Alteration of Metasedimentary Rocks Associated with Gold Mineralization at Young-Davidson Gold Mine
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University of Waterloo
Abstract
The Young-Davidson gold mine is situated within the southwestern part of the Abitibi greenstone
belt in Northeastern Ontario. It is part of the Western Cadillac-Larder Lake region, known for its
lithological complexities and hydrothermal alteration. Within the Young-Davidson gold mine,
syenite hosts the majority of gold mineralization; however, the potential of gold in the
metasedimentary rocks are underexplored, although gold mineralization does extend into them.
This study integrated hyperspectral imaging, petrography, electron probe microanalysis (EPMA),
and lithogeochemical data to understand the alteration and its relationship to gold mineralization
in the metasedimentary rocks at Young-Davidson. Hyperspectral imaging and EPMA show that
alteration-related white mica is phengitic and can be compositionally divided into two groups;
one of these is associated with higher gold grades. Gold mineralization is also associated with
chlorite and pyrite, with higher bulk rock Fe contents generally associated with elevated gold
grades. The presence of pyrite typically increases with increasing alteration intensity and higher
gold grade. A spatial association between chlorite and pyrite with anhedral biotite suggests that
biotite breakdown contributed to pyrite growth, and an increased intensity of biotite alteration is
indicative of gold mineralization. Both the syenite and the metasedimentary rocks have pyrite as
the dominant sulfide phase however; a clear contrast in the oxide phase is noted. Overall, these
findings highlight sulfidation and the availability of Fe-rich assemblages as an important control
on gold mineralization in the metasedimentary rocks at Young-Davidson, and the importance of
incorporating a variety of methods to understand gold mineralization, as well as the relevance of
hyperspectral imaging as a recently adapted tool in mineral exploration.