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LABORATORY TESTS TO EVALUATE THE REMOVAL EFFICIENCY OF HEAVY METALS FROM STORMWATER BY AN OLIVE STONE FILTER
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Blázquez, G., Hernáinz, F., Calero, M., & Ruiz-Núñez, L. F. (2005). Removal of cadmium ions with olive stones: the effect of somes parameters. Process Biochemistry, 40(8), 2649-2654;
Information on http://faostat3.fao.org/faostat-gateway/go/to/home/E;
Veglio, F., & Beolchini, F. (1997). Removal of metals by biosorption: a review. Hydrometallurgy, 44(3), 301-316;
Volesky, B . (2001). Detoxification of metal -bearing effluents: biosorption for the next century. Hydrometallurgy, 59(2), 203-216;
Carbone, M., Garofalo, G., Nigro, G., & Piro, P. (2014, July). Hydraulic Performance of Oliv e Stone Filtration Systems. In Advanced Materials Research Vol. 941, pp. 9 70-974;
Mentler, A., Klepsch, S., Ottner, F., Lesueur, C., Moustafa, N. L., Neunteufel, R., & Fuerhacker, M. (2005). Removal of heavy metals from aqueous solutions with selected materials. Geophys. Res. Abs, 7, 10194-10196;
Pagnan elli, F., Mainelli, S., Vegliò, F., & Toro, L. (2003). Heavy metal removal by olive pomace: biosorbent characterisation and equilibrium modelling.Chemical Engineering Science, 58(20), 4709-4717;
Fiol, N., Vil lae scusa, I., Martínez, M., Miralles, N., Poch, J., & Serarols, J. (2006). Sorption of Pb (II), Ni (II), Cu (II) and Cd (II) from aqueous solution by olive stone waste. Separation and purification technology, 50(1), 132-140;
Nieto, L. M., Alami, S. B. D., Hodaifa, G., Faur, C., Rodríguez, S., Giménez, J. A., & Ochando, J. (2010). Adsorption of iron on crude olive stones. Industrial crops and products, 32(3), 467-471;
Gharaibeh, S. H., Wa'il, Y., & Al-Kofahi, M. M. (1998). Removal of selected heavy metals from aqueous solutions using processed solid residue of olive mill products. Water Research, 32(2), 498-502; International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 15th International Multidisciplinary Scientific GeoConferences SGEM2015 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org
Blázquez, G., Hernáinz, F., Calero, M., & Ruiz-Núñez, L. F. (2005). Removal of cadmium ions with olive stones: the effect of somes parameters. Process Biochemistry, 40(8), 2649-2654;
Information on http://faostat3.fao.org/faostat-gateway/go/to/home/E;
Veglio, F., & Beolchini, F. (1997). Removal of metals by biosorption: a review. Hydrometallurgy, 44(3), 301-316;
Volesky, B . (2001). Detoxification of metal -bearing effluents: biosorption for the next century. Hydrometallurgy, 59(2), 203-216;
Carbone, M., Garofalo, G., Nigro, G., & Piro, P. (2014, July). Hydraulic Performance of Oliv e Stone Filtration Systems. In Advanced Materials Research Vol. 941, pp. 9 70-974;
Mentler, A., Klepsch, S., Ottner, F., Lesueur, C., Moustafa, N. L., Neunteufel, R., & Fuerhacker, M. (2005). Removal of heavy metals from aqueous solutions with selected materials. Geophys. Res. Abs, 7, 10194-10196;
Pagnan elli, F., Mainelli, S., Vegliò, F., & Toro, L. (2003). Heavy metal removal by olive pomace: biosorbent characterisation and equilibrium modelling.Chemical Engineering Science, 58(20), 4709-4717;
Fiol, N., Vil lae scusa, I., Martínez, M., Miralles, N., Poch, J., & Serarols, J. (2006). Sorption of Pb (II), Ni (II), Cu (II) and Cd (II) from aqueous solution by olive stone waste. Separation and purification technology, 50(1), 132-140;
Nieto, L. M., Alami, S. B. D., Hodaifa, G., Faur, C., Rodríguez, S., Giménez, J. A., & Ochando, J. (2010). Adsorption of iron on crude olive stones. Industrial crops and products, 32(3), 467-471;
Gharaibeh, S. H., Wa'il, Y., & Al-Kofahi, M. M. (1998). Removal of selected heavy metals from aqueous solutions using processed solid residue of olive mill products. Water Research, 32(2), 498-502; International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org 15th International Multidisciplinary Scientific GeoConferences SGEM2015 International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org
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