References
- G. Oguntimein, Biosorption of heavy metals, dyes and
contaminants emerging of concern by lignocellulosic biomass,
J. Chem. Sci. Chem. Eng., 1 (2020) 28–55.
- K. Vijayaraghavan, J. Jegan, K. Palanivelu, M. Velan, Biosorption
of cobalt(II) and nickel(II) by seaweeds: batch and column
studies, Sep. Purif. Technol., 44 (2005) 53–59.
- J.H. Duffus, “Heavy metals” a meaningless term? (IUPAC
Technical Report), Pure Appl. Chem., 74 (2002) 793–807.
- D.J. Jefferies, P. Firestone, Chemical analysis of some coarse
fish from a Suffolk River carried out as part of the preparation
for the first release of captive-bred otters, J. Otter Trust,
1 (1984) 17–22.
- B. Brown, M. Ahsanullah, Effect of heavy metals on mortality
and growth, Mar. Pollut. Bull., 2 (1971) 182–187.
- J.W. Moore, Inorganic Contaminants of Surface Water,
Springer, New York, 1991.
- B. Volesky, Biosorption and Biosorbents, B. Volesky, Ed.,
Biosorption of Heavy Metals, CRC Press, Boca Raton, 1990,
pp. 36–48.
- M. Monachese, J.P. Burton, G. Reid, Bioremediation and
tolerance of humans to heavy metals through microbial
processes: a potential role for probiotics?, Appl. Environ.
Microbiol., 78 (2012) 6397–6404.
- I. Ismail, T. Moustafa, Biosorption of Heavy Metals, D. Pathania,
Ed., Heavy Metals: Sources, Toxicity and Remediation
Techniques, Nova Science Publishers, New York, 2016,
pp. 131–174.
- T. Ramachandra, N. Ahalya, R. Kanamadi, Biosorption:
Techniques and Mechanisms, CES Technical Report 110,
Centre for Ecological Sciences, Indian Institute of Science,
Bangalore, 2005.
- M. Fomina, G.M. Gadd, Biosorption: current perspectives
on concept, definition and application, Bioresour. Technol.,
160 (2014) 3–14.
- D. Kratochvil, B. Volesky, Advances in the biosorption of
heavy metals, Trends Biotechnol., 16 (1998) 291–300.
- T. Matsunaga, H. Takeyama, T. Nakao, A. Yamazawa, Screening
of marine microalgae for bioremediation of cadmium-polluted
seawater, J. Microtechnol., 70 (1999) 33–38.
- J.L. Zhou, Zn biosorption by Rhizopus arrhizus and other
fungi, Appl. Microbiol. Biotechnol., 51 (1999) 686–693.
- K. Aftab, Development of Low-Cost Methodologies for the
Removal of Some Toxic Metals (Pb, Zn) Using Fungal Biomass,
(Ph.D. Thesis), Government College University, Faisalabad,
2005.
- E. Fourest, J.C. Roux, Heavy metal biosorption by fungal
mycelial by-products: mechanisms and influence of pH,
Appl. Microbiol. Biotechnol., 37 (1992) 399–403.
- G.M. Gadd, Biosorption: critical review of scientific rationale,
environmental importance and significance for pollution
treatment, J. Chem. Technol. Biotechnol., 84 (2009) 13–28.
- T. Muraleedharan, L. Iyengar, C. Venkobachar, Biosorption:
an attractive alternative for metal removal and recovery,
Curr. Sci., 61 (1991) 379–385.
- F.G.C. Landell, Dehydrated Hydrogel Microporous Pearls
Made of Chitosan and Polyethylenglycol (PEG) and Process
for the Manufacture Thereof, MX:2014009193:A, 2016.
- D. Li, X. He, Y. Tao, X. Wang, Pseudomonas alcaliphila MBR
and Its Application in Bioreduction and Biosorption,
US:8399237:B2, 2013.
- D.C. Tadic, P. Viedma, J.M.G. Sandoval, Biosorbents for the
Extraction of Metals, US:8748153:B2, 2014.
- M.S. Pfeiffer, L.A.R. Araya, M.L.G. Vergara, Recombinant
Bacterium Capable of Removing Mercury(II) Species, Cadmium(
II) and Copper(II) in Presence of Other Heavy Metals
From Polluted Sites, Product for the Bioremediation, Process
of Obtaining the Product and Method of Bioremediation,
US:8846376, 2014.
- T. Lewis, A. Paszczynski, R. Crawford, J. Sebat,
M. Cortese, Methods and Compositions for Bioremediation,
US:20030135032:A1, 2003.
- P.J. Oberholster, P.H. Cheng, Treatment of Wastewater,
US:20160167994:A1, 2016.
- C. Rivasseau, E. Farhi, A. Atteia, D. Pro, Novel Radioresistant
Alga of the Genus Coccomyxa, US:20180057383:A1, 2018.
- M.A. Kozubal, R.E. Macur, W.P. Inskeep, Acidophilic
Fusarium oxysporum Strains, Methods of Their Production and
Methods of Their Use, US:20180100171:A1, 2018.
- V.P. Prigione, G.C. Varese, L. Casieri, S. Voyron, A. Bertolotto,
V.F. Marchisio, Use of Rhizopus stolonifer (Ehrenberg) Vuillemin
in Methods for Treating Industrial Wastewaters Containing
Dyes, US:7658849:B2, 2010.
- B. Volesky, Biosorption for the Next Century, in: Biohydrometallurgy
and the Environment Toward the Mining of the
21st Century, Proceedings of the International Biohydrometallurgy
Symposium, Elsevier, Amsterdam, 1999, pp. 161–170.
- J.P. Chen, L. Yang, Chemical modification of Sargassum sp. for
prevention of organic leaching and enhancement of uptake
during metal biosorption, Ind. Eng. Chem. Res., 44 (2005)
9931–9942.
- T.A. Davis, F.E.C. Ali, E. Giannitti, B. Volesky, A. Mucci,
Cadmium biosorption by S. fluitans: treatment, resilience and
uptake relative to other Sargassum spp. and brown algae, Water
Qual. Res. J. Can., 39 (2004) 183–189.
- J.T. Matheickal, Q. Yu, Biosorption of lead(II) and copper(II)
from aqueous solutions by pre-treated biomass of Australian
marine algae, Bioresour. Technol., 69 (1999) 223–229.
- R. Dod, G. Banerjee, S. Saini, Adsorption of methylene blue
using green pea peels (Pisum sativum): a cost-effective option for
dye-based wastewater treatment, Biotechnol. Bioprocess Eng.,
17 (2012) 862–874.
- M.A. Khosa, J. Wu, A. Ullah, Chemical modification,
characterization, and application of chicken feathers as novel
biosorbents, RSC Adv., 3 (2013) 20800–20810.
- I.A. Okoro, S.O. Okoro, Agricultural by products as green
chemistry absorbents for the removal and recovery of metal
ions from waste-water environments, Cont. J. Water Air Soil
Pollut., 2 (2011) 15–22.
- J.M. Okuo, S.B. Sanni, S.U. Aigbedion, Selective biosorption
of heavy metal ions from aqueous solutions by pre-treated
Nigerian freshwater algae, Trends Appl. Sci. Res., 1 (2006)
83–90.
- M.S. Rahaman, A. Basu, M.R. Islam, The removal of As(III) and
As(V) from aqueous solutions by waste materials, Bioresour.
Technol., 99 (2008) 2815–2823.
- D. Park, Y.S. Yun, J.M. Park, The past, present, and future
trends of biosorption, Biotechnol. Bioprocess Eng., 15 (2010)
86–102.
- D.W. O’Connell, C. Birkinshaw, T.F. O’Dwyer, Heavy metal
adsorbents prepared from the modification of cellulose: a
review, Bioresour. Technol., 99 (2008) 6709–6724.
- S. Patel, Potential of fruit and vegetable wastes as novel
biosorbents: summarizing the recent studies, Rev. Environ. Sci.
Biotechnol., 11 (2012) 365–380.
- W.S. Wan Ngah, M.A.K.M. Hanafiah, Removal of heavy metal
ions from wastewater by chemically modified plant wastes as
adsorbents: a review, Bioresour. Technol., 99 (2008) 3935–3948.
- C. Pathirana, A.M. Ziyath, K.B.S.N. Jinadasa, P. Egodawatta,
S. Sarina, A. Goonetilleke, Quantifying the influence of surface
physico-chemical properties of biosorbents on heavy metal
adsorption, Chemosphere, 234 (2019) 488–495.
- C.J. Xin, N. Ngadi, Biosorption of chromium(VI) ions using
sustainable eggshell impregnated Pandanus amaryllifolius roxb.
adsorbent, PERINTIS eJournal, 8 (2018) 86–101.
- M.B. Ribeiro, J.V. Freitas, F.G. Nogueira, C.S. Farinas,
Biosorption of phenolic compounds in lignocellulosic biomass
biorefineries, Bioenergy Res., 14 (2021) 598–611.
- K.A. Shroff, V.K. Vaidya, Effect of pre-treatments on the biosorption
of chromium(VI) ions by the dead biomass of Rhizopus
arrhizus, J. Chem. Technol. Biotechnol., 87 (2012) 294–304.
- I. Vishan, B. Saha, S. Sivaprakasam, A. Kalamdhad, Evaluation
of Cd(II) biosorption in aqueous solution by using lyophilized
biomass of novel bacterial strain Bacillus badius AK: biosorption
kinetics, thermodynamics and mechanism, Environ. Technol.
Innovation, 14 (2019) 100323, doi: 10.1016/j.eti.2019.100323.
