References
- G. Busca, S. Berardinelli, C. Resini, L. Arrighi, Technologies
for the removal of phenol from fluid streams: a short review of
recent developments, J. Hazard. Mater., 160 (2008) 265–288.
- J.E. Mark, Polymer Data Handbook, Oxford University Press,
New York, 1999.
- GWI, Regulations Database [On-line Database], Retrieved Jan
19, 2018, from https://www.gwiwaterdata.com.
- L.G.C. Villegas, N. Mashhadi, M. Chen, D. Mukherjee,
K.E. Taylor, N. Biswas, A short review of techniques for
phenol removal from wastewater, Curr. Pollut. Rep., 2 (2016)
157–167.
- M.B. King, Phase Equilibrium in Mixtures: International Series
of Monographs in Chemical Engineering, Vol. 9, Pergamon
Press, Oxford, 1969.
- M.S. O’Donnell, L. Crescentini, Distillation process for recovery
of high purity phenol, U.S. Patent No. 5,064,507, Washington
DC, 1991.
- C. Yang, Y. Qian, L. Zhang, J. Feng, Solvent extraction process
development and on-site trial-plant for phenol removal from
industrial coal-gasification wastewater, Chem. Eng. J., 117
(2006) 179–185.
- T. Matsuura, S. Sourirajan, Reverse osmosis separation of
phenols in aqueous solutions using porous cellulose acetate
membranes, J. Appl. Polym. Sci., 16 (1972) 2531–2554.
- K.O. Agenson, T. Urase, Change in membrane performance due
to organic fouling in nanofiltration (NF)/reverse osmosis (RO)
applications, Sep. Purif. Technol., 55 (2007) 147–156.
- W.M. Throop, Alternative methods of phenol wastewater
control, J. Hazard. Mater., 1 (1975/1977) 319–329.
- S. Imamura, Catalytic and noncatalytic wet oxidation, Ind. Eng.
Chem. Res., 38 (1999) 1743–1753.
- S.K. Bhargava, J. Tardio, J. Prasad, K. Föger, D.B. Akolekar,
S.C. Grocott, Wet oxidation and catalytic wet oxidation, Ind.
Eng. Chem. Res., 45 (2006) 1221–1258.
- K.V. Shetty, R. Ramanjaneyulu, G. Srinikethan, Biological phenol
removal using immobilized cells in a pulsed plate bioreactor:
effect of dilution rate and influent phenol concentration,
J. Hazard. Mater., 149 (2007) 452–459.
- N. Roostaei, F.H. Tezel, Removal of phenol from aqueous
solutions by adsorption, J. Environ. Manage., 70 (2004)
157–164.
- M.L. Soto, A. Moure, H. Domínguez, J.C. Parajó, Recovery,
concentration and purification of phenolic compounds by
adsorption: a review, J. Food Eng., 105 (2011) 1–27.
- S.H. Lin, R.S. Juang, Adsorption of phenol and its derivatives
from water using synthetic resins and low-cost natural
adsorbents: a review, J. Environ. Manage., 90 (2009) 1336–1349.
- İ.Y. İpek, S. Yüksel, N. Kabay, M. Yüksel, Investigation of
process parameters for removal of bisphenol A (BPA) from
water by polymeric adsorbents in adsorption-ultrafiltration
hybrid system, J. Chem. Technol. Biotechnol., 89 (2014)
835–840.
- E. Bi, S.B. Haderlein, T.C. Schmidt, Sorption of methyl tert-butyl
ether (MTBE) and tert-butyl alcohol (TBA) to synthetic resins,
Water Res., 39 (2005) 4164–4176.
- P. Carmona, F. Haslam, S. Das, V. Gomez, E. Jové, V. García-Molina, Use of resin technology for removal of oil from
industrial wastewater, Desal. Wat. Treat., 73 (2017) 348–352.
- M.A. Tejero, E. Jové, P. Carmona, V. Gómez, V. García-Molina,
J. Villa, S. Das, Treatment of oil–water emulsions by adsorption
onto resin and activated carbon, Desal. Wat. Treat., 100 (2017)
21–28.
- T.I.R. Utvik, Chemical characterisation of produced water
from four offshore oil production platforms in the North Sea,
Chemosphere, 39 (1999) 2593–2606.
