References
- P. Kjeldsen, M.A. Barlaz, A.P. Rooker, A. Baun, A. Ledin,
T.H. Christensen, Present and long-term composition of MSW
landfill leachate: a review, Crit. Rev. Env. Sci. Technol., 32 (2002)
297–336.
- S.E. Bailey, T.J. Olin, R.M. Bricka, D.D. Adrian, A review of
potentially low-cost sorbents for heavy metals, Water Res.,
33 (1999) 2469–2479.
- J. Rusek, V.G. Marshall, Impacts of airborne pollutants on soil
fauna, Annu. Rev. Ecol. Syst., 31 (2000) 395–423.
- J. Gans, M. Wolinsky, J. Dunbar, Computational improvements
reveal great bacterial diversity and high metal toxicity in soil,
Science, 309 (2005) 1387–1390.
- Z. Özlem Kocabaş-Atakli, Y. Yürüm, Synthesis and
characterization of anatase nanoadsorbent and application in
removal of lead, copper and arsenic from water, Chem. Eng. J.,
225 (2013) 625–635.
- M.R. Awual, I.M.M. Rahman, T. Yaita, M.A. Khaleque,
M. Ferdows, pH dependent Cu(II) and Pd(II) ions detection
and removal from aqueous media by an efficient mesoporous
adsorbent, Chem. Eng. J., 236 (2014) 100–109.
- S. Demcak, M. Balintova, M. Demcakova, K. Csach,
I. Zinicovscaia, N. Yushin, M. Frontasyeva, Effect of alkaline
treatment of wooden sawdust for the removal of heavy metals
from aquatic environments, Desal. Water Treat., 155 (2019)
207–215.
- U.P. Kiruba, P.S. Kumar, K.S. Gayatri, S.S. Hameed, M. Sindhuja,
C. Prabhakaran, Study of adsorption kinetic, mechanism,
isotherm, thermodynamic, and design models for Cu(II) ions
on sulfuric acid-modified Eucalyptus seeds: temperature effect,
Desal. Water Treat., 56 (2015) 2948–2965.
- T.N. Myasoedova, Y.S. Miroshnichenko, V.A. Gadzhieva,
A.I. Chechevatov, M.A. Kremennaya, Y.V. Popov, G.I. Lazorenko,
Effective removal of Pb2+ and Cu2+ from highly concentrated
aqueous solutions: comparative sorption study, Desal. Water
Treat., 155 (2019) 272–284.
- D. Prabu, R. Parthiban, P.S. Kumar, N. Kumari, P. Saikia,
Adsorption of copper ions onto nano-scale zero-valent iron
impregnated cashew nut shell, Desal. Water Treat., 57 (2016)
6487–6502.
- E.K. Putra, R. Pranowo, J. Sunarso, N. Indraswati, S. Ismadji,
Performance of activated carbon and bentonite for adsorption
of amoxicillin from wastewater: mechanisms, isotherms and
kinetics, Water Res., 43 (2009) 2419–2430.
- P.-H. Chang, Z.H. Li, T.-L. Yu, S. Munkhbayer, T.-H. Kuo,
Y.-C. Hung, J.-S. Jean, K.-H. Lin, Sorptive removal of tetracycline
from water by palygorskite, J. Hazard. Mater., 165 (2009)
148–155.
- D.G. Kinniburgh, M.L. Jackson, J.K. Syers, Adsorption of
alkaline earth, transition, and heavy metal cations by hydrous
oxide gels of iron and aluminum, Soil Sci. Soc. Am. J., 40 (1976)
796–799.
- X.M. Ma, L. Li, L. Yang, C. Su, K. Wang, S. Yuan, J. Zhou,
Adsorption of heavy metal ions using hierarchical CaCO3–
maltose meso/macroporous hybrid materials: adsorption
isotherms and kinetic studies, J. Hazard. Mater., 209–210 (2012)
467–477.
- O. Abollino, M. Aceto, M. Malandrino, C. Sarzanini, E. Mentasti,
Adsorption of heavy metals on Na-montmorillonite. Effect of
pH and organic substances, Water Res., 37 (2003) 1619–1627.
