References
- S.Y. Kim, S. Parambadath, S.S. Park, C.S. Ha, Melaminesulfonic
acid functionalized SBA-15 for selective adsorption of
metal ions from artificial seawater and wastewater, J. Nanosci.
Nanotechnol., 17 (2017) 7565–7574.
- S. Vasudevan, J. Lakshmi, G. Sozhan, Electrocoagulation studies
on the removal of copper from water using mild steel electrode,
Water Environ. Res., 84 (2012) 209–219.
- W. Yao, J. Wang, P.Y. Wang, X.X. Wang, S.J. Yu, Y.D. Zou, J. Hou,
T. Hayat, A. Alsaedi, X.K. Wang, Synergistic coagulation of GO
and secondary adsorption of heavy metal ions on Ca/Al layered
double hydroxides, Environ. Pollut., 229 (2017) 827–836.
- Y.N. Chen, W. Zhao, J.C. Zhang, Preparation of 4-vinylpyridine
(4VP) resin and its adsorption performance for heavy metal
ions, RSC Adv., 7 (2017) 4226–4236.
- S. Vasudevan, J. Lakshmi, Process conditions and kinetics
for the removal of copper from water by electrocoagulation,
Environ. Eng. Sci., 29 (2012) 563–572.
- T.J. Afolabi, A.O. Alade, M.O. Jimoh, I.O. Fashola, Heavy
metal ions adsorption from dairy industrial wastewater using
activated carbon from milk bush kernel shell, Desal. Wat. Treat.,
57 (2016) 14565–14577.
- S. Vasudevan, J. Lakshmi, G. Sozhan, Optimization of
electrocoagulation process for the simultaneous removal of
mercury, lead, and nickel from contaminated water, Environ.
Sci. Pollut. Res., 19 (2012) 2734–2744.
- S. Vasudevan, J. Lakshmi, R. Kamaraj, G. Sozhan, A critical
study on the removal of copper by an electrochemically assisted
coagulation: equilibrium, kinetics, and thermodynamics, Asia
Pac. J. Chem. Eng., 8 (2013) 162–171.
- P. Chanpiwat, S. Sthiannopkao, K. Widmer, S. Himeno,
H. Miyataka, N.U. Vu, V.V. Tran, T.T.N. Pham, Assessment of
metal and bacterial contamination in cultivated fish and impact
on human health for residents living in the Mekong Delta,
Chemosphere, 163 (2016) 342–350.
- G. Plavan, O. Jitar, C. Teodosiu, M. Nicoara, D. Micu,
S.A. Strungaru, Toxic metals in tissues of fishes from the Black
Sea and associated human health risk exposure, Environ. Sci.
Pollut. Res. Int., 24 (2017) 7776–7787.
- R.A. Root, S.M. Hayes, C.M. Hammond, R.M. Maier, J. Chorover,
Toxic metal(loid) speciation during weathering of iron sulfide
mine tailings under semi-arid climate, Appl. Geochem., 62
(2015) 131–149.
- Y. Shandil, U.K. Dautoo, G.S. Chauhan, New modified
poly(vinylamine)-gels as selective and efficient Hg2+ ions
adsorbents, Chem. Eng. J., 316 (2017) 978–987.
- K. Anbalagan, P.S. Kumar, R. Karthikeyan, Adsorption of toxic
Cr(VI) ions from aqueous solution by sulphuric acid modified
Strychnos potatorum seeds in batch and column studies, Desal.
Wat. Treat., 57 (2016) 12585–12607.
- S.S. Madaeni, E. Salehi, Adsorption of cations on nanofiltration
membrane: separation mechanism, isotherm confirmation and
thermodynamic analysis, Chem. Eng. J., 150 (2009) 114–121.
- G.V. Mejia, V. Martinez-Miranda, C. Fall, I. Linares-Hernandez,
M. Solache-Rios, Comparison of Fe-Al-modified natural materials
by an electrochemical method and chemical precipitation for the
adsorption of F- and As(V), Environ. Technol., 37 (2016) 558–568.
