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Documents dont l'auteur est "Genty, Thomas"

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Nombre de documents: 12

C

Calugaru, I. L., Neculita, C. M., Genty, T., & Zagury, G. J. (2020). Removal and Recovery of Ni and Zn from Contaminated Neutral Drainage by Thermally Activated Dolomite and Hydrothermally Activated Wood Ash. Water Air and Soil Pollution, 231(5), 226 (12 pages). Lien externe

Calugaru, I. L., Neculita, C. M., Genty, T., & Zagury, G. J. (2019). Removal efficiency of As(V) and Sb(III) in contaminated neutral drainage by Fe-loaded biochar. Environmental Science and Pollution Research, 26(9), 9322-9332. Lien externe

Calugaru, I. L., Neculita, C. M., Genty, T., & Zagury, G. J. (2018). Metals and metalloids treatment in contaminated neutral effluents using modified materials. Journal of Environmental Management, 212, 142-159. Lien externe

Calugaru, I. L., Neculita, C. M., Genty, T., Bussière, B., Potvin, R., & Zagury, G. J. (octobre 2016). Effectiveness of thermally activated dolomite in Ni and Zn treatment from contaminated neutral drainage [Communication écrite]. 16th International Symposium on Environmental Issues and Waste Management in Energy and Mineral Production (SWEMP 2016), Istanbul, Turkey. Non disponible

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Genty, T., Bussière, B., Benzaazoua, M., Neculita, C. M., & Zagury, G. J. (2020). Treatment efficiency of iron-rich acid mine drainage in a tri-unit pilot system. Environmental Science and Pollution Research, 27(8), 8418-8430. Lien externe

Genty, T., Bussière, B., Benzaazoua, M., Neculita, C.-M., & Zagury, G. J. (2018). Changes in Efficiency and Hydraulic Parameters During the Passive Treatment of Ferriferous Acid Mine Drainage in Biochemical Reactors. [Änderungen der Effektivität und der hydraulischen Parameter während der passiven Behandlung von eisenreichen, sauren Grubenwässern in biochemischen Reaktoren]. Mine Water and the Environment, 37(4), 686-695. Lien externe

Genty, T., Bussière, B., Benzaazoua, M., Neculita, C.-M., & Zagury, G. J. (2017). Iron removal in highly contaminated acid mine drainage using passive biochemical reactors. Water Science and Technology, 76(7), 1833-1843. Lien externe

Genty, T., Bussière, B., Benzaazoua, M., & Zagury, G. J. (2012). Capacity of Wood Ash Filters to Remove Iron From Acid Mine Drainage: Assessment of Retention Mechanism. Mine Water and the Environment, 31(4), 273-286. Lien externe

Genty, T., Bussière, B., Potvin, R., Benzaazoua, M., & Zagury, G. J. (2012). Dissolution of calcitic marble and dolomitic rock in high iron concentrated acid mine drainage: application to anoxic limestone drains. Environmental Earth Sciences, 66(8), 2387-2401. Lien externe

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Rakotonimaro, T. V., Neculita, C. M., Bussière, B., Genty, T., & Zagury, G. J. (2018). Performance assessment of laboratory and field-scale multi-step passive treatment of iron-rich acid mine drainage for design improvement. Environmental Science and Pollution Research, 25(18), 17575-17589. Lien externe

Rakotonimaro, T. V., Neculita, C.-M., Bussière, B., Genty, T., & Zagury, G. J. (juin 2017). Iron and sulfate removal in highly contaminated acid mine drainage using passive multi-step systems [Communication écrite]. 13th IMWA Congress, Lappeenranta, Finland. Lien externe

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Tardif-Drolet, M., Li, L., Pabst, T., Zagury, G. J., Mermillod-Blondin, R., & Genty, T. (2020). Revue de la réglementation sur la valorisation des résidus miniers hors site au Québec. Dossiers environnement/Environmental Reviews, 28(1), 32-44. Disponible

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