- J. Febrianto, A.N. Kosasih, J. Sunarso, Y.H. Ju, N. Indraswati,
S. Ismadji, Equilibrium and kinetic studies in adsorption of
heavy metals using biosorbent: a summary of recent studies,
J. Hazard. Mater., 162 (2009) 616–645.
- R. Celis, M.C. Hermosin, J. Cornejo, Heavy metal adsorption by
functionalized clays, Environ. Sci. Technol., 34 (2000) 4593–4599.
- A. Demirbas, Heavy metal adsorption onto agro-based waste
materials: a review, J. Hazard. Mater., 157 (2008) 220–229.
- C.-Y. Cao, J. Qu, W.-S. Yan, J.-F. Zhu, Z.-Y. Wu, W.-G. Song,
Low-cost synthesis of flower like α-Fe2O3 nanostructures for
heavy metal ion removal: adsorption property and mechanism,
Langmuir, 28 (2012) 4573–4579.
- A.M. Liu, K. Hidajat, S. Kawi, D.Y. Zhao, A new class of hybrid
mesoporous materials with functionalized organic monolayers
for selective adsorption of heavy metal ions, Chem. Commun.,
13 (2000) 1145–1146.
- A. Shahat, M.R. Awual, M.A. Khaleque, M.Z. Alam, M. Naushad,
A.M.S. Chowdhury, Large-pore diameter nano-adsorbent and
its application for rapid lead(II) detection and removal from
aqueous media, Chem. Eng. J., 273 (2015) 286–295.
- M.R. Awual, M.M. Hasan, M.A. Khaleque, M.C. Sheikh,
Treatment of copper(II) containing wastewater by a newly
developed ligand based facial conjugate materials, Chem. Eng.
J., 288 (2016) 368–376.
- A. Sari, M. Tuzen, D. Citak, M. Soylak, Adsorption characteristics
of Cu(II) and Pb(II) onto expanded perlite from aqueous
solution, J. Hazard. Mater., 148 (2007) 387–394.
- T. Shi, S. Jia, Y. Chen, Y.H. Wen, C.M. Du, Z.C. Wang, R.L. Qiu,
Adsorption characteristics of Cu(II) and Pb(II) ions onto natural
manganese ore from aqueous solution, Adsorpt. Sci. Technol.,
26 (2008) 613–629.
- S. Babel, T.A. Kurniawan, Low-cost adsorbents for heavy
metals uptake from contaminated water: a review, J. Hazard.
Mater., 97 (2003) 219–243.
- H. Chen, A. Wang, Adsorption characteristics of Cu(II) from
aqueous solution onto poly(acrylamide)/attapulgite composite,
J. Hazard. Mater., 165 (2009) 223–231.
- H. Li, R.G. Wang, H.L. Hu, W. Liu, Surface modification of selfhealing
poly(urea-formaldehyde) microcapsules using silanecoupling
agent, Appl. Surf. Sci., 255 (2008) 1894–1900.
- P. Liu, Hyperbranched aliphatic polyester grafted attapulgite
via a melt polycondensation process, Appl. Clay Sci., 35 (2007)
11–16.
- D. Zhao, J. Feng, Q. Huo, N. Melosh, G.H. Fredrickson,
B.F. Chmelka, G.D. Stucky, Triblock copolymer synthesis of
mesoporous silica with periodic 50 to 300 angstrom pores,
Science, 279 (1998) 548–552.
- I. Langmuir, The adsorption of gases on plane surfaces of glass,
mica and platinum, J. Am. Chem. Soc., 40 (1918) 1361–1403.
- T.W. Weber, R.K. Chakravorti, Pore and solid diffusion models
for fixed-bed adsorbers, AICHE J., 20 (1974) 228–238.
- K.V. Kumar, M.M. de Castro, M. Martinez-Escandell,
M. Molina-Sabio, F. Rodriguez-Reinoso, A continuous binding
site affinity distribution function from the Freundlich isotherm
for the supercritical adsorption of hydrogen on activated carbon,
J. Phys. Chem. C, 114 (2010) 13759–13765.
- G. Asgari, B. Roshani, G. Ghanizadeh, The investigation of
kinetic and isotherm of fluoride adsorption onto functionalize
pumice stone, J. Hazard. Mater., 217–218 (2012) 123–132.
- J. Wu, M.E. Strömqvist, O. Claesson, I.E. Fängmark,
L.G. Hammarström, A systematic approach for modeling the
affinity coefficient in the Dubinin–Radushkevich equation,
Carbon, 40 (2002) 2587–2596.
