The fate of major constituents and chromium and other trace elements when acid waters from the derelict Libiola mine (Italy) are mixed with stream waters

Author:

Accornero Marina,Marini Luigi,Ottonello Giulio,Zuccolini Marino Vetuschi

Publisher

Elsevier BV

Subject

Geochemistry and Petrology,Pollution,Environmental Chemistry

Reference46 articles.

1. Accornero, M., 2004. Reactive transport of chromium in water circuits around the mine area of Libiola (Sestri Levante, Genoa). Thesis in Geological Sciences. Faculty of Mathematical, Physical, and Natural Sciences. University of Genoa.

2. Allison, J.D., Brown, D.S., Novo-Gradac K.J., 1991. MINTEQA2/PRODEFA2, A Geochemical Assessment Model for Environmental Systems: Version 3.0 User’s Manual. Report EPA/600/3-91/021, US Environmental Protection Agency, Office of Research and Development, Environmental Research Laboratory, Athens, Georgia.

3. Geochemistry, groundwaters and pollution;Appelo,1996

4. Modeling precipitation and sorption of elements during mixing of river water and pore water in the coeur d’Alene River Basin;Balistrieri;Environ. Sci. Technol.,2003

5. Critical evaluation and selection of standard state thermodynamic properties for chromium metal and its aqueous ions, hydrolysis species, oxides and hydroxides;Ball;J. Chem. Eng. Data,1998

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