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Bangladesh and Vietnam: different groundwater compositions require different approaches to arsenic mitigation
Hug, S. J., Leupin, O. X., & Berg, M. (2008). Bangladesh and Vietnam: different groundwater compositions require different approaches to arsenic mitigation. Environmental Science and Technology, 42(17), 6318-6323. https://doi.org/10.1021/es7028284
Arsenic removal from Bangladesh tube well water with filter columns containing zerovalent iron filings and sand
Leupin, O. X., Hug, S. J., & Badruzzaman, A. B. M. (2005). Arsenic removal from Bangladesh tube well water with filter columns containing zerovalent iron filings and sand. Environmental Science and Technology, 39(20), 8032-8037. https://doi.org/10.1021/es050205d
Oxidation and removal of arsenic (III) from aerated groundwater by filtration through sand and zero-valent iron
Leupin, O. X., & Hug, S. J. (2005). Oxidation and removal of arsenic (III) from aerated groundwater by filtration through sand and zero-valent iron. Water Research, 39(9), 1729-1740. https://doi.org/10.1016/j.watres.2005.02.012
Arsenic removal at the household level
Leupin, O. X. (2004). Arsenic removal at the household level [Doctoral dissertation]. ETH Z├╝rich.
Iron-catalyzed oxidation of arsenic(III) by oxygen and by hydrogen peroxide: pH-dependent formation of oxidants in the Fenton reaction
Hug, S. J., & Leupin, O. (2003). Iron-catalyzed oxidation of arsenic(III) by oxygen and by hydrogen peroxide: pH-dependent formation of oxidants in the Fenton reaction. Environmental Science and Technology, 37(12), 2734-2742. https://doi.org/10.1021/es026208x