Articles | Open Access | DOI: https://doi.org/10.37547/tajas/Volume02Issue07-16

Application Of Ratio Bands Of Space Images For Mapping Minerals On The Example Of KokpatasOkzhetpes Trend In Mountain Bukantau (South Tien Shan)

Akram Bayramovich Goipov, , Akram Bayramovich Goipov, Doctor of Philosophy (PhD) in geological and mineralogical sciences, Associate Professor, Geology and geoinformation systems, National University of Uzbekistan named after Mirzo Ulugbek, Uzbekistan
Khasanov Numonjon Rakhmatovich, , PhD student of the faculty Geology and geoinformation systems National University of Uzbekistan named after Mirzo Ulugbek, Uzbekistan.
Shokir Islomovich Axmadov, , Head of the Center for Remote Sensing and GIS-Technologies of the State Enterprise Institute of Mineral Resources, Uzbekistan.
Zayniddinxon Muxtorxonovich Musaxonov , Head of Remote Sensing Sector of the State Enterprise Mineral Resources Institute, Uzbekistan.

Abstract

This article presents the results of processing Earth remote sensing materials using the
ASTER satellite image ratio bands. On the territory of Bukantau-Kokpatas-Okzhetpes
trend, mineral changes are mapped: iron, kaolinite and quartz indices. The relationship of
mineral metasomatic changes with zones of ore mineralization, ore occurrences and
deposits and fault zones that control metasomatic mineral changes is established. The
structural, magmatic and lithological factors of mineralization are substantiated.

Keywords

ASTER, Bukantau-Kokpatas-Okzhetpes trend,

References

Liu, Lei & Feng, Jilu & Han, Ling & Zhou, Jun & Xu, Xinliang & Liu, Rui. (2018). Mineral

mapping using spaceborne Tiangong-1 hyperspectral imagery and ASTER data: A case

study of alteration detection in support of regional geological survey at JintanziMalianquan area, Beishan, Gansu Province, China. Geological Journal. 53. 372-383.

1002/gj.3260.

Mirkamalov R.Kh., Chirikin V.V., Divaev F.K. Geodynamic reconstructions of the

orogenic belt of the Western Tien Shan and forecasting of endogenous deposits in the

basement rocks (guidelines). T.: SE Institute of Mineral Resources, 2019. - 162 p.

Ore deposits of Uzbekistan / Ed. I.M.Golovanov. - T .: HYDROINGEO, 2001 .- 660 p.

Mirkamalov R.Kh., Golovanov I.M. and others. Atlas of models of ore deposits in

Uzbekistan - T.: SEIMR, 2010. - 100 p.

Crosta, A.P., Filho, C.R.S., Azevedo, F., Brodie, C., 2003. Targeting key alteration

minerals in epithermal deposits in Patagonia, Argentina, using ASTER imagery and

principal component analysis. Int. J. Remote. Sens. 24, 4233–4240.

Pour, A.B., Hashim, M. (2012): The application of ASTER remote sensing data to

porphyry copper and epithermal gold deposits. Ore Geology Reviews 44 pp. 1-9.

Zhang X., Pazner M., Duke N. Lithologic and mineral information extraction for gold

exploration using ASTER data in the south Chocolate Mountains (California) // ISPRS

Journal of Photogrammetry and Remote Sensing. 2007. Vol. 62. 4. P. 271-282.

Rowan, L.C., Hook, S.J., Abrams, M.J., Mars, J.C., 2003. Mapping hydrothermally

altered rocks at Cuprite, Nevada, using the Advanced Spaceborne Thermal Emission and

Reflection Radiometer (ASTER), a new satellite-imaging system. Econ. Geol. 98 (5), 1019–

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Akram Bayramovich Goipov, Khasanov Numonjon Rakhmatovich, Shokir Islomovich Axmadov, & Zayniddinxon Muxtorxonovich Musaxonov. (2020). Application Of Ratio Bands Of Space Images For Mapping Minerals On The Example Of KokpatasOkzhetpes Trend In Mountain Bukantau (South Tien Shan). The American Journal of Applied Sciences, 2(07), 94–103. https://doi.org/10.37547/tajas/Volume02Issue07-16