References
- D.G. Barceloux, D. Barceloux, Vanadium, J. Toxicol. Clin.
Toxicol., 37 (1999) 265–278.
- R.S. Drago, E.I. Baucom, Stabilization of high oxidation states
of nickel with pyridine oxime ligands, Inorg. Chem., 11 (1972)
2064–2069.
- L. Sacconi, C. Ghilardi, C. Mealli, F. Zanobini, Synthesis,
properties, and structural characterization of complexes of
cobalt and nickel in low oxidation states with the tripod ligand
tris (2-diphenylphosphinoethyl) amine, Inorg. Chem., 14 (1975)
1380–1386.
- M.F. Ali, S. Abbas, A review of methods for the demetallization
of residual fuel oils, Fuel Process. Technol., 87 (2006) 573–584.
- T. Sakai, H. Miyamura, N. Kuriyama, I. Uehara, M. Muta,
A. Takagi, U. Kajiyama, K. Kinoshita, F. Isogai, Nickelmetal
hydride battery for electric vehicles, J. Alloys Compd.,
192 (1993) 158–160.
- H. Sharififard, M. Soleimani, Performance comparison of
activated carbon and ferric oxide-hydroxide–activated carbon
nanocomposite as vanadium(V) ion adsorbents, RSC Adv.,
5 (2015) 80650–80660.
- C. Shen, W. Zhou, H. Yu, L. Du, Ni nanoparticles supported
on carbon as efficient catalysts for steam reforming of toluene
(model tar), Chin. J. Chem. Eng., 26 (2018) 322–329.
- A. Phasuk, S. Srisantitham, T. Tuntulani, W. Anutrasakda,
Facile synthesis of magnetic hydroxyapatite-supported nickel
oxide nanocomposite and its dye adsorption characteristics,
Adsorption, 24 (2018) 157–167.
- M. Saeed, S. Adeel, M. Ilyas, M.A. Shahzad, M. Usman,
E.-u. Haq, M. Hamayun, Oxidative degradation of Methyl
Orange catalyzed by lab prepared nickel hydroxide in aqueous
medium, Desal. Water Treat., 57 (2016) 12804–12813.
- N. Larché, P. Boillot, P. Dezerville, E. Johansson, J. Lardon,
D. Thierry, Crevice corrosion performance of high-alloy
stainless steels and Ni-based alloy in desalination industry,
Desal. Water Treat., 55 (2015) 2491–2501.
- E.M. Choi, M.K. Kim, E.T. Kang, K.B. Kang, D.S. Kim,
Perfluorinated polymer for vanadium flow battery, Desal.
Water Treat., 51 (2013) 5172–5178.
- I. Ghouma, M. Guiza, M. Jeguirim, A.A. Zorpas, L. Limousy,
A. Ouederni, An optimization study of nickel catalyst supported
on activated carbon for the 2-nitrophenol catalytic
ozonation, Desal. Water Treat., 112 (2018) 242–249.
- Z. Zhao, M. Guo, M. Zhang, Extraction of molybdenum and
vanadium from the spent diesel exhaust catalyst by ammonia
leaching method, J. Hazard. Mater., 286 (2015) 402–409.
- L. Zeng, C.Y. Cheng, A literature review of the recovery of
molybdenum and vanadium from spent hydrodesulphurisation
catalysts: part II: separation and purification, Hydrometallurgy,
98 (2009) 10–20.
- S. Goel, K. Pant, K. Nigam, Extraction of nickel from spent
catalyst using fresh and recovered EDTA, J. Hazard. Mater.,
171 (2009) 253–261.
- I.S. Pinto, H.M. Soares, Microwave-assisted selective leaching
of nickel from spent hydrodesulphurization catalyst: a
comparative study between sulphuric and organic acids,
Hydrometallurgy, 140 (2013) 20–27.
- M.A. Al-Ghouti, Y.S. Al-Degs, A. Ghrair, H. Khoury, M. Ziedan,
Extraction and separation of vanadium and nickel from fly ash
produced in heavy fuel power plants, Chem. Eng. J., 173 (2011)
191–197.
- A. Padilla-Rodríguez, J.A. Hernández-Viezcas, J.R. Peralta-
Videa, J.L. Gardea-Torresdey, O. Perales-Pérez, F.R. Román-
Velázquez, Synthesis of protonated chitosan flakes for the
removal of vanadium(III, IV and V) oxyanions from aqueous
solutions, Microchem. J., 118 (2015) 1–11.
