References
- F. Ghanbari, M. Moradi, A comparative study of electro
coagulation, electrochemical Fenton, electro-Fenton and peroxicoagulation for decolorization of real textile wastewater: Electrical
energy consumption and biodegradability improvement,
J. Environ. Chem. Eng., 3 (2015) 499–506.
- E. Debik, G. Kaykioglu, A. Coban, I. Koyuncu, Reuse of anaerobically
and aerobically pre-treated textile wastewater by UF
and NF membranes, Desalination, 256 (2010) 174–180.
- B. Krishnakumar, M. Swaminathan, Influence of operational
parameters on photo catalytic degradation of a genotoxic azo
dye Acid Violet 7 in aqueous ZnO suspensions, Spectrochim.
Acta A. Mol. Biomol. Spectrosc., 81 (2011) 739–744.
- A. Asghar, A.A.A. Raman, W.M.A.W. Daud, Advanced oxidation
processes for in-situ production of hydrogen peroxide/hydroxyl radical for textile wastewater treatment: a review,
J. Clean. Prod., 87(2015) 826–838.
- L. Bilinska, M. Gmurek, S. Ledakowicz, Comparison between
industrial and simulated textile wastewater treatment by
AOPs – Biodegradability, toxicity and cost assessment, Chem.
Eng. J., 306 (2016) 550–559.
- T. Hong, Y. Dang, D. Zhou, Y. Hu, Study on the oxidative characteristics
of organics in bio-treated textile wastewater by
VUV/US/O3 process, Chem. Eng. J., 306 (2016) 560–567.
- A.M. Lotito, U. Fratino, G. Bergna, C. Di Iaconi, Integrated
biological and ozone treatment of printing textile wastewater,
Chem. Eng. J., 195–196 (2012) 261–269.
- K. Pazdzior, J. Wrebiak, A. Klepacz-Smołka, M. Gmurek,
L. Bilinska,
L. Kos, J. Sojka-Ledakowicz, S. Ledakowicz, Influence
of ozonation and biodegradation on toxicity of industrial
textile wastewater, J. Environ. Manage., 195 (2017) 166–173.
- S.Y. Yang, P. Wang, X. Yang, G. Wei, W.Y. Zhang, L. Shan, A
novel advanced oxidation process to degrade organic pollutants
in wastewater: microwave activated per sulfate oxidation,
J. Environ. Sci., 21 (2009) 1175–1178.
- S.X. Li, D. Wei, N.K. Mak, Z.W. Cai, X.R. Xu, H.B. Li, Y. Jiang,
Degradation of diphenylamine by persulfate: performance
optimization, kinetics and mechanism, J. Hazard. Mater., 164
(2009) 26–31.
- Y.F. Huang, Y.H. Huang, Identification of produced powerful
radicals involved in the mineralization of bisphenol A using a
novel UV–Na2S2O8/H2O2–Fe (II, III) two-stage oxidation process,
J. Hazard. Mater., 162 (2009) 1211–1216.
- Y.H. Huang, Y.F. Huang, C.I. Huang, C.Y.Chen, Efficient decolorization
of azo dye Reactive Black B involving aromatic fragment
degradation in buffered Co2+/PMS oxidative processes
with a ppb level dosage of Co2+-catalyst, J. Hazard. Mater., 170
(2009)1110–1118.
- G.P. Anipsitakis, D.D. Dionysiou, Degradation of organic
contaminants in water with sulfate radicals generated by the
conjunction of peroxymonosulfate with cobalt, Environ. Sci.
Technol., 37 (2003) 4790–4797.
- J.H. Sun, X.Y. Li, J.L. Feng, X.K. Tian, Oxone/Co2+ oxidation
as an advanced oxidation process: Comparison with traditional
Fenton oxidation for treatment of landfill leachate, Water
Res., 43 (2009) 4363–4369.
- R.H. Waldemer, P.G. Tratnyek, R.L. Johnson, J.T. Nurmi, Oxidation
of chlorinated ethenes by heat-activated persulfate: kinetics
and products, Environ. Sci. Technol., 41 (2007) 1010–1015.
- J. De Laat, G. Le Truong,Kinetics and modeling of the Fe (III)/H2O2 system in the presence of sulfate in acidic aqueous solutions,
Environ Sci. Technol., 39 (2005) 1811–1818.
- G.P. Anipsitakis, D.D. Dionysiou, M.A. Gonzalez, Cobalt-mediated
activation of peroxy mono sulfate and sulfate radical
attack on phenolic compounds implications of chloride ions,
Environ. Sci. Technol., 40 (2006) 1000–1007.
- J. Madhavan, P. Maruthamuthu, S. Murugesan,
M. Ashokkumar,
Kinetics of degradation of acid red 88 in the
presence of Co2+-ion/peroxomonosulphate reagent, Appl.
Catal. A: General, 368 (2009) 35–39.
- J. Criquet, P. Nebout, N.K. Vel Leitner, Enhancement of carboxylic
acid degradation with sulfate radical generated by per
sulfate activation, Water Sci. Technol., 61 (2010) 1221–1226.
- K.A. Rickman, S.P. Mezyk, Kinetics and mechanisms of sulfate
radical oxidation of b-lactam antibiotics in water, Chemosphere,
81 (2010) 359–365.
- J. Mendez-Diaz, M. Sanchez-Polo, J. Rivera-Utrilla, S. Canonica,
U. von Gunten, Advanced oxidation of the surfactant SDBS by
means of hydroxyl and sulphate radicals, Chem. Eng. J., 163
(2010) 300–306.
