References
- R.P. Mason, Trace Metals in Aquatic Systems. Wiley-Blackwell,
2013.
- B.J. Alloway, D.C. Ayres, Chemical Principles of Environmental
Pollution. Blackie Academic and Professional, London, 1993.
- R. Singh, N. Gautam, A. Mishra, R. Gupta, Heavy metals and
living systems: an overview, Indian. J. Pharmacol., 43 (2011)
246–253.
- T. Tatarchuk, M. Bououdina, B. Al-Najar, R. Babu Bitra, Green
and Ecofriendly Materials for the Remediation of Inorganic and
Organic Pollutants in Water, M. Naushad (ed.), Springer, Cham,
2019, pp. 69–110.
- S.H. Chen, Y.L. Cheow, S.L. Ng, A.S.Y. Ting, Mechanisms
for metal removal established via electron microscopy and
spectroscopy: a case study on metal tolerant fungi Penicillium
simplicissimum, J. Hazard. Mater., 362 (2019) 394–402.
- S.K. Bozbas, Y. Boz, Low-cost biosorbent: Anadara inaequivalvis
shells for removal of Pb(II) and Cu(II) from aqueous solution,
Process. Saf. Environ. Protect., 103 (2016) 144–152.
- Z.A. AL-Othman, R. Ali, Mu. Naushad, Hexavalent chromium
removal from aqueous medium by activated carbon prepared
from peanut shell: adsorption kinetics, equilibrium and
thermodynamic studies, Chem. Eng. J., 184 (2012) 238–247.
- Y. Guo, Y. Liu, H. Li, A. Zheng, X. Tan, M. Zhang, Remediation
of Pb-contaminated port sediment by biosurfactant from
Bacillus sp. G1 Trans. Nonferrous, Met. Soc. China., 27 (2017)
1385−1393.
- L.S. Ferreira, M. Rodrigues, J.C.M. Carvalho, A. Lodi, E.
Finocchio, P. Perego, A. Converti, Adsorption of Ni2+, Zn2+ and
Pb2+ onto dry biomass of Arthrospira (Spirulina) platensis and
Chlorella vulgaris. I. Single metal systems, Chem. Eng. J., 173
(2011) 326–333.
- R. Saavedra, R. Muñoz, M.E. Taboada, M. Vega, S. Bolado,
Comparative uptake study of arsenic, boron, copper, manganese
and zinc from water by different green microalgae, Biresour.
Technol., 263 (2018) 49–57.
- N. Maaloula, P. Oulego, M. Rendueles, A. Ghorbal, M. Díaz,
Novel biosorbents from almond shells: characterization and
adsorption properties modeling for Cu(II) ions from aqueous
solutions, J. Environ. Chem. Eng., 5 (2017) 2944–2954.
- J.Y. Wang, H. Cui, C.W. Cui, D.F. Xing, Biosorption of copper(II)
from aqueous solutions by Aspergillus niger-treated rice straw,
Ecol. Eng., 95 (2016) 793–799.
- Z. Kariuki, J. Kiptoo, D. Onyancha, Biosorption studies of lead
and copper using rogers mushroom biomass ‘Lepiota hystrix’, S.
Afr. J. Chem. Eng., 23 (2017) 62–70.
- I. Anastopoulos, G.Z. Kyzas, Progress in batch biosorption of
heavy metals onto algae, J. Mol. Liq., 209 (2015) 77–86.
- R. Flouty, G. Estephane, Bioaccumulation and biosorption
of copper and lead by a unicellular algae Chlamydomonas
reinhardtii in single and binary metal systems: a comparative
study, J. Environ. Manage., 111 (2012) 106–114.
- J. Hazarika, K. Pakshirajan, A. Sinharoy, M.B. Syiem,
Bioremoval of Cu(II), Zn(II), Pb(II) and Cd(II) by Nostoc
muscorum isolated from a coal mining site, J. Appl. Phycol., 27
(2015) 1525–1534.
