References
- M. Sobiesiak, B. Podkoscielna, Preparation and characterization
of porous DVB copolymers and their applicability for adsorption
(solid-phase extraction) of phenol compounds, Appl. Surf. Sci.,
257 (2010) 1222–1227.
- Z. Ioannou, J. Simitzis, Adsorption kinetics of phenol and
3-nitrophenol from aqueous solutions on conventional and
novel carbons, J. Hazar. Mater., 171 (2009) 954–964.
- F.A. Banat, V. Al-Bashir, S. Al-Asheh, O. Hayajneh, Adsorption
of phenol by bentonite, Environ. Pollution, 107 (2000) 391–398.
- WHO (World Health Organization), Guidelines for Drinkingwater
Quality: first addendum to the Fourth Edition, Health
criteria and supporting information, Geneva, Switzerland, 2017.
- N.N. Dutta, S. Brothakur, R. Baruaha, A novel process for
recovery of phenol from alkaline wastewater: laboratory
study and predesigned cost estimate, Water Environ. Res.,
70 (1998) 4–9.
- M. Aazza, H. Ahlafi, H. Moussout, H. Maghat, Ortho-nitro-phenol adsorption onto alumina and surfactant modified
alumina: kinetic, isotherm and mechanism, J. Environ. Chem.
Eng., 5(4) (2017) 3418–3428.
- I.C. Yeh, J.L. Lenhart, B.C. Rinderspacher, Molecular dynamics
simulations of adsorption of catechol and related phenolic
compounds to alumina surfaces, J. Phys. Chem., C119(14)
(2015) 7721–7731.
- Ihsanullah, H.A. Asmaly, T.A. Saleh, T. Laoui, V.K. Gupta,
M.A. Atieh, Enhanced adsorption of phenols from liquids by
aluminum oxide/carbon nanotubes: comprehensive study from
synthesis to surface properties, J. Mol. Liq., 206 (2015) 176–182.
- H.A. Asmaly, Ihsanullah, A. Abussaud, T.A. Saleh, T. Laoui,
V.K. Gupta, M.A. Atieh, Adsorption of phenol on aluminum
oxide impregnated fly ash, Desal. Wat. Treat., 57 (2016)
6801–6808.
- T.G. Danis, T.A. Albanis, D.E. Petrakis, P.J. Pomonis, Removal
of chlorinated phenols from aqueous solutions by adsorption
on alumina pillared clays and mesoporous alumina aluminum
phosphates. Water Res., 32 (1998) 295–302.
- A.H. Al-Muhtase, K.A. Ibrahim, A.B. Albadarin, O. Alikhashman,
G.M. Walkerb, M.N.M. Ahmad, Remediation of
phenol-contaminated water by adsorption using poly(methyl
methacrylate) (PMMA), Chem. Eng. J., 168 (2011) 691–699.
- X. Zeng, Y. Fan, G. Wu, R. Shi, Enhanced adsorption of phenol
from water by a novel polar post-crosslinked polymeric
adsorbent, J. Hazard. Mater., 169 (2009) 1022–1028.
- J. Huang, Adsorption properties of a microporous and
mesoporous hyper-crosslinked polymeric adsorbent
functionalized with phenoxy groups for phenol in aqueous
solution, J. Colloid Interface Sci., 339 (2009) 296–301.
- F. An, B. Gao, X. Feng, Adsorption mechanism and property of
novel composite material PMAA/SiO2 towards phenol, Chem.
Eng. J., 153 (2009) 108–113.
- N. Li, Z. Mei, X. Wei, Study on sorption of chlorophenols
from aqueous solutions by an insoluble copolymer containing
b-cyclodextrin and polyamido amine units, Chem. Eng. J., 192
(2012) 138–145.
- N. Li, Z. Mei, S.M. Chen, Removal of 4-chlorophenol from
aqueous solutions by cyclodextrin polymer, Fresenius Environ.
