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U-Pb dating, lead isotopes, and trace element composition of Pyrite hosted in Black Shale and Magmatic rocks, Malaysia: implications for Orogenic gold mineralization and exploration

journal contribution
posted on 2023-05-21, 17:12 authored by Charles MakoundiCharles Makoundi, Khin ZawKhin Zaw, Endut, Z
Several orogenic/sediment-hosted gold deposits are widely distributed in the Central Belt of Peninsular Malaysia. This study combines U-Pb dating with the isotope composition of lead as well as gold content in ore and magmatic rock-hosted pyrite. It aims to investigate the age of gold mineralization and possibly establish a link between gold mineralization and magmatic intrusion in the district. The results show that the S-type magmatic rocks yield crystallisation ages ranging from 204.1 ± 4.7 Ma to 223 ± 3.2 Ma with low magnetic susceptibility measurements below 3 × 10−3 SI unit. These ages fit within the 200–250 Ma Pb-Pb model age of the Pb isotopic composition of K-feldspars. Pyrite trace element mapping has shown that gold and lead show zoning patterns occurring at the same time in pyrite. The Pb isotope composition of the cores of pyrite grains indicate that the approximate model age of gold mineralization is 200 Ma. This age is close to 197–199 Ma (Early Jurassic), previously determined by K-Ar dating of sericite which was interpreted to be the age of gold mineralization. In this study, gold content varies up to 793 ppb in the analysed magmatic rock-hosted pyrites, indicative of a likely magmatic contribution to gold mineralization.

History

Publication title

Minerals

Volume

13

Article number

221

Number

221

Pagination

1-25

ISSN

2075-163X

Department/School

School of Natural Sciences

Publisher

MDPI AG

Place of publication

Switzerland

Repository Status

  • Restricted

Socio-economic Objectives

Mining and extraction of energy resources not elsewhere classified; Precious (noble) metal ore exploration; Mineral exploration not elsewhere classified

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