- S. Maleki, A. Karimi-Jashni, Effect of ball milling process on the
structure of local clay and its adsorption performance for Ni(II)
removal, Appl. Clay Sci., 137 (2017) 213–224.
- C. Hu, P.F. Zhu, M. Cai, H.Q. Hu, Q.L. Fu, Comparative
adsorption of Pb(II), Cu(II) and Cd(II) on chitosan saturated
montmorillonite: kinetic, thermodynamic and equilibrium
studies, Appl. Clay Sci., 143 (2017) 320–326.
- E.D. Freitas, A.C.R. Carmo, A.F.A. Neto, M.G.A. Vieira, Binary
adsorption of silver and copper on Verde-lodo bentonite: kinetic
and equilibrium study, Appl. Clay Sci., 137 (2017) 69–76.
- U.K. Sahu, S. Sahu, S.S. Mahapatra, R.K. Patel, Cigarette soot
activated carbon modified with Fe3O4 nanoparticles as an
effective adsorbent for As(III) and As(V): material preparation,
characterization and adsorption mechanism study, J. Mol. Liq.,
243 (2017) 395–405.
- A.M. Youssef, A.I. Ahmed, M.I. Amin, U.A. El-Banna,
Adsorption of lead by activated carbon developed from rice
husk, Desal. Wat. Treat., 54 (2015) 1694–1707.
- D. Zhang, C.H. Zhou, C.X. Lin, D.S. Tong, W.H. Yu, Synthesis
of clay minerals, Appl. Clay Sci., 50 (2010) 1–11.
- L.M. Wu, C.H. Zhou, J. Keeling, D.S. Tong, W.H. Yu, Towards
an understanding of the role of clay minerals in crude oil
formation, migration and accumulation, Earth Sci. Rev., 115
(2012) 373–386.
- A.A.M. Abdel-Karim, W. Elwan, M.R. El-Naggar, M.M. Gouda,
Experimental and modeling investigations of cesium and
strontium adsorption onto clay of radioactive waste disposal,
Appl. Clay Sci., 132 (2016) 391–401.
- Y. Bentahar, C. Hurel, K. Draoui, S. Khairoun, N. Marmier,
Adsorptive properties of Moroccan clays for the removal of
arsenic(V) from aqueous solution, Appl. Clay Sci., 119 (2016)
385–392.
- M. Fouodjouo, H. Fotouo-Nkaffo, S. Laminsi, F.A. Cassini,
L.O. Brito-Benetoli, N.A. Debacher, Adsorption of copper (II)
onto cameroonian clay modified by non-thermal plasma:
characterization, chemical equilibrium and thermodynamic
studies, Appl. Clay Sci., 142 (2017) 136–144.
- K.E. Adraa, T. Georgelin, J.F. Lambert, F. Jaber, F. Tielens,
M. Jaber, Cysteine-montmorillonite composites for heavy metal
cation complexation: a combined experimental and theoretical
study, Chem. Eng. J., 314 (2017) 406–417.
- H.P. He, Q. Tao, J.X. Zhu, P. Yuan, W. Shen, S.Q. Yang, Silylation
of clay mineral surfaces, Appl. Clay Sci., 71 (2013) 15–20.
- I. Ostolska, M. Wisniewska, Comparison of the influence of
polyaspartic acid and polylysine functional groups on the
adsorption at the Cr2O3 – aqueous polymer solution interface,
Appl. Surf. Sci., 311 (2014) 734–739.
- J.X. Chen, L.H. Xu, J. Han, M. Su, Q. Wu, Synthesis of modified
polyaspartic acid and evaluation of its scale inhibition and
dispersion capacity, Desalination, 358 (2015) 42–48.