- W. Pranata Putra, A. Kamari, S. Najiah Mohd Yusoff, C. Fauziah
Ishak, A. Mohamed, N. Hashim, I. Md Isa, Biosorption of Cu(II),
Pb(II) and Zn(II) ions from aqueous solutions using selected
waste materials: adsorption and characterisation studies,
J. Encapsulation Adsorpt. Sci., 4 (2014) 25–35.
- O.A. Ramírez Calderón, O.M. Abdeldayem, A. Pugazhendhi,
E.R. Rene, Current updates and perspectives of biosorption
technology: an alternative for the removal of heavy metals
from wastewater, Curr. Pollut. Rep., 6 (2020) 8–27.
- Environmental Protection Agency (USEPA), Fate, Transport,
and Transformation Test Guidelines, Adsorption/Desorption
(Batch Equilibrium), Washington, D.C., 2008.
- M. Zhao, J.R. Duncan, R.P. van Hille, Removal and recovery
of zinc from solution and electroplating effluent using Azolla
filiculoides, Water Res., 33 (1999) 1516–1522.
- A. Saeed, M. Iqbal, Bioremoval of cadmium from aqueous
solution by black gram husk (Cicer arietinum), Water Res.,
37 (2003) 3472–3480.
- B. Volesky, J. Weber, J.M. Park, Continuous-flow metal
biosorption in a regenerable Sargassum column, Water Res.,
37 (2003) 297–306.
- K.H. Chu, Improved fixed bed models for metal biosorption,
Chem. Eng. J., 97 (2004) 233–239.
- Y. Sağ, Biosorption of heavy metals by fungal biomass and
modeling of fungal biosorption: a review, Sep. Purif. Methods,
30 (2001) 1–48.
- O.P.A. Haapalainen, Binding of Heavy Metals and
Nitrogenous Compounds From Wastewaters Via Biosorption,
(M.Sc. Thesis), University of Oulu, 2014.
- Z. Aksu, F. Gönen, Biosorption of phenol by immobilized
activated sludge in a continuous packed bed: prediction of
breakthrough curves, Process Biochem., 39 (2004) 599–613.
- Z. Aksu, Application of biosorption for the removal of organic
pollutants: a review, Process Biochem., 40 (2005) 997–1026.
- K. Vijayaraghavan, Y.S. Yun, Bacterial biosorbents and
biosorption, Biotechnol. Adv., 26 (2008) 266–291.
- P. Le Cloirec, Y. Andres, Bioremediation of Heavy Metals Using
Microorganisms, M. Fingerman, R. Nagabhushanam, Eds.,
Bioremediation of Aquatic and Terrestrial Ecosystems, Science
Publishers, Plymouth, 2005, pp. 97–140.
- S. Papirio, L. Frunzo, M.R. Mattei, A. Ferraro, M. Race,
B. D’Acunto, F. Pirozzi, G. Esposito, Heavy Metal Removal From
Wastewaters by Biosorption: Mechanisms and Modeling, in:
Sustainable Heavy Metal Remediation, Springer International
Publishing, Cham, 2017, pp. 25–63.
- A. Adewuyi, Chemically modified biosorbents and their
role in the removal of emerging pharmaceutical waste in the
water system, Water, 12 (2020) 1551, doi: 10.3390/w12061551.
- S.H. Abbas, I.M. Ismail, T.M. Mostafa, A.H. Sulaymon,
Biosorption of heavy metals: a review, J. Chem. Sci. Technol.,
3 (2014) 74–102.
- H. Kinoshita, Y. Sohma, F. Ohtake, M. Ishida, Y. Kawai,
H. Kitazawa, T. Saito, K. Kimura, Biosorption of heavy metals
by lactic acid bacteria and identification of mercury binding
protein, Res. Microbiol., 164 (2013) 701–709.
- D.A. John Wase, C. Forster, Biosorbents for Metal Ions,
1st ed., CRC Press, Boca Raton, FL, 1997.
- P. Vasudevan, V. Padmavathy, N. Tewari, S.C. Dhingra,
Biosorption of heavy metal ions, J. Sci. Ind. Res., 60 (2001)
112–120.
- S.L.R.K. Kanamarlapudi, V.K. Chintalpudi, S. Muddada,
Application of Biosorption for Removal of Heavy Metals
From Wastewater, in: Biosorption, InTechOpen, London,
2018, pp. 70–116.
- M. Johncy Rani, B. Hemambika, J. Hemapriya, V. Rajesh
Kannan, Comparative assessment of heavy metal removal
by immobilized and dead bacterial cells: a biosorption
approach, Afr. J. Environ. Sci. Technol., 4 (2010) 077–083.
- R.K. Mohapatra, P.K. Parhi, S. Pandey, B.K. Bindhani,
H. Thatoi, C.R. Panda, Active and passive biosorption of Pb(II)
using live and dead biomass of marine bacterium Bacillus
xiamenensis PbRPSD202: kinetics and isotherm studies,
J. Environ. Manage., 247 (2019) 121–134.
- R.F.L. Ribeiro, S.M.S. Magalhães, F.A.R. Barbosa,
C.C. Nascentes, I.C. Campos, D.C. Moraes, Evaluation
of the potential of microalgae Microcystis novacekii in the
removal of Pb2+ from an aqueous medium, J. Hazard. Mater.,
179 (2010) 947–953.
- A. Al-Gheethi, R. Mohamed, E. Noman, N. Ismail, O.A. Kadir,
Removal of heavy metal ions from aqueous solutions using
Bacillus subtilis biomass pre-treated by supercritical carbon
dioxide, CLEAN – Soil Air Water, 45 (2017) 1700356,
doi: 10.1002/clen.201700356.
- T. Tsuruta, Biosorption and recycling of gold using various
microorganisms, J. Gen. Appl. Microbiol., 50 (2004) 221–228.
- W. Mwandira, K. Nakashima, S. Kawasaki, A. Arabelo,
K. Banda, I. Nyambe, M. Chirwa, M. Ito, T. Sato, T. Igarashi,
H. Nakata, S. Nakayama, M. Ishizuka, Biosorption of Pb(II)
and Zn(II) from aqueous solution by Oceanobacillus profundus
isolated from an abandoned mine, Sci. Rep., 10 (2020) 21189,
doi: 10.1038/s41598-020-78187-4.
- P. Gupta, B. Diwan, Bacterial exopolysaccharide mediated
heavy metal removal: a review on biosynthesis, mechanism
and remediation strategies, Biotechnol. Rep., 13, (2017) 58–71.
- J.A. Morillo Pérez, R. García-Ribera, T. Quesada, M. Aguilera,
A. Ramos-Cormenzana, M. Monteoliva-Sánchez, Biosorption
of heavy metals by the exopolysaccharide produced by
Paenibacillus jamilae, World J. Microbiol. Biotechnol., 24 (2008)
2699–2704.
- J.K. Biswas, A. Banerjee, B. Sarkar, D. Sarkar, S.K. Sarkar,
M. Rai, M. Vithanage, Exploration of an extracellular
polymeric substance from earthworm gut bacterium (Bacillus
licheniformis) for bioflocculation and heavy metal removal
potential, Appl. Sci., 10 (2020) 349, doi: 10.3390/app10010349.
- J. Nkoh, J. Yan, Z.N. Hong, R.K. Xu, M.A. Kamran, J. Jun,
J.Y. Li, An electrokinetic perspective into the mechanism
of divalent and trivalent cation sorption by extracellular
polymeric substances of Pseudomonas fluorescens, Colloids
Surf., B, 183 (2019) 110450, doi: 10.1016/j.colsurfb.2019.110450.
- M.I. Ansari, A. Malik, Biosorption of nickel and cadmium
by metal resistant bacterial isolates from agricultural soil
irrigated with industrial wastewater, Bioresour. Technol.,
98 (2007) 3149–3153.
- Q. Li, W. Song, M. Sun, J. Li, Z. Yu, Composition change and
adsorption performance of EPS from Bacillus vallismortis sp.
induced by Na2S, Ecotoxicol. Environ. Saf., 185 (2019) 109679,
doi: 10.1016/j.ecoenv.2019.109679.
- S. Lu, X. Li, Y. Xi, H. Liu, Z. Zhang, Y. Huang, T. Xie, Y. Liu,
B. Quan, C. Zhang, W. Xu, Insight the roles of loosely-bound
and tightly-bound extracellular polymeric substances on
Cu2+, Zn2+ and Pb2+ biosorption process with Desulfovibrio
vulgaris, J. Colloid Interface Sci., 596 (2021) 408–419.
- P. Concórdio-Reis, M.A.M. Reis, F. Freitas, Biosorption of
heavy metals by the bacterial exopolysaccharide FucoPol,
Appl. Sci., 10 (2020) 6708, doi: 10.3390/app10196708.
- Saba, Y. Rehman, M. Ahmed, A.N. Sabri, Potential role of
bacterial extracellular polymeric substances as biosorbent
material for arsenic bioremediation, Biorem. J., 23 (2019) 72–81.
- J. Rincón, F. González, A. Ballester, M.L. Blázquez, J.A. Muñoz,
Biosorption of heavy metals by chemically-activated alga Fucus
vesiculosus, J. Chem. Technol. Biotechnol., 80 (2005) 1403–1407.
- L. Brinza, M. Dring, M. Gavrilescu, Marine micro and macro
algal species as biosorbents for heavy metals, Environ. Eng.
Manage. J., 6 (2007) 237–251.
- A. Ali Redha, Removal of heavy metals from aqueous media
by biosorption, Arabian J. Basic Appl. Sci., 27 (2020) 183–193.
- I. Anastopoulos, G.Z. Kyzas, Progress in batch biosorption of
heavy metals onto algae, J. Mol. Liq., 209 (2015) 77–86.
