References
- M.L. Dreher, Pistachio nuts: composition and potential health
benefits, Nutr. Rev., 70 (2012) 234–240.
- G. Bartzas, K. Komnitsas, Life cycle analysis of pistachio
production in Greece, Sci. Total Environ., 595 (2017) 13–24.
- FAOSTAT, Food and Agricultural Organisation of the United
Nations Statistics Division, 2014. Available at: http://faostat3.fao.org/faostat-gateway/go/to/home/E (Accessed 10.11.2017).
- HSA, Hellenic Statistical Authority, 2012. Available at:
http://www.statistics.gr/en/statistics/-/publication/SPG06/2012
(Accessed 10.11.2017).
- S. Bayar, R. Boncukcuoğlu, A.E. Yilmaz, B.A. Fil, Pre-treatment
of pistachio processing industry wastewaters (PPIW) by
electrocoagulation using Al plate electrode, Sep. Sci. Technol.,
49 (2014) 1008–1018.
- B.A. Fil, R. Boncukcuoglu, A.E. Yilmaz, S. Bayar, Electrooxidation
of pistachio processing industry wastewater using
graphite anode, Clean Soil Air Water, 42 (2014) 1232–1238.
- S.O. Abdelhadi, C.G. Dosoretz, G. Rytwo, Y. Gerchmane,
H. Azaizeh, Production of biochar from olive mill solid waste for
heavy metal removal, Bioresour. Technol., 244 (2017) 759–767.
- D. Lv, Y. Liu, J. Zhou, K. Yang, Z. Lou, S.A. Baig, X. Xu,
Application of EDTA-functionalized bamboo activated carbon
(BAC) for Pb(II) and Cu(II) removal from aqueous solutions,
Appl. Surf. Sci., 428 (2018) 648–658.
- S. Garcia-Segura, J.D. Ocon, M.N. Chong, Electrochemical
oxidation remediation of real wastewater effluents – a review,
Process Saf. Environ. Prot., 113 (2018) 48–67.
- G. Boczkaj, M. Gągol, M. Klein, A. Przyjazny, Effective method
of treatment of effluents from production of bitumens under
basic pH conditions using hydrodynamic cavitation aided by
external oxidants, Ultrason. Sonochem., 40 (2018) 969–979.
- K. Nadeem, G.T. Guyer, N. Dizge, Polishing of biologically
treated textile wastewater through AOPs and recycling for wet
processing, J. Water Process Eng., 20 (2017) 29–39.
- E. Neyens, J. Baeyens, A review of classic Fenton’s peroxidation
as an advanced oxidation technique, J. Hazard. Mater., 98 (2003)
33–50.
- M. Pera-Titus, V. Garcıa-Molina, M.A. Banos, J. Gimenez,
S. Esplugas, Degradation of chlorophenols by means of
advanced oxidation processes: a general review, Appl. Catal., B,
47 (2004) 219–256.
- C. Walling, Fenton’s reagent revisited, Acc. Chem. Res., 8 (1975)
125–131.
- C. Fan, C.Y. Horng, S.J. Li, Structural characterization of natural
organic matter and its impact on methomyl removal efficiency
in Fenton process, Chemosphere, 93 (2013) 178–183.
- J. Zhang, S. Chen, Y. Zhang, X. Quan, H. Zhao, Y. Zhang,
Reduction of acute toxicity and genotoxicity of dye effluent
using Fenton-coagulation process, J. Hazard. Mater., 274 (2014)
198–204.
- A. Lopez, M. Pagano, A. Volpe, A.C. Di Pinto, Fenton’s pretreatment
of mature landfill leachate, Chemosphere, 54 (2004)
1005–1010.
- C.S. Santana, A. Aguiar, Effect of biological mediator,
3-hydroxyanthranilic acid, in dye decolorization by Fenton
processes, Int. Biodeterior. Biodegrad., 104 (2015) 1–7.
- A.A. Babaei, B. Kakavandi, M. Rafiee, F.K. Kalantar Hormozi,
I. Purkaram, E. Ahmadi, S. Esmaeili, Comparative treatment
of textile wastewater by adsorption, Fenton, UV-Fenton and
US-Fenton using magnetic nanoparticles-functionalized carbon
(MNPs@C), J. Ind. Eng. Chem., 56 (2017) 163–174.
