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Review

Current Techniques and Applications of Mineral Chemistry to Mineral Exploration; Examples from Glaciated Terrain: A Review

by
Daniel Layton-Matthews
1,* and
M. Beth McClenaghan
2
1
Queen’s Facility for Isotope Research, Queen’s University, Kingston, ON K7L 3N6, Canada
2
Geological Survey of Canada, 601 Booth Street, Ottawa, ON K1A 0E8, Canada
*
Author to whom correspondence should be addressed.
Minerals 2022, 12(1), 59; https://doi.org/10.3390/min12010059
Submission received: 3 December 2021 / Accepted: 22 December 2021 / Published: 31 December 2021
(This article belongs to the Special Issue Mineral Exploration in Weathered and Covered Terrains)

Abstract

This paper provides a summary of traditional, current, and developing exploration techniques using indicator minerals derived from glacial sediments, with a focus on Canadian case studies. The 0.25 to 2.0 mm fraction of heavy mineral concentrates (HMC) from surficial sediments is typically used for indicator mineral surveys, with the finer (0.25–0.50 mm) fraction used as the default grain size for heavy mineral concentrate studies due to the ease of concentration and separation and subsequent mineralogical identification. Similarly, commonly used indicator minerals (e.g., Kimberlite Indicator Minerals—KIMs) are well known because of ease of optical identification and their ability to survive glacial transport. Herein, we review the last 15 years of the rapidly growing application of Automated Mineralogy (e.g., MLA, QEMSCAN, TIMA, etc) to indicator mineral studies of several ore deposit types, including Ni-Cu-PGE, Volcanogenic Massive Sulfides, and a variety of porphyry systems and glacial sediments down ice of these deposits. These studies have expanded the indicator mineral species that can be applied to mineral exploration and decreased the size of the grains examined down to ~10 microns. Chemical and isotopic fertility indexes developed for bedrock can now be applied to indicator mineral grains in glacial sediments and these methods will influence the next generation of indicator mineral studies.
Keywords: indicator minerals; mineral chemistry; automated mineralogy; MLA; QEMSCAN; laser ablation; mineral exploration; ore deposits indicator minerals; mineral chemistry; automated mineralogy; MLA; QEMSCAN; laser ablation; mineral exploration; ore deposits

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MDPI and ACS Style

Layton-Matthews, D.; McClenaghan, M.B. Current Techniques and Applications of Mineral Chemistry to Mineral Exploration; Examples from Glaciated Terrain: A Review. Minerals 2022, 12, 59. https://doi.org/10.3390/min12010059

AMA Style

Layton-Matthews D, McClenaghan MB. Current Techniques and Applications of Mineral Chemistry to Mineral Exploration; Examples from Glaciated Terrain: A Review. Minerals. 2022; 12(1):59. https://doi.org/10.3390/min12010059

Chicago/Turabian Style

Layton-Matthews, Daniel, and M. Beth McClenaghan. 2022. "Current Techniques and Applications of Mineral Chemistry to Mineral Exploration; Examples from Glaciated Terrain: A Review" Minerals 12, no. 1: 59. https://doi.org/10.3390/min12010059

APA Style

Layton-Matthews, D., & McClenaghan, M. B. (2022). Current Techniques and Applications of Mineral Chemistry to Mineral Exploration; Examples from Glaciated Terrain: A Review. Minerals, 12(1), 59. https://doi.org/10.3390/min12010059

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