References
- X.Y. Guo, B. Du, Q. Wei, J. Yang, L.H. Hu, L.H. Yan, W.Y. Xu,
Synthesis of amino functionalized magnetic graphenes composite
material and its application to remove Cr (VI), Pb (II),
Hg (II), Cd (II) and Ni (II) from contaminated water, J. Hazard.
Mater., 278 (2014) 211–220.
- I. Giannopoulou, D. Panians, Differential precipitation of copper
and nickel from acidic polymetallic aqueous solutions,
Hydrometallurgy, 90 (2008) 137–146.
- L.H. Liu, J. Wu, X. Li, Y.L. Ling, Synthesis of poly (dimethyldiallylammonium
chloride-co-acrylamide)-graft-triethylenetetramine–
dithiocarbamate and its removal performance and
mechanism of action towards heavy metal ions, Sep. Purif.
Technol., 103 (2013) 92–100.
- T.P. Phetla, F. Ntuli, E. Muzenda, Reduction crystallization
of Ni, Cu, Fe and Co from a mixed metal effluent, J. Ind. Eng.
Chem., 18 (2012) 1171–1177.
- Y.J. Tu, C.K. Chang, C.F. Youa, S.L. Wang, Treatment of complex
heavy metal wastewater using a multi-staged ferrite process,
J. Hazard. Mater., 209–210 (2012) 379–384.
- C.W. Wong, J.P. Barford, G. Chen, G. McKay, Kinetics and
equilibrium studies for the removal of cadmium ions by ion
exchange Resin, J. Environ. Chem. Eng., 2 (2014) 698–707.
- J.H. Huang, F. Yuan, G.M. Zeng, X. Li, Y.L. Gu, L. Shi, W. Liu,
Y.X. Shi, W.C. Liu, Y.H. Shi, Influence of pH on heavy metal
speciation and removal from wastewater using micellar-enhanced
ultrafiltration, Chemosphere, 173 (2017) 199–206.
- Y.F. Huang, D.H. Wu, X.D. Wang, W. Huang, D. Lawless, X.S.
Feng, Removal of heavy metals from water using polyvinylamine
by polymer-enhanced ultrafiltration and flocculation,
Sep. Purif. Technol., 158 (2016) 124–136.
- J.E.D.V. Segundo, G.R. Salazar-Banda, A.C.O. Feitoza, E.O.
Vilar, E.B. Cavalcanti, Cadmium and lead removal from aqueous
synthetic wastes utilizing Chemelec electrochemical reactor:
Study of the operating conditions, Sep. Purif. Technol., 88
(2012) 107–115.
- T.K. Tran, K.F. Chiu, C.Y. Lin, H.J. Leu, Electrochemical treatment
of wastewater: Selectivity of the heavy metals removal
process, Int. J. Hydrogen Energy, (2017) 1–8, (in press).
- M. Taseidifar, F. Makavipour, R.M. Pashley, A.F.M.M. Rahman,
Removal of heavy metal ions from water using ion flotation,
Environ. Technol. Innov., 8 (2017) 182–190.
- I. Abdelfattaha, A.A. Ismail, F.A. Sayedc, A. Almedolab, K.M.
Aboelghait, Biosorption of heavy metals ions in real industrial
wastewater using peanut husk as efficient and cost effective
adsorbent, Environ. Nanotechnol. Monit. Manage., 6 (2016)
176–183.
- 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 Interface Sci.,
442 (2015) 120–132.
- H.P. Zhang, L.Q. Gu, L. Zhang, S.R. Zheng, H.Q. Wan, J.Y. Sun,
D.Q. Zhu, Z.Y. Xu, Removal of aqueous Pb (II) by adsorption
on Al2O3-pillared layered MnO2, Appl. Surf. Sci., 406 (2017)
330–338.
- M. Prica, S. Adamovic, B. Dalmacija, L. Rajic, J. Trickovic, S.
Rapajic, M. Becelic-Tomin, The electrocoagulation/flotation
study: Theremoval of heavy metals from the waste fountain
solution, Process Saf. Environ. Prot., 94 (2015) 262–273.
