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“Analysing the microbial-mineral interface within sulfidic mine wastes”, V.M. Goldschmidt ConferenceV.M. Goldschmidt Conference, vol. 27. 2017.
, GeoRef, Copyright 2018, American Geological Institute.814431-19
“Evidence of CU- and NI-Bearing Surface Precipitates and Adsorption Complexes In Remediated Soils At the Nanoscale: A Tem, Micro-Raman, and Laser-Ablation ICP-MS Study of Mineral Surface Coatings”, The Canadian MineralogistThe Canadian Mineralogist, vol. 54, pp. 285-309, 2017.
, “Mineral surface coatings; environmental records at the nanoscale”, Rock and mineral coatings; records of climate change, pollution, and life, vol. 13. Mineralogical Society of America and Mineralogical Society of Great Britain and Ireland and Mineralogical Association of Canada and Geochemical Society and Clay Minerals Society, pp. 159-164, 2017.
, GeoRef, Copyright 2018, American Geological Institute.2017-050444microaerophilic taxamineral surface coatings
“Mineral surface coatings; environmental records at the nanoscale”, Rock and mineral coatings; records of climate change, pollution, and life, vol. 13. Mineralogical Society of America and Mineralogical Society of Great Britain and Ireland and Mineralogical Association of Canada and Geochemical Society and Clay Minerals Society, pp. 159-164, 2017.
, GeoRef, Copyright 2018, American Geological Institute.2017-050444microaerophilic taxamineral surface coatings
“Mobilization and agglomeration of uraninite nanoparticles; a nano-mineralogical study of samples from the Matoush uranium ore deposit”, American MineralogistAmerican Mineralogist, vol. 102, pp. 1776-1787, 2017.
, GeoRef, Copyright 2018, American Geological Institute.2017-082705bracewellitechromceladoniteeskolaiteMatoush DepositOtish Basin
“Mobilization and agglomeration of uraninite nanoparticles: A nano-mineralogical study of samples from the Matoush Uranium ore deposit”, American MineralogistAmerican Mineralogist, vol. 102, pp. 1776-1787, 2017.
, “Previously unknown mineral-nanomineral relationships with important environmental consequences; the case of chromium release from dissolving silicate minerals”, American MineralogistAmerican Mineralogist, vol. 102, pp. 2142-2145, 2017.
, GeoRef, Copyright 2018, American Geological Institute.2017-090039Black Thor DepositMistake Mine
“Previously unknown mineral-nanomineral relationships with important environmental consequences: The case of chromium release from dissolving silicate minerals”, American MineralogistAmerican Mineralogist, vol. 102, pp. 2142-2145, 2017.
, “Uranium-bearing opals; products of U-mobilization, diffusion, and transformation processes”, American MineralogistAmerican Mineralogist, vol. 102, pp. 1154-1164, 2017.
, GeoRef, Copyright 2018, American Geological Institute.2017-052109lussatitevorlanite
“Dissolution mechanisms of chromitite; understanding the release and fate of chromium in the environment”, American MineralogistAmerican Mineralogist, vol. 103, pp. 271-283, 2018.
, GeoRef, Copyright 2018, American Geological Institute.2018-033565Black Thor Deposit
“Dissolution mechanisms of chromitite: Understanding the release and fate of chromium in the environment”, American MineralogistAmerican Mineralogist, vol. 103, pp. 271-283, 2018.
, 10.2138/am-2018-6234
“Retention of rare earth elements in authigenic phases following biogeochemical dissolution of ore from Elliot Lake, Ontario”, HydrometallurgyHydrometallurgy, vol. 177, pp. 9-20, 2018.
, Compilation and indexing terms, Copyright 2018 Elsevier Inc.20180904835920AuthigenicAuthigenic mineralsGeochemical controlMineral dissolutionNegatively charged surfacesObserved retentionRare earth elements (REEs)Sulphide oxidation
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