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“Processes at the mineral-water interface in the acid soils of the Sudbury area”, Laurentian University, 2013.
, “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”, A tribute to Frank Christopher Hawthorne, vol. 54. Mineralogical Association of Canada, Ottawa, ON, Canada, pp. 285-309, 2016.
, GeoRef, Copyright 2018, American Geological Institute.2017-006101
“Mineralogy and weathering of smelter-derived spherical particles in soils; implications for the mobility of Ni and Cu in the surficial environment”, Water, Air and Soil Pollution, vol. 223, pp. 3619-3641, 2012.
, GeoRef, Copyright 2018, American Geological Institute.2013-076859patinas
“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.
, “Distribution of metals and metalloids in smelter-derived particulate matter in soils and mineralogical insights into their retention and release in a low-T environment”, Canadian Mineralogist, vol. 52, pp. 453-471, 2014.
, Compilation and indexing terms, Copyright 2018 Elsevier Inc.20145200355429Aluminosilicate mineralsDissolution-precipitation processElevated concentrationsInitial concentrationLaser ablation inductively-coupled plasma mass spectrometriesMicro Raman SpectroscopyParticulate MatterSmelter