References
- A.S. Ayangbenro, O.O. Babalola, A new strategy for heavy metal
polluted environments: a review of microbial biosorbents, Int. J.
Environ. Res. Public Health, 14 (2017) 94.
- Y. Sag, T. Kutsal, Recent trends in the biosorption of heavy
metals: a review, Biotechnol. Bioprocess Eng., 6 (2001) 376.
- V.K. Gupta, D. Pathania, S. Agarwal, S. Sharma, Removal of
Cr(VI) onto Ficus carica biosorbent from water, Environ. Sci.
Pollut. Res. Int., 20 (2013) 2632–2644.
- K.M. Hernández Mata, O. Monge Amaya, M.T. Certucha
Barragán, F.J. Almendariz Tapia, E. Acedo Félix, Metallic
biosorption using yeasts in continuous systems, Int. J. Photoenergy,
(2013) 4 p, http://dx.doi.org/10.1155/2013/578729.
- R.M. Hlihor, M. Diaconu, D. Fertu, C. Chelaru, I. Sandu,
T. Tavares, Bioremediation of Cr(VI) polluted wastewaters by
sorption on heat inactivated Saccharomyces cerevisiae biomass,
Int. J. Environ. Res., 7 (2013) 581–594.
- F. Pagnanelli, M. Trifoni, F. Beolchini, A. Esposito, L. Toro,
F. Vegliò, Equilibrium biosorption studies in single and multimetal
systems, Process Biochem., 37 (2001) 115–124.
- A. De Rossi, M.R. Rigon, M. Zaparoli, R.D. Braido,
L.M. Colla, G.L. Dotto, J.S. Piccin, Chromium (VI) biosorption
by Saccharomyces cerevisiae subjected to chemical and thermal
treatments, Environ. Sci. Pollut. Res. Int., 25 (2018) 19179–19186.
- Q.Q. Peng, Y.G. Liu, G.M. Zeng, W.H. Xu, C.P. Yang, J.J. Zhang,
Biosorption of copper(II) by immobilizing Saccharomyces
cerevisiae on the surface of chitosan-coated magnetic nanoparticles
from aqueous solution, J. Hazard. Mater., 177 (2010)
676–682.
- P.A. Marques, H.M. Pinheiro, J.A. Teixeira, M.F. Rosa, Removal
efficiency of Cu2+, Cd2+ and Pb2+ by waste brewery biomass: pH
and cation association effects, Desalination, 124 (1999) 137–144.
- A. Zimkus, A. Misiūnas, L. Chaustova, Li+ effect on the cell
wall of the yeast Saccharomyces cerevisiae as probed by FT-IR
spectroscopy, Cent. Eur. J. Biol., 8 (2013) 724–729.
- M.D. Machado, S. Janssens, H.M.V.M. Soares, E.V. Soares,
Removal of heavy metals using a brewer’s yeast strain of
Saccharomyces cerevisiae: advantages of using dead biomass,
J. Appl. Microbiol., 106 (2009) 1792–1804.
- G. Basak, V. Lakshmi, P. Chandran, N. Das, Removal of Zn(II)
from electroplating effluent using yeast biofilm formed on
gravels: batch and column studies, J. Environ. Health Sci. Eng.,
12 (2014) 8.
- Y. Sağ, T. Kutsal, Fully competitive biosorption of chromium(VI)
and iron(III) ions from binary metal mixtures by R. arrhizus: use
of the competitive Langmuir model, Process Biochem., 31 (1996)
573–585.
- P.X. Sheng, Y.-P. Ting, J.P. Chen, Biosorption of heavy metal ions
(Pb, Cu, and Cd) from aqueous solutions by the marine alga
Sargassum sp. in single-and multiple-metal systems, Ind. Eng.
Chem. Res., 46 (2007) 2438–2444.
- I. Zinicovscaia, L. Cepoi, T. Chiriac, N. Yushin, K. Vergel,
Study of selected metals biosorption by Arthrospira platensis
using neutron activation analysis, Desal. Wat. Treat., 108 (2018)
119–124.