- K. Anjana, A. Kaushik, B. Kiran, R. Nisha, Biosorption of
Cr(VI) by immobilized biomass of two indigenous strains of
cyanobacteria isolated from metal contaminated soil, J. Hazard.
Mater., 148 (2007) 383–386.
- R. Sivakami, M. Mahalakshmi, G. Premkishore, Removal of
heavy metals by biosorption using cyanobacteria isolated from
freshwater pond, Int. J. Curr. Microbiol. App. Sci., 4 (2015)
655–660.
- S. Sen, S. Dutta, S. Guhathakurata, J. Chakrabarty, S. Nandi, A.
Dutta, Removal of Cr(VI) using a cyanobacterial consortium and
assessment of biofuel production, Int. Biodeterior. Biodegrad.,
119 (2017) 211–224.
- K.S. Kumar, H.U. Dahms, E.J. Won, J.S. Lee, K.H. Shin,
Microalgae – a promising tool for heavy metal remediation.
Ecotoxicol. Environ. Saf., 113 (2015) 329–352.
- A. Abdolali, H.H. Ngo, W. Guo, S. Lu, S. Chen, N.C. Nguyen, X.
Zhang, J. Wang, Y. Wu, A breakthrough biosorbent in removing
heavy metals: equilibrium, kinetic, thermodynamic and
mechanism analyses in a lab-scale study, Sci. Total. Environ.,
542 (2016) 603–611.
- A. Pugazhendhi, G.M. Boovaragamoorthy, K. Ranganathan, M.
Naushad, T. Kaliannan, New insight into effective biosorption
of lead from aqueous solution using Ralstonia solanacearum:
characterization and mechanism studies, J. Cleaner. Prod., 174
(2018) 1234–1239.
- J. He, J.P. Chen, A comprehensive review on biosorption of
heavy metals by algal biomass: materials, performances,
chemistry, and modeling simulation tools, Bioresour. Technol.,
160 (2014) 67–78.
- M. Akbari, A. Hallajisani, A.R. Keshtkar, H. Shahbeig, S.A.
Ghorbanian, Equilibrium and kinetic study and modeling of Cu
(II) and Co (II) synergistic biosorption from Cu (II)-Co (II) single
and binary mixtures on brown algae C. indica, J. Enviro. Chem.
Eng., 3 (2015) 140–149.
- G. Naja, B. Volesky, The mechanism of metal cation and anion
biosorption. In: Microbial Biosorption of Metals, P. Kotrba,
M. Mackova, T. Macek, eds. Dordrecht: Springer, 2011, pp.
19–58.
- G. Markou, D. Mitrogiannis, A. Celekli, H. Bozkurt, D.
Georgakakis, C.V. Chrysikopoulos, Biosorption of Cu2+ and Ni2+
by Arthrospira platensis with different biochemical compositions,
Chem. Eng. J., 259 (2015) 806–813.
- G. Taguchi, S.Konish, Taguchi Methods: Orthogonal Arrays and
Linear Graphs, American Supplier Institute, 1987
- R.S. Rao, G. Kumar, R.S. Prakasham, P.J. Hobbs, The Taguchi
methodology as a statistical tool for biotechnological
applications: a critical appraisal, Biotechnol. J., 3 (2008) 510 –523.
- H. Huang, G. Cheng, L. Chen, X. Zhu, H. Xu, Lead (II) removal
from aqueous solution by spent Agaricus bisporus: determination
of optimum process condition using Taguchi method., Water.
Air. Soil. Pollut., 203 (2009) 53–63.
- V.C. Srivastava, I.D. Mall, I.M. Mishra, Optimization of
parameters for adsorption of metal ions onto rice husk ash
using Taguchi’s experimental design methodology, Chem. Eng.
J., 140 (2008) 136–144.
- G. Zolfaghari, A. Esmaili-Sari, M. Anbia, H. Younesi, S.