- F.L. Fu, Q. Wang, Removal of heavy metal ions from wastewaters:
A review, J. Environ. Manage., 92 (2011) 407–418.
- A. Sheikh Hosseini, M. Shirvani, H. Shariatmadari, Competitive
sorption of nickel, cadmium, zinc and copper on palygorskite
and sepiolite silicate clay minerals, Geoderma, 192 (2013)
249–253.
- A. Sdiri, M. Khairy, S. Bouaziz, S. El-Safty, A natural clayey
adsorbent for selective removal of lead from aqueous solutions,
Appl. Clay Sci., 126 (2016) 89–97.
- L. Largitte, J. Laminie, Modelling the lead concentration decay
in the adsorption of lead onto a granular activated carbon, J.
Environ. Chem. Eng., 3 (2015) 474–481.
- W.J. Peng, H.Q. Li, Y.Y. Liu, S.X. Song, A review on heavy metal
ions adsorption from water by graphene oxide and its composites,
J. Mol. Liq., 230 (2017) 496–504.
- C. Chen, H.B. Liu, T.H. Chen, D. Chen, R.L. Frost, An insight
into the removal of Pb (II), Cu (II), Co (II), Cd (II), Zn (II), Ag
(I), Hg (I), Cr (VI) by Na (I)-montmorillonite and Ca (II)-montmorillonite,
Appl. Clay Sci., 118 (2015) 239–247.
- U. Habiba, A.M. Afifi, A. Salleh, B.C. Ang, Chitosan/(polyvinyl
alcohol)/zeolite electrospun composite nanofibrous membrane
for adsorption of Cr6+, Fe3+ and Ni2+, J. Hazard. Mater.,
322 (2017) 182–194.
- B. Hayati, A. Maleki, F. Najafi, H. Daraei, F. Gharibi, G. McKay,
Synthesis and characterization of PAMAM/CNT nanocomposite
as a super-capacity adsorbent for heavy metal (Ni2+,
Zn2+, As3+, Co2+) removal from wastewater, J. Mol. Liq., 224
(2016) 1032–1040.
- F. Ke, J. Jiang, Y.Z. Li, J. Liang, X.C. Wan, S. Ko, Highly selective
removal of Hg2+ and Pb2+ by thiol-functionalized Fe3O4@metal-organic framework core-shell magnetic microspheres, Appl.
Surf. Sci., 413 (2017) 266–274.
- M. Anbia, M. Haqshenas, Adsorption studies of Pb(II) and
Cu(II) ions on mesoporous carbon nitride functionalized with
melamine-based dendrimer amine, Int. J. Environ. Sci. Technol.,
12 (2015) 2649–2664.
- M. Shafiabadi, A. Dashti, H.A. Tayebi, Removal of Hg (II) from
aqueous solution using polypyrrole/SBA-15 nanocomposite:
Experimental and modeling, Synth. Met., 212 (2016) 154–160.
- M. Anbia, K. Kargosha, S. Khoshbouei, Heavy metal ions
removal from aqueous media by modified magnetic mesoporous
silica MCM-48, Chem. Eng. Res. Des., 93 (2015) 779–788.
- L.C. Lin, M. Thirumavalavan, J.F. Lee, Facile synthesis of thiol-functionalized mesoporous silica-their role for heavy metal
removal efficiency, Clean-Soil, Air, Water, 43(5) (2015) 775–785.
- Y.J. Jia, Y.J. Zhang, R.W. Wang, J.J. Yi, X. Feng, Q.H. Xu, Mesoporous
zirconium phosphonate hybrid material as adsorbent
to heavy metal ions, Ind. Eng. Chem. Res., 51(38) (2012) 12266–12273.
- T.Y. Ma, X.J. Zhang, G.S. Shao, A.J.L. Cao, Z.Y. Yuan, Ordered
Macroporous titanium phosphonate materials: Synthesis, photocatalytic
activity, and heavy metal ion adsorption, J. Phys.
