References
- Y.H. Wang, L.L. Li, C.N. Luo, X.J. Wang, H.M. Duan, Removal
of Pb2+ from water environment using a novel magnetic
chitosan/graphene oxide imprinted Pb2+, Int. J. Biol. Macromol.,
86 (2016) 505–511.
- E. Otal, L.F. Vilches, N. Moreno, X. Querol, J. Vale,
C. Fernández-Pereira, Application of zeolitised coal fly ashes
to the depuration of liquid wastes, Fuel, 84 (2005) 1440–1446.
- M. Hua, S. Zhang, B. Pan, W. Zhang, L. Lv, Q. Zhang, Heavy
metal removal from water/wastewater by nanosized metal
oxides: a review, J. Hazard. Mater., 211 (2012) 317–331.
- L. Joseph, B. Jun, J.R.V. Flora, C.M. Park, Y. Yoon, Removal
of heavy metals from water sources in the developing world
using low-cost materials: a review, Chemosphere, 229 (2019)
142–159.
- Y. Pang, G. Zeng, L. Tang, Y. Zhang, Y. Liu, X. Lei, Y. Xiong,
Preparation and application of stability enhanced magnetic
nanoparticles for rapid removal of Cr(VI), Chem. Eng. J.,
175 (2011) 222–227.
- T.R. Praveenkumar, M.M. Vijayalakshmi, M.S. Meddah,
Strengths and durability performances of blended cement
concrete with TiO2 nanoparticles and rice husk ash, Constr.
Build. Mater., 217 (2019) 343–351.
- M.S. Meddah, T.R. Praveenkumar, M.M. Vijayalakshmi,
S. Manigandan, R. Arunachalam, Mechanical and microstructural
characterization of rice husk ash and Al2O3
nanoparticles modified cement concrete, Constr. Build. Mater.,
255 (2020) 2, doi: 10.1016/j.conbuildmat.2020.119358.
- N.N. Nassar, Rapid removal and recovery of Pb(II) from
wastewater by magnetic nanoadsorbents, J. Hazard. Mater., 184
(2010) 538–546.
- T. Phuengprasop, J. Sittiwong, F. Unob, Removal of heavy metal
ions by iron oxide coated sewage sludge, J. Hazard. Mater.,
186 (2011) 502–507.
- X. Zhu, T. Song, Z. Lv, G. Ji, High-efficiency and low-cost
α-Fe2O3 nanoparticles coated volcanic rock for Cd(II) removal
from wastewater, Process Saf. Environ. Prot., 104 (2016)
373–381.
- G. Zhao, J. Li, X. Ren, C. Chen, X. Wang, Few-layered graphene
oxide nanosheets as superior sorbents for heavy metal ion
pollution management, Environ. Sci. Technol., 45 (2011)
10454–10462.
- C.Y. Cao, J. Qu, F. Wei, H. Liu, W.G. Song, Superb adsorption
capacity and mechanism of flowerlike magnesium oxide
nanostructures for lead and cadmium ions, ACS Appl. Mater.
Interfaces, 4 (2012) 4283–4287.
- T.M.T. Nguyen, T.P.T. Do, T.S. Hoang, N.V. Nguyen, H.D. Pham,
T.D. Nguyen, T.N.M. Pham, T.S. Le, T.D. Pham, Adsorption of
anionic surfactants onto alumina: characteristics, mechanisms,
and application for heavy metal removal, Int. J. Polym. Sci.,
2018 (2018) 2, doi: 10.1155/2018/2830286.
- B. Calvo, L. Canoira, F. Morante, J.M. Martínez-Bedia,
C. Vinagre, J.E. García-González, J. Elsen, R. Alcantara,
Continuous elimination of Pb2+, Cu2+, Zn2+, H+ and NH4+ from
acidic waters by ionic exchange on natural zeolites, J. Hazard.
Mater., 166 (2009) 619–627.
- D.M. Martín, M. Faccini, M.A. García, D. Amanti, Highly
efficient removal of heavy metal ions from polluted water
using ions elective polyacrylonitrile nanofibers, J. Environ.
Chem. Eng., 6 (2018) 236–245.
- A. Mautner, H.A. Maple, T. Kobkeatthawin, V. Kokol, Z. Karim,
K.A. Li, Bismarck phosphorylated nanocellulose papers for
copper adsorption from aqueous solutions, Int. J. Environ.
Sci. Technol., 13 (2016) 1861–1872.