Amirmahmoodi, A. Ghafari-Nazari, Taguchi optimization
approach for Pb(II) and Hg(II) removal from aqueous solutions
using modified mesoporous carbon, J. Hazard. Mater., 192
(2011) 1046–1055.
- W.M. Ibrahim, A.F. Hassan, Y.A. Azab, Biosorption of toxic
heavy metals from aqueous solution by Ulva lactuca activated
carbon., Egypt. J. Basic. Appl. Sci., 3 (2016) 241–249.
- R. Tabaraki, A. Nateghi, Application of Taguchi L16 orthogonal
array design to optimize hydrazine biosorption by Sargassum
Ilicifolium, Environ. Progress. Sustainable. Energy., 35 (2016)
1450–1457.
- R. Pundir, G.H.V.C. Chary, M.G. Dastidar, Application of
Taguchi method for optimizing the process parameters for the
removal of copper and nickel by growing Aspergillus sp, Water.
Resour. Ind., 20 (2016) 1–10.
- J. Zolgharnein, N. Asanjarani, T. Shariatmanesh, Taguchi
L16 orthogonal array optimization for Cd (II) removal using
Carpinus betulus tree leaves: adsorption and characterization,
Int. Biodeterior. Biodegrad., 85 (2013) 66–77.
- M. Taran, S. Sisakhtnezhad, T. Azin, Biological removal of nickel
(II) by Bacillus sp. KL1 in different conditions: optimization by
Taguchi statistical approach, Pol. J. Chem.Technol., 17 (2015)
29–72.
- R. Flouty, Effect of environmental conditions on biouptake of Cu
and Pb from natural freshwaters by Chlamydomonas reinhardtii:
a case study, Litani River, Lebanon, Desal. Wat. Treat., 57 (2016)
24498–24508.
- E.G. Bellinger, D.C. Sigee, Freshwater Algae, Identification,
Enumeration and Use as Bioindicators, 2nd ed., Wiley-Balckwell, 2015.
- I. Langmuir, The adsorption of gases on plane surfaces of glass,
mica and platinum, J. Am. Chem. Soc., 40 (1918) 1361–1403.
- H. Freundlich, W. Heller, The adsorption of cis- and
transzaobenzene. J. Am. Chem. Soc., 61 (1939) 2228–2230.
- S. Lagergren, About the theory of so-called adsorption of
soluble substances, K. Sven. Vetensk.akad. Handl., 24 (1898)
1–39.
- Y.S. Ho, D.A.J. Wase, C.F. Forster, Kinetic studies of competitive
heavy metal adsorption by sphagnum moss peat, Environ.
Technol., 17 (1996) 71–77.
- A. Fadel, A. Atoui, B.J. Lemaire, B. Vinçon-Leite, K. Slim,
Dynamics of the toxin Cylindrospermopsin and the
cyanobacterium Chrysosporum (Aphanizomenon) ovalisporum in a Mediterranean eutrophic reservoir, Toxins (Basel)., 6
(2014) 3041–3057.
- G. Ren, Y. Jin, C. Zhang, H. Gu, J. Qu, Characteristics of Bacillus sp. PZ-1 and its biosorption to Pb(II), Ecotoxicol. Environ. Saf.,
117 (2015) 141–148.
- A. Verma, S. Kumar, S. Kumar, Biosorption of lead ions from
the aqueous solution by Sargassum filipendula, J. Environ. Chem.
Eng., 4 (2016) 4587–4599.
- G.M. Figueroa-Torres, M.T. Certucha-Barragan, E. Acedo-Felix,
O. Monge-Amaya, F.J. Almendariz-Tapia, L.A. Gasca-Estefanía,
Kinetic studies of heavy metals biosorption by acidogenic
biomass immobilized in clinoptilolite, J. Taiwan. Inst. Chem.
Eng., 61 (2016) 241–246.