Chem. C, 112(8) (2008) 3090–3096.
- Z.X. Wu, P.A. Webley, D.Y. Zhao, Comprehensive study of pore
evolution, mesostructural stability, and simultaneous surface
functionalization of ordered mesoporous carbon (FDU-15)
by wet oxidation as a promising adsorbent, Langmuir, 26(12)
(2010) 10277–10286.
- I. Maruyama, G. Igarashi, Y. Nishioka, Bimodal behavior of
C-S-H interpreted from short-term length change and water
vapor sorption isotherms of hardened cement paste, Cem.
Concr. Res., 73 (2015) 158–168.
- P. Duan, Z.H. Shui, W. Chen, C.H. Shen, Influence of super
plasticizer on composition and pore structure of C–S–H, Constr.
Build. Mater., 44 (2013) 87–91.
- D.A. Kulik, Improving the structural consistency of C-S-H
solid solution thermodynamic models, Cem. Concr. Res., 41
(2011) 477–495.
- M.Y. Shie, H.C. Chang, S.J. Ding, Composition-dependent protein
secretion and integrin level of osteoblastic cell on calcium
silicate cements, J. Biomed. Mater. Res. Part A, 102A (2014) 769–
780.
- C.C. Chen, C.C. Ho, S.Y. Lin, S.J. Ding, Green synthesis of calcium
silicate bioceramic powders, Ceram. Int., 41 (2015) 5445–
5453.
- F.S. Shirazi, M. Mehrali, A.A. Oshkour, H.S.C. Metselaar, N.A.
Kardi, N.A. Abu Osman, Mechanical and physical properties of
calcium silicate/alumina composite for biomedical engineering
applications, J. Mech. Behav. Biomed. Mater., 30 (2014) 168–175.
- B.H. Kan, L.Z. Feng, K.Y. Zhao, J.F. Wei, D.W. Zhu, L.H. Zhang,
Q. Ren, Preparation and rebinding properties of protein
imprinted polysiloxane using mesoporous calcium silicate
grafted non-woven polypropylene as matrix, J. Mol. Recognit.,
29(3) (2016) 115–122.
- K. Okano, M. Uemoto, J. Kagami, K. Miura, T. Aketo, M. Toda,
K. Honda, H. Ohtake, Novel technique for phosphorus recovery
from aqueous solutions using amorphous calcium silicate
hydrates (A-CSHs), Water Res., 47 (2013) 2251–2259.
- K.Y. Zhao, T. Chen, D.Y. Li, X.X. Zhang, J.F. Wei, H.Y. Song,
Preparation and characterization of mesoporous calcium silicate
grafted polypropylene non-woven fabric, Mater. Lett., 141
(2015) 110–113.
- K. Okano, S. Miyamaru, A. Kitao, H. Takano, T. Aketo, M. Toda,
K. Honda, H. Ohtake, Amorphous calcium silicate hydrates
and their possible mechanism for recovering phosphate from
wastewater, Sep. Purif. Technol., 144 (2015) 63–69.
- W. Guan, F.Y. Jin, Q.K. Chen, P. Yan, Q. Zhang, Preparation and
phosphorus recovery performance of porous calcium–silicate–hydrate, Ceram. Int., 39 (2013) 1385–1391.
- C.J. Li, M.H. Wan, Y. Dong, Z.Y. Men, Y. Lin, D.Y. Wu, H.N.
Kong, Treating surface water with low nutrients concentra
tion by mixed substrates constructed wetlands, J. Environ. Sci.
Health Part A., 46 (2011) 771–776.
- X.H. Wang, K.Y. Zhao, B.X. Yang, T. Chen, D.Y. Li, H. Wu, J.F.
Wei, X.Q. Wu, Adsorption of Dibutyl phthalate in aqueous
solution by mesoporous calcium silicate grafted non-woven
polypropylene, Chem. Eng. J., 306 (2016) 452–459.