- T.A. Davis, B. Volesky, A. Mucci, A review of the biochemistry
of heavy metal biosorption by brown algae, Water Res.,
37 (2003) 4311–4330.
- R.H. Vieira, B. Volesky, Biosorption: a solution to pollution?,
Int. Microbiol., 3 (2000) 17–24.
- A. Sarı, Ö.D. Uluozlü, M. Tüzen, Equilibrium, thermodynamic
and kinetic investigations on biosorption of arsenic from
aqueous solution by algae (Maugeotia genuflexa) biomass,
Chem. Eng. J., 167 (2011) 155–161.
- H.K. Hansen, A. Ribeiro, E. Mateus, Biosorption of arsenic(V)
with Lessonia nigrescens, Miner. Eng., 19 (2006) 486–490.
- I. Tüzün, G. Bayramoğlu, E. Yalçin, G. Başaran, G. Celik,
M.Y. Arica, Equilibrium and kinetic studies on biosorption of
Hg(II), Cd(II) and Pb(II) ions onto microalgae Chlamydomonas
reinhardtii, J. Environ. Manage., 77 (2005) 85–92.
- M.M. Montazer-Rahmati, P. Rabbani, A. Abdolali,
A.R. Keshtkar, Kinetics and equilibrium studies on
biosorption of cadmium, lead, and nickel ions from aqueous
solutions by intact and chemically modified brown algae,
J. Hazard. Mater., 185 (2011) 401–407.
- A.M. Abdel -Aty, N.S. Ammar, H.H. Ghafar, R.K. Ali, Biosorption
of cadmium and lead from aqueous solution by freshwater
alga Anabaena sphaerica biomass, J. Adv. Res., 4 (2013) 367–374.
- F. Luo, Y. Liu, X. Li, Z. Xuan, J. Ma, Biosorption of lead ion
by chemically-modified biomass of marine brown algae
Laminaria japonica, Chemosphere, 64 (2006) 1122–1127.
- G. Bayramoğlu, M. Yakup Arica, Construction a hybrid
biosorbent using Scenedesmus quadricauda and Ca-alginate
for biosorption of Cu(II), Zn(II) and Ni(II): kinetics and
equilibrium studies, Bioresour. Technol., 100 (2009) 186–193.
- I.M. Dittert, V.J.P. Vilar, E.A.B. da Silva, S.M.A.G.U. de Souza,
A.A.U. de Souza, C.M.S. Botelho, R.A.R. Boaventura, Adding
value to marine macro-algae Laminaria digitata through its use
in the separation and recovery of trivalent chromium ions
from aqueous solution, Chem. Eng. J., 193 (2012) 348–357.
- Y. González Bermúdez, I.L. Rodríguez Rico, E. Guibal,
M. Calero de Hoces, M.Á. Martín-Lara, Biosorption of
hexavalent chromium from aqueous solution by Sargassum
muticum brown alga. Application of statistical design for
process optimization, Chem. Eng. J., 183 (2012) 68–76.
- V.K. Gupta, A. Rastogi, Biosorption of hexavalent chromium
by raw and acid-treated green alga Oedogonium hatei from
aqueous solutions, J. Hazard. Mater., 163 (2009) 396–402.
- W.M. Ibrahim, Biosorption of heavy metal ions from aqueous
solution by red macroalgae, J. Hazard. Mater., 192 (2011)
1827–1835.
- V.K. Gupta, A. Rastogi, A. Nayak, Biosorption of nickel onto
treated alga (Oedogonium hatei): application of isotherm and
kinetic models, J. Colloid Interface Sci., 342 (2010) 533–539.
- M.H. Khani, A.R. Keshtkar, B. Meysami, M.F. Zarea,
R. Jalali, Biosorption of uranium from aqueous solutions
by nonliving biomass of marine algae Cystoseira indica,
Electron. J. Biotechnol., 9 (2006) 100–106.
- M. Tuzen, A. Sarı, Biosorption of selenium from aqueous
solution by green algae (Cladophora hutchinsiae) biomass:
equilibrium, thermodynamic and kinetic studies, Chem. Eng.
J., 158 (2010) 200–206.
- R. Dhankhar, A. Hooda, Fungal biosorption--an alternative
to meet the challenges of heavy metal pollution in aqueous
solutions, Environ. Technol., 32 (2011) 467–491.
- Y. Göksungur, S. Uren, U. Güvenç, Biosorption of cadmium
and lead ions by ethanol treated waste baker’s yeast biomass,
Bioresour. Technol., 96 (2005) 103–109.
- R. Say, N. Yılmaz, A. Denizli, Biosorption of cadmium,
lead, mercury, and arsenic ions by the fungus Penicillium
purpurogenum, Sep. Sci. Technol., 38 (2003) 2039–2053.
- G.M. Gadd, Accumulation and Transformation of Metals by
Microorganisms, in: Biotechnology Set, Wiley-VCH Verlag
GmbH, Weinheim, 2001, pp. 225–264.
- C. Sutherland, C. Venkobachar, Equilibrium modeling of
Cu(II) biosorption onto untreated and treated forest macrofungus
Fomes fasciatus, Int. J. Plant Anim. Environ. Sci.,
3 (2013) 193–203.
- L. Ramrakhiani, S. Khowala, Effect of pretreatment
on hexavalent chromium biosorption and multimetal
biosorption efficiency of Termitomyces clypeatus biomass,
Int. J. Integr. Sci. Innov. Technol., 1 (2012) 7–15.
- I. Abd-Elsalam, Factorial design for some parameters affecting
on chromium ш uptake by Saccharomyces cerevisiae, Int. J.
Appl. Biol. Pharm., 2 (2011) 33–40.
- I. Michalak, K. Chojnacka, A. Witek-Krowiak, State of the
art for the biosorption process – review, Appl. Biochem.
Biotechnol., 170 (2013) 1389–1416.
- J. Wang, C. Chen, Chitosan-based biosorbents: modification
and application for biosorption of heavy metals and
radionuclides, Bioresour. Technol., 160 (2014) 129–141.
- G. Crini, Recent developments in polysaccharide-based
materials used as adsorbents in wastewater treatment,
Prog. Polym. Sci., 30 (2005) 38–70.
- S. De Gisi, G. Lofrano, M. Grassi, M. Notarnicola, Characteristics
and adsorption capacities of low-cost sorbents for
wastewater treatment: a review, Sustainable Mater. Technol.,
9 (2016) 10–40.
- K. Selvaraj, S. Manonmani, S. Pattabhi, Removal of hexavalent
chromium using distillery sludge, Bioresour. Technol.,
89 (2003) 207–211.
- R. Gulati, R.K. Saxena, R. Gupta, Fermentation waste of
Aspergillus terreus: a potential copper biosorbent, World J.
Microbiol. Biotechnol., 18 (2002) 397–401.
- Y. Liu, M.C. Lam, H.H. Fang, Adsorption of heavy metals
by EPS of activated sludge, Water Sci. Technol., 43 (2001)
59–66.
- R. Fernández-González, M.Á. Martín-Lara, G. Blázquez,
A. Pérez, M. Calero, Recovering metals from aqueous
solutions by biosorption onto hydrolyzed olive cake,
Water, 11 (2019) 2519, doi: 10.3390/w11122519.
- A. Saeed, M. Akhter, M. Iqbal, Removal and recovery of heavy
metals from aqueous solution using papaya wood as a new
biosorbent, Sep. Purif. Technol., 45 (2005) 25–31.
- N. Basci, E. Kocadagistan, B. Kocadagistan, Biosorption
of copper(II) from aqueous solutions by wheat shell,
Desalination, 164 (2004) 135–140.
- Z.R. Komy, W.H. Abdelraheem, N.M. Ismail, Biosorption of
Cu2+ by Eichhornia crassipes: physicochemical characterization,
biosorption modeling and mechanism, J. King Saud
Univ. Sci., 25 (2013) 47–56.
- G.H. Pino, L.M.S. de Mesquita, M.L. Torem, G.A.S. Pinto,
Biosorption of heavy metals by powder of green coconut
shell, Sep. Sci. Technol., 41 (2006) 3141–3153.
- A. Kumar, O. Sahu, Sugar industry waste as removal of toxic
metals from wastewater, World J. Chem. Edu., 1 (2013) 17–20.
- I.J. Alinnor, Adsorption of heavy metal ions from aqueous
solution by fly ash, Fuel, 86 (2007) 853–857.
- C. Sutherland, B.S. Chittoo, C. Venkobachar, Application of
an artificial neural network-genetic algorithm methodology
for modelling and optimization of the improved biosorption
of a chemically modified peat moss: kinetic studies,
Desal. Water Treat., 84 (2017) 69–84.
- X. Han, C.F. Liang, T.Q. Li, K. Wang, H.G. Huang, X.E. Yang,
Simultaneous removal of cadmium and sulfamethoxazole
from aqueous solution by rice straw biochar, J. Zhejiang
Univ.-Sci. B, 14 (2013) 640–649.
- J.R. Memon, S.Q. Memon, M.I. Bhanger, G.Z. Memon,
A. El-Turki, G.C. Allen, Characterization of banana peel by
scanning electron microscopy and FT-IR spectroscopy and its
use for cadmium removal, Colloids Surf., B, 66 (2008) 260–265.
- O.I. Asubiojo, O.B. Ajelabi, Removal of heavy metals from
industrial wastewaters using natural adsorbents, Toxicol.
Environ. Chem., 91 (2009) 883–890.
- Y. Bulut, Z. Tez, Adsorption studies on ground shells of
hazelnut and almond, J. Hazard. Mater., 149 (2007) 35–41.
