References
- S. Azabou, W. Najjar, A. Gargoubi, A. Ghorbel, S. Sayadi,
Catalytic wet peroxide photo-oxidation of phenolic olive
oil mill wastewater contaminants: Part II. Degradation and
detoxification of low-molecular mass phenolic compounds in
model and real effluent, Appl. Catal., B, 77 (2007) 167–174.
- I. D’Antuono, V.G. Kontogianni, K. Kotsiou, V. Linsalata,
A.F. Logrieco, M. Tasioula-Margari, A. Cardinali, Polyphenolic
characterization of olive mill wastewaters, coming from Italian
and Greek olive cultivars, after membrane technology, Food
Res. Int., 65 (2014) 301–310.
- C. Belaid, M. Khadraoui, S. Mseddi, M. Kallel, B. Elleuch,
J.F. Fauvarque, Electrochemical treatment of olive mill
wastewater: treatment extent and effluent phenolic compounds
monitoring using some uncommon analytical tools, J. Environ.
Sci., 25 (2013) 220–230.
- G. Hodaifa, P.A.R. Gallardo, C.A. García, M. Kowalska,
M. Seyedsalehi, Chemical oxidation methods for treatment of
real industrial olive oil mill wastewater, J. Taiwan Inst. Chem.
Eng., 97 (2019) 247–254.
- J.A. Morillo, B. Antizar-Ladislao, M. Monteoliva-Sánchez,
A. Ramos-Cormenzana, N.J. Russell, Bioremediation and biovalorisation
of olive-mill wastes, Appl. Microbiol. Biotechnol.,
82 (2009) 25–39.
- C.A. García, G. Hodaifa, Real olive oil mill wastewater treatment
by photo-Fenton system using artificial ultraviolet light lamps,
J. Cleaner Prod., 162 (2017) 743–753.
- S. Matavos-Aramyan, M. Moussavi, Advances in fenton
and fenton based oxidation processes for industrial effluent
contaminants control–a review, Int. J. Environ. Sci. Nat. Resour.,
2 (2017) 555594, doi: 10.19080/IJESNR.2017.02.555594.
- W.K. Lafi, B. Shannak, M. Al-Shannag, Z. Al-Anber,
M. Al-Hasan, Treatment of olive mill wastewater by combined
advanced oxidation and biodegradation, Sep. Purif. Technol.,
70 (2009) 141–146.
- A. Zhang, Y.M. Li, Removal of phenolic endocrine disrupting
compounds from waste activated sludge using UV, H2O2, and
UV/H2O2 oxidation processes: effects of reaction conditions and
sludge matrix, Sci. Total Environ., 493 (2014) 307–323.
- ASTM D1209-05(2019), Standard Test Method for Color of
Clear Liquids (Platinum-Cobalt Scale), ASTM International,
West Conshohocken, PA, 2019. Available at: www.astm.org.
- P. Asaithambi, B. Sajjadi, A.R. Abdul Aziz, Integrated ozone–photo–Fenton process for the removal of pollutant from
industrial wastewater, Chin. J. Chem. Eng., 25 (2017) 516–522.
- I. Casero, D. Sicilia, S. Rubio, D. Pérez-Bendito, Chemical
degradation of aromatic amines by Fenton’s reagent, Water
Res., 31 (1997) 1985–1995.
- E.G. Solozhenko, N.M. Soboleva, V.V. Goncharuk, Decolorization
of azo dye solutions by Fenton’s oxidation, Water Res., 29 (1995)
2206–2210.
- N.P. Baycan, D. Akten, Response surface methodological
approach and the kinetic study for the assessment of the
photodegradation of a pulp mill effluent with H2O2/Fe(III)/solar
UV, Fresenius Environ. Bull., 20 (2011) 1390–1398.
- P. Asaithambi, B. Sajjadi, A.R. Abdul Aziz, W.M.A. Bin Wan
Daud, Ozone (O3) and sono (US) based advanced oxidation
processes for the removal of color, COD and determination of
electrical energy from landfill leachate, Sep. Purif. Technol.,
172 (2017) 442–449.
- S. Matavos-Aramyan, M. Ghazi-MirSaeed, A. Saeedi-Emadi,
M. Nemati, S. Neysari, Influence of the process parameters on
the foam fractionation treatment of olive mill wastewater, Sci.
Iranica C, 23 (2016) 2820–2827.
- T. Sauer, G.C. Neto, H.J. José, R.F.P.M. Moreira, Kinetics of
photocatalytic degradation of reactive dyes in a TiO2 slurry
reactor, J. Photochem. Photobiol., A, 149 (2002) 147–154.
- F. Cuomo, F. Venditti, G. Cinelli, A. Ceglie, F. Lopez, Olive mill
wastewater (OMW) phenol compounds degradation by means
of a visible light activated titanium dioxide-based photocatalyst,
Z. Physiol. Chem., 230 (2016) 1269–1280.
- L. Martínez-Nieto, M. Villen-Jimenez, G. Hodaifa, S. Rodríguez,
J.A. Gimenez, Industrial plant for olive mill wastewater from
two-phase treatment by chemical oxidation, J. Environ. Eng.,
136 (2010) 1309–1313.