188
12 Microbes and Agri-Food Waste as Novel Sources of Biosorbents
34 do Nascimento Júnior, W.J., da Silva, M.G.C., and Vieira, M.G.A. (2019). Com-
petitive biosorption of Cu2+ and Ag+ ions on brown macro-algae waste: kinetic
and ion-exchange studies. Environmental Science and Pollution Research 26 (23):
23416–23428.
35 Lakshmipathy, R. and Sarada, N.C. (2013). Application of watermelon rind as
sorbent for removal of nickel and cobalt from aqueous solution. International
Journal of Mineral Processing 122: 63–65.
36 Uzun, Y. and ¸Sahan, T. (2017). Optimization with response surface methodol-
ogy of biosorption conditions of Hg(II) ions from aqueous media by Polyporus
squamosus fungi as a new biosorbent. Archives of Environmental Protection 43
(2): 37–43.
37 Takey, M., Shaikh, T., Mane, N. et al. (2014). Bioremediation of xenobiotics:
use of dead fungal biomass as biosorbent. International Journal of Engineering
Research and Technology 3 (1): 565–570.
38 Okumu¸s, V., Çelik, K.S., Özdemir, S. et al. (2015). Biosorption of chlorophenoxy
acid herbicides from aqueous solution by using low-cost agricultural wastes.
Desalination and Water Treatment 56 (7): 1898–1907.
39 Cobas, M., Meijide, J., Sanromán, M.A. et al. (2016). Chestnut shells to mitigate
pesticide contamination. Journal of the Taiwan Institute of Chemical Engineers
61: 166–173.