- A. Hashem, E.S. Abdel-Halim, K.F. El-Tahlawy, A. Hebeish,
Enhancement of the adsorption of Co(II) and Ni(II) ions
onto peanut hulls through esterification using citric acid,
Adsorpt. Sci. Technol., 23 (2005) 367–380.
- Y. Sun, P.A. Webley, Preparation of activated carbons from
corncob with large specific surface area by a variety of
chemical activators and their application in gas storage,
Chem. Eng. J., 162 (2010) 883–892.
- I. Tan, A. Ahmad, B. Hameed, Optimization of preparation
conditions for activated carbons from coconut husk using
response surface methodology, Chem. Eng. J., 137 (2008)
462–470.
- Y. Bulut, Z. Tez, Removal of heavy metals from aqueous
solution by sawdust adsorption, J. Environ. Sci., 19 (2007)
160–166.
- M.C. Ncibi, B. Mahjoub, M. Seffen, Investigation of the
sorption mechanisms of metal-complexed dye onto Posidonia
oceanica (L.) fibres through kinetic modelling analysis,
Bioresour. Technol., 99 (2008) 5582–5589.
- Y. Safa, H.N. Bhatti, Biosorption of Direct Red-31 and Direct
Orange-26 dyes by rice husk: application of factorial design
analysis, Chem. Eng. Res. Des., 89 (2011a) 2566–2574.
- Y. Safa, H.N. Bhatti, Kinetic and thermodynamic modeling for
the removal of Direct Red-31 and Direct Orange-26 dyes from
aqueous solutions by rice husk, Desalination, 272 (2011b)
313–322.
- M.M. Dávila-Jiménez, M.P. Elizalde-González, A.A. Peláez-
Cid, Adsorption interaction between natural adsorbents
and textile dyes in aqueous solution, Colloids Surf., A,
254 (2005) 107–114.
- A. Artola, M.J. Martin, M. Balaguer, M. Rigola, Pilot plant
biosorption in an integrated contact-settling system:
application to Cu(II) removal by anaerobically digested
sludge, J. Chem. Technol. Biotechnol., 76 (2001) 1141–1146.
- G. Yan, T. Viraraghavan, Heavy metal removal in a biosorption
column by immobilized M. rouxii biomass, Bioresour.
Technol., 78 (2001) 243–249.
- N. Sooksawat, M. Meetam, M. Kruatrachue, P. Pokethitiyook,
D. Inthorn, Performance of packed bed column using Chara
aculeolata biomass for removal of Pb and Cd ions from
wastewater, J. Environ. Sci. Health. Part A Toxic/Hazard.
Subst. Environ. Eng., 52 (2017) 539–546.
- J.Z. Chen, X.C. Tao, J. Xu, T. Zhang, Z.L. Liu, Biosorption
of lead, cadmium and mercury by immobilized Microcystis
aeruginosa in a column, Process Biochem., 40 (2005) 3675–3679.
- J. Cruz-Olivares, C. Pérez-Alonso, C. Barrera-Díaz, F. Ureña-
Nuñez, M.C. Chaparro-Mercado, B. Bilyeu, Modeling of
lead(II) biosorption by residue of allspice in a fixed-bed
column, Chem. Eng. J., 228 (2013) 21–27.
- L. Pelit, F.N. Ertaş, A.E. Eroğlu, T. Shahwan, H. Tural,
Biosorption of Cu(II) and Pb(II) ions from aqueous solution
by natural spider silk, Bioresour. Technol., 102 (2011)
8807–8813.
- A. Abdolali, H.H. Ngo, W. Guo, J.L. Zhou, J. Zhang,
S. Liang, S.W. Chang, D.D. Nguyen, Y. Liu, Application of a
breakthrough biosorbent for removing heavy metals from
synthetic and real wastewaters in a lab-scale continuous fixedbed
column, Bioresour. Technol., 229 (2017) 78–87.
- M. Tsezos, Z. Georgousis, E. Remoudaki, Mechanism of
aluminum interference on uranium biosorption by Rhizopus
arrhizus, Biotechnol. Bioeng., 55 (1997) 16–27.
- M. Tsezos, Biosorption of metals. The experience
accumulated and the outlook for technology development,
Hydrometallurgy, 59 (2001) 241–243.
- I. Mikhaylov, A. Averbuch, E. Tumarkin, I. Furmer, Chemical
Technology, Part I, 3rd ed., MIR Publishers, Moscow, 1979.
- M. Calero, A. Ronda, A. Pérez, A. Yáñez, M.C. Trujillo,
M.Á. Martín-Lara, The scale-up of Cr3+ biosorption onto olive
stone in a fixed bed column, Desal. Water Treat., 57 (2016)
25140–25152.
- A. Ronda, M.A. Martín-Lara, O. Osegueda, V. Castillo,
G. Blázquez, Scale-up of a packed bed column for wastewater
treatment, Water Sci. Technol., 77 (2018) 1386–1396.
- A. Ronda, M.A. Martín-Lara, E. Dionisio, G. Blázquez,
M. Calero, Effect of lead in biosorption of copper by almond
shell, J. Taiwan Inst. Chem. Eng., 44 (2013) 466–473.
- M.Á. Martín-Lara, M.C. Trujillo Miranda, A. Ronda Gálvez,
A. Pérez Muñoz, M. Calero de Hoces, Valorization of olive
stone as adsorbent of chromium(VI): comparison between
laboratory- and pilot-scale fixed-bed columns, Int. J. Environ.
Sci. Technol., 14 (2017) 2661–2674.
- A. Hethnawi, A.D. Manasrah, G. Vitale, N.N. Nassar, Fixedbed
column studies of total organic carbon removal from
industrial wastewater by use of diatomite decorated with
polyethylenimine-functionalized pyroxene nanoparticles,
J. Colloid Interface Sci., 513 (2018) 28–42.
- R. Elangovan, L. Philip, K. Chandraraj, Biosorption of
hexavalent and trivalent chromium by palm flower (Borassus
aethiopum), Chem. Eng. J., 141 (2008) 99–111.
- G. Tenorio Rivas, Characterization of the Biosorption of
Chromium with Olive Stone, (Ph.D. Thesis), University of
Granada, 2006.
- M. Karimi, A. Shojaei, A. Nematollahzadeh, M.J. Abdekhodaie,
Column study of Cr(VI) adsorption onto modified silica–
polyacrylamide microspheres composite, Chem. Eng. J.,
210 (2012) 280–288.
- P. Sar, S.F. D’Souza, Biosorption of thorium(IV) by a
Pseudomonas biomass, Biotechnol. Lett., 24 (2002) 239–243.
- V.J.P. Vilar, C.M.S. Botelho, R.A.R. Boaventura, Lead uptake
by algae Gelidium and composite material particles in a
packed bed column, Chem. Eng. J., 144 (2008a) 420–430.
- V. Murphy, H. Hughes, P. Mcloughlin, Cu(II) binding by dried
biomass of red, green and brown macroalgae, Water Res.,
41 (2007) 731–740.
- P. Srinivasa Rao, S. Kalyani, K.V.N. Suresh Reddy,
A. Krishnaiah, Comparison of biosorption of nickel(II) and
copper(II) ions from aqueous solution by Sphaeroplea algae
and acid treated Sphaeroplea algae, Sep. Sci. Technol., 40 (2005)
3149–3165.
- Y.P. Kumar, P. King, V.S.R.K. Prasad, Removal of copper
from aqueous solution using Ulva fasciata sp.–a marine green
algae, J. Hazard. Mater., 137 (2006) 367–373.
- P.A. Marques, H.M. Pinheiro, J. 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.
- M.F. Wong, H. Chua, W. Lo, C.K. Leung, P.H. Yu, Removal
and recovery of copper(II) ions by bacterial biosorption,
Appl. Biochem. Biotechnol., 91 (2001) 447–457.
- H. Xu, Y. Liu, J.H. Tay, Effect of pH on nickel biosorption
by aerobic granular sludge, Bioresour. Technol., 97 (2006)
359–363.
- C. Escudero-Oñate, I. Villaescusa, The Thermodynamics
of Heavy Metal Sorption onto Lignocellulosic Biomass, in:
Heavy Metals, InTechOpen, London, 2018, pp. 235–251.
- A.C. Gonçalves Jr., D. Schwantes, M.A. Campagnolo,
D.C. Dragunski, C.R.T. Tarley, A.K.D.S. Silva, Removal of
toxic metals using endocarp of açaí berry as biosorbent,
Water Sci. Technol., 77 (2018) 1547–1557.
- M. Fadel, N.M. Hassanein, M.M. Elshafei, A.H. Mostafa,
M.A. Ahmed, H.M. Khater, Biosorption of manganese
from groundwater by biomass of Saccharomyces cerevisiae,
HBRC J., 13 (2017) 106–113.
- N. Goyal, S.C. Jain, U.C. Banerjee, Comparative studies on
the microbial adsorption of heavy metals, Adv. Environ. Res.,
7 (2003) 311–319.
- S. Shamim, Biosorption of Heavy Metals, in: Biosorption,
InTechOpen, London, 2018, pp. 21–49.
- N.T. Abdel-Ghani, A.K. Hegazy, G.A. El-Chaghaby, Typha
domingensis leaf powder for decontamination of aluminium,
iron, zinc and lead: biosorption kinetics and equilibrium
modeling, Int. J. Environ. Sci. Technol., 6 (2009) 243–248.
- 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.
- S. Dahiya, R.M. Tripathi, A.G. Hegde, Biosorption of heavy
metals and radionuclide from aqueous solutions by pretreated
arca shell biomass, J. Hazard. Mater., 150 (2008)
376–386.