- S.U. Rege, R.T. Yang, C.A. Cain, Desorption by ultrasound:
phenol on activated carbon and polymeric resin, AIChE J., 44
(1998) 1519–1528.
- H. McLaughlin, Understanding activated carbon reactivation
and low-temperature regeneration technology, Int. Sugar J., 107
(2005) 112–114.
- G. Berčič, A. Pintar, J. Levec, Desorption of phenol from activated
carbon by hot water regeneration. Desorption isotherms, Ind.
Eng. Chem. Res., 35 (1996) 4619–4625.
- F. Salvador, C.S. Jiménez, A new method for regenerating
activated carbon by thermal desorption with liquid water under
subcritical conditions, Carbon, 34 (1996) 511–516.
- R. Zhu, J. Zhu, F. Ge, P. Yuan, Regeneration of spent organoclays
after the sorption of organic pollutants: a review, J. Environ.
Manage., 90 (2009) 3212–3216.
- The Dow Chemical Company, DOWEX OPTIPORE L493 and
V493 Polymeric Adsorbents, Retrieved from: http://www.dupont.com/water/ion-exchange-resins.html.
- H.M.F. Freundlich, Over the adsorption in solution, J. Phys.
Chem., 57 (1906) 1100–1107.
- I. Langmuir, The constitution and fundamental properties of
solids and liquids. Part I, Solids, J. Am. Chem. Soc., 38 (1916)
2221–2295.
- S. Bruanuer, P.H. Emmett, E. Teller, Adsorption of gases in
multimolecular layers, J. Am. Chem. Soc., 60 (1938) 309–316.
- M.I. Tempkin, V. Pyzhev, Kinetics of ammonia synthesis on
promoted iron catalyst, Acta Phys. Chim. USSR, 12 (1940)
327–356.
- R. Sips, Combined form of Langmuir and Freundlich equations,
J. Chem. Phys., 16 (1948) 490–495.
- O.J.D.L. Redlich, D.L. Peterson, A useful adsorption isotherm,
J. Chem. Phys., 63 (1959) 1024–1024.
- M.M. Dubinin, L.V. Radushkevich, The equation of the
characteristic curve of the activated charcoal, Proc. Acad. Sci.
Phys. Chem. Sect. USSR, 55 (1947) 331–337
- J. Toth, State equation of the solid-gas interface layers, Acta
Chim. Hung., 69 (1971) 311–328.
- A.R. Khan, R. Ataullah, A. Al-Haddad, Equilibrium adsorption
studies of some aromatic pollutants from dilute aqueous
solutions on activated carbon at different temperatures,
J. Colloid Interface Sci., 194 (1997) 154–165.
- M. Carmona, A. De Lucas, J.L. Valverde, B. Velasco,
J.F. Rodriguez, Combined adsorption and ion exchange
equilibrium of phenol on Amberlite IRA-420, Chem. Eng. J., 117
(2006) 155–160.
- A. Li, Q. Zhang, J. Chen, Z. Fei, C. Long, W. Li, Adsorption of
phenolic compounds on Amberlite XAD-4 and its acetylated
derivative MX-4, React. Funct. Polym., 49 (2001) 225–233.
- R.S. Juang, J.Y. Shiau, Adsorption isotherms of phenols from
water onto macroreticular resins, J. Hazard. Mater., 70 (1999)
171–183.
- K. Abburi, Adsorption of phenol and p-chlorophenol from their
single and bisolute aqueous solutions on Amberlite XAD-16
resin, J. Hazard. Mater., 105 (2003) 143–156.
- M. Caetano, C. Valderrama, A. Farran, J.L. Cortina, Phenol
removal from aqueous solution by adsorption and ion exchange
mechanisms onto polymeric resins, J. Colloid Interface Sci., 338
(2009) 402–409.
- Y.H. Shen, Phenol sorption b0y organoclays having different
charge characteristics, Colloid. Surf., A, 232 (2004) 143–149.
- R.I. Yousef, B. El-Eswed, H. Ala’a, Adsorption characteristics
of natural zeolites as solid adsorbents for phenol removal from
aqueous solutions: kinetics, mechanism, and thermodynamics
studies, Chem. Eng. J., 171 (2011) 1143–1149.