- R. Flouty, RemovalL of Pb (II) and Cu (II) from aqueous
solutions by Chlamydomonas reinhardtii: infrared and thermal
analysis, Environ. Eng. Manage. J., 14 (2015) 871–877.
- L. Fang, C. Zhou, P. Cai, W. Chen, X. Rong, K. Dai, W. Liang, J.D.
Gu, Q. Huang, Binding characteristics of copper and cadmium
by cyanobacterium Spirulina platensis, J. Hazard. Mater., 190
(2011) 810–815.
- V.K. Gupta, A. Rastogi, Biosorption of lead from aqueous
solutions by green algae Spirogyra species: kinetics and
equilibrium studies, J. Hazard. Mater., 152 (2008) 407–414.
- V.K. Gupta, A. Rastogi, V.K. Saini, N. Jain, Biosorption of Cu
(II) from aqueous solutions by Spirogyra species, J. Colloid.
Interface. Sci., 296 (2006) 59–63.
- C. Winters, C. Guéguen, A. Noble, Equilibrium and kinetic
studies of Cu (II) and Ni (II) sorption on living Euglena gracilis,
J. Appl. Phycol., 29 (2017) 1391–1398.
- E. Gunasundari, P.S. Kumar, Adsorption isotherm, kinetics
and thermodynamic analysis of Cu (II) ions onto the dried
algal biomass (Spirulina platensis), J. Ind. Eng. Chem., 56 (2017)
129–144.
- M. Ghasemi, M. Naushad, N. Ghasemi, Y. Khosravi-fard,
A novel agricultural waste based adsorbent for the removal
of Pb(II) from aqueous solution: kinetics, equilibrium and
thermodynamic studies, J. Ind. Eng. Chem., 20 (2014) 454–461.
- H. Gupta, P.R. Gogate, Intensified removal of copper from
wastewater using activated watermelon based biosorbent in the
presence of ultrasound, Ultrason. Sonochem., 30 (2016) 113–122.
- E. Asuquo, A. Martin, P. Nzerem, F. Siperstein, X. Fan,
Adsorption of Cd (II) and Pb (II) ions from aqueous solutions
using mesoporous activated carbon adsorbent: equilibrium,
kinetics and characterisation studies, J. Environ. Chem. Eng., 5
(2017) 679–698.
- M. Naushad, Surfactant assisted nano-composite cation
exchanger: development, characterization and applications for
the removal of toxic Pb2+ from aqueous medium, Chem. Eng. J.,
235 (2014) 100–108.
- Z. Weijiang, Z. Yace, G. Yuvaraja, X. Jiao, Adsorption of Pb(II)
ions from aqueous environment usingeco-friendly chitosan
schiff’s base@Fe3O4(CSB@Fe3O4) as an adsorbent; kinetics,
isotherm and thermodynamic studies. Int. J. Biol. Micromol.,
105 (2017) 422–430.
- A.M. Abdel-Aty, N.S. Ammar, H.H. Abdel Ghafar, R.K. Ali,
Biosorption of cadmium and lead from aqueous solution by
fresh water alga Anabaena sphaerica biomass, J. Adv. Res., 4
(2013) 367–374.
- H. Demiral, C. Güngor, Adsorption of copper (II) from aqueous
solutions on activated carbon prepared from grape bagasse, J.
Cleaner. Prod., 124 (2016) 103–113.
- M.d.R. Awual, G.E. Eldesoky, T. Yaita, M. Naushad, H. Shiwaku,
Z.A. AlOthman, S. Suzuki, Schiff based ligand containing nanocomposite
adsorbent for optical copper(II) ions removal from
aqueous solutions, Chem. Eng. J., 279 (2015) 639–647.
- B. Yu, J. Xu, J.H. Liu, S.T. Yang, J. Luo, Q. Zhou, J. Wan, R.
Liao, H. Wang, Y. Liu, Adsorption behavior of copper ions on
graphene oxide–chitosan aerogel, J. Environ. Chem. Eng., 1
(2013) 1044–1050.