From Geoscience Australia

Lithospheric conductors reveal source regions of convergent margin mineral systems

ARCHIVED

Created 14/01/2025

Updated 14/01/2025

The clean energy transition will require a vast increase in metal supply, yet discoveries of new mineral deposits are declining. Recently, several case studies have demonstrated links between electrical conductors imaged using magnetotelluric (MT) data and mineral deposits. Use of MT methods for exploration is therefore growing but the general applicability has not yet been tested. We look at spatial relationships between conductors and three deposit styles and find that volcanic hosted massive sulfide (VHMS) and copper porphyry deposits show weak to moderate correlations with conductors in the upper mantle. In contrast, orogenic gold deposits show strong correlations with mid-crustal conductors. These differences likely reflect differences in the way these deposits form, and suggest a metamorphic-fluid source for orogenic gold is significant. The resistivity signature can be preserved for hundreds of millions of years, and therefore MT can be a powerful tool for mineral exploration.

Files and APIs

Tags

Additional Info

Field Value
Title Lithospheric conductors reveal source regions of convergent margin mineral systems
Language eng
Licence notspecified
Landing Page https://devweb.dga.links.com.au/data/dataset/838f0ffd-9878-453d-987b-316883fb4e59
Contact Point
Geoscience Australia
clientservices@ga.gov.au
Reference Period 08/04/2019
Geospatial Coverage {"type": "Polygon", "coordinates": [[[112.0, -44.0], [154.0, -44.0], [154.0, -9.0], [112.0, -9.0], [112.0, -44.0]]]}
Data Portal data.gov.au

Data Source

This dataset was originally found on data.gov.au "Lithospheric conductors reveal source regions of convergent margin mineral systems". Please visit the source to access the original metadata of the dataset:
https://devweb.dga.links.com.au/data/dataset/lithospheric-conductors-reveal-source-regions-of-convergent-margin-mineral-systems1

No duplicate datasets found.