References
- X.S. Wang, H.H. Miao, W. He, H.L. Shen, Competitive
adsorption of Pb(II), Cu(II), and Cd(II) ions on wheat residue
derived black carbon, J. Chem. Eng. Data, 56 (2011) 444–449.
- S. Gullipilli, R.B. Rupakula, Adsorption studies of Cr(VI)
and Cu(II) metal ions from aqueous solutions by synthesized
Ag and Mg co-doped TiO2 nanoparticles, Sep. Sci. Technol.,
54 (2019) 2983–2992.
- S. Tighadouini, S. Radi, M. Bacquet, S. Degoutin, M. Zaghrioui,
S. Jodeh, I. Warad, Removal efficiency of Pb(II), Zn(II),
Cd(II) and Cu(II) from aqueous solution and natural water
by ketoenol–pyrazole receptor functionalized silica hybrid
adsorbent, Sep. Sci. Technol., 52 (2017) 608–621.
- Y.-Y. Wang, Y.-X. Liu, H.-H. Lu, R.-Q. Yang, S.-M. Yang,
Competitive adsorption of Pb(II), Cu(II), and Zn(II) ions onto
hydroxyapatite-biochar nanocomposite in aqueous solutions,
J. Solid State Chem., 261 (2018) 53–61.
- A. Anjum, C.K. Seth, M. Datta, Removal of As3+ using chitosan–montmorillonite composite: sorptive equilibrium and kinetics,
Adsorpt. Sci. Technol., 31 (2013) 303–324.
- Z. Mahdi, Q.J. Yu, A. El Hanandeh, Competitive adsorption of
heavy metal ions (Pb2+, Cu2+, and Ni2+) onto date seed biochar:
batch and fixed bed experiments, Sep. Sci. Technol., 54 (2019)
888–901.
- İ. Ayhan 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.
- M.Y. Pamukoglu, M.C. Karabuga, Removal of Cr(III) ions from
wastewater by using ligand adsorption, Environ. Eng. Sci.,
35 (2018) 703–709.
- S.M.S. Li, M.Q. Qiu, Z.X. Zeng, W.L. Xue, Effective modified
walnut shell adsorbent: synthesis and adsorption behavior
for Pb2+ and Ni2+ from aqueous solution, Environ. Eng. Sci.,
36 (2019) 1421–1432.
- J. Dutta, A.A. Mala, Removal of antibiotic from the water
environment by the adsorption technologies: a review, Water
Sci. Technol., 82 (2020) 401–426.
- C.Y. Cao, B. Yu, M. Wang, Y.Y. Zhao, Y.H. Zhao, Adsorption
properties of Pb2+ on thermal-activated serpentine, Sep. Sci.
Technol., 54 (2019) 3037–3045.
- J. Junthip, W. Promma, S. Sonsupap, C. Boonyanusith,
Adsorption of paraquat from water by insoluble cyclodextrin
polymer crosslinked with 1,2,3,4-butanetetracarboxylic acid,
Iran. Polym. J., 28 (2019) 213–223.
- Q.Y. Lin, Q.H. Wang, Y.X. Duan, X.P. Wei, G.R. Wu, Y.H. Luo,
Q.L. Xie, Removal of Cu(II), Cr(III), and Cr(VI) from aqueous
solution using a novel agricultural waste adsorbent, Sep. Sci.
Technol., 48 (2013) 2843–2851.
- K.A. Krishnan, K.G. Sreejalekshmi, V. Vimexen, V.V. Dev,
Evaluation of adsorption properties of sulphurised activated
carbon for the effective and economically viable removal
of Zn(II) from aqueous solutions, Ecotoxicol. Environ. Saf.,
124 (2016) 418–425.
- S.K. Zhou, Y.J. Liu, H.Y. Jiang, W.J. Deng, G.M. Zeng, Adsorption
of U(VI) from aqueous solution by a novel chelating adsorbent
functionalized with amine groups: equilibrium, kinetic,
and thermodynamic studies, Environ. Eng. Sci., 35 (2018)
53–61.
- V.K. Gupta, A. Nayak, S. Agarwal, Bio-adsorbents for
remediation of heavy metals: current status and their future
prospects, Environ. Eng. Res., 20 (2016) 1–18.
- S. Ai, Y.C. Huang, T.H. Xie, C.D. Huang, Facile carboxylation of
sugarcane bagasse and the adsorption mechanism for cadmium
ions, Ind. Eng. Chem. Res., 59 (2020) 8795–8804.
