60
Förstner, U., Mader, P., & Salomons, W. (Eds). (1995). Heavy Metals: Problems and Solutions.
Springer, 95-120.
Freundlich, H. M. F. (1906). Constitution and fundamental properties of solids and liquids I.
Solids. J. Phys. Chem. A, 57, 385-470.
Fu, F., & Wang, Q. (2011). Removal of heavy metal ions from wastewaters: a review. Journal of
environmental management, 92(3), 407-418.
G ;
Gadd, G.M. (2004). Microbial influence on metal mobility and application for bioremediation.
Geoderma 122 : 109–119.
Gafoor, A., Kumar, S., Begum, S., & Rahman, Z. (2021). Elimination of nickel (II) ions using
various natural/modified clay minerals: A review. Materials Today: Proceedings, 37, 2033-2040.
Gallios, G. P., & Vaclavikova, M. (2008). Removal of chromium (VI) from water streams: a
thermodynamic study. Environmental Chemistry Letters, 6(4), 235-240.
Gao, J., Zhang, Q., Su, K., Chen, R., & Peng, Y. (2010). Biosorption of Acid Yellow 17 from
aqueous solution by non-living aerobic granular sludge. Journal of Hazardous Materials, 174(13), 215-225.
García-Niño, W. R., & Pedraza-Chaverrí, J. (2014). Protective effect of curcumin against heavy
metals-induced liver damage. Food and Chemical Toxicology, 69, 182-201.
GHERBI, N. (2008). Etude expérimentale et identification des processus de rétention des cations
métalliques par des matériaux naturels. Université Mentouri de Constantine, Algérie.
Giles, C. H., Smith, D., & Huitson, A. (1974). A general treatment and classification of the solute
adsorption isotherm. I. Theoretical. Journal of colloid and interface science, 47(3), 755-765.
Goldsmith, A. (1963). Handbook of thermophysical properties of solid materials (Vol. 5).
Pergamon Press.
Gourdon, R. & Sofer, S. (1991). Etude d’un procédé biologique intégré pour l’élimination et la
récupération des métaux en solution aqueuse, Rapport de recherche, coopération francoaméricaine
RECORD. (INSA de Lyon) / HSMRC (NJIT), Etude n° 90-0402/1A.
Gouveia, L., & Oliveira, A. C. (2010). Microalgae as a raw material for biofuels production.
Journal of industrial microbiology and biotechnology, 36(2), 269-274.
Griffin, H.D. (2011). The genus Ceratocystis in Ontario. Canadian Journal of Botany. 46. 689718. 10.1139/b68-094.
Grim, R. E. (1962). Applied clay mineralogy: McGraw-Hill Book Co. Inc., New York, 355(6),
407-432.
Förstner, U., Mader, P., & Salomons, W. (Eds). (1995). Heavy Metals: Problems and Solutions.
Springer, 95-120.
Freundlich, H. M. F. (1906). Constitution and fundamental properties of solids and liquids I.
Solids. J. Phys. Chem. A, 57, 385-470.
Fu, F., & Wang, Q. (2011). Removal of heavy metal ions from wastewaters: a review. Journal of
environmental management, 92(3), 407-418.
G ;
Gadd, G.M. (2004). Microbial influence on metal mobility and application for bioremediation.
Geoderma 122 : 109–119.
Gafoor, A., Kumar, S., Begum, S., & Rahman, Z. (2021). Elimination of nickel (II) ions using
various natural/modified clay minerals: A review. Materials Today: Proceedings, 37, 2033-2040.
Gallios, G. P., & Vaclavikova, M. (2008). Removal of chromium (VI) from water streams: a
thermodynamic study. Environmental Chemistry Letters, 6(4), 235-240.
Gao, J., Zhang, Q., Su, K., Chen, R., & Peng, Y. (2010). Biosorption of Acid Yellow 17 from
aqueous solution by non-living aerobic granular sludge. Journal of Hazardous Materials, 174(13), 215-225.
García-Niño, W. R., & Pedraza-Chaverrí, J. (2014). Protective effect of curcumin against heavy
metals-induced liver damage. Food and Chemical Toxicology, 69, 182-201.
GHERBI, N. (2008). Etude expérimentale et identification des processus de rétention des cations
métalliques par des matériaux naturels. Université Mentouri de Constantine, Algérie.
Giles, C. H., Smith, D., & Huitson, A. (1974). A general treatment and classification of the solute
adsorption isotherm. I. Theoretical. Journal of colloid and interface science, 47(3), 755-765.
Goldsmith, A. (1963). Handbook of thermophysical properties of solid materials (Vol. 5).
Pergamon Press.
Gourdon, R. & Sofer, S. (1991). Etude d’un procédé biologique intégré pour l’élimination et la
récupération des métaux en solution aqueuse, Rapport de recherche, coopération francoaméricaine
RECORD. (INSA de Lyon) / HSMRC (NJIT), Etude n° 90-0402/1A.
Gouveia, L., & Oliveira, A. C. (2010). Microalgae as a raw material for biofuels production.
Journal of industrial microbiology and biotechnology, 36(2), 269-274.
Griffin, H.D. (2011). The genus Ceratocystis in Ontario. Canadian Journal of Botany. 46. 689718. 10.1139/b68-094.
Grim, R. E. (1962). Applied clay mineralogy: McGraw-Hill Book Co. Inc., New York, 355(6),
407-432.