- M.S. Onyango, Y. Kojima, O. Aoyi, E.C. Bernardo, H. Matsuda,
Adsorption equilibrium modeling and solution chemistry
dependence of fluoride removal from water by trivalentcation-
exchanged zeolite F-9, J. Colloid Interface Sci., 279 (2004)
341–350.
- H. Qiu, L. Lv, B.-c. Pan, Q.-j. Zhang, W.-m. Zhang, Q.-x. Zhang,
Critical review in adsorption kinetic models, J. Zhejiang Univ.-
Sci. A, 10 (2009) 716–724.
- A. Khaled, A.E. Nemr, A. El-Sikaily, O. Abdelwahab, Removal
of direct N Blue-106 from artificial textile dye effluent using
activated carbon from orange peel: adsorption isotherm and
kinetic studies, J. Hazard. Mater., 165 (2009) 100–110.
- O.Y. KwonJun, S.W. Choi, Silica-pillared H-kenyaites:
interlamellar base catalyzed-reaction of tetraethlorthosilicate in
water suspension, Bull. Korean Chem. Soc., 20 (1999) 69–75.
- H. Chen, Y.G. Zhao, A. Wang, Removal of Cu(II) from aqueous
solution by adsorption onto acid-activated palygorskite,
J. Hazard. Mater., 149 (2007) 346–354.
- J.A. Muller, W.C. Conner, Cyclohexane in ZSM 5.1, FTIR and
X-ray studies, J. Phys. Chem., 97 (1993) 1451–1454.
- E. Álvarez-Ayuso, A. García-Sánchez, Removal of cadmium
from aqueous solutions by palygorskite, J. Hazard. Mater.,
147 (2007) 594–600.
- Q.H. Fan, X.L. Tan, J.X. Li, X.K. Wang, W.S. Wu, G. Montavon,
Sorption of Eu(III) on attapulgite studied by batch, XPS, and
EXAFS techniques, Environ. Sci. Technol., 43 (2009) 5776–5782.
- D.L. Sparks, Kinetics of Soil Chemical Processes, Academic
Press Inc., San Diego, 1989.
- Y.S. Ho, Removal of copper ions from aqueous solution by tree
fern, Water Res., 37 (2003) 2323–2330.
- E. Khademian, E. Salehi, H. Sanaeepur, F. Galiano, A. Figoli,
A systematic review on carbohydrate biopolymers for adsorptive
remediation of copper ions from aqueous environments - Part A:
classification and modification strategies, Sci. Total Environ.,
738 (2020) 139829.
- C.P. Wang, J.T. Liu, Z.Y. Zhang, B.L. Wang, H.W. Sun, Adsorption
of Cd(II), Ni(II), and Zn(II) by tourmaline at acidic conditions:
kinetics, thermodynamics, and mechanisms, Ind. Eng. Chem.
Res., 51 (2012) 4397–4406.
- O.A.C. Monteiro, C. Airoldi, The influence of chitosans with
defined degrees of acetylation on the thermodynamic data for
copper coordination, J. Colloid Interface Sci., 282 (2005) 32–37.
- C.D. Shuang, F. Pan, Q. Zhou, A. Li, P.H. Li, W.B. Yang, Magnetic
polyacrylic anion exchange resin: preparation, characterization
and adsorption behavior of humic acid, Ind. Eng. Chem. Res.,
51 (2012) 4380–4387.
- Y.T. Zhou, C. Branford-White, H.L. Nie, L.M. Zhu, Adsorption
mechanism of Cu2+ from aqueous solution by chitosan-coated
magnetic nanoparticles modified with α-ketoglutaric acid,
Colloid. Surf., B, 74 (2009) 244–252.
- B.J. Gao, Y.C. Gao, Y.B. Li, Preparation and chelation adsorption
property of composite chelating material poly(amidoxime)/SiO2
towards heavy metal ions, Chem. Eng. J., 158 (2010) 542–549.
- H.-J. Im, Y. Yang, L.R. Allain, C.E. Barnes, S. Dai, Z.L. Xue,
Funtionalized sol-gels for selective copper(II) separation,
Environ. Sci. Technol., 34 (2000) 2209–2214.