- M. Alibrahim, H. Shlewit, S. Alike, Solvent extraction of
vanadium(IV) with di (2-ethylhexyl) phosphoric acid and
tributyl phosphate, Period. Polytech. Chem. Eng., 52 (2008)
29–33.
- M. Nabavinia, M. Soleimani, A. Kargari, Vanadium recovery
from oil refinery sludge using emulsion liquid membrane
technique, Int. J. Chem. Environ. Eng., 3 (2012) 149–152.
- S. Ramírez, P. Schacht, R. Quintana-Solórzano, J. Aguilar,
Leaching of heavy metals under ambient resembling conditions
from hydrotreating spent catalysts, Fuel, 110 (2013) 286–292.
- B. Nowack, J.M. VanBriesen, Chelating agents in the
environment, Biogeochem. Chelating Agents, 910 (2005) 1–18.
- M. Kavand, T. Kaghazchi, M. Soleimani, Optimization of
parameters for competitive adsorption of heavy metal ions
(Pb2+, Ni2+, Cd2+) onto activated carbon, Korean J. Chem. Eng.,
31 (2014) 692–700.
- 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.
- M. Barkat, D. Nibou, S. Chegrouche, A. Mellah, Kinetics and
thermodynamics studies of chromium(VI) ions adsorption onto
activated carbon from aqueous solutions, Chem. Eng. Process.
Process Intensif., 48 (2009) 38–47.
- M. Poorbaba, M. Soleimani, Recovery of vanadium–EDTA
complex from extraction leachate of vanadium secondary
resources: optimization and experimental investigation, Desal.
Water Treat., 101 (2018) 268–282.
- S. Brunauer, P.H. Emmett, E. Teller, Adsorption of gases in
multimolecular layers, J. Am. Chem. Soc., 60 (1938) 309–319.
- S.A. Dastgheib, D.A. Rockstraw, A model for the adsorption
of single metal ion solutes in aqueous solution onto activated
carbon produced from pecan shells, Carbon, 40 (2002)
1843–1851.
- A. Ringbom, S. Siitonen, B. Skrifvars, The ethylenediaminetetraacetate
complexes of vanadium(V), Acta Chem. Scand.,
11 (1957) 551–554.
- D. Bhattacharyya, C.R. Cheng, Activated carbon adsorption of
heavy metal chelates from single and multicomponent systems,
Environ. Prog., 6 (1987) 110–118.
- H.-s. Zhu, X.-j. Yang, Y.-p. Mao, Y. Chen, X.-l. Long,
W.-k. Yuan, Adsorption of EDTA on activated carbon from
aqueous solutions, J. Hazard. Mater., 185 (2011) 951–957.
- M. Kavand, M. Soleimani, T. Kaghazchi, N. Asasian,
Competitive separation of lead, cadmium, and nickel from
aqueous solutions using activated carbon: response surface
modeling, equilibrium, and thermodynamic studies, Chem.
Eng. Commun., 203 (2016) 123–135.
- N. Mehrabi, M. Soleimani, M.M. Yeganeh, H. Sharififard,
Parameter optimization for nitrate removal from water using
activated carbon and composite of activated carbon and Fe2O3
nanoparticles, RSC Adv., 5 (2015) 51470–51482.
- D.L. Pavia, G.M. Lampman, G.S. Kriz, J.A. Vyvyan, Introduction
to Spectroscopy, Cengage Learning, California, 2009.
- 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.R. Hormozi-Nezhad, M. Jalali-Heravi, H. Robatjazi,
H. Ebrahimi-Najafabadi, Controlling aspect ratio of colloidal
silver nanorods using response surface methodology, Colloids
Surf., A, 393 (2012) 46–52.
- T. Ölmez, The optimization of Cr(VI) reduction and removal
by electrocoagulation using response surface methodology,
J. Hazard. Mater., 162 (2009) 1371–1378.
- A. Nezamzadeh-Ejhieh, M. Kabiri-Samani, Effective removal of
Ni(II) from aqueous solutions by modification of nano particles
of clinoptilolite with dimethylglyoxime, J. Hazard. Mater.,
260 (2013) 339–349.
- R. Kumar, M. Barakat, Y. Daza, H. Woodcock, J. Kuhn, EDTA
functionalized silica for removal of Cu(II), Zn(II) and Ni(II) from
aqueous solution, J. Colloid Interface Sci., 408 (2013) 200–205.