Bull., 18 (2009) 2249–2253.
- F. An, R. Du, X. Wang, M. Wan, X. Dai, J. Gao, Adsorption of
phenolic compounds from aqueous solution using salicylic acid
type adsorbent, J. Hazard. Mater., 201–202 (2012) 74–81.
- B. Ihaddadene, L. Tifouti1, A.H. Al-Dujaili, N. Gherraf,
Enhancing batch adsorption capacity of bentonite, kaolinite and
their organomodified forms for phenol removal, Int. J. Chem.
Tech. Res., 8 (2015) 1749–1762.
- R.Z. Al- Bakaina, R.A. Abu-Zuraykb, I. Hamadneha, F.I.
Khalilia, A.H. Al-Dujaili, A study on removal characteristics of
o-, m-, and pnitrophenol from aqueous solutions by organically
modified diatomaceous earth, Desal. Wat. Treat., 56 (2014)
826–838.
- O.E.A. Adam, A.H. Al-Dujaili, The Removal of phenol and Its
derivatives from aqueous solutions by adsorption on petroleum
asphaltene, J. Chem., ID 694029 (2013) 1–8.
- M.L. Sekirifa, S. Pallier, M. Hadj-Mahammed, D. Richard, L.
Baameur, A.H. Al-Dujaili, Measurement of the performance
of an agricultural residue-based activated carbon aiming at
the removal of 4-chlophenol from aqueous solution, Energy
Procedia, 36 (2013) 94–103.
- M.L. Sekirifa, M. Hadj-Mahammed, S. Pallier, L. Baameur, D.
Richard, A.H. Al-Dujaili, Preparation and characterization
of an activated carbon from a datestones variety by physical
activation with carbon dioxide, J. Anal. Appl. Pyrolysis, 99
(2013) 155–160.
- U.F. Alkaram, A.A. Mukhalis, A.H. Al-Dujaili, The removal of
phenol from aqueous solutions by adsorption using surfactantmodified
bentonite and kaolinite, J. Hazard. Mater., 169 (2009)
324–332.
- A.K. Sinha, Powder Metallurgy. 2nd ed., Delhi, Karan Printing
Service, 1987.
- A.A. Tsyganenko, P.P. Mardilovich, Structure of alumina
surfaces. J. Chem. Soc., Faraday Trans., 92 (1996) 4843–4852.
- B.K. Hordern, Chemistry of alumina, reactions in aqueous
solution and its application in water treatment, Adv. Colloid
Interface Sci., 110 (2004) 19–48.
- B. Wang, Y.P. Wang, P. Zhou, Z.Q. Liu, S.Z. Luo, W. Chu, Z.
Guo, Formation of poly(acrylic acid)/alumina composite via in
situ polymerization of acrylic acid adsorbed within oxide pores,
Colloids Surf A: Physicochem. Eng. Aspects, 514 (2016) 168–177.
- J. Brandrub, E.H. Immergut, E.A. Grulke, Editors, Handbook of
Polymer, 4th ed., John Wiley, New York, 1999.
- Igberase, E. Osifo, P. Ofomaja, A. Adsorption of metal ions by
microwave assisted grafting of cross-linked chitosan beads.
Equilibrium, isotherm, thermodynamic and desorption studies,
Appl. Organometal. Chem., e4131 (2017) 1–14.
- C. Pacurariu, G. Mihoc, A. Popa, S.G. Muntean, R. Ianos,
Adsorption of phenol and p-chlorophenol from aqueous
solutions on poly (styrene-co-divinylbenzene) functionalized
materials, Chem. Eng. J., 222, (2013) 218–227.
- J. Huang, XJin, S. Deng, Phenol adsorption on an
N-methylacetamide-modified hypercrosslinked resin from
aqueous solutions, Chem. Eng. J., 192 (2011) 192– 200.