- Y.T. Lin, C. Liang, J.H. Chen, Feasibility study of ultraviolet
activated per sulfate oxidation of phenol, Chemosphere, 82
(2011) 1168–1172.
- I. Arslan-Alaton, T. Olmez-Hanci, S. Khoei, H. Fakhri, Oxidative
degradation of Triton X-45 using zero valent aluminum
in the presence of hydrogen peroxide, per sulfate and peroxy
mono sulfate, Catal. Today, 280 (2017) 199–207.
- T. Olmez-Hanci, I. Arslan-Alaton, B. Genc, Bisphenol A treatment
by the hot per sulfate process: Oxidation products and
acute toxicity, J. Hazard. Mater., 263 (2013) 283–290.
- K.C. Huang, Z.Q. Zhao, G.E. Hoag, A. Dahmani,
P.A. Block, Degradation of volatile organic compounds
with thermally activated per sulfate oxidation, Chemosphere,
61 (2005) 551–560.
- F. Ghanbari, M. Moradi, Application of peroxy mono sulfate
and its activation methods for degradation of environmental
organic pollutants: Review, Chem. Eng. J., 310 (2017) 41–62.
- C. Liang, H.W. Su,Identification of sulfate and hydroxyl radicals
in thermally activated per sulfate, Ind. Eng. Chem. Res., 48
(2009) 5558–5562.
- T. Olmez-Hanci,I. Arslan-Alaton, Comparison of sulfate and
hydroxyl radical based advanced oxidation of phenol, Chem.
Eng. J., 224 (2013) 10–16.
- APHA-AWWA-WPCF Standard Methods for the Examination
of Water and Wastewater, 20th ed. American Public Health
Association, Washington DC, 1998.
- ISO 7887:2011 Water Quality- Examination and determination
of colour, International Organization for Standardization,
Geneva, 2011.
- M. Koch, A. Tediler, D. Lienert, Ozonation of hydrolysed Azo
Reactive Yellow 84, Chemosphere, 46 (2002) 109–113.
- J. Wu, T. Wang, Ozonation of aqueous azo dye in a semi-batch
reactor, Water Res., 35 (2001)1093–1099.
- E. Oğuz, B. Keskinler, Z. Çelik, Ozonation of aqueous bomaplex
Red Cr-L dye in a semi-batch reactor, Dyes Pigm., 64
(2005) 101–108.
- M.A. Boncz, H. Bruning, R.W. Hulkens, H. Zuilhof, E.J.R. Sudhölter,
The effect of salts on ozone oxidation processes, Ozone
Sci. Eng., 27 (2005) 287–292.
- Y. Yang, J.J. Pignatello, J. Ma, W.A. Mitch, Effect of matrix components
on UV/H2O2 and UV/S2O82– advanced oxidation processes
for trace organic degradation in reverse osmosis brines
from municipal wastewater reuse facilities, Water Res., 89
(2016) 192–200.
- I. Arslan, A. Balcıoğlu, Effect of common reactive dye auxilaries
on the ozonation of dye house effluents containing vintlsulphone
and aminochlorotriazine ring, Desalination, 130 (2000)
61–71.
- W.R. Haag, J. Hoigne, Ozonation of water containing chloride
or chloramines, Water Res., 17 (1983) 486–493.
- A. Mittal, V. Thakur, V. Gajbe, Adsorptive removal of toxic azo
dye Amido Black 10B by hen feather, Environ. Sci. Pollut. Res.,
20 (2013) 260–269.
- D.T. Sponza, M. Isık, Decolorization and inhibition kinetic
of Direct Black 38 azodye with granulated anaerobic sludge,
Enzyme Microb. Technol., 34 (2004) 147–158.
- M. Işık, D.T. Sponza, Effect of oxygen on decolorization of azo
dyes by Escherichia coli and Pseudomonas sp. and fate of aromatic
amines, Process Biochem., 38 (2003) 1183–1192.
- B. Manu,S. Chaudhari, Anaerobic decolorisation of simulated
textile wastewater containing azo dyes, Bioresour. Technol., 82
(2002) 225–231.
- S.M. de Souza , K.A. Bonilla , A.A. de Souza, Removal of COD
and color from hydrolyzed textile azo dye by combined ozonation
and biological treatment, J. Hazard. Mater., 179 (2010)
35–42.
- S. Yang, P. Wang, X. Yang, L. Shan, W. Zhang, X. Shao, R. Niu,
Degradation efficiencies of azo dye Acid Orange 7 by the interaction
of heat, UV and anions with common oxidants: Per sulfate,
peroxy mono sulfate and hydrogen peroxide, J. Hazard.
Mater., 179 (2010) 552–558.
- G. Lente, J. Kalmár, Z. Baranyal, A. Kun, I. Kék, D. Bajusz,
M. Takács, L. Veres, I. Fábián, One- versus two-electron oxidation
with peroxomonosulfate ion: reactions with iron (II),
vanadium (IV), halide ions, and photo reaction with cerium
(III), In org. Chem., 48 (2009) 1763–1773.
- D. Rajkumar, J.G. Kim, Oxidation of various reactive dyes with in
situ electro-generated active chlorine for textile dyeing industry
wastewater treatment, J. Hazard. Mater., 136 (2006) 203–212.
- R. Yuan, S.N. Ramjaun, Z. Wang, J. Liu, Effects of chloride
ion on degradation of Acid Orange 7 by sulfate radical-based
advanced oxidation process: implications for formation of
chlorinated aromatic compounds, J. Hazard. Mater., 