- A.K. Chandel, S.S. da Silva, W. Carvalho, O.V. Singh, Sugarcane
bagasse and leaves:foreseeable biomass of biofuel and bioproducts,
J. Chem. Technol. Biotechnol., 87 (2012) 11–20.
- 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.
- S.N.C. Ramos, A.L.P. Xavier, F.S. Teodoro, L.F. Gil, L.V.A. Gurgel,
Removal of cobalt(II), copper(II), and nickel(II) ions from
aqueous solutions using phthalate-functionalized sugarcane
bagasse: mono-and multicomponent adsorption in batch mode,
Ind. Crops Prod., 79 (2016) 116–130.
- A. Nashine, A. Tembhurkar, Iron oxide impregnated sugarcane
bagasse waste material as sorbent for As(III) removal from
water: kinetic, equilibrium and thermodynamic studies,
J. Water Supply Res. Technol. AQUA, 69 (2020) 99–112.
- Y.N. Chen, M.F. He, C.Z. Wang, Y.M. Wei, A novel
polyvinyltetrazole-grafted resin with high capacity for
adsorption of Pb(II), Cu(II) and Cr(III) ions from aqueous
solutions, J. Mater. Chem. A, 2 (2014) 10444–10453.
- M.R. Huang, H.J. Lu, X.G. Li, Synthesis and strong heavy-metal
ion sorption of copolymer microparticles, J. Mater. Chem.,
22 (2012) 17685–17699.
- Y. Pang, G. Zeng, L. Tang, Y. Zhang, Y. Liu, X. Lei, Z. Li,
J. Zhang, G. Xie, PEI grafted magnetic porous powder for
highly effective adsorption of heavy metal ions, Desalination,
281 (2011) 278–284.
- Y. Ma, W.J. Liu, N. Zhang, Y.S. Li, H. Jiang, G.P. Sheng,
Polyethylenimine modified biochar adsorbent for hexavalent
chromium removal from the aqueous solution, Bioresour.
Technol., 169 (2014) 403–408.
- Y.J. Shi, T. Zhang, H.Q. Ren, A. Kruse, R.F. Cui, Polyethylene
imine modified hydrochar adsorption for chromium(VI) and
nickel(II) removal from aqueous solution, Bioresour. Technol.,
247 (2018) 370–379.
- H.M. Jiang, M.L. Sun, J.Y. Xu, A.M. Lu, Y. Shi, Magnetic Fe3O4
nanoparticles modified with polyethyleneimine for the removal
of Pb(II), Clean–Soil Air Water, 44 (2016) 1146–1153.
- H.J. Liu, Y.C. Zhou, Y.B. Yang, K. Zou, R.J. Wu, K. Xia,
S.B. Xie, Synthesis of polyethylenimine/graphene oxide for the
adsorption of U(VI) from aqueous solution, Appl. Surf. Sci.,
471 (2019) 88–95.
- P. Phanthong, P. Reubroycharoen, X.G. Hao, G.W. Xu,
A. Abudula, G.Q. Guan, Nanocellulose: extraction and
application, Carbon Resour. Convers., 1 (2018) 32–43.
- M. Rahimi Kord Sofla, R.J. Brown, T. Tsuzuki, T.J. Rainey,
A comparison of cellulose nanocrystals and cellulose nanofibres
extracted from bagasse using acid and ball milling methods,
Adv. Nat. Sci.: Nanosci. Nanotechnol., 7 (2016) 035004.
- Md. Nuruddin, M. Hosur, Md. Jamal Uddin, D. Baah, S. Jeelani,
A novel approach for extracting cellulose nanofibers from
lignocellulosic biomass by ball milling combined with chemical
treatment, J. Appl. Polym. Sci., 133 (2016) e42990, doi: 10.1002/app.42990.
- W.Y. Jiang, Y.H. Xing, L.Y. Zhang, X.M. Guo, Y.W. Lu, M. Yang,
J. Wang, G.T. Wei, Polyethylenimine-modified sugarcane
bagasse cellulose as an effective adsorbent for removing Cu(II)
from aqueous solution, J. Appl. Polym. Sci., 138 (2021) e49830,
doi: 10.1002/app.49830.
- H.S. Qi, C.Y. Chang, L. Zhang, Properties and applications of
biodegradable transparent and photoluminescent cellulose
films prepared via a green process, Green Chem., 11 (2009)
177–184.
