Application of multi-sensor satellite data for exploration of Zn-Pb sulfide mineralization in the Franklinian Basin, North Greenland

Geological mapping and mineral exploration programs in the High Arctic have been naturally hindered by its remoteness and hostile climate conditions. The Franklinian Basin in North Greenland has a unique potential for exploration of world-class zinc deposits. In this research, multi-sensor remote se...

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Main Authors: Pour, A. B., Park, T. S., Park, Y., Hong, J. K., Zoheir, B., Pradhan, B., Ayoobi, I., Hashim, M.
Format: Article
Language:English
Published: MDPI AG 2018
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Online Access:http://eprints.utm.my/id/eprint/79692/1/MazlanHashim2018_ApplicationofMultiSensorSatelliteData.pdf
http://eprints.utm.my/id/eprint/79692/
http://dx.doi.org/10.3390/rs10081186
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Institution: Universiti Teknologi Malaysia
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spelling my.utm.796922020-08-17T03:38:59Z http://eprints.utm.my/id/eprint/79692/ Application of multi-sensor satellite data for exploration of Zn-Pb sulfide mineralization in the Franklinian Basin, North Greenland Pour, A. B. Park, T. S. Park, Y. Hong, J. K. Zoheir, B. Pradhan, B. Ayoobi, I. Hashim, M. G70.39-70.6 Remote sensing Geological mapping and mineral exploration programs in the High Arctic have been naturally hindered by its remoteness and hostile climate conditions. The Franklinian Basin in North Greenland has a unique potential for exploration of world-class zinc deposits. In this research, multi-sensor remote sensing satellite data (e.g., Landsat-8, Phased Array L-band Synthetic Aperture Radar (PALSAR) and Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER)) were used for exploring zinc in the trough sequences and shelf-platform carbonate of the Franklinian Basin. A series of robust image processing algorithms was implemented for detecting spatial distribution of pixels/sub-pixels related to key alteration mineral assemblages and structural features that may represent potential undiscovered Zn-Pb deposits. Fusion of Directed Principal Component Analysis (DPCA) and Independent Component Analysis (ICA) was applied to some selected Landsat-8 mineral indices for mapping gossan, clay-rich zones and dolomitization. Major lineaments, intersections, curvilinear structures and sedimentary formations were traced by the application of Feature-oriented Principal Components Selection (FPCS) to cross-polarized backscatter PALSAR ratio images. Mixture Tuned Matched Filtering (MTMF) algorithm was applied to ASTER VNIR/SWIR bands for sub-pixel detection and classification of hematite, goethite, jarosite, alunite, gypsum, chalcedony, kaolinite, muscovite, chlorite, epidote, calcite and dolomite in the prospective targets. Using the remote sensing data and approaches, several high potential zones characterized by distinct alteration mineral assemblages and structural fabrics were identified that could represent undiscovered Zn-Pb sulfide deposits in the study area. This research establishes a straightforward/cost-effective multi-sensor satellite-based remote sensing approach for reconnaissance stages of mineral exploration in hardly accessible parts of the High Arctic environments. MDPI AG 2018-08-01 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/79692/1/MazlanHashim2018_ApplicationofMultiSensorSatelliteData.pdf Pour, A. B. and Park, T. S. and Park, Y. and Hong, J. K. and Zoheir, B. and Pradhan, B. and Ayoobi, I. and Hashim, M. (2018) Application of multi-sensor satellite data for exploration of Zn-Pb sulfide mineralization in the Franklinian Basin, North Greenland. Remote Sensing, 10 (8). ISSN 2072-4292 http://dx.doi.org/10.3390/rs10081186 DOI:10.3390/rs10081186
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic G70.39-70.6 Remote sensing
spellingShingle G70.39-70.6 Remote sensing
Pour, A. B.
Park, T. S.
Park, Y.
Hong, J. K.
Zoheir, B.
Pradhan, B.
Ayoobi, I.
Hashim, M.
Application of multi-sensor satellite data for exploration of Zn-Pb sulfide mineralization in the Franklinian Basin, North Greenland
description Geological mapping and mineral exploration programs in the High Arctic have been naturally hindered by its remoteness and hostile climate conditions. The Franklinian Basin in North Greenland has a unique potential for exploration of world-class zinc deposits. In this research, multi-sensor remote sensing satellite data (e.g., Landsat-8, Phased Array L-band Synthetic Aperture Radar (PALSAR) and Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER)) were used for exploring zinc in the trough sequences and shelf-platform carbonate of the Franklinian Basin. A series of robust image processing algorithms was implemented for detecting spatial distribution of pixels/sub-pixels related to key alteration mineral assemblages and structural features that may represent potential undiscovered Zn-Pb deposits. Fusion of Directed Principal Component Analysis (DPCA) and Independent Component Analysis (ICA) was applied to some selected Landsat-8 mineral indices for mapping gossan, clay-rich zones and dolomitization. Major lineaments, intersections, curvilinear structures and sedimentary formations were traced by the application of Feature-oriented Principal Components Selection (FPCS) to cross-polarized backscatter PALSAR ratio images. Mixture Tuned Matched Filtering (MTMF) algorithm was applied to ASTER VNIR/SWIR bands for sub-pixel detection and classification of hematite, goethite, jarosite, alunite, gypsum, chalcedony, kaolinite, muscovite, chlorite, epidote, calcite and dolomite in the prospective targets. Using the remote sensing data and approaches, several high potential zones characterized by distinct alteration mineral assemblages and structural fabrics were identified that could represent undiscovered Zn-Pb sulfide deposits in the study area. This research establishes a straightforward/cost-effective multi-sensor satellite-based remote sensing approach for reconnaissance stages of mineral exploration in hardly accessible parts of the High Arctic environments.
format Article
author Pour, A. B.
Park, T. S.
Park, Y.
Hong, J. K.
Zoheir, B.
Pradhan, B.
Ayoobi, I.
Hashim, M.
author_facet Pour, A. B.
Park, T. S.
Park, Y.
Hong, J. K.
Zoheir, B.
Pradhan, B.
Ayoobi, I.
Hashim, M.
author_sort Pour, A. B.
title Application of multi-sensor satellite data for exploration of Zn-Pb sulfide mineralization in the Franklinian Basin, North Greenland
title_short Application of multi-sensor satellite data for exploration of Zn-Pb sulfide mineralization in the Franklinian Basin, North Greenland
title_full Application of multi-sensor satellite data for exploration of Zn-Pb sulfide mineralization in the Franklinian Basin, North Greenland
title_fullStr Application of multi-sensor satellite data for exploration of Zn-Pb sulfide mineralization in the Franklinian Basin, North Greenland
title_full_unstemmed Application of multi-sensor satellite data for exploration of Zn-Pb sulfide mineralization in the Franklinian Basin, North Greenland
title_sort application of multi-sensor satellite data for exploration of zn-pb sulfide mineralization in the franklinian basin, north greenland
publisher MDPI AG
publishDate 2018
url http://eprints.utm.my/id/eprint/79692/1/MazlanHashim2018_ApplicationofMultiSensorSatelliteData.pdf
http://eprints.utm.my/id/eprint/79692/
http://dx.doi.org/10.3390/rs10081186
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