- S. Wierzba, A. Latała, Biosorption lead(II) and nickel(II)
from an aqueous solution by bacterial biomass, Pol. J. Chem.
Technol., 12 (2010) 72–78.
- S.N. Azizi, A. Hosseinzadeh Colagar, S.M. Hafeziyan, Removal
of Cd(II) from aquatic system using Oscillatoria sp. biosorbent,
Sci. World J., 2012 (2012) 347053, doi: 10.1100/2012/347053.
- A.A. Hamdy, Biosorption of heavy metals by marine algae,
Curr. Microbiol., 41 (2000) 232–238.
- D. Kumar, J.P. Gaur, Metal biosorption by two cyanobacterial
mats in relation to pH, biomass concentration, pretreatment
and reuse, Bioresour. Technol., 102 (2011) 2529–2535.
- 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.
- M. Abbas, R. Nadeem, M.N. Zafar, M. Arshad, Biosorption
of chromium(III) and chromium(VI) by untreated and
pretreated Cassia fistula biomass from aqueous solutions,
Water Air Soil Pollut., 191 (2008) 139–148.
- S.E. Oh, S.H.A. Hassan, J.H. Joo, Biosorption of heavy metals
by lyophilized cells of Pseudomonas stutzeri, World J. Microbiol.
Biotechnol., 25 (2009) 1771–1778.
- Y.C. Lee, S.P. Chang, The biosorption of heavy metals from
aqueous solution by Spirogyra and Cladophora filamentous
macroalgae, Bioresour. Technol., 102 (2011) 5297–5304.
- A.Ş. Yargıç, R.Z. Yarbay Şahin, N. Özbay, E. Önal, Assessment
of toxic copper(II) biosorption from aqueous solution by
chemically-treated tomato waste, J. Cleaner Prod., 88 (2015)
152–159.
- E. Ozbay, A. Cinar, A Novel Approach to Smoothing on 3D
Structured Adaptive Mesh of the Kinect-Based Models, in:
Computer Science & Information Technology (CS & IT),
Academy & Industry Research Collaboration Center (AIRCC),
Tamil Nada, 2013, pp. 12–22.
- J.Y. Farah, N.S. El-Gendy, Performance, kinetics and
equilibrium in biosorption of anionic dye Acid Red 14 by
the waste biomass of Saccharomyces cerevisiae as a low-cost
biosorbent, Turk. J. Eng. Environ. Sci., 37 (2013) 146–161.
- Y. Nuhoglu, E. Malkoc, Thermodynamic and kinetic studies
for environmentally friendly Ni(II) biosorption using waste
pomace of olive oil factory, Bioresour. Technol., 100 (2009)
2375–2380.
- O.A. Mohamad, X. Hao, P. Xie, S. Hatab, Y. Lin, G. Wei,
Biosorption of copper(II) from aqueous solution using nonliving
Mesorhizobium amorphae strain CCNWGS0123, Microbes
Environ., 27 (2012) 234–241.
- R. Marandi, F.D. Ardejani, H. Afshar, Biosorption of lead(II)
and zinc(II) ions by pre-treated biomass of Phanerochaete
chrysosporium, J. Min. Environ., 1 (2010) 9–16.
- İ. Şahin, S.Y. Keskin, C.S. Keskin, Biosorption of cadmium,
manganese, nickel, lead, and zinc ions by Aspergillus tamarii,
Desal. Water Treat., 51 (2013) 4524–4529.
- A. Chergui, R. Kerbachi, G.A. Junter, Biosorption of
hexacyanoferrate(III) complex anion to dead biomass of the
basidiomycete Pleurotus mutilus: biosorbent characterization
and batch experiments, Chem. Eng. J., 147 (2009) 150–160.
- K. Parvathi, R. Nagendran, Biosorption of chromium from
effluent generated in chrome-electroplating unit using
Saccharomyces cerevisiae, Sep. Sci. Technol., 42 (2007) 625–638.
- C.C.V. Cruz, A.C.A. da Costa, C.A. Henriques, A.S. Luna,
Kinetic modeling and equilibrium studies during cadmium
biosorption by dead Sargassum sp. biomass, Bioresour.
Technol., 91 (2004) 249–257.
- N. Rajamohan, M. Rajasimman, M. Dilipkumar, Parametric
and kinetic studies on biosorption of mercury using modified
Phoenix dactylifera biomass, J. Taiwan Inst. Chem. Eng.,
45 (2014) 2622–2627.
- F.G. Helfferich, Principles of adsorption and adsorption
processes, AlChE J., 31 (1985) 523–524.
- R.E. Treybal, Mass-Transfer Operations, 3rd ed., in: Adsorption
and Ion Exchange, Mc-Graw Hill Company, Malaysia, 1981,
pp. 568–569.
- R.C. Bansal, M. Goyal, Activated Carbon Adsorption, CRC
Press, Boca Raton, 2005.
- O. Gulnaz, S. Saygideger, E. Kusvuran, Study of Cu(II)
biosorption by dried activated sludge: effect of physicochemical
environment and kinetics study, J. Hazard. Mater.,
120 (2005) 193–200.
- T.G. Chuah, A. Jumasiah, I. Azni, S. Katayon, S.Y. Thomas
Choong, Rice husk as a potentially low-cost biosorbent for
heavy metal and dye removal: an overview, Desalination,
175 (2005) 305–316.
- M. Riaz, R. Nadeem, M.A. Hanif, T.M. Ansari, K.U. Rehman,
Pb(II) biosorption from hazardous aqueous streams using
Gossypium hirsutum (cotton) waste biomass, J. Hazard. Mater.,
161 (2009) 88–94.
- A. Şengil, M. Özacar, Competitive biosorption of Pb2+, Cu2+
and Zn2+ ions from aqueous solutions onto valonia tannin
resin, J. Hazard. Mater., 166 (2009) 1488–1494.
- V. Mishra, C. Balomajumder, V.K. Agarwal, Biosorption of
Zn(II) onto the surface of non-living biomasses: a comparative
study of adsorbent particle size and removal capacity of three
different biomasses, Water Air Soil Pollut., 211 (2010) 489–500.
- L.J. Yu, S.S. Shukla, K.L. Dorris, A. Shukla, J.L. Margrave,
Adsorption of chromium from aqueous solutions by maple
sawdust, J. Hazard. Mater., 100 (2003) 53–63.
- K.K. Wong, C.K. Lee, K.S. Low, M.J. Haron, Removal of Cu
and Pb by tartaric acid modified rice husk from aqueous
solutions, Chemosphere, 50 (2003) 23–28.
- N. Muisa, I. Nhapi, W. Ruziwa, M.M. Manyuchi, Utilization
of alum sludge as adsorbent for phosphorus removal in
municipal wastewater: a review, J. Water Process Eng.,
35 (2020) 101187, doi: 10.1016/j.jwpe.2020.101187.
- A. Bhatnagar, A.K. Minocha, Conventional and nonconventional
adsorbents for removal of pollutants from water
- a review, Indian J. Chem. Technol., 13 (2006) 203–217.
- S.P. Dubey, K. Gopal, J.L. Bersillon, Utility of adsorbents in the
purification of drinking water: a review of characterization,
efficiency and safety evaluation of various adsorbents,
J. Environ. Biol., 30 (2009) 327–332.
- C. Sutherland, Removal of Heavy Metals from Water Using
Low-Cost Adsorbents: Process Development, (Ph.D. Thesis),
The University of the West Indies, St. Augustine, 2004.
- C. Sutherland, C. Venkobachar, A diffusion–chemisorption
kinetic model for simulating biosorption using forest macrofungus,
Fomes fasciatus, Int. Res. J. Plant Sci., 1 (2010) 107–117.
- W.J. Weber Jr., J.C. Morris, Kinetics of adsorption on carbon
from solution, J. Sanit. Eng. Div., 89 (1963) 31–59.
- A.E. Ofomaja, Intraparticle diffusion process for lead(II)
biosorption onto Mansonia wood sawdust, Bioresour. Technol.,
101 (2010) 5868–5876.
- A.R. Teixeira, C.C. Chang, T. Coogan, R. Kendall, W. Fan,
P.J. Dauenhauer, Dominance of surface barriers in molecular
transport through silicalite-1, J. Phys. Chem., 117 (2013)
25545–25555.
- Y.S. Ho, G. McKay, A comparison of chemisorption kinetic
models applied to pollutant removal on various sorbents,
Process Saf. Environ. Prot., 76 (1998a) 332–340.
- Y.S. Ho, G. Mckay, The kinetics of sorption of basic dyes from
aqueous solution by sphagnum moss peat, Can. J. Chem.
Eng., 76 (1998c) 822–827.
- Y.S. Ho, G. McKay, A kinetic study of dye sorption by
biosorbent waste product pith, Resour. Conserv. Recycl.,
25 (1999) 171–193.
- 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.
- S.H. Chien, W.R. Clayton, Application of Elovich equation to
the kinetics of phosphate release and sorption in soils, Soil Sci.
Soc. Am. J., 44 (1980) 265–268.
- V.G. Georgieva, M.P. Tavlieva, S.D. Genieva, L.T. Vlaev,
Adsorption kinetics of Cr(VI) ions from aqueous solutions
onto black rice husk ash, J. Mol. Liq., 208 (2015) 219–226.
- R. Subha, C. Namasivayam, Modeling of adsorption isotherms
and kinetics of 2,4,6-trichlorophenol onto microporous ZnCl2
activated coir pith carbon, J. Environ. Eng. Manage., 18 (2008)
275–280.
