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Desulfosporosinus spp. were the most predominant sulfate-reducing bacteria in pilot- and laboratory-scale passive bioreactors for acid mine drainage treatment Sato Y, Hamai T, Hori T, Aoyagi T, Inaba T, Kobayashi M, Habe H, Sakata T Applied Microbiology and Biotechnology, 103(18), 7783, 2019 |
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The role of membrane technology in acid mine water treatment: a review Agboola O Korean Journal of Chemical Engineering, 36(9), 1389, 2019 |
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Feasibility study of the use of basic oxygen furnace sludge in a permeable reactive barrier Frade PR, Notini L, Santos SV, Moreira RFPM, Leao MMD, Amorim CC Journal of Hazardous Materials, 351, 188, 2018 |
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Sunlight mediated passive wastewater treatment technology using photochemical reduction of ferric iron for decontamination of various aqueous contaminants Dominic JA, Somathilake P, Achari G, Langford CH, Tay JH Solar Energy, 173, 470, 2018 |
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Assessing subsurface flow hydraulics of a coal mine water bioremediation system using a multi-tracer approach Wolkersdorfer C, Gobel J, Hasche-Berger A International Journal of Coal Geology, 164, 58, 2016 |
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Treatment of mining acidic leachates with indigenous limestone, Zimapan Mexico Labastida I, Armienta MA, Lara-Castro RH, Aguayo A, Cruz O, Ceniceros N Journal of Hazardous Materials, 262, 1187, 2013 |
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Pilot-scale comparison of two hybrid-passive landfill leachate treatment systems operated in a cold climate Speer S, Champagne P, Anderson B Bioresource Technology, 104, 119, 2012 |
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Biosorption of heavy metals from mining influenced water onto chitin products Pinto PX, Al-Abed SR, Reisman DJ Chemical Engineering Journal, 166(3), 1002, 2011 |
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Treatment of zinc-rich acid mine water in low residence time bioreactors incorporating waste shells and methanol dosing Mayes WM, Davis J, Silva V, Jarvis AP Journal of Hazardous Materials, 193, 279, 2011 |
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Removal of cadmium, copper, nickel, cobalt and mercury from water by Apatite II (TM): Column experiments Oliva J, De Pablo J, Cortina JL, Cama J, Ayora C Journal of Hazardous Materials, 194, 312, 2011 |