- N. Djebri, M. Boutahala, N.E. Chelali, N. Boukhalfa, L. Zeroual,
Enhanced removal of cationic dye by calcium alginate/organobentonite beads: modeling, kinetics, equilibriums,
thermodynamic and reusability studies, Int. J. Biol. Macromol.,
92 (2016) 1277–1287.
- D.R. Mulinari, H.J.C. Voorwald, M.O.H. Cioffi, M.L.C.P. Da
Silva, S.M. Luz, Preparation and properties of HDPE/sugarcane
bagasse cellulose composites obtained for thermokinetic mixer,
Carbohydr. Polym., 75 (2009) 317–321.
- G.R. Xie, X.Q. Shang, R.F. Liu, J. Hu, S.F. Liao, Synthesis and
characterization of a novel amino modified starch and its
adsorption properties for Cd(II) ions from aqueous solution,
Carbohydr. Polym., 84 (2011) 430–438.
- A.Q. Dong, J. Xie, W.M. Wang, L.P. Yu, Q. Liu, Y.P. Yin, A novel
method for amino starch preparation and its adsorption for
Cu(II) and Cr(VI), J. Hazard. Mater., 81 (2011) 448–454.
- S. Hokkanen, E. Repo, T. Suopajärvi, H. Liimatainen,
J. Niinimaa, M. Sillanpää, Adsorption of Ni(II), Cu(II) and Cd(II)
from aqueous solutions by amino modified nanostructured
microfibrillated cellulose, Cellulose, 21 (2014) 1471–1487.
- A. Benhouria, M.A. Islam, H. Zaghouane-Boudiaf, Calcium
alginate–bentonite–activated carbon composite beads as
highly effective adsorbent for methylene blue, Chem. Eng. J.,
270 (2015) 621–630.
- R.N. Li, Z.W. Wang, X.T. Zhao, X. Li, X.Y. Xie, Magnetic
biochar-based manganese oxide composite for enhanced
fluoroquinolone antibiotic removal from water, Environ. Sci.
Pollut. Res., 25 (2018) 31136–31148.
- K.A.G. Gusmao, L.V.A. Gurgel, T.M.S. Melo, L.F. Gil,
Application of succinylated sugarcane bagasse as adsorbent
to remove methylene blue and gentian violet from aqueous
solutions – kinetic and equilibrium studies, Dyes Pigm.,
92 (2012) 967–974.
- D.D. Reddy, R.K. Ghosh, J.P. Bindu, M. Mahadevaswamy,
Removal of methylene blue from aqueous system using
tobacco stems biomass: kinetics, mechanism and single-stage
adsorber design, Environ. Prog. Sustainable Energy, 36 (2017)
1005–1012.
- X.G. Lu, P.P. Yan, X.F. Dang, Adsorption of Cu2+ from aqueous
solution by walnut shell, Adv. Mater. Res., 864–867 (2014)
1327–1332.
- W.Y. Jiang, L.Y. Zhang, X.M. Guo, M. Yang, Y.W. Lu, Y.J. Wang,
Y.S. Zheng, G.T. Wei, Adsorption of cationic dye from water
using an iron oxide/activated carbon magnetic composites
prepared from sugarcane bagasse by microwave method,
Environ. Technol., 42 (2021) 337–350.
- M. Petrović, T. Šoštarić, M. Stojanović, J. Petrović, M. Mihajlović,
A. Cosović, S. Stanković, Mechanism of adsorption of Cu2+ and
Zn2+ on the corn silk (Zea mays L.), Ecol. Eng., 99 (2017) 83–90.
- N. Wahlström, S. Steinhagen, G. Toth, H. Pavia, U. Edlund,
Ulvan dialdehyde-gelatin hydrogels for removal of heavy
metals and methylene blue from aqueous solution, Carbohydr.
Polym., 249 (2020) 116841, doi:10.1016/j.carbpol.2020.116841.
- Ö.F. Kemik, F.A. Ngwabebhoh, U. Yildiz, A response surface
modelling study for sorption of Cu2+, Ni2+, Zn2+ and Cd2+
using chemically modified poly(vinylpyrrolidone) and
poly(vinylpyrrolidone-co-methylacrylate) hydrogels, Adsorpt.
Sci. Technol., 35 (2017) 263–283.
- L.Y. Wang, M.J. Wang, Removal of heavy metal ions by
poly(vinyl alcohol) and carboxymethyl cellulose composite
hydrogels prepared by a freeze-thaw method, ACS Sustainable
Chem. Eng., 4 (2016) 2830–2837.