- V. Mishra, C. Balomajumder, V.K. Agarwal, Kinetics,
mechanistic and thermodynamics of Zn(II) ion sorption:
a modeling approach, CLEAN – Soil Air Water, 40 (2012)
718–727.
- A. Basker, P.S. Shabudeen, S. Daniel, P.V. Kumar, Adsorptive
removal of malachite green from aqueous solution using
areca husk carbon, Rasayan J. Chem., 7 (2014) 1–15.
- Y.S. Ho, G. Mckay, Kinetic models for the sorption of dye
from aqueous solution by wood, Process Saf. Environ. Prot.,
76 (1998b) 183–191.
- R. Mikutta, A. Baumgärtner, A. Schippers, L. Haumaier,
G. Guggenberger, Extracellular polymeric substances from
Bacillus subtilis associated with minerals modify the extent
and rate of heavy metal sorption, Environ. Sci. Technol.,
46 (2012) 3866–3873.
- T. Manobala, S.K. Shukla, T.S. Rao, M.D. Kumar, Kinetic
modelling of the uranium biosorption by Deinococcus
radiodurans biofilm, Chemosphere, 269 (2021) 128722, doi:
10.1016/j.chemosphere.2020.128722.
- M.H. Khani, Biosorption of strontium by a nonliving
brown marine algae, Padina sp., Sep. Sci. Technol., 47 (2012)
1886–1897.
- M.H. Khani, Uranium biosorption by Padina sp. algae
biomass: kinetics and thermodynamics, Environ. Sci. Pollut.
Res. Int., 18 (2011) 1593–1605.
- S. Karthikeyan, R. Balasubramanian, C.S.P. Iyer, Evaluation
of the marine algae Ulva fasciata and Sargassum sp. for the
biosorption of Cu(II) from aqueous solutions, Bioresour.
Technol., 98 (2007) 452–455.
- P. Lodeiro, B. Cordero, J.L. Barriada, R. Herrero, M.E. Sastre
de Vicente, Biosorption of cadmium by biomass of brown
marine macroalgae, Bioresour. Technol., 96 (2005) 1796–1803.
- 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.
- R. Apiratikul, P. Pavasant, Batch and column studies of
biosorption of heavy metals by Caulerpa lentillifera, Bioresour.
Technol., 99 (2008) 2766–2777.
- Y.X. Li, Y. Wang, F.J. Zhao, Kinetic and equilibrium studies of
chromium(VI) biosorption by spent macro algae Polysiphonia
urceolata and Chondrus ocellatus, Biotechnol. Biotechnol.
Equip., 29 (2015) 498–505.
- A. Javaid, R. Bajwa, A. Javaid, Biosorption of heavy metals
using a dead macro fungus Schizophyllum commune fries:
evaluation of equilibrium and kinetic models, Pak. J. Bot.,
42 (2010) 2105–2118.
- A. Khodabakhshi, F. Mohammadi-Moghadam, K. Shakeri,
S. Hemati, Equilibrium and thermodynamic studies on the
biosorption of lead(II) by living and nonliving biomass of
Penicillium notatum, J. Chem., 2022 (2022) 1–9.
- Y.G. Liu, T. Fan, G.M. Zeng, X. Li, Q. Tong, F. Ye, M. Zhou,
W.H. Xu, Y.E. Huang, Removal of cadmium and zinc ions
from aqueous solution by living Aspergillus niger, Trans.
Nonferrous Met. Soc. China, 16 (2006) 681–686.
- M.A. Fawzy, H.M. Al-Yasi, T.M. Galal, R.Z. Hamza,
T.G. Abdelkader, E.F. Ali, S.H.A. Hassan, Statistical
optimization, kinetic, equilibrium isotherm and
thermodynamic studies of copper biosorption onto Rosa
damascena leaves as a low-cost biosorbent, Sci. Rep., 12 (2022)
1–19.
- Y.D. Aracagök, Biosorption of lead by a soil isolate Aspergillus
neoalliaceus, Arch. Microbiol., 204 (2022) 547, doi: 10.1007/s00203-022-03164-6.
- E. Savastru, D. Bulgariu, C.I. Zamfir, L. Bulgariu, Application
of Saccharomyces cerevisiae in the biosorption of Co(II), Zn(II)
and Cu(II) ions from aqueous media, Water, 14 (2022) 976, doi:
10.3390/w14060976.
- S. Mushtaq, F.E. Bareen, A. Tayyeb, Equilibrium kinetics
and thermodynamic studies on biosorption of heavy metals
by metal-resistant strains of Trichoderma isolated from
tannery solid waste, Environ. Sci. Pollut. Res. Int., 30 (2022)
10925–10954.
- M. Villen-Guzman, D. Gutierrez-Pinilla, C. Gomez-Lahoz,
C. Vereda-Alonso, J.M. Rodriguez-Maroto, B. Arhoun,
Optimization of Ni(II) biosorption from aqueous solution on
modified lemon peel, Environ. Res., 179 (2019) 108849.
- A. Pholosi, E.B. Naidoo, A.E. Ofomaja, Intraparticle diffusion
of Cr(VI) through biomass and magnetite coated biomass: A
comparative kinetic and diffusion study, S. Afr. J. Chem. Eng.,
32 (2020) 39–55.
- A.E. Ofomaja, A. Pholosi, E.B. Naidoo, Kinetics and
competitive modeling of cesium biosortion onto chemically
modified pine cone powder, J. Taiwan Inst. Chem. Eng.,
44 (2013) 943–951.
- M.O. Omorogie, J.O. Babalola, E.I. Unuabonah, J.R. Gong,
Hybrid materials from agro-waste and nanoparticles:
implications on the kinetics of the adsorption of inorganic
pollutants, Environ. Technol., 35 (2014) 611–619.
- C. Sutherland, A. Marcano, B. Chittoo, Artificial neural
network-genetic algorithm prediction of heavy metal removal
using a novel plant-based biosorbent banana floret: Kinetic,
equilibrium, thermodynamics and desorption studies, In:
Desalination and Water Treatment, InTechOpen, London,
2018, pp. 385–411.
- M.P. Tavlieva, S.D. Genieva, V.G. Georgieva, L.T. Vlaev,
Thermodynamics
and kinetics of the removal of manganese(II)
ions from aqueous solutions by white rice husk ash,
J. Mol. Liq., 211 (2015) 938–947.
- A. Obike, J. Igwe, C. Emeruwa, K. Uwakwe, C. Aghalibe,
Diffusion–Chemisorption and Pseudo-Second-Order Kinetic
Models for Heavy Metal Removal from Aqueous Solutions
Using Modified and Unmodified Oil Palm Fruit Fibre,
Chem. Sci. Int. J., 23 (2018) 1–13.
- P.M. Melia, R. Busquets, S. Ray, A.B. Cundy, Agricultural
wastes from wheat, barley, flax and grape for the efficient
removal of Cd from contaminated water, RSC Adv., 8 (2018)
40378–40386.
- P. Liu, Y. Gong, C. Yang, R. Ledesma-Amaro, Y.K. Park,
S. Deng, Y. Wang, H. Wei, W. Chen, Biorefining of rapeseed
meal: A new and sustainable strategy for improving Cr(VI)
biosorption on residual wastes from agricultural byproducts
after phenolic extraction, Waste Manag., 165 (2023) 70–81.
- A. Bilgic, A. Cimen, A.N. Kursunlu, A novel biosorbent
functionalized pillar[5]arene: Synthesis, characterization and
effective biosorption of Cr(VI), Sci. Total Environ., 857 (2023)
159312.
- J. Liu, C. Zhang, B. Tao, J. Beckerman, Revealing the roles
of biomass components in the biosorption of heavy metals
in wastewater by various chemically treated hemp stalks,
J. Taiwan Inst. Chem. Eng., 143 (2023) 104701.
- M. Benavente, E. Álvarez, L. Moreno, J. Martinez, Removal of
copper and zinc from gold ore tailings solutions using chitosan,
In: II International Workshop on Process Hydrometallurgy,
GECAMIN Ltda., Santiago 2008, pp. 139–152.
- N. Kano, K. Tanabe, M. Pang, Y. Deng, H. Imaizumi,
Biosorption of chromium from aqueous solution using
chitosan, J. Chem. Chem., 8 (2014) 1049–1058.
- A.S. Ali, A.M.A. Hassan, M.H. Nour, Equilibrium and
Kinetics studies for Removal of Heavy Metals from simulated
Wastewater using Chitosan/Activated carbon composite, Int.
J. Res. Environ. Sci., 6 (2020) 12–27.
- H.Y. Sharef, N.A. Fakhre, Rapid adsorption of some heavy
metals using extracted chitosan anchored with new aldehyde
to form a schiff base, PLoS One, 17 (2022) 1–21.
- Y.S. Ho, J.F. Porter, G. McKay, Equilibrium isotherm studies
for the sorption of divalent metal ions onto peat: Copper,
nickel and lead single component systems, Water Air Soil
Pollut., 141 (2001) 1–33.
- I. Langmuir, The constitution and fundamental properties of
solids and liquids. Part 1. Solids, J. Am. Chem. Soc., 38 (1916)
2221–2295.
- C. Sutherland, B.S. Chittoo, C. Venkobachar, Application of
ANN predictive model for the design of batch adsorbers -
Equilibrium simulation of Cr(VI) adsorption onto activated
carbon, Open Civ. Eng. J., 13 (2019) 69–81.
- E. Swan, A.R. Urquhart, Adsorption equations, J. Phys. Chem.,
31 (1927) 251–276.
- H.M.F. Freundlich, Over the adsorption in solution, J. Phys.
Chem., 57 (1906) 1100–1107.
