Geochemical modeling of soils and technogenic sediments interactions with natural waters using SELECTOR software (Chaabet-el-Hamra mine, Algeria)

Geochemistry - Tập 81 - Trang 125799 - 2021
Valeriy Bychinsky1, Marina Charykova2, Rima Omara3
1Institute of Geochemistry, A.P. Vinogradov Siberian Branch of the Russian Academy of Sciences, Irkutsk, Russian Federation
2Saint-Petersburg State University, Saint-Petersburg , Russian Federation
3Saint Petersburg State University, Saint-Petersburg, Russian Federation

Tài liệu tham khảo

Adriano, 1986 Attouchek, 2008, Diagnostique et evalution de la charge pollutante par les elements traces metalliques (ETMs): cas du complex minier de Kherzet Youssef (Setif), Bull. Serv. Geol. Nat., 9, 217 Aubertin, M., Pabst, T., Bussière, B., James, M., Mbonimpa, M., Benzaazoua, M., Maqsoud, A., 2015. Revue technique des meilleures pratiques de restauration des sites d'entreposage de rejets miniers générateurs de DMA. Conference: Symposium 2015 sur l'environnement et les mines At: Rouyn-Noranda, QC, Canada. (In French). Benabess, 2020, Environmental protection against acid mine drainage (AMD) testing of sulfide mining waste enrichment of the Chaabet-el-Hamra mine, Min. Sci., 27, 323 Blowes, 2014, The geochemistry of acid mine drainage, vol. 11, 131 Callender, 2014, Heavy metals in the environment – historical trends, vol. 11, 59 Chudnenko, K.V., 2010. Thermodynamic modeling in geochemistry: theory, algorithms, software, applications. Academic Publishing House “Geo”, Novosibirsk 287 p. (In Russian). Jamieson, 2011, Geochemistry and mineralogy of solid mine waste. Essential knowledge for predicting environmental impact, Elements, 7, 381, 10.2113/gselements.7.6.381 Karpov, I.K., 1981. Physicochemical Modeling on a Computer in Geochemistry. Nauka, Novosibirsk 247 p. (In Russian). Khalfi, A., Taleb, C., 2014. Contribution à l'étude d'impact environnemental de l'exploitation minière souterraine et de rejets de traitement, cas de la mine de Chaabet El- Hamra. Ain Azel, Wilaya de Setif Master's thesis 67 p. (In French). Morin, 2001, 333 Munsell, 2014 Nordstrom, 2004, Modeling low-temperature geochemical processes, vol. 5, 18 Nordstrom, 2011, Mine waters: acidic to circumneutral, Elements, 7, 393, 10.2113/gselements.7.6.393 Nordstrom, 2014, Modeling low-temperature geochemical processes, vol. 7, 27 Oelkers, E.H., Benezeth, P., Pokrovski, G.S., 2009. Thermodynamic databases for water-rock interaction. In: Thermodynamics and Kinetics of Water-Rock Interaction. Oelkers EH, Schott J (eds) Rev. Mineral. Geochem, 70, 1–46. Omara, R., Charykova, M.V., Rusakov, A.V., Malyshev, S.V., Platonova, N.V., 2020a1. Mineralogical and geochemical features and contamination degree of soils in the area of the zinc ore processing plant of the Chaabet-el-Hamra deposit (Algeria). Zapiski RMO 149 (2), 96–110. (In Russian). Omara, R., Charykova, M.V., Volina, O.V., Fokina, E.L., 2020b2. Mobile forms of Zn, Pb, and Cd in Chaabet-el-Hamra mine's soils and sediments, Algeria. Zapiski RMO 149(3), 143–157. (In Russian). Potvin, R, 2009. Évaluation à différentes échelles de la performance de systèmes de traitement passif pour des effluents fortement contaminés par le drainage minier acide. Thèse de doctorat PhD. Université du Québec en Abitibi- Témiscamingue, Canada 367 p. (In French).