Arid
DOI10.2113/gssajg.119.1.63
Multi- and hyperspectral spaceborne remote sensing of the Aggeneys base metal sulphide mineral deposit sites in the Lower Orange River region, South Africa
Mielke, C.1,2; Muedi, T.3,4; Papenfuss, A.1,2; Boesche, N. K.1,2; Rogass, C.1; Gauert, C. D. K.5; Altenberger, U.2; de Wit, M. J.3
通讯作者Mielke, C.
来源期刊SOUTH AFRICAN JOURNAL OF GEOLOGY
ISSN1012-0750
EISSN1996-8590
出版年2016
卷号119期号:1页码:63-76
英文摘要

New tools and algorithms for geological femote Sensing are developed and verified at test sites throughout the world in preparation of the German hyperspectral satellite Mission (EnMAP), which is an Environmental Mapping and Analysis Program.


The aggeneys Cu-Pb-Zn deposit, situated in the arid north western part of South Africa, represents a unique field laboratory for testing these new tools. Here spaceborne hyperspectral data covering the Swartberg, and hyperspectral spaceborne data can be demonkrated, such as the Iron Feature Depth index (IFD), which has recently been proposed for mine waste mapping in the North West Province of South Africa and for gossan detection at Haib River in South Namibia.


The work presented here explores the potential of the IFD for gossan mapping and characterization at Gamsberg and Big Syncline, from EO-1 ALI and Landsat-8 OLI data together with mineral maps from expert systems such as the United States Geological Survey (USGS) Material Identification and Characterization Algorithm (MICA), and first results from EnMAPs EnGeoMAP algorithm. Field spectroscopic measurements and field sampling were carried out to validate and calibrate the results from the expert systems and the IFD. This ground truthing is a necessary complementary step to link the results from the expert systems and the IFD to in-situ field spectroscopy.


Future mineral exploration initiatives may benefit from the techniques described here, because they can significantly narrow the expensive, exploration activities such as hyperspectral airborne data, field activities and drilling, by identifying the most promising mineral anomalies in an area from the spaceborne data.


类型Article
语种英语
国家Germany ; South Africa
收录类别SCI-E
WOS记录号WOS:000386990300007
WOS关键词MISSION ; BUSHMANLAND ; SATELLITE ; SPECTRA ; AGE
WOS类目Geology
WOS研究方向Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/196520
作者单位1.Helmholtz Ctr Potsdam, German Res Ctr Geosci, Potsdam, Germany;
2.Univ Potsdam, Inst Earth & Environm Sci, Potsdam, Germany;
3.Nelion Mandela Metropolitan Univ, AEON ESSRI, Port Elizabeth, South Africa;
4.Nelion Mandela Metropolitan Univ, Dept Of Geol Sci, Port Elizabeth, South Africa;
5.Univ Free State, Dept Geol, Bloemfontein, South Africa
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Mielke, C.,Muedi, T.,Papenfuss, A.,et al. Multi- and hyperspectral spaceborne remote sensing of the Aggeneys base metal sulphide mineral deposit sites in the Lower Orange River region, South Africa[J],2016,119(1):63-76.
APA Mielke, C..,Muedi, T..,Papenfuss, A..,Boesche, N. K..,Rogass, C..,...&de Wit, M. J..(2016).Multi- and hyperspectral spaceborne remote sensing of the Aggeneys base metal sulphide mineral deposit sites in the Lower Orange River region, South Africa.SOUTH AFRICAN JOURNAL OF GEOLOGY,119(1),63-76.
MLA Mielke, C.,et al."Multi- and hyperspectral spaceborne remote sensing of the Aggeneys base metal sulphide mineral deposit sites in the Lower Orange River region, South Africa".SOUTH AFRICAN JOURNAL OF GEOLOGY 119.1(2016):63-76.
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