- O. Redlich, D.L. Peterson, A useful adsorption isotherm,
J. Phys. Chem., 63 (1959) 1024–1024.
- R. Sips, On the structure of a catalyst surface, J. Chem. Phys.,
16 (1948) 490–495.
- J. Behbahani, Z.J. Behbahani, A new study on asphaltene
adsorption in porous media, Petrol. Coal., 56 (2014) 459–466.
- M.S. Padder, C.B.C. Majunder, Studies on the removal of
As(III) and As(V) through their adsorption onto granular
activated carbon/MnFe2O4 composite: isotherm studies and
error analysis, Compos. Interface, 23 (2012) 327–372.
- O. Amrhar, H. Nassali, M.S. Elyoubi, Two and threeparameter
isothermal modeling for adsorption of crystal
violet dye onto natural illitic clay: nonlinear regression
analysis, J. Chem. and Pharm. Res., 7 (2015a) 892–903.
- D. Ringot, B. Lerzy, K. Chaplain, J.P. Bonhoure, E. Auclair,
Y. Larondelle, In-vitro biosorption of ochratoxin A on the
yeast industry by-products: comparison of isotherm models,
Bioresour. Technol., 98 (2007) 1812–1821.
- H. Shahbeig, N. Bagheri, S.A. Ghorbanian, A. Hallajisani,
S. Poorkarimi, A new adsorption isotherm model of aqueous
solutions on granular activated carbon, World J. Modell.
Simul., 9 (2013) 243–254.
- O. Amrhar, H. Nassai, M.S. Elyoubi, Application of nonlinear
regression analysis to select the optimum absorption isotherm
for methylene blue adsorption onto natural illitic clay,
Bull. R. Soc. Sci. Liège, 84 (2015b) 116–130.
- A.O. Dada, A.P. Olalekan, A.M. Olatunya, O.J.I.J.C. Dada,
Langmuir, Freundlich, Temkin and Dubinin–Radushkevich
isotherms studies of equilibrium sorption of Zn2+ unto
phosphoric acid modified rice husk, IOSR J. Appl. Chem.,
3 (2012) 38–45.
- C.J. Radke, J.M. Prausnitz, Adsorption of organic solutes
from dilute aqueous solution of activated carbon, Ind. Eng.
Chem. Fundam., 11 (1972) 445–451.
- N. Ayawei, A.N. Ebelegi, D. Wankasi, Modelling and
interpretation of adsorption isotherms, J. Chem., 2017 (2017)
1–11.
- N. Sivarajasekar, R. Baskar, Adsorption of basic red 9 onto
activated carbon derived from immature cotton seeds:
isotherm studies and error analysis, Desal. Water Treat.,
52 (2014) 7743–7765.
- 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.
- G. Ozdemir, T. Ozturk, N. Ceyhan, R. Isler, T. Cosar, Heavy
metal biosorption by biomass of Ochrobactrum anthropi producing exopolysaccharide in activated sludge, Bioresour.
Technol., 90 (2003) 71–74.
- W.B. Lu, J.J. Shi, C.H. Wang, J.S. Chang, Biosorption of lead,
copper and cadmium by an indigenous isolate Enterobacter sp.
J1 possessing high heavy-metal resistance, J. Hazard. Mater.,
134 (2006) 80–86.
- R. Zanetti, S. Zecchin, M. Colombo, G. Borgonovo, S. Mazzini,
L. Scaglioni, G. Facchetti, R. Gandolfi, I. Rimoldi, L. Cavalca,
Ni2+ and Cu2+ biosorption by EPS-producing Serratia
plymuthica strains and potential bio-catalysis of the organo–metal complexes, Water, 14 (2022) 3410.
- L. Xiao, X. Qu, D. Zhu, Biosorption of nonpolar hydrophobic
organic compounds to Escherichia coli facilitated by metal
and proton surface binding, Environ. Sci. Technol., 41 (2007)
2750–2755.
- M.H. Khani, Biosorption of strontium by Padina sp. algae
biomass: process optimisation and equilibrium study, Int. J.
Environ. Technol. and Manage., 16 (2013) 290–311.
- R. Kumar, N.R. Bishnoi, Garima, K. Bishnoi, Biosorption of
chromium(VI) from aqueous solution and electroplating
wastewater using fungal biomass, Chem. Eng. J., 135 (2008)
202–208.
- N.N.N.A. Rahman, M. Shahadat, F.M. Omar, A.W. Chew,
M.O.A. Kadir, Dry Trichoderma biomass: biosorption
behavior for the treatment of toxic heavy metal ions,
Desal. Water Treat., 57 (2016) 13106–13112.
- A. Khodabakhshi, F.M. Moghadam, M. Sedehi, R. Abdizadeh,
K. Shakeri, Biosorption of lead using Penicillium notatum
dead biomass from aqueous solutions, Desal. Water Treat.,
154 (2019) 296–304.
- M.A. Fawzy, H. Darwish, S. Alharthi, M.I. Al-Zaban,
A. Noureldeen, S.H.A. Hassan, Process optimization and
modeling of Cd2+ biosorption onto the free and immobilized
Turbinaria ornata using Box–Behnken experimental design,
Sci. Rep., 12 (2022) 3256, doi: 10.1038/s41598-022-07288-z.
- T.K. Naiya, A.K. Bhattacharya, S.K. Das, Adsorption of
Pb(II) by sawdust and neem bark from aqueous solutions,
Environ. Prog., 27 (2008) 313–328.
- C.I. Orozco, M.S. Freire, D. Gómez-Díaz, J. González-Álvarez,
Removal of copper from aqueous solutions by biosorption
onto pine sawdust, Sustainable Chem. Pharm., 32 (2023)
101016, doi: 10.1016/j.scp.2023.101016.
- V.G. Georgieva, L. Gonsalvesh, M.P. Tavlieva,
Thermodynamics and kinetics of the removal of nickel(II)
ions from aqueous solutions by biochar adsorbent made
from agro-waste walnut shells, J. Mol. Liq., 309 (2020) 112788,
doi: 10.1016/j.molliq.2020.112788.
- J.T. Bamgbose, S. Adewuyi, O. Bamgbose, A.A. Adetoye,
Adsorption kinetics of cadmium and lead by chitosan,
Afr. J. Biotechnol., 9 (2010) 2560–2565.
- R. Han, Y. Wang, X. Zhao, Y. Wang, F. Xie, J. Cheng, M. Tang,
Adsorption of methylene blue by phoenix tree leaf powder
in a fixed-bed column: experiments and prediction of
breakthrough curves, Desalination, 245 (2009) 284–297.
- H. Patel, Fixed-bed column adsorption study: a comprehensive
review, Appl. Water Sci., 9 (2019) 1–17.
- R.A. Hutchin, New method simplifies design of activated
carbon systems, Chem. Eng., 80 (1973) 133–138.
- G. Yan, T. Viraraghavan, M. Chen, A new model for heavy
metal removal in a biosorption column, Adsorpt. Sci. Technol.,
19 (2001) 25–43.
- G.S. Bohart, E.Q. Adams, Some aspects of the behavior of
charcoal with respect to chlorine, J. Am. Chem. Soc., 42 (1920)
523–544.
- T.A.H. Nguyen, H.H. Ngo, W.S. Guo, T.Q. Pham,
F.M. Li, T.V. Nguyen, X.T. Bui, Adsorption of phosphate
from aqueous solutions and sewage using zirconium loaded
okara (ZLO): fixed-bed column study, Sci. Total Environ.,
523 (2015) 40–49.
- S. Ayoob, A.K. Gupta, Sorptive response profile of
an adsorbent in the defluoridation of drinking water,
Chem. Eng. J., 133 (2007) 273–281.
- Y.H. Yoon, J.H. Nelson, Application of gas adsorption kinetics.
I. A theoretical model for respirator cartridge service life,
Am. Ind. Hyg. Assoc. J., 45 (1984) 509–516.
- M. Stojčić, D. Pamučar, E. Mahmutagić, Ž. Stević, Development
of an ANFIS model for the optimization of a queuing system
in warehouses, Information, 9 (2018) 240, doi: 10.3390/info9100240.
- A. Wolborska, Adsorption on activated carbon of
p-nitrophenol from aqueous solution, Water Res., 23 (1989)
85–91.
- S. Singha, U. Sarkar, Analysis of the dynamics of a packed
column using semi-empirical models: case studies with the
removal of hexavalent chromium from effluent wastewater,
Korean J. Chem. Eng., 32 (2015) 20–29.
- A.D. Dorado, X. Gamisans, C. Valderrama, M. Solé, C. Lao,
Cr(III) removal from aqueous solutions: a straightforward
model approaching of the adsorption in a fixed-bed column,
J. Environ. Sci. Health., Part A, 49 (2014) 179–186.
- C.I.A. Ferreira, V. Calisto, M. Otero, H. Nadais, V.I. Esteves,
Fixed-bed adsorption of tricaine methanesulfonate onto
pyrolysed paper mill sludge, Aquacult. Eng., 77 (2017) 53–60.
- H.C. Thomas, Heterogeneous ion exchange in a flowing
system, J. Am. Chem. Soc., 66 (1944) 1664–1666.
- N. Sazali, Z. Harun, N. Sazali, A review on batch and column
adsorption of various adsorbent towards the removal of
heavy metal, J. Adv. Res. Fluid Mech. Therm. Sci., 67 (2020)
66–88.
- F. Costa, T. Tavares, Diethylketone and Cd Pilot-Scale
Biosorption by a Biofilm Supported on Vermiculite, in:
WASTES – Solutions, Treatments and Opportunities II, CRC
Press, London, 2018, pp. 139–145.