- S. Sharma, A. Dua, A. Malik, Polyaspartic acid based
superabsorbent polymers, Eur. Polym. J., 59 (2014) 363–376.
- G.F. Ma, Q. Yang, F.T. Ran, Z.B. Dong, Z.Q. Lei, High
performance and low cost composite superabsorbent based on
polyaspartic acid and palygorskite clay, Appl. Clay Sci., 118
(2015) 21–28.
- S.J. Chipera, D.L. Bish, Baseline studies of the clay minerals
society source clays: powder X-ray diffraction analyses, Clay
Clay Miner., 49 (2001) 398–409.
- A. Viani, A.F. Gualtieri, A.G. Gualtieri, The nature of disorder
in montmorillonite by simulation of X-ray powder patterns,
Am. Mineral., 87 (2002) 966–975.
- J. Madejova, P. Komadel, Baseline studies of the clay minerals
society source clays: infrared methods, Clay Clay Miner., 49
(2001) 410–432.
- P. Djomgoue, D. Njopwouo, FT-IR spectroscopy applied
for surface clays characterization, J. Surf. Eng. Mater. Adv.
Technol., 3 (2013) 275–282.
- A. Vegotsky, K. Harada, S.W. Fox, The characterization of
polyaspartic acid and some related compounds, J. Am. Chem.
Soc., 80 (1958) 3361–3366.
- A.S. Ozcan, B. Erdem, A. Ozcan, Adsorption of Acid Blue 193
from aqueous solutions onto BTMA-bentonite, Colloids Surf.,
A, 266 (2005) 73–81.
- W.C. Tsai, I.B. Sonia, C.C. Kan, C.M. Futalan, M.L.P. Dalida,
M.W. Wan, Removal of copper, nickel, lead, and zinc using
chitosan-coated montmorillonite beads in single- and multimetal
system, Desal. Wat. Treat., 57 (2015) 1–14.
- R. Kamaraj, P. Ganesan, S. Vasudevan, Removal of lead from
aqueous solutions by electrocoagulation: isotherm, kinetics and
thermodynamic studies, Int. J. Environ. Sci. Technol., 12 (2015)
683–692.
- R. Kamaraj, A. Pandiarajan, S. Jayakiruba, M. Naushad,
S. Vasudevan, Kinetics, thermodynamics and isotherm
modeling for removal of nitrate from liquids by facile one-pot
electrosynthesized nano zinc hydroxide, J. Mol. Liq., 215 (2016)
204–211.
- X. Guo, S. Zhang, X. Shan, Adsorption of metal ions on lignin,
J. Hazard. Mater., 151 (2008) 134–142.
- F. Bouhamed, Z. Elouear, J. Bouzid, B Ouddane, Multicomponent
adsorption of copper, nickel and zinc from aqueous
solutions onto activated carbon prepared from date stones,
Environ. Sci. Pollut. Res., 23 (2016) 1–6.
- G.N. Kousalya, M.R. Gandhi, N. Viswanathan, S. Meenakshi,
Preparation and metal uptake studies of modified forms of
chitin, Int. J. Biol. Macromol., 47 (2010) 583–589.
- S.J. Santosa, D. Siswanta, A. Kurniawan, W.H. Rahmanto,
Hybrid of chitin and humic acid as high performance sorbent
for Ni(II), Surf. Sci., 601 (2007) 5155–5161.
- M.B. Šćiban, M.T. Klasnja, M.G. Antov, Study of the biosorption
of different heavy metal ions onto Kraft lignin, Ecol. Eng., 37
(2011) 2092–2095.
- M.J. Jaycock, G.D. Parfitt, Chemistry of Interfaces, E. Horwood,
Hoboken, New Jersey, USA, 1981.
- S.M. Musyoka, H. Mittal, S.B. Mishra, J.C. Ngila, Effect of
functionalization on the adsorption capacity of cellulose for
the removal of methyl violet, Int. J. Biol. Macromol., 65 (2014)
389–397.