- T. Zeng, Y. Yu, Z. Li, J. Zuo, Z. Kuai, Y. Jin, Y. Wang, A. Wu,
C. Peng, 3D MnO2 nanotubes@reduced graphene oxide
hydrogel as reusable adsorbent for the removal of heavy
metal ions, Mater. Chem. Phys., 231 (2019) 105–108.
- Y. Cai, C. Li, D. Wu, W. Wang, F. Tan, X. Wang, P.K. Wong,
X. Qiao, Highly active MgO nanoparticles for simultaneous
bacterial inactivation and heavy metal removal from aqueous
solution, Chem. Eng. J., 312 (2017) 158–166.
- A. Kaya, S. Durukan, Utilization of bentonite-embedded
zeolite as clay liner, Appl. Clay Sci., 25 (2004) 83–91.
- S. Mahesh, B. Prasad, I.D. Mall, I.M. Mishra, Electrochemical
degradation of pulp and paper mill wastewater. Part 1. COD
and color removal, Ind. Eng. Chem. Res., 45 (2006) 2830–2839.
- M. Panayotova, J. Fritsch, Treatment of wastewater from the
lead-zinc ore processing industry, J. Environ. Sci. Health. Part A
Environ. Sci. Eng. Toxicol., 31 (1996) 2155–2165.
- S. Hait, V. Tare, Wastewater treatment by high-growth
bioreactor integrated with settling-cum-membrane separation,
Desalination, 270 (2011) 233–240.
- A. Heidari, H. Younesi, Z. Mehraban, Removal of Ni(II),
Cd(II), and Pb(II) from a ternary aqueous solution by amino
functionalized mesoporous and nano mesoporous silica,
Chem. Eng. J. 153 (2009) 70–79.
- Z.Q. Wang, D.Y. Wu, G.H. Wu, N.N. Yang, A.G. Wu, Modifying
Fe3O4 microspheres with rhodamine hydrazide for selective
detection and removal of Hg2+ ion in water, J. Hazard. Mater.,
244 (2013) 621–627.
- S. Babel, T.A. Kurniawan, Low-cost adsorbents for heavy metals
uptake from contaminated water: a review, J. Hazard. Mater.,
97 (2003) 219–243.
- J.E. Efome, D. Rana, T. Matsuura, C.Q. Lan, Metal-organic
frameworks supported on nanofibers to remove heavy metals,
J. Mater. Chem. A, 6 (2018) 4550–4555.
- V.A. Lemos, L.S.G. Teixeira, M.d.A. Bezerra, A.C.S. Costa,
J.T. Castro, L.A.M. Cardoso, D.S. de Jesus, E.S. Santos, P.X. Baliza,
L.N. Santos, New materials for solid‐phase extraction of trace
elements, Appl. Spectrosc. Rev., 43 (2008) 303–334.
- T.M. Albayati, A.A. Sabri, D.B. Abed, Adsorption of binary
and multi heavy metals ions from aqueous solution by amine
functionalized SBA-15 mesoporous adsorbent in a batch
system, Desal. Water Treat., 151 (2019) 315–321.
- T.M. Albayati, A.M. Doyle, Purification of aniline and
nitrosubstituted aniline contaminants from aqueous solution
using beta zeolite, Chem. Bulg. J. Sci. Educ., 23 (2014) 105–114.
- T.M. Albayati, Application of nanoporous material MCM-41
in a membrane adsorption reactor (MAR) as a hybrid process
for removal of methyl orange, Desal. Water Treat., 151 (2019)
138–144.
- Y.A. Abd Al-Khodor, T.M. Albayati, Employing sodium
hydroxide in desulfurization of the actual heavy crude oil:
theoretical optimization and experimental evaluation, Process
Saf. Environ. Prot., 136 (2020) 334–342.
- S.M. Alardhi, T.M. Albayati, J.M. Alrubaye, Adsorption of
the methyl green dye pollutant from aqueous solution using
mesoporous materials MCM-41 in a fixed-bed column, Heliyon,
6 (2020) 4, doi: 10.1016/j.heliyon.2020.e03253.
- T.M. Albayati, A.A. Sabri, D.B. Abed, Functionalized SBA-
15 by amine group for removal of Ni(II) heavy metal ion in
the batch adsorption system, Desal. Water Treat., 174 (2020)
301–310.
- T.M. Albayati, A.A. Sabri, R.A. Alazawi, Separation of
methylene blue as pollutant of water by SBA-15 in a fixed-bed
column, Arabian J. Sci. Eng., 41 (2016) 2409–2415.