mytina Maar)

获取原文

摘要

Imaging spectroscopy is increasingly used for surface mapping. Therefore different expert systems are being utilized to identify surface cover materials. Those expert systems mainly rely on the spectral comparison between unknown and library spectra, but their performances were only limited qualified. This study aims on the comparative analysis of drill core samples from the recently discovered maar system in the Czech Republic. Drill core samples from the surrounding area of the Mytina maar were analyzed by X-Ray diffraction (XRD) and the hyperspectral spectrometer HySpex. Additionally, soil samples were measured in-situ by the ASD FieldSpec4 and in the laboratory by the HySpex VNIR/SWIR spectrometer system. The data was then analyzed by the MICA-algorithm and the results were compared to the results of the XRD-analysis. The XRD-analysis served here as validation basis. The results of the hyperspectral and the XRD analyses were used to densify a volcanic map that also integrates in-situ soil measurements in the surrounding area of Mytina. The comparison of the XRD-and solaroptical remote sensing results showed a good correlation of qualified minerals if the soil organic carbon content was significantly low. Contrary to XRD, smectites and muscovites were also straightforward identified that underlined the overall performance of the approach to identify minerals. Basically, in this work an operable approach is proposed that enables the fast, repeatable and detailed analysis of drill cores, drill core samples and soil samples and, hence, provides a higher performance than state-of-the-art XRD-analyses.
机译:成像光谱越来越多地用于表面映射。因此,正在利用不同的专家系统来识别表面覆盖材料。这些专家系统主要依赖于未知和库谱之间的光谱比较,但它们的性能仅受限合格。本研究旨在从最近发现的捷克共和国迈尔系统的钻孔核心样本的比较分析。通过X射线衍射(XRD)和高光谱光谱仪Hyspex分析来自Mytina Maar周围区域的钻孔核心样本。另外,通过ASD Fieldspec4和Hyspex VNIR / SWIR光谱仪系统原位测量土壤样品。然后通过云母算法分析数据,并将结果与​​XRD分析的结果进行比较。 XRD分析在此服务于验证。高光谱和XRD分析的结果用于致密化火山地图,该地图还集中于麦迪纳周围地区的原位土壤测量。如果土壤有机碳含量显着低,XRD-and Solaroptical遥感结果的比较显示出合格矿物质的良好相关性。与XRD相反,蒙脱石和莫斯科也识别出来,强调了鉴定矿物质的方法的整体性能。基本上,在这项工作中,提出了一种可操作的方法,以实现钻孔,钻孔核样品和土壤样本的快速,可重复和详细的分析,因此提供比最先进的XRD分析更高的性能。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号