- W. Guan, X. Zhao, Fluoride recovery using porous calcium silicate
hydrates via spontaneous Ca2+ and OH- release, Sep. Purif.
Technol., 165 (2016) 71–77.
- K.Y. Zhao, X.H. Wang, T. Chen, H. Wu, J.G. Li, B.X. Yang, D.Y.
Li, J.F. Wei, Bisphenol A adsorption properties of mesoporous
CaSiO3@SiO2 grafted non-woven polypropylene fiber, Ind.
Eng. Chem. Res., 56 (2017) 2549−2556.
- G.X. Qi, X.F. Lei, L. Li, C. Yuan, Y.L. Sun, J.B. Chen, J. Chen, Y.
Wang, J.M. Hao, Preparation and evaluation of a mesoporous
calcium-silicate material (MCSM) from coal fly ash for removal
of Co (II) from wastewater, Chem. Eng. J., 279 (2015) 777–787.
- J. Wu, Y.J. Zhu, F. Chen, Ultrathin calcium silicate hydrate
nanosheets with large specific surface areas: synthesis, crystallization,
layered self-assembly and applications as excellent
adsorbents for drug, protein, and metal ions, Small, 9(17)
(2013) 2911–2925.
- J. Zhao, Y.J. Zhu, J. Wu, J.Q. Zheng, X.Y. Zhao, B.Q. Lu, F. Chen,
Chitosan-coated mesoporous microspheres of calcium silicate
hydrate: Environmentally friendly synthesis and application
as a highly efficient adsorbent for heavy metal ions, J. Colloid
Interface Sci., 418 (2014) 208–215.
- S. Shaw, S.M. Clark, C.M.B. Henderson, Hydrothermal
formation of the calcium silicate hydrates, tobermorite
(Ca5Si6O16(OH)2·4H2O) and xonotlite (Ca6Si6O17(OH)2): An in
situ synchrotron study, Chem. Geol., 167 (2000) 129–140.
- M.L. Zhang, J. Chang, Surfactant-assisted sonochemical synthesis
of hollow calcium silicate (CSH) microspheres for drug
deliver, Ultrason. Sonochem., 17(5) (2010) 789–792.
- N.Y. Mostafa, E.A. Kishar, S.A. Abo-El-Enein, FTIR study and
cation exchange capacity of Fe3+- and Mg2+-substituted calcium
silicate hydrates, J. Alloys Compd., 473 (2009) 538–542.
- Q. Li, J.G. Yu, F. Zhou, X.Y. Jiang, Synthesis and characterization
of dithiocarbamate carbon nanotubes for the removal of
heavy metal ions from aqueous solutions, Colloids Surf. A:
Physicochem. Eng. Aspects, 482 (2015) 306–314.
- K.M.M. Aguilar, Y. Amano, M. Machida, Ammonium persulfate
oxidized activated carbon fibers: Analysis of their oxidation
debris quantity and their useful for aqueous Pb (II) batch and
column experiments, J. Fiber Sci. Technol., 73(7) (2017) 150–157.
- P. Tan, Y.Y. Hu, Q. Bi, Competitive adsorption of Cu2+, Cd2+ and
Ni2+ from an aqueous solution on graphene oxide membranes.
Colloids Surf. A: Physicochem. Eng. Aspects, 509 (2016) 56–64.
- X.Y. Li, H.H. Zhou, W.Q. Wu, S.D. Wei, Y. Xu, Y.F. Kuang, Studies
of heavy metal ion adsorption on chitosan/sulfhydryl
functionalized graphene oxide composites, J. Colloid Interface
Sci., 448 (2015) 389–397.
- N. Torapava, A. Radkevich, D. Davydov, A. Titov, I. Persson,
Composition and structure of polynuclear chromium (III)
hydroxo complexes, Inorg. Chem., 48 (2009) 10383–10388.
- J. Tits, E. Wieland, C.J. Müller, C. Landesman, M.H. Bradbury,
Strontium binding by calcium silicate hydrates, J. Colloid
Interface Sci., 300 (2006) 78–87.