- I. Zinicovscaia, Gh. Duca, V. Rudic, L. Cepoi, T. Chiriac,
M.V. Frontasyeva, S.S. Pavlov, S.F. Gundorina, Spirulina
platensis as biosorbent of zinc in water, Environ. Eng. Manage.
J., 12 (2013) 1079–1084.
- I. Zinicovscaia, N. Yushin, S. Gundorina, Š. Demčák,
M. Frontasyeva, I. Kamanina, Biosorption of nickel from
model solutions and electroplating industrial effluent using
cyanobacterium Arthrospira platensis, Desal. Wat. Treat.,
120 (2018) 158–165.
- M. Oves, M.S. Khan, A. Zaidi, Biosorption of heavy metals by
Bacillus thuringiensis strain OSM29 originating from industrial
effluent contaminated north Indian soil, Saudi J. Biol. Sci.,
20 (2013) 121–129.
- D.-Q. Lin, L.-N. Zhong, S.-J. Yao, Zeta potential as a diagnostic
tool to evaluate the biomass electrostatic adhesion during
ion‐exchange expanded bed application, Biotechnol. Bioeng.,
95 (2006) 185–191.
- J.C. José, K. Bugan Debs, G. Labuto, E.N.V. Martins Carrilho,
Synthesis, characterization, and application of yeast-based
magnetic bionanocomposite for the removal of Cu(II) from
water, Chem. Eng. Commun., 206 (2019) 1581–1591.
- B. Bai, W.S. Guan, Z. Li, G.L. Li Puma, Bio-template route
for facile fabrication of Cd(OH)2@yeast hybrid microspheres
and their subsequent conversion to mesoporous CdO hollow
microspheres, Mater. Res. Bull., 46 (2011) 26–31.
- J.A. Fernández-López, J.M. Angosto, M.D. Avilés, Biosorption
of hexavalent chromium from aqueous medium with Opuntia biomass, Sci. World J., 2014 (2014) 8 p, http://dx.doi.org/
10.1155/2014/670249.
- N. Unceta, F. Séby, J. Malherbe, O.F.X. Donard. Chromium
speciation in solid matrices and regulation: a review, Anal.
Bioanal. Chem., 397 (2010) 1097–1111.
- T. Sathvika, A. Soni, K. Sharma, M. Praneeth, M. Mudaliyar,
V. Rajesh, N. Rajesh, Potential application of Saccharomyces
cerevisiae and Rhizobium immobilized in multi walled carbon
nanotubes to adsorb hexavalent chromium, Sci. Rep., 8 (2018)
9862.
- M.K. Gagrai, C. Das, A.K. Golder, Reduction of Cr(VI) into
Cr(III) by Spirulina dead biomass in aqueous solution: kinetic
studies, Chemosphere, 93 (2013) 366–1371.
- J. Sanz, J.I. Lombraña, A.M. De Luis, M. Ortueta, F. Varona,
Microwave and Fenton’s reagent oxidation of wastewater,
Environ. Chem. Lett., 1 (2003) 45–50.
- M. Gerlach, A.X. Trautwein, L. Zecca, M.B.H. Youdim,
P. Riederer, Mössbauer spectroscopic studies of purified human
neuromelanin isolated from the substantia nigra, J. Neurochem.,
65 (1995) 923–926.
- Z. Aksu, H. Gülen, Binary biosorption of iron(III) and iron(III)-cyanide complex ions on Rhizopus arrhizus: modelling of
synergistic interaction, Process Biochem., 38 (2002) 161–173.
- H. Pahlavanzadeh, A.R. Keshtkar, J. Safdari, Z. Abadi, Biosorption
of nickel(II) from aqueous solution by brown algae:
equilibrium, dynamic and thermodynamic studies, J. Hazard.
Mater., 175 (2010) 304–310.
- V. Padmavathy, P. Vasudevan, S.C. Dhingra, Biosorption of
nickel(II) ions on baker’s yeast, Process Biochem., 38 (2003)
1389–1395.