- Md. Rabiul Awual, Assessing of lead(II) capturing from
contaminated wastewater using ligand doped conjugate
adsorbent, Chem. Eng. J., 289 (2016) 65–73.
- Mu. Naushad, Z.A. ALOthman, Md.R. Awual, M.M. Alam,
G.E. Eldesoky, Adsorption kinetics, isotherms, and
thermodynamic studies for the adsorption of Pb2+ and Hg2+
metal ions from aqueous medium using Ti(IV) iodovanadate
cation exchanger, Ionics, 21 (2015) 2237–2245.
- D. Gan, Q. Huang, J. Dou, H. Huang, J. Chen, M. Liu, Y. Wen,
Z. Yang, X. Zhang, Y. Wei, Bioinspired functionalization of
MXenes (Ti3C2TX) with amino acids for efficient removal
of heavy metal ions, Appl. Surf. Sci., 504 (2020) 144603,
doi: 10.1016/j.apsusc.2019.144603.
- S. Wang, Y. Liu, Q.-F. Lü, H. Zhuang, Facile preparation of
biosurfactant-functionalized Ti2+CTX MXene nanosheets with an
enhanced adsorption performance for Pb(II) ions, J. Mol. Liq.,
297 (2020) 111810, doi:10.1016/j.molliq.2019.111810.
- Y. Dong, D. Sang, C. He, X. Sheng, L. Lei, MXene/alginate
composites for lead and copper ion removal from aqueous
solutions, RSC Adv., 9 (2019) 29015–29022.
- Md. R. Awual, G.E. Eldesoky, T. Yaita, Mu. 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.
- X.J. Hu, Y.G. Liu, H. Wang, A.W. Chen, G.M. Zeng, S.M. Liu,
Y.M. Guo, X. Hu, T.T. Li, Y.Q. Wang, L. Zhou, S.H. Liu, Removal
of Cu(II) ions from aqueous solution using sulfonated magnetic
graphene oxide composite, Sep. Purif. Technol., 108 (2013)
189–195.
- A. Roy, J. Bhattacharya, Removal of Cu(II), Zn(II) and Pb(II)
from water using microwave-assisted synthesized maghemite
nanotubes, Chem. Eng. J., 211–212 (2012) 493–500.
- T. Rasheed, F. Kausar, K. Rizwan, M. Adeel, F. Sher,
N. Alwadai, F.H. Alshammari, Two dimensional MXenes as
emerging paradigm for adsorptive removal of toxic metallic
pollutants from wastewater, Chemosphere, 287 (2022) 132319,
doi: 10.1016/j.chemosphere.2021.132319.
- G. Sharma, B. Thakur, Mu. Naushad, A. Kumar, F.J. Stadler,
S.M. Alfadul, G.T. Mola, Applications of nanocomposite
hydrogels for biomedical engineering and environmental
protection, Environ. Chem. Lett., 16 (2018) 113–146.
- N. Rahbar, H. Yazdanpanah, Z. Ramezani, M.R. Shushizadeh,
M. Enayat, M. Mansourzadeh, Comparative and competitive
adsorption of Cu(II), Cd(II) and Pb(II) onto Sepia pharaonis
endoskeleton biomass from aqueous solutions, Water
Environ. J., 32 (2018) 209–216.
- M. Arshadi, M.J. Amiri, S. Mousavi, Kinetic, equilibrium and
thermodynamic investigations of Ni(II), Cd(II), Cu(II) and
Co(II) adsorption on barley straw ash, Water Resour. Ind.,
6 (2014) 1–17.
- Y. Zhu, J. Hu, J. Wang, Competitive adsorption of Pb(II),
Cu(II) and Zn(II) onto xanthate-modified magnetic chitosan,
J. Hazard. Mater., 221–222 (2012) 155–161.
- L. Cutillas-Barreiro, R. Paradelo, A. Igrexas-Soto, A. Núñez-Delgado, M.J. Fernández-Sanjurjo,
E. Álvarez-Rodriguez,
G. Garrote, J.C. Nóvoa-Muñoz, M. Arias-Estévez, Valorization
of biosorbent obtained from a forestry waste: competitive
adsorption, desorption and transport of Cd, Cu, Ni, Pb and Zn,
Ecotoxicol. Environ. Saf., 131 (2016) 118–126.
- Q. Wu, S. Dong, L. Wang, X. Li, Single and competitive
adsorption behaviors of Cu2+, Pb2+ and Zn2+ on the biochar and
magnetic biochar of pomelo peel in aqueous solution, Water,
13 (2021) 868, doi:10.3390/w13060868.