- I. Langmuir, The adsorption of gases on plane surface of glass,
mica and platinum, J. Am. Chem. Soc., 40 (1918) 1361–1403.
- S. Renganathan, W.R. Thilagaraj, L.R. Miranda, P. Gautam,
M. Velan, Accumulation of Acid Orange 7, Acid Red 18 and
Reactive Black 5 by growing Schizophyllum communication,
Bioresour. Technol., 97 (2006) 2189–2193.
- N. Salahudeen, A.S. Ahmed, A.H. Al-Muhtaseb, M. Dauda, S.M.
Waziri, B.Y. Jibril, J. Al-Sabahi, Synthesis, characterization and
adsorption study of nano-sized activated alumina synthesized
from kaolin using novel method, Powder Technol., 280 (2015)
266–272.
- B. Abussaud, H.A. Asmaly Ihsanullah, T.A. Saleh, V.K. Gupta,
T. Laoui, M.A. Atieh, Sorption of phenol from waters on
activated carbon impregnated with iron oxide, aluminum oxide
and titanium oxide, J. Mol. Liq., 213 (2016) 351–359.
- H.M.F. Freundlich, About the adsorption, Z. für Physikalische
Chemie, 57 (1906) 385–470.
- H.B. Senturk, D. Ozdes, A. Gundogdu, C. Duran, M. Soylak,
Removal of phenol from aqueous solutions by adsorption onto
organomodified Tirebolu bentonite: equilibrium, kinetic and
thermodynamic study, J. Hazard. Mater., 172 (2009) 353–362.
- M.M. Dubinin, E.D. Zaverina, L.V. Radushkevich, Sorption and
structure of active carbon I. Adsorption of organic vapors, J.
Phys. Chem. A, 21 (1947) 1351–1362.
- C. Kütahyalı, M. Eral, Sorption studies of uranium and thorium
on activated carbon prepared from olive stones: kinetic and
thermodynamic aspects, J. Nucl. Mater., 396 (2010) 251–256.
- Y.S. Ho, J.F. Porter, G. McKay, Equilibrium isotherm studies
for the sorption of divalent metal ions onto peat: copper, nickel
and lead single component systems, Water, Air Soil Pollut. 141
(2002) 1–5.
- M.S. Onyango, Y. Kojima, A. Kumar, D. Kuchar, Uptake
of fluoride by Al3+ pretreated low-silica synthetic zeolites:
adsorption equilibrium and rate studies, Sep. Sci. Technol., 41
(2006) 683–689.
- W.F. Jaynes, S.A. Boyd, Hydrrophobicity of siloxane surfaces in
smectites as revealed by aromatic hydrocarbon adsorption from
water, Clay Miner., 39 (1991) 428–436.
- D.K. Singh, B. Srivastva, Removal of phenol pollutant from
aqueous solutions using various adsorbents, J. Sci. Indus. Res.,
61 (2002) 208–218.
- S. Lagergren, About the theory of so-called adsorption of
soluble substances, K Sven Vetensk akad Handl, 24 (1898) 1–39.
- Y.S. Ho, G. Mckay, A comparison of chemisorptions kinetic
models applied to pollutant removal on various sorbents,
Process Saf. Environ. Prot., 76 (1998) 332–340.
- S.S. Tahir, N. Rauf, Thermodynamic studies of Ni(II) sorption
onto bentonite from aqueous solution, J. Chem. Thermodyn., 35
(2003) 2003–2009.
- M.K. Jha, R.R. Upadhyay, J.C. Lee, V. Kumar, Treatment of
rayon waste effluent for the removal of Zn and Ca using Indion
BSR resin, Desalination, 228 (2008) 97–107.
- F. Arias, T.K. Sen, Removal of zinc metal ion (Zn2+) from
its aqueous solution by kaolin clay mineral: a kinetic and
equilibrium study, Colloids Surf. A: Phys. Eng. Aspects, 348
(2009) 100–108.