Organic Materials Differ in Ability to Remove Protons, Iron and Aluminium from Acid Sulfate Soil Drainage Water

Author:

Dang Tan,Mosley Luke M.,Fitzpatrick Rob,Marschner Petra

Publisher

Springer Science and Business Media LLC

Subject

Pollution,Water Science and Technology,Ecological Modeling,Environmental Chemistry,Environmental Engineering

Reference66 articles.

1. Ahern, C. R., McElnea, A. E., & Sullivan, L. A. (2004). Acid neutralising capacity, carbonate and alkali cation methods. In C. R. Ahern, A. E. McElnea, & L. A. Sullivan (Eds.), Acid sulfate soils laboratory methods guidelines. Queensland, Australia: Department of Natural Resources, Nines and Energy, Indooroopilly.

2. Arcibar-Orozco, J., Rangel-Mendez, J., & Diaz-Flores, P. (2014). Simultaneous adsorption of Pb(II)-Cd(II), Pb(II)-phenol, and Cd(II)-phenol by activated carbon cloth in aqueous solution. Water, Air, and Soil Pollution, 226(1), 1–10.

3. Astrom, M. (1998). Mobility of Al, Co, Cr, Cu, Fe, Mn, Ni and V in sulphide-bearing fine-grained sediments exposed to atmospheric O-2: an experimental study. Environmental Geology, 36, 219–226.

4. Astrom, M., & Bjorklund, A. (1996). Hydrogeochemistry of a stream draining sulfide-bearing postglacial sediments in Finland. Water, Air, and Soil Pollution, 89, 233–246.

5. Attanandana, T., & Vacharotayan, S. (1986). Acid sulfate soils: their characteristics, genesis, amelioration and utilization. Southeast Asia Studies, 24(2), 154–180.

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