Spectral Signature Characterization and Remote Mapping of Oman Exotic Limestones for Industrial Rock Resource Assessment

This study demonstrates the capability of Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) sensor data to remotely map industrial carbonate rocks known as the ‘Oman exotics’ of the Sultanate of Oman. We measured reflectance spectra of marble using a PIMA&...

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Main Authors: Sankaran Rajendran, Sobhi Nasir, Mohammed A. K. El-Ghali, Khaled Alzebdah, Ali Salim Al-Rajhi, Mohammed Al-Battashi
Format: Article
Language:English
Published: MDPI AG 2018-04-01
Series:Geosciences
Subjects:
Online Access:http://www.mdpi.com/2076-3263/8/4/145
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spelling doaj-ac64d4846bd4410daedfb646cdb857762020-11-24T22:48:18ZengMDPI AGGeosciences2076-32632018-04-018414510.3390/geosciences8040145geosciences8040145Spectral Signature Characterization and Remote Mapping of Oman Exotic Limestones for Industrial Rock Resource AssessmentSankaran Rajendran0Sobhi Nasir1Mohammed A. K. El-Ghali2Khaled Alzebdah3Ali Salim Al-Rajhi4Mohammed Al-Battashi5Earth Science Research Centre, Sultan Qaboos University, Al-Khod, 123 Muscat, OmanEarth Science Research Centre, Sultan Qaboos University, Al-Khod, 123 Muscat, OmanDepartment of Earth Sciences, Sultan Qaboos University, Al-Khod, 123 Muscat, OmanDepartment of Mechanical and Industrial Engineering, Sultan Qaboos University, Al-Khod, 123 Muscat, OmanPublic Authority for Mining, Directorate of General of Minerals, Ministry of Commerce and Industry, P.O. Box: 2088, Muscat, OmanPublic Authority for Mining, Directorate of General of Minerals, Ministry of Commerce and Industry, P.O. Box: 2088, Muscat, OmanThis study demonstrates the capability of Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) sensor data to remotely map industrial carbonate rocks known as the ‘Oman exotics’ of the Sultanate of Oman. We measured reflectance spectra of marble using a PIMA™ spectrometer and studied their spectral absorptions distinguishing calcite from spectral absorptions of dolomite of the same region. The spectral band 8 of ASTER is processed by simple decorrelation stretch image processing method to map the exotic limestone rock of the Nakhl region, Oman. Results showed that carbonate rocks displayed distinctive tonal variation on the image. A comparative study with the spectral band 7 of Landsat 7 (ETM+) does not discriminate the calcite-bearing marbles and associated carbonate formations in the studied area. ASTER data were also processed by the application of the Maximum Likelihood Classification (MLC), Spectral Angle Mapper (SAM) and Spectral Information Divergence (SID) image classification algorithms. The results were assessed by the production of a confusion matrix. The study shows the capability of visible near infrared (VNIR) and shortwave infrared (SWIR) spectral bands of the ASTER sensor and potential of the image processing methods to remotely identify industrial carbonate rocks and we recommend this technique to similar regions of the world.http://www.mdpi.com/2076-3263/8/4/145spectral signaturesremote sensingASTERLandsat (ETM+)exotic limestoneindustrial rockmappingOman
collection DOAJ
language English
format Article
sources DOAJ
author Sankaran Rajendran
Sobhi Nasir
Mohammed A. K. El-Ghali
Khaled Alzebdah
Ali Salim Al-Rajhi
Mohammed Al-Battashi
spellingShingle Sankaran Rajendran
Sobhi Nasir
Mohammed A. K. El-Ghali
Khaled Alzebdah
Ali Salim Al-Rajhi
Mohammed Al-Battashi
Spectral Signature Characterization and Remote Mapping of Oman Exotic Limestones for Industrial Rock Resource Assessment
Geosciences
spectral signatures
remote sensing
ASTER
Landsat (ETM+)
exotic limestone
industrial rock
mapping
Oman
author_facet Sankaran Rajendran
Sobhi Nasir
Mohammed A. K. El-Ghali
Khaled Alzebdah
Ali Salim Al-Rajhi
Mohammed Al-Battashi
author_sort Sankaran Rajendran
title Spectral Signature Characterization and Remote Mapping of Oman Exotic Limestones for Industrial Rock Resource Assessment
title_short Spectral Signature Characterization and Remote Mapping of Oman Exotic Limestones for Industrial Rock Resource Assessment
title_full Spectral Signature Characterization and Remote Mapping of Oman Exotic Limestones for Industrial Rock Resource Assessment
title_fullStr Spectral Signature Characterization and Remote Mapping of Oman Exotic Limestones for Industrial Rock Resource Assessment
title_full_unstemmed Spectral Signature Characterization and Remote Mapping of Oman Exotic Limestones for Industrial Rock Resource Assessment
title_sort spectral signature characterization and remote mapping of oman exotic limestones for industrial rock resource assessment
publisher MDPI AG
series Geosciences
issn 2076-3263
publishDate 2018-04-01
description This study demonstrates the capability of Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) sensor data to remotely map industrial carbonate rocks known as the ‘Oman exotics’ of the Sultanate of Oman. We measured reflectance spectra of marble using a PIMA™ spectrometer and studied their spectral absorptions distinguishing calcite from spectral absorptions of dolomite of the same region. The spectral band 8 of ASTER is processed by simple decorrelation stretch image processing method to map the exotic limestone rock of the Nakhl region, Oman. Results showed that carbonate rocks displayed distinctive tonal variation on the image. A comparative study with the spectral band 7 of Landsat 7 (ETM+) does not discriminate the calcite-bearing marbles and associated carbonate formations in the studied area. ASTER data were also processed by the application of the Maximum Likelihood Classification (MLC), Spectral Angle Mapper (SAM) and Spectral Information Divergence (SID) image classification algorithms. The results were assessed by the production of a confusion matrix. The study shows the capability of visible near infrared (VNIR) and shortwave infrared (SWIR) spectral bands of the ASTER sensor and potential of the image processing methods to remotely identify industrial carbonate rocks and we recommend this technique to similar regions of the world.
topic spectral signatures
remote sensing
ASTER
Landsat (ETM+)
exotic limestone
industrial rock
mapping
Oman
url http://www.mdpi.com/2076-3263/8/4/145
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