Hydrothermal Alteration of High Sulfidation Epithermal Deposits in Secang Area, Tulungagung, East Java, Indonesia
Anastasia Dewi Titisari(1*), Septyo Uji Pratomo(2), Arifudin Idrus(3)
(1) Universitas Gadjah Mada
(2) Universitas Gadjah Mada
(3) Universitas Gadjah Mada
(*) Corresponding Author
Abstract
This research aims to determine geological condition and alteration in an epithermal high sulfidation mineralization as an initial guide for further exploration stages. Detailed geological mapping with scale of 1:12,500 is conducted to identify geological aspects and distribution of alteration zones. Selected rocks samples were prepared for laboratory analysis which are petrography, XRD (X-Ray Diffraction), and FA-AAS (Fire Assay-Atomic Absorption Spectrometry) analyse. Geological condition of the study area consists of six rock units including andesite lava, andesite breccia, diorite intrusion, polymict breccia, limestone, and alluvial deposit. Geological structures found are left strike-slip fault with right strike-slip fault as accompany. Result of XRD analysis shows the presence of clay minerals group: smectite, kaolinite, illite, diaspore, alunite, and pyrophillite. The alteration zones of study area are propylitic, argillic, advance argillic, and silisification zones. The further exploration stage is recommended to focus at the southwest and northeast of study area.
Keywords
Full Text:
PDFReferences
ANTAM, PT. 2017. East Java Regional Mapping Program 2017. Jakarta: Presentasi East Java Regional Mapping Program 2017. Unpubl Rept., 40p.
Arribas,. 1995. Characteristic of High-Sulfidation Epithermal Deposits, and Their Relation to Magmatic Fluid. Japan: Mineral Resources Department, Geological Survey of Japan.
Corbett, G.J. dan Leach, T.M. 1997, Southwest Pacific Gold – Copper Systems: Structure, Alteration and Mineralization. Auckland: CMS New Zealand Ltd, Short Course Manual.
Corbett, G.J. dan Leach, T.M. 1998. Southwest Pacific Rim Gold-Copper Systems: Structure, Alteration.
Reyes, A.G. 1990a. Petrology of Philippines Geothermal Systems and The Application of Alteration Mineralogy to Their Assessment. Journal of Volcanology and Geothermal Research, v. 43: p.279-309.
Samodera, H., Suharsono, Gafoer, S., Suwarti, T. 1992. Peta Geologi Lembar Tulungagung Skala 1:100.000. Bandung: Pusat Penelitian dan Pengembangan Geologi.
van Bemmelen, R.W. 1949. The Geology of Indonesia, Vol. 1A. Belanda: The Hague.
Widodo, W., Prapto, A.S., Nursahan, I. 2002. Inventarisasi dan Evaluasi Mineral Logam di Pegunungan Selatan Jawa Timur (Kabupaten Pacitan, dll), Jawa Timur, Bandung: Sub.Dit.Mineral Logam, Badan Geologi.
Widodo, W., & Simanjuntak, S. 2002. Hasil Kegiatan Eksplorasi Mineral Logam Kerjasama Teknik Asing Daerah Pegunungan Selatan Jawa Timur (JICA/MMAJ – Jepang) dan Cianjur (KIGAM - Korea). Bandung: Kolokium Direktorat Inventarisasi Sumberdaya Mineral (DIM).
Widodo, W. 2003. Inventarisasi Bahan Galian Inventarisasi Bahan Galian Logam di Kab.Malang dan Kab.Lumajang dan Eksplorasi Lanjutan Mineralisasi Logam di Daerah Tempursari (Kab.Lumajang), Seweden (Kab.Blitar), dan Suren Lor (Kab.Trenggalek), Prov Jawa Timur. Bandung: Kolokium Direktorat Inventarisasi Sumberdaya Mineral (DIM).
DOI: https://doi.org/10.22146/jag.55235
Article Metrics
Abstract views : 3104 | views : 3836Refbacks
- There are currently no refbacks.
Copyright (c) 2021 Anastasia Dewi Titisari, Septyo Uji Pratomo, Arifudin Idrus
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
Journal of Applied Geology Indexed by:
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.