- B.M. Esteves, C.S.D. Rodrigues, L.M. Madeira, Synthetic olive
mill wastewater treatment by Fenton’s process in batch and
continuous reactors operation, Environ. Sci. Pollut. Res., (2017)
doi: https://doi.org/10.1007/s11356-017-0532-y.
- B. Zhang, J. Sun, Q. Wang, N. Fan, J. Ni, W. Li, Y. Gao,
Y.Y. Li, C. Xu, Electro-Fenton oxidation of coking wastewater:
optimization using the combination of central composite design
and convex optimization method, Environ. Technol., 38 (2017)
2456–2464.
- I. Vergili, S. Gencdal, Removal of organic matter and etodolac
from pharmaceutical ındustry wastewater by PAC adsorption,
Water Environ. Res., 89 (2017) 641–651.
- APHA, Standard Methods for the Examination of Water and
Wastewater, APHA, Washington, D.C., USA, 1985.
- N.V. Klassen, D. Marchington, H.C.E. McGowan, H2O2
determination by the I3
– method and by KMnO4 titration, Anal.
Chem., 66 (1994) 2921–2925.
- C. Özdemir, M.K. Öden, S. Şahinkaya, D. Güçlü, The
sonochemical decolorisation of textile azo dye CI Reactive
Orange 127, Color. Technol., 127 (2011) 268–273.
- M. Pérez-Moya, M. Graells, L.J. del Valle, E. Centelles,
H.D. Mansilla, Fenton and photo-Fenton degradation of
2-chlorophenol: multivariate analysis and toxicity monitoring,
Catal. Today, 124 (2007) 163–171.
- M.A. Tarr, Chemical Degradation Methods for Wastes and
Pollutants: Environmental and İndustrial Applications, Marcel
Dekker, New York, 2003.
- S. Sharma, S. Kapoor, R.A. Christian, Effect of Fenton process on
treatment of simulated textile wastewater: optimization using
response surface methodology, Int. J. Environ. Sci. Technol.,
14 (2017) 1665–1678.
- E.E. Ebrahiem, M.N. Al-Maghrabi, A.R. Mobarki, Removal of
organic pollutants from industrial wastewater by applying
photo-Fenton oxidation technology, Arabian J. Chem., 10 (2017)
S1674–S1679.
- S.P. Sun, C.J. Li, J.H. Sun, S.H. Shi, M.H. Fan, Q. Zhou,
Decolorization of an azo dye Orange G in aqueous solution
by Fenton oxidation process: effect of system parameters and
kinetic study, J. Hazard. Mater., 161 (2009) 1052–1057.
- J. Li, Z. Luan, L. Yu, Z. Ji, Pretreatment of acrylic fiber
manufacturing wastewater by the Fenton process, Desalination,
284 (2012) 62–65.
- M.S. Lucas, J.A. Peres, Decolorization of the azo dye Reactive
Black 5 by Fenton and photo-Fenton oxidation, Dyes Pigm.,
71 (2006) 236–244.
- M. Muruganandham, M. Swaminathan, Decolourisation of
Reactive Orange 4 by Fenton and photo-Fenton oxidation
technology, Dyes Pigm., 63 (2004) 315–321.
- Y. Qi, C. Shang, I.M.C. Lo, Formation of haloacetic acids during
monochloramination, Water Res., 38 (2004) 2374–2382.
- S.S. Ashraf, M.A. Rauf, S. Alhadrami, Degradation of Methyl
Red using Fenton’s reagent and the effect of various salts, Dyes
Pigm., 69 (2006) 74–78.
- H. Chen, T. Zhang, J. Zhang, Synthesis, characterization and
properties of nitrogen-rich salts of trinitrophloroglucinol,
J. Hazard. Mater., 161 (2009) 1473–1477.
- L.G. Devi, C. Munikrishnappa, B. Nagaraj, K.E. Rajashekhar,
Effect of chloride and sulfate ions on the advanced photo
Fenton and modified photo Fenton degradation process of
Alizarin Red S, J. Mol. Catal. A: Chem., 374–375 (2013) 125–131.
- F. Torrades, S. Saiz, J.A. García-Hortal, Using central composite
experimental design to optimize the degradation of black liquor
by Fenton reagent, Desalination, 268 (2011) 97–102.
- S. Meriç, D. Kaptan, T. Ölmez, Color and COD removal
from wastewater containing Reactive Black 5 using Fenton’s
oxidation process, Chemosphere, 54 (2004) 435–441.