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Digital map of iron sulfate minerals, other mineral groups, and vegetation of the western United States derived from automated analysis of Landsat 8 satellite data

Dates

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Citation

Rockwell, B.W., and Gnesda, W.R., 2021, Digital map of iron sulfate minerals, other mineral groups, and vegetation of the Western United States derived from automated analysis of Landsat 8 satellite data: U.S. Geological Survey data release, https://doi.org/10.5066/P9BYV5H4.

Summary

Multispectral remote sensing data acquired by Landsat 8 Operational Land Imager (OLI) sensor were analyzed using an automated technique to generate surficial mineralogy and vegetation maps of the conterminous western United States. Six spectral indices (e.g. band-ratios), highlighting distinct spectral absorptions, were developed to aid in the identification of mineral groups in exposed rocks, soils, mine waste rock, and mill tailings across the landscape. The data are centered on the western U.S. and cover portions of Texas, Oklahoma, Kansas, the Canada-U.S. border, and the Mexico-U.S. border during the summers of 2013 – 2014. Methods used to process the images and algorithms used to infer mineralogical composition of surficial materials [...]

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Attached Files

Click on title to download individual files attached to this item.

WesternMineralMap_image.PNG
“Landsat 8 OLI (source: landsat.gsfc.nasa.gov) - Material Maps”
thumbnail 4.6 MB image/png
00Readme_L8_WesternUS.txt
“ReadMe”
5.2 KB text/plain
L8_US_Northwest.zip
“Material map of northwestern US”
210.5 MB application/zip
L8_US_Southwest.zip
“Material map of southwestern US”
295.13 MB application/zip
Extension: L8_Western_Material_Map.zip

Purpose

These data show the spatial distribution of mineral and vegetation groups modeled from Landsat 8 OLI remote sensing data covering the western United States. Automated analysis methodologies are employed to rapidly and cost-effectively generate maps which support U.S. Geological Survey mineral resource and mineral-environmental assessments.

Additional Information

Identifiers

Type Scheme Key
DOI https://www.sciencebase.gov/vocab/category/item/identifier doi:10.5066/P9BYV5H4

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