- E. Repo, T.A. Kurniawan, J.K. Warchol, M.E. Sillanpää, Removal
of Co(II) and Ni(II) ions from contaminated water using silica
gel functionalized with EDTA and/or DTPA as chelating
agents, J. Hazard. Mater., 171 (2009) 1071–1080.
- S.Z. Mohammadi, H. Hamidian, Z. Moeinadini, High surface
area-activated carbon from Glycyrrhiza glabra residue by ZnCl2
activation for removal of Pb(II) and Ni(II) from water samples,
J. Ind. Eng. Chem., 20 (2014) 4112–4118.
- W.A. Carvalho, C. Vignado, J. Fontana, Ni(II) removal from
aqueous effluents by silylated clays, J. Hazard. Mater.,
153 (2008) 1240–1247.
- T. Anirudhan, P. Radhakrishnan, Adsorptive performance of an
amine-functionalized poly(hydroxyethylmethacrylate)-grafted
tamarind fruit shell for vanadium(V) removal from aqueous
solutions, Chem. Eng. J., 165 (2010) 142–150.
- T. Wang, Z. Cheng, B. Wang, W. Ma, The influence of vanadate
in calcined Mg/Al hydrotalcite synthesis on adsorption of
vanadium(V) from aqueous solution, Chem. Eng. J., 181 (2012)
182–188.
- A. Bhatnagar, A.K. Minocha, D. Pudasainee, H.-K. Chung,
S.-H. Kim, H.-S. Kim, G. Lee, B. Min, B.-H. Jeon, Vanadium
removal from water by waste metal sludge and cement
immobilization, Chem. Eng. J., 144 (2008) 197–204.
- C. Namasivayam, D. Sangeetha, Removal and recovery of
vanadium(V) by adsorption onto ZnCl2 activated carbon:
kinetics and isotherms, Adsorption, 12 (2006) 103–117.
- A. Etaati, M. Soleimani, Optimizing of vanadium adsorption
onto natural bentonite using response surface methodology,
Int. J. Chem. Environ. Eng., 6 (2015) 357–361.
- K. Zohdy, Surface protection of carbon steel in acidic solution
using ethylenediaminetetraacetic disodium salt, Int. J. Electrochem.
Sci., 10 (2015) 414–431.
- I. Langmuir, The constitution and fundamental properties of
solids and liquids. Part I. Solids, J. Am. Chem. Soc., 38 (1916)
2221–2295.
- K.R. Hall, L.C. Eagleton, A. Acrivos, T. Vermeulen, Pore-and
solid-diffusion kinetics in fixed-bed adsorption under constantpattern
conditions, Ind. Eng. Chem. Fundam., 5 (1966) 212–223.
- A. Heidari, H. Younesi, Z. Mehraban, H. Heikkinen, Selective
adsorption of Pb(II), Cd(II), and Ni(II) ions from aqueous
solution using chitosan–MAA nanoparticles, Int. J. Biol.
Macromol., 61 (2013) 251–263.
- I. Tan, A. Ahmad, B. Hameed, Adsorption isotherms,
kinetics, thermodynamics and desorption studies of
2,4,6-trichlorophenol on oil palm empty fruit bunch-based
activated carbon, J. Hazard. Mater., 164 (2009) 473–482.
- G.S. ElShafei, I. Nasr, A.S. Hassan, S. Mohammad, Kinetics and
thermodynamics of adsorption of cadusafos on soils, J. Hazard.
Mater., 172 (2009) 1608–1616.
- C. Wang, J. Ni, J. Zhou, J. Wen, X. Lü, Strategically designed
porous polysilicate acid/graphene composites with wide
pore size for methylene blue removal, RSC Adv., 3 (2013)
23139–23145.
- H. Yuh-Shan, Citation review of Lagergren kinetic rate
equation on adsorption reactions, Scientometrics, 59 (2004)
171–177.
- Y.-S. Ho, Second-order kinetic model for the sorption of
cadmium onto tree fern: a comparison of linear and non-linear
methods, Water Res., 40 (2006) 119–125.
- X. Yang, B. Al-Duri, Kinetic modeling of liquid-phase adsorption
of reactive dyes on activated carbon, J. Colloid Interface Sci.,
287 (2005) 25–34.
- Y.-S. Ho, G. McKay, Pseudo-second order model for sorption
processes, Process Biochem., 34 (1999) 451–465.
- R.W. Peters, Chelant extraction of heavy metals from
contaminated soils, J. Hazard. Mater., 66 (1999) 151–210.