- M. Ghasemi, A.R. Keshtkar, R. Dabbagh, S. Jaber Safdari,
Biosorption of uranium(VI) from aqueous solutions by
Ca-pretreated Cystoseira indica alga: breakthrough curves
studies and modeling, J. Hazard. Mater., 189 (2011) 141–149.
- B. Volesky, I. Prasetyo, Cadmium removal in a biosorption
column, Biotechnol. Bioeng., 43 (1994) 1010–1015.
- K. Vijayaraghavan, D. Prabu, Potential of Sargassum wightii biomass for copper(II) removal from aqueous solutions:
application of different mathematical models to batch and
continuous biosorption data, J. Hazard. Mater., 137 (2006)
558–564.
- D. Bulgariu, L. Bulgariu, Potential use of alkaline treated algae
waste biomass as sustainable biosorbent for clean recovery of
cadmium(II) from aqueous media: batch and column studies,
J. Cleaner Prod., 112 (2016) 4525–4533.
- Y. Long, Q. Li, J. Ni, F. Xu, H. Xu, Treatment of metal wastewater
in pilot-scale packed bed systems: efficiency of single- vs.
mixed-mushrooms, RSC Adv., 5 (2015) 29145–29152.
- Ł. Tuhy, M. Samoraj, Z. Witkowska, P. Rusek, K. Chojnacka,
Conversion of spent mushroom substrate into micronutrient
fertilizer via biosorption in a pilot plant, Ecol. Eng., 84 (2015)
370–374.
- Z. Zulfadhly, M.D. Mashitah, S. Bhatia, Heavy metals
removal in fixed-bed column by the macro fungus Pycnoporus
sanguineus, Environ. Pollut., 112 (2001) 463–470.
- F. Amin, F.N. Talpur, A. Balouch, H.I. Afridi, A.A. Khaskheli,
Efficient entrapping of toxic Pb(II) ions from aqueous system
on a fixed-bed column of fungal biosorbent, Geol. Ecol.
Landscapes, 2 (2018) 39–44.
- K. Pakshirajan, T. Swaminathan, Continuous biosorption of
Pb, Cu, and Cd by Phanerochaete chrysosporium in a packed
column reactor, Soil Sediment Contam., 15 (2006) 187–197.
- Y. Long, D. Lei, J. Ni, Z. Ren, C. Chen, H. Xu, Packed bed
column studies on lead(II) removal from industrial wastewater
by modified Agaricus bisporus, Bioresour. Technol., 152 (2014)
457–463.
- M. Samoraj, Ł. Tuhy, P. Rusek, E. Rój, K. Chojnacka, Pilot plant
conversion of blackcurrant seeds into new micronutrient
fertilizer biocomponents via biosorption, Bioresources,
11 (2015) 400–413.
- H. Patel, Batch and continuous fixed bed adsorption of
heavy metals removal using activated charcoal from neem
(Azadirachta indica) leaf powder, Sci. Rep., 10 (2020) 16895, doi:
10.1038/s41598-020-72583-6.
- L.M. Vera, D. Bermejo, M.F. Uguña, N. Garcia, M. Flores,
E. González, Fixed bed column modeling of lead(II) and
cadmium(II) ions biosorption on sugarcane bagasse, Environ.
Eng. Res., 24 (2018) 31–37.
- R. Han, J. Zhang, W. Zou, H. Xiao, J. Shi, H. Liu, Biosorption
of copper(II) and lead(II) from aqueous solution by chaff in a
fixed-bed column, J. Hazard. Mater., 133 (2006) 262–268.
- S.H. Hasan, P. Srivastava, M. Talat, Biosorption of lead using
immobilized Aeromonas hydrophila biomass in up flow column
system: factorial design for process optimization, J. Hazard.
Mater., 177 (2010) 312–322.
- I. Morosanu, C. Teodosiu, C. Paduraru, D. Ibanescu, L. Tofan,
Biosorption of lead ions from aqueous effluents by rapeseed
biomass, New Biotechnol., 39 (2017) 110–124.
- W.C. Tsai, M.D.G. de Luna, H.L.P. Bermillo-Arriesgado,
C.M. Futalan, J.I. Colades, M.W. Wan, Competitive
fixed-bed
adsorption of Pb(II), Cu(II), and Ni(II) from aqueous solution
using chitosan-coated bentonite, Int. J. Polym. Sci., 2016 (2016)
1–11.
- Vijayalakshmi, Sangeetha, P.N. Sudha, Analysis of packed
bed adsorption column with nanochitosan/sodium alginate/microcrystalline cellulose bead for copper(II) removal from
aqueous solution, IOSR J. Pharm., (2017) 69–78.
- N. Bishnoi, Garima, Fungus – an alternative for bioremediation
of heavy metal containing wastewater: a review, J. Sci. Ind.
Res., 64 (2005) 93–100.
- A. Ghosh, M.G. Dastidar, A.T.R. Sreekrishnan, A.M. Asce,
Recent advances in bioremediation of heavy metals and
metal complex dyes: review, J. Environ. Eng., 142 (2015) 1–14.
- S. Lata, P.K. Singh, S.R. Samadder, Regeneration of adsorbents
and recovery of heavy metals: a review, Int. J. Environ. Sci.
Technol., 12 (2015) 1461–1478.
- C. Sutherland, C. Venkobachar, Regeneration of a chemically
improved peat moss for the removal and recovery of Cu(II)
and Pb(II) from aqueous solution, Desal. Water Treat.,
178 (2020) 172–181.
- J.L. Reyes-Ledezma, E. Cristiani-Urbina, L. Morales-Barrera,
Biosorption of Co2+ ions from aqueous solution by K2HPO4-
pretreated duckweed Lemna gibba, Processes, 8 (2020) 1–21.
- M.A. Hossain, H.H. Ngo, W.S. Guo, T.V. Nguyen, Biosorption
of Cu(II) from water by banana peel based biosorbent:
experiments models of adsorption and desorption, J. Water
Sustain., 2 (2012) 87–104.
- A. Jakóbik-Kolon, J. Bok-Badura, A. Milewski, K. Karoń, Long
term and large-scale continuous studies on zinc(II) sorption
and desorption on hybrid pectin-guar gum biosorbent,
Polymers, 11 (2019) 96, doi: 10.3390/polym11010096.
- G.S.C. Raulinoa, C.B. Vidal, A.C.A. Lima, D.Q. Melo,
J.T. Oliveira, R.F. Nascimento, Treatment influence on green
coconut shells for removal of metal ions: pilot-scale fixed-bed
column, Environ. Technol., 35 (2014) 1711–1720.
- F. Veglio, F. Beolchini, Removal of metals by biosorption: a
review, Hydrometallurgy, 44 (1997) 301–316.
- J. Wang, C. Chen, Biosorption of heavy metals by Saccharomyces
cerevisiae: a review, Biotechnol. Adv., 24 (2006) 427–451.
- Y. Madrid, C. Cámara, Biological substrates for metal
preconcentration and speciation, Trends Anal. Chem.,
16 (1997) 36–44.
- M.M. Figueira, B. Volesky, H.J. Mathieu, Instrumental analysis
study of iron species biosorption by Sargassum biomass,
Environ. Sci. Technol., 33 (1999) 1840–1846.
- K. Vijayaraghavan, R. Balasubramanian, Is biosorption
suitable for decontamination of metal-bearing wastewaters? a
critical review on the state-of-the-art of biosorption processes
and future directions, J. Environ. Manage., 160 (2015)
283–296.
- I. Osasona, O.O. Ajayi, A.O. Adebayo, Equilibrium, kinetics,
and thermodynamics of the biosorption of Zn(II) from
aqueous solution using powdered cow hooves, ISRN Phys.
Chem., 2013 (2013) 1–7.
- J. Kaparapu, M. Krishna Prasad, Equilibrium, kinetics and
thermodynamic studies of cadmium(II) biosorption on
Nannochloropsis oculata, Appl. Water Sci., 8 (2018) 1–9.
- B.J. Oyebamiji, L.C. Overah, A. Babarinde, V.O. Oninla,
A. Olatunde, Kinetic, equilibrium and thermodynamic
studies on the biosorption of Cd(II) from aqueous solutions
by the leaf biomass of Calotropis procera – ‘Sodom Apple’,
J. Appl. Sci. Environ. Manage., 15 (2011) 607–615.
- A. Machrouhi, M. Farnane, A. Elhalil, M. Abdennouri,
H. Tounsadi, N. Barka, Heavy metals biosorption by
Thapsia transtagana stems powder: kinetics, equilibrium and
thermodynamics, Morrocan J. Chem., 7 (2019) 98–110.
- S. Maheswari, M. Vindyashree, A.G. Murugesan, Adsorption
kinetics, equilibrium and thermodynamics studies for the
removal of cadmium(II) ions from aqueous solution by
Aspergillus nidulans, Int. J. Sci. Res. Pub., 6 (2016) 448–452.
- L. Liu, M. Xia, J. Hao, H. Xu, W. Song, Biosorption of Pb(II)
by the resistant Enterobacter sp.: investigated by kinetics,
equilibrium and thermodynamics, Arch. Environ. Prot.,
47 (2021) 28–36.
- A. Sohail, S. Javed, M.U. Khan, A. Umar, W. Ulfat, J. Yaqoob,
Biosorption of heavy metals onto the bark of Prosopis
spicigera: a kinetic study for the removal of water toxicity,
Am. Eurasian J. Toxicol. Sci., 7 (2015) 300–310.
- Z. Velkova, G. Kirova, M. Stoytcheva, S. Kostadinova,
K. Todorova, V. Gochev, Immobilized microbial biosorbents
for heavy metals removal, Eng. Life Sci., 18 (2018) 871–881.