- D. Brady, J.R. Duncan, Binding of heavy metals by the cell walls
of Saccharomyces cerevisiae, Enzyme Microb. Technol., 16 (1994)
633–638.
- U.A. Guler, M. Sarioglu, Mono and binary component
biosorption of Cu(II), Ni(II), and Methylene Blue onto raw
and pretreated S. cerevisiae: equilibrium and kinetics, Desal.
Wat. Treat., 52 (2014) 4871–4888.
- M.D. Machado, H.M.V.M. Soares, E.V. Soares, Removal of
chromium, copper, and nickel from an electroplating effluent
using a flocculent brewer’s yeast strain of Saccharomyces
cerevisiae, Water Air Soil Pollut., 212 (2010) 199–204.
- C.C. Liu, M.K. Wang, C.S. Chiou, Y.S. Li, C.Y. Yang, Y.A. Lin,
Biosorption of chromium, copper and zinc by wine-processing
waste sludge: single and multi-component system study,
J. Hazard. Mater., 171 (2009) 386–392.
- H. Mohapatra, R. Gupta, Concurrent sorption of Zn(II), Cu(II)
and Co(II) by Oscillatoria angustissima as a function of pH
in binary and ternary metal solutions, Bioresour. Technol.,
96 (2005) 1387–1398.
- E. Krauter, R. Martinelli, K. Williams, S. Martins, Removal
of Cr(VI) from ground water by Saccharomyces cerevisiae,
Biodegradation, 7 (1996) 277–286.
- J. Cherlys Infante, R.D. De Arco, M.E. Angulo, Removal of lead,
mercury and nickel using the yeast Saccharomyces cerevisiae, Rev.
MVZ Córdoba, 19 (2014) 4141–4149.
- A.S. Saini, J.S. Melo, Biosorption of uranium by melanin: kinetic,
equilibrium and thermodynamic studies, Bioresour. Technol.,
149 (2013) 155–162.
- L. Xu, X. Zheng, H. Cui, Z. Zhu, J. Liang, J. Zhou, Equilibrium,
kinetic, and thermodynamic studies on the adsorption of
cadmium from aqueous solution by modified biomass ash,
Bioinorg. Chem. Appl., 12 (2017) 1–9.
- Y. Wu, H.J. Luo, H. Wang, C. Wang, J. Zhang, Z. Zhang,
Adsorption of hexavalent chromium from aqueous solutions
by graphene modified with cetyltrimethylammonium bromide,
J. Colloid Interface Sci., 394 (2013) 183–191
- B Choudhary, D. Paul, Isotherms, kinetics and thermodynamics
of hexavalent chromium removal using biochar, J. Environ.
Chem. Eng., 6 (2018) 2335–2343.
- V.K. Gupta, M. Al Khayat, A.K. Singh, M.K. Pal, Nano level
detection of Cd(II) using poly(vinyl chloride) based membranes
of Schiff bases, Anal. Chim. Acta, 634 (2009) 36–43.
- Y.S. Ho, G. McKay, Pseudo-second order model for sorption
processes, Process Biochem., 34 (1999) 451–465.
- F.-C. Wu, R.-L. Tseng, R.-S. Juang, Characteristics of Elovich
equation used for the analysis of adsorption kinetics in dyechitosan
systems, Chem. Eng. J., 150 (2009) 366–373.
- D. Brady, A. Stoll, J.R. Duncan, Biosorption of heavy metal
cations by non-viable yeast biomass, Environ. Technol.,
15 (1994) 429–438.
- R.P. Han, H.K. Li, Y.H. Li, J.H. Zhang, H.J. Xiao, J. Shi,
Biosorption of copper and lead ions by waste beer yeast,
J. Hazard. Mater. B, 137 (2006) 1569–1576.
- M.A. Ahmad, N.A.A. Puad, O.S. Bello, Kinetic, equilibrium
and thermodynamic studies of synthetic dye removal using
pomegranate peel activated carbon prepared by microwaveinduced
KOH activation, Water Res. Ind., 6 (2014) 18–35.