References
- K.K. Wong, C.K. Lee, K.S. Low, M.J. Haron, Removal of Cu(II)
and Pb(II) by tartaric acid modified rice husk from aqueous
solutions, Chemosphere, 50 (2003) 23–28.
- R. Jalali, H. Ghafourian, Y. Asef, S.J. Davarpanah, S. Sepehr,
Removal and recovery of lead using nonliving biomass of
marine algae, J. Hazard. Mater., 92 (2002) 253–262.
- V.K. Gupta, M. Gupta, S. Sharma, Process development for the
removal of lead and chromium from aqueous solutions using
red mud—an aluminum industry waste, Water Res., 35 (2001)
1125–1134.
- K. Conrad, H.C.B. Hansen, Sorption of zinc and lead on coir,
Bioresour. Technol., 98 (2007) 89–97.
- T. Bahadir, G. Bakan, L. Altas, H. Buyukgungor, the investigation
of lead removal by biosorption: an application at storage
battery industry wastewaters, Enzyme Microb. Technol., 41
(2007) 98–102.
- R. Brooks, M. Bahadory, F. Tovia, H. Rostami, Removal of lead
from contaminated water, Int. J. Soil Sedim. Water, 3 (2010) 1–13.
- K. Li, Z. Zheng, Y. Li, J. Characterization and lead adsorption
properties of activated carbons prepared from cotton stalk by
one-step H3PO4 activation, J. Hazard. Mater., 181 (2010) 440–
447.
- F. Pepe, B. de Gennaro, P. Aprea, D. Caputo,Natural zeolites
for heavy metals removal from aqueous solutions: Modeling
of the fixed bed Ba2+/Na+ ion-exchange process using a mixed
phillipsite/chabazite-rich tuff, Chem. Eng. J., 219 (2013) 37–42.
- E. Pehlivan, T. Altun, Ion-exchange of Pb2+, Cu2+, Zn2+, Cd2+,
and Ni2+ ions from aqueous solution by Lewatit CNP 80, J. Hazard.
Mater., 140 (2007) 299–307.
- S. Vasudevan, J. Lakshmi, G. Sozhan, Effects of alternating and
direct current in electrocoagulation process on the removal of
cadmium from water, J. Hazard. Mater., 192 (2011) 26–34.
- S. Zhang, F. Xu, Y. Wang, W. Zhang, X. Peng, F. Pepe, Silica
modified calcium alginate–xanthan gum hybrid bead composites
for the removal and recovery of Pb(II) from aqueous solution,
Chem. Eng. J., 234, (2013) 33–42.
- S. Hydari, H. Sharififard, M. Nabavinia, M.R.A Parvizi, Comparative
investigation on removal performances of commercial activated
carbon, chitosan biosorbent and chitosan/activated carbon
composite for cadmium, Chem. Eng. J., 193 (2012) 276–282.
- S. Hao, Y. Zhong, F. Pepe, W. Zhu, Adsorption of Pb2+ and Cu2+
on anionic surfactant-templated amino-functionalized mesoporous
silicas, Chem. Eng. J., 189–190 (2012) 160–167.
- V.K. Gupta, I. Ali, T.A. Saleh, A. Nayak, S. Agarwal, Chemical
treatment technologies for waste-water recycling—an overview,
Rsc Advances, 2 (2012) 6380–6388.
- H. Sharififard, F. Zokaee Ashtiani, M. Soleimani, Adsorption
of palladium and platinum from aqueous solutions by chitosan
and activated carbon coated with chitosan, Asia-Pac. J.
Chem. Eng., 8 (2013) 384–395.
- V. K. Gupta, A. Nayak, S. Agarwal, Bioadsorbents for remediation
of heavy metals: current status and their future prospects,
Environ. Eng. Res., 20 (2015) 1–18.
- V.K. Gupta, S. Agarwal, T.A. Saleh, Synthesis and characterization
of alumina-coated carbon nanotubes and their application
for lead removal, J. Hazard. Mat., 185 (2011) 17–23.
- H. Sharififard, M. Soleimani, F. Zokaee Ashtiani, Evaluation of
activated carbon and bio-polymer modified activated carbon
performance for palladium and platinum removal, J. Taiwan
Inst. Chem Eng., 43 (2012) 696–703.
- N. Mehrabi, M. Soleimani, M. Madadi Yeganeh, H. Sharififard,
Parameters optimization for nitrate removal from water
using activated carbon and composite of activated carbon and
Fe2O3 nanoparticles, RSC Adv., 5 (2015) 51470–51482.
- S.U. Khan, I.H. Farooqi, S. Ayub, Studies on application of Fe
based binary oxide nanoparticles for treatment of lead (Pb2+)
contaminated water - A batch study, Mater. Today: Proc., 4
(2017) 9650–9655.
- S. Rajput, C.U. Pittman, D. Mohan, Magnetic magnetite (Fe3O4)
nanoparticle synthesis and applications for lead (Pb2+) and
chromium (Cr6+) removal from water, J. Colloid Interface Sci.,
468 (2016) 334–346.
- M. Liu, Y. Wang, L. Chen, Y. Zhang, Z. Lin, Mg(OH)2 supported
nanoscale zero valent iron enhancing the removal of
Pb(II) from aqueous solution, ACS Appl. Mater. Interf., 7 (2015)
7961–7969.
- A. Gil, M.J. Amiri, J. Abedi-Koupai, S. Eslamian, Adsorption/
reduction of Hg(II) and Pb(II) from aqueous solutions by using
bone ash/nZVI composite: effects of aging time, Fe loading
quantity and co-existing ions, Environ. Sci. Pollut. Res. Int.,
(2017) 1–16.
- M.J. Amiri, J. Abedi-Koupai, S.S. Eslamian, M. Arshadi,
Adsorption of Pb(II) and Hg(II) ions from aqueous single
metal solutions by using surfactant-modified ostrich bone
waste, Desal. Water Treat., 57 (2016) 1–18.
- M. Bhatia, S.B. Rajulapati, S. Sonawane, A. Girdhar, Synthesis
and implication of novel poly(acrylic acid)/nanosorbent
embedded hydrogel composite for lead ion removal, Scientific
Reports, 7 (2017) 1–16.
- B. Levasseur, A.M. Ebrahim, T.J. Bandosz, Interactions of NO2
with amine-functionalized SBA-15: effects of synthesis route,
Langmuir, 28 (2012) 5703−5714.
- N. Gargiulo, A. Peluso, P. Aprea, F. Pepe, D. Caputo, CO2
Adsorption on polyethylenimine-functionalized SBA-15 mesoporous
silica: isotherms and modeling, J. Chem. Eng. Data, 59
(2014) 896−902.
- V. Manu, M.M. Haresh, C.B. Hari, V.J. Raksh, Adsorption of
Cu2+ on amino functionalized silica gel with different loading,
Ind. Eng. Chem. Res., 48 (2009) 8954–8960.
- J.S. Li, X.Y. Miao, Y.X. Hao, J.Y. Zhao, X.Y. Sun, L.J. Wang, Synthesis,
amino-functionalization of mesoporous silica and its
adsorption of Cr(VI), J. Colloid Interf. Sci., 318 (2008) 309–314.
- M.V. Lombardo, M. Videla, A. Calvo, F.G. Requejo, G.J.A.A.
Soler-Illi, Aminopropyl-modified mesoporous silica SBA–15
as recovery agents of Cu(II)-sulfate solutions: adsorption efficiency,
functional stability and reusability aspects, J. Hazard.
Mater., 223–224 (2012) 53–62.
- S. Hao, A. Verlotta, P. Aprea, F. Pepe, D. Caputo, W. Zhu, Optimal
synthesis of amino-functionalized mesoporous silicas for
the adsorption of heavy metal ions, Microp. Mesop. Mater., 236
(2016) 250–259.
- A. Sachse, A. Galarneau, F. Fajula, F. Di Renzo, P. Creux, B.
Coq, Functional silica monoliths with hierarchical uniform
porosity as continuous flow catalytic reactors, Microp. Mesop.
Mater., 140 (2011) 58–68.
- K. Nakanishi, N. Soga, Phase separation in gelling silica–organic polymer solution: systems containing poly(sodium
styrenesulfonate), J. Am. Cer. Soc., 74 (1991) 2518–2530.
- A. Inayat, B. Reinhardt, H. Uhlig, W. Einickeb, D. Enke, Silica
monoliths with hierarchical porosity obtained from porous
glasses, Chem. Soc. Rev., 42 (2013) 3753–3764.
- N. Gargiulo, A. Verlotta, A. Peluso, P. Aprea, D. Caputo, Modeling
the performances of a CO2 adsorbent based on polyethylenimine-functionalized macro-mesoporous silica monoliths,
Microp. Mesop. Mater., 215 (2015) 1–7.
- E. Sugrue, P. Nesterenko, B. Paull, Ion exchange properties of
monolithic and particle type iminodiacetic acid modified silica,
J. Sep. Sci., 27 (2004) 921–930.
- M.R. Awual, T. Yaita, S.A. El-Safty, H. Shiwaku, S. Suzuki,
Y. Okamoto, Copper(II) ions capturing from water using
ligand modified a new type mesoporous adsorbent, Chem.
Eng. J., 221 (2013) 322–330.
- M.R. Awual, M. Ismael, T. Yaita, Efficient detection and
extraction of cobalt(II) from lithium ion batteries and wastewater
by novel composite adsorbent, Sensors Actuators B:
Chem., 191 (2014) 9–18.
- R. Azargohar, A.K. Dalai, Production of activated carbon from
Luscar char: experimental and modelling studies, Micropor.
Mesopor. Mat., 85 (2005) 219–225.
- M. Jain, V.K. Garg,K. Kadirvelu, Investigation of Cr(VI) adsorption
onto chemically treated Helianthus annuus: optimization
using response surface methodology, Bioresour. Technol., 102
(2011) 600–605.
- D.C. Montgomery, Design and Analysis of Experiments, 5th
ed., John Wiley & Sons, New York, 2001.
- R.H. Myers, D.C. Montgomery, Response Surface Methodology:
Process and Product Optimization Using Designed
Experiments, 2nd ed., John Wiley & Sons, New York, 2002.
- M. Roso, A. Lorenzetti, S. Besco, M. Monti, G. Berti, M. Modesti,
Application of empirical modelling in multi-layers membrane
manufacturing, Comp. Chem. Eng., 35 (2011) 2248–2256.
- E. Da’na, A. Sayari, Adsorption of copper on amine-functionalized
SBA-15 prepared by co-condensation: equilibrium
properties, Chem. Eng. J., 166 (2011) 445–453.
- S. Lowell, J.E. Shields, M.A. Thomas, M. Thommes, Characterization
of Porous Materials and Powders: Surface Area, Pore
Size and Density, Springer, Dordrecht, 2004.
- F.N. Aarden, Adsorption onto Heterogeneous Porous Materials:
Equilibria and Kinetics. Ph.D. Dissertation, Technische
Universiteit Delft, 2001.
- H. Sanaeishoar, M. Sabbaghan, F. Mohave, Synthesis and
characterization of micro-mesoporous MCM-41 using various
ionic liquids as co-templates, Micropor. Mesopor. Mater., 217
(2015) 219–224.
- R.A. Fischer, Statistical Methods for Research Worker, Oliver &
Boyd, London, 1925.
- K.Y. Nandiwale, N.D. Galande, V.V. Bokade, Process optimization
by response surface methodology for transesterification
of renewable ethyl acetate to butyl acetate
biofuel additive over borated USY zeolite, RSC Adv., 5 (2015)
17109–17116.
- M. Momcilovic, M. Purenov A. Zarubica, M. Randelovic,
Removal of lead(II) ions from aqueous solutions by adsorption
onto pine cone activated carbon, Desalination, 276 (2011) 53–59.
- S.Z. Mohammadi, M.A. Karimi, D. Afzali, F. Mansouri,
Removal of Pb(II) from aqueous solutions using activated carbon
from sea-buckthorn stones by chemical activation, Desalination,
262 (2010) 86–93.
- B.H. Hameed, A.A. Ahmad, Batch adsorption of Methylene
blue aqueous solution by garlic peel, an agricultural waste biomass,
J. Hazard. Mater., 164 (2009) 870–875.
- K.Y. Foo, B.H. Hameed, Insights into the modeling of adsorption
isotherm systems, Chem. Eng. J., 156 (2010) 2–10.
- S. Rahimi, R.M. Moattari, L. Rajabi, A.A. Derakhshan, M. Keyhani,
Iron oxide/hydroxide (α,γ-FeOOH) nanoparticles as high
potential adsorbents for lead removal from polluted aquatic
media, J. Ind. Eng. Chem., 23 (2015) 33–43.
- 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.
- L. Qi, Z. Xu, Lead sorption from aqueous solutions on chitosan
nanoparticles, Colloid Surf. A, 251 (2004) 183–190.
- Q. Su, B. Pan, Q. Zhang, W. Zhang, L. Lv, X. Wang, J. Wu,
Q. Zhang, Fabrication of polymer-supported nanosized
hydrous manganese dioxide (HMO) for enhanced lead
removal from waters, Sci. Total. Environ., 407 (2009) 5471–5477.
- V. Vetriselvi, R. Jaya Santhi, Redox polymer as an adsorbent for
the removal of chromium (VI) and lead (II) from the tannery effluents, Water Resour. Ind., 10 (2015) 39–52.
- Y. Wang, L. Shi, L. Gao, Q. Wei, L. Cui, L. Hu, L. Yan, B. Du, The
removal of lead ions from aqueous solution by using magnetic
hydroxypropyl chitosan/oxidized multiwalled carbon nanotubes,
J. Colloid Interf. Sci., 451 (2015) 7–14.
- M. Kumari, C.U. Pittman Jr, D. Mohan, Heavy metals [chromium
(VI) and lead (II)] removal from water using mesoporous
magnetite (Fe3O4) nanospheres, J. Colloid Interf. Sci.,
442 (2015) 120–132.
- M. Mahdavi, M.B. Ahmad, M.J. Haron, Y. Gharayebi, K.
Shameli, B. Nadi, Fabrication and characterization of SiO2/(3-aminopropyl) triethoxysilane-coated magnetite nanoparticles
for lead(II) removal from aqueous solution, J. Inorg.
Organomet. Polym., 23 (2013) 599–607.
- R. Lui, P. Liang, Determination of trace lead in water samples
by graphite furnace atomic absorption spectrometry after preconcentration
with nanometer titanium dioxide immobilized
on silica gel, J. Hazard. Mater., 152 (2008) 166–171.
- A. Gunay, E. Arslankaya, I. Tosun, Lead removal from aqueous
solution by natural and pretreated clinoptilolite: adsorption
equilibrium and kinetics, J. Hazard. Mater., 146 (2007) 362–371.
- D. Shengxia, T. Rongfeng, X. Zechun, Z. Xianxi, Z. Yueying,
Z. Wen, Z. Junhong, W. Bingquan, Z. Suyuan, S. Dezhi, Effective
removal of Pb(II) using magnetic Co0.6Fe2.4O4 micro-particles
as the adsorbent: synthesis and study on the kinetic and
thermodynamic behaviors for its adsorption, Colloids Surf. A,
469 (2015) 211–223.
- B. Kakavandi, R. Rezaei Kalantary, A. Jonidi Jafari, S. Nasseri,
A. Ameri, A. Esrafili, A. Azari, Pb(II) adsorption onto a
magnetic composite of activated carbon and superparamagnetic
Fe3O4 nanoparticles: experimental and modeling study,
Clean—Soil Air Water, 43 (2015) 1157–1166.
- H. Sharififard, F. Pepe, M. Soleimani, P. Aprea, D. Caputo,
Iron-activated carbon nanocomposite: synthesis, characterization
and application for lead removal from aqueous solution,
RSC Adv., 6 (2016) 42845–42853.
- Z. Fuqiang, T. Ruiqin Tan, S. Wenfeng, Z. Xianpeng, X. Wei,
S. Weijie, Monodisperse magnetic hydroxyapatite/Fe3O4
microspheres for removal of lead(II) from aqueous solution,
J. Alloys Comp., 637 (2015) 531–537.