References
- G.M. Gadd, L. Ramsay, J.W. Crawford, K. Ritz, Nutritional
influence on fungal colony growth and biomass distribution
in response to toxic metals, FEMS Microbiol. Lett., 204 (2001)
311–316.
- G.A. Drasch, An increase of cadmium body burden for this
century - an investigation on human tissues,
Sci. Total Environ.,
26 (1993) 111–119.
- T.A Davis, B. Volesky, A. Mucci, A review of the biochemistry
of heavy metal biosorption by brown algae, Water Res., 3
(2000) 4311–4330.
- M. Gavrilescu, Removal of heavy metals from the environment
by biosorption, Eng. Life Sci., 4 (2004) 219–232.
- A.G. Moat, J.W. Foster, M.P. Spector, Microbial Physiology,
New York, Wiley-Liss. 2002.
- L.M. Prescott, J.P. Harley, D.A. Klein, Microbiology, United
Kingdom, McGraw-Hill, 2002.
- N. Kuyucak, B. Volesky, Biosorbents for recovery of metals
from industrial solutions, Biotechnol. Lett., 10 (1988) 137–142.
- X. Deng, P. Wang, Isolation of marine bacteria highly resistant
to mercury and their bioaccumulation process, Biores. Technol.,
121 (2012) 342–347.
- R. Pardo, M. Herguedas, E. Barrado, M. Vega, Biosorption of
cadmium, copper, lead and zinc by inactive biomass of Pseudomonas
putida, Anal. Bioanal. Chem., 376 (2003) 26–32.
- C.C. Lin, Y.T. Lai, Adsorption and recovery of lead (II) from
aqueous solutions by immobilized Pseudomonas aeruginosa
PU21 beads, J. Hazard. Mater., 137 (2006) 99–105.
- S. Tunali, A. Cabuk, T. Akar, Removal of lead and copper ions
from aqueous solutions by bacterial strain isolated from soil,
Chem. Eng. J., 115 (2006) 203–211.
- G. Uslu, M. Tanyol, Equilibrium and thermodynamic parameters
of single and binary mixture biosorption of lead (II) and
copper (II) ions onto Pseudomonas putida: effect of temperature,
J. Hazard. Mater., 135 (2006) 87–93.
- M. Zhou, Y.G. Liu, G.M. Zeng, X. Li, W.H. Xu, T. Fan, Kinetic
and equilibrium studies of Cr (VI) biosorption by dead Bacillus
licheniformis biomass, World J. Microbiol. Biotechnol., 23 (2007)
43–48.
- M. Ziagova, G. Dimitriadis, D. Aslanidou, X. Papaioannou,
E.L. Tzannetaki, M. Liakopoulou-Kyriakides, Comparative
study of Cd (II) and Cr (VI) biosorption on Staphylococcus xylosus and Pseudomonas spp in single and binary mixtures, Biores.
Technol., 98 (2007) 2859–2865.
- D. Pages, J. Rose, S. Conrod, S. Cuine, P. Carrier, T. Heulin, W.
Achouak, Heavy metal tolerance in Stenotrophomonasmaltophilia,
PLoS ONE, 3 (2008) 1539–1542.
- A.S.Y. Ting, C.C. Choong, Utilization of non-viable cells compared
to viable cells of Stenotrophomonasmaltophilia for copper
(Cu(II)) removal from aqueous solutions, Adv. Environ. Biol., 3
(2009) 204–209.
- W.S. Tan, A.S.Y. Ting, Efficacy and reusability of alginate-immobilized
live and heat-inactivated Trichodermaasperellum cells
for Cu(II) removal from aqueous solution, Biores. Technol., 123
(2012) 290–295.
- C.S.F. Sim, W.S. Tan, A.S.Y. Ting, Endophytes from Phragmites for
metal removal: evaluating their metal tolerance, adaptive
behaviour and biosorption efficacy, Desal. Water Treat., 57
(2016) 6959–6966.
- I. Ahmad, M.I. Ansari, F. Aqil, Biosorption of Ni, Cr and Cd by
metal tolerant Aspergillus niger and Penicillium sp. using single
and multi-metal solution, Indian J. Exp. Biol., 44 (2006) 73–76.
- R. Ramsenthil, R.M. Meyyappan, Single and multi-component
biosorption of copper and zinc ion using microalgal resin, Int.
J. Environ. Sci. Dev., 1 (2010) 298–301.
- K.M. Al-Qahtani, Biosorption of binary mixtures of heavy
metals by Medicago sativa, World Appl. Sci. J., 16 (2012) 465–473.
- S. Singh, S. Pradhan, L.C. Rai, Metal removal from single and
multimetallic systems by different biosorbent materials as
evaluated by differential pulse anodic stripping voltametry,
Process Biochem., 36 (2000) 175–182.
- V. Obuseng, F. Nareetsile, H.M. Kwaambwa, A study of the
removal of heavy metals from aqueous solutions by Moringa oleifera seeds and amine-based ligand 1,4-bis[N,N-bis(2-picoyl)
amino]butane, Anal. Chim. Acta., 730 (2012) 87–92.
- S.K. Chandra, C.T. Kamala, N.S. Chary, A.R.K. Sastry, R.T. Nageswara,
M. Vairamani, Removal of lead from aqueous solutions
using an immobilized biomaterial derived from a plant
biomass, J. Hazard. Mater., B108 (2004) 111–117.
- S. Sannasi, J. Kader, B.S. Ismail, S. Salmijah, Sorption of Cr(VI),
Cu(II), Pb(II) by growing and non-growing cells of a bacterial
consortium, Biores. Technol., 97 (2006) 740–747.
- J.S. Chang, J.C. Huang, Selective adsorption/recovery of Pb,
Cu and Cd with multiple fixed beds containing immobilized
bacterial biomass, Biotechnol. Prog., 14 (1998) 735–741.
- R. Han, H. Li, Y. Li, J. Zhang, H. Xiao, J. Shi, Biosorption of
copper and lead ions by waste beer yeast, J. Hazard. Mater., 137
(2006) 1569–1576.
- S.K. Sen, S. Raut, T.K. Dora, P.K.D. Mohapatra, Contribution of
hot spring bacterial consortium in cadmium and lead bioremediation
through quadratic programming model, J. Hazard.
Mater., 265 (2014) 47–60.
- J. Febrianto, A.N. Kosasih, J. Sunarso, Y.H. Ju, N. Indraswati, S.
Ismadji, Equilbrium and kinetic studies in adsorption of heavy
metals using biosorbent: a summary of recent studies, J. Hazard.
Mater., 162 (2009) 616–645.
- J.L. Wang, C. Chen, Biosorption of heavy metals by Saccharomyces
cerevisiae- a review, Biotechnol. Adv., 24 (2006) 427–451.
- S. Congeevaram, S. Dhanarani, J. Park, M. Dexilin, K. Thamaraiselvi,
Biosorption of chromium and nickel by heavy metal
resistant fungal and bacterial isolates, J. Hazard. Mater., 146
(2007) 270–277.
- N. Lokeshwari, K. Joshi, Biosorption of heavy metal (chromium)
using biomass, Glob. J. Environ. Res., 3 (2009) 29–35.
- A. Saeed, M. Iqbal, M.W. Akhtar, Removal and recovery of lead
(II) from single and multimetal (Cd, Cu, Ni, Zn) solutions by
crop milling waste (black gram husk), J. Hazard. Mater., 117
(2005) 65–73.
- K.C. Sekhar, S. Subramaniam, J.M. Modak, K.A. Natarajan,
Removal of metal ions using an industrial biomass with reference
to environmental control, Int. J. Miner. Process., 53 (1998)
107–120.
- S. Karthikeyan, R. Balasubramaniam, C.S.P. Iyer, Evaluation
of the marine algae Ulva fasciata and Sargassum sp. for the biosorption
of Cu(II) from aqueous solutions, Biores. Technol., 98
(2007) 452–455.
- R. Boota, H.N. Bhatti, M.A. Hanif, Removal of Cu(II) and Zn(II)
using lignocellulosic fiber derived from Citrus reticulate (Kinnow)
waste biomass, Sep. Sci. Technol., 44 (2009) 4000–4022.
- H.N. Bhatti, S. Hamid, Removal of uranium (VI) from aqueous
solutions using Eucalyptus citriodora distillation sludge, Int. J.
Environ. Sci. Technol., 11 (2014) 813–822.