How metalliferous brines line Mexican epithermal veins with silver
File(s)Fresnillo_Paper.pdf (869.75 KB)
Published version
Author(s)
Wilkinson, JJ
Simmons, SF
Stoffell, B
Type
Journal Article
Abstract
We determined the composition of ,30-m.y.-old solutions extracted from fluid inclusions in one of the world’s largest and richest silver ore deposits at Fresnillo, Mexico. Silver concentrations average 14 ppm and have a maximum of 27 ppm. The highest silver, lead and zinc concentrations correlate with salinity, consistent with transport by chloro-complexes and confirming the importance of brines in ore formation. The temporal distribution of these fluids within the veins suggests mineralization occurred episodically when they were injected into a fracture system dominated by low salinity, metal-poor fluids. Mass balance shows that a modest volume of brine, most likely of magmatic origin, is sufficient to supply the metal found
in large Mexican silver deposits. The results suggest that ancient epithermal ore-forming events may involve fluid packets not captured in modern geothermal sampling and that giant ore deposits can form rapidly from small volumes of metal-rich fluid.
in large Mexican silver deposits. The results suggest that ancient epithermal ore-forming events may involve fluid packets not captured in modern geothermal sampling and that giant ore deposits can form rapidly from small volumes of metal-rich fluid.
Date Issued
2013-06-24
Citation
Scientific Reports, 2013, 3, pp.1-7
Publisher
Nature Publishing Group
Start Page
1
End Page
7
Journal / Book Title
Scientific Reports
Volume
3
Copyright Statement
© 2013 The Authors. This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
Description
02.07.13 KB. Ok to add published version to Spiral, OA CC license. Nature
Identifier
http://www.nature.com/
2057
Subjects
silver
mineralization
ore
brine
epithermal
fluid
mexico
Publication Status
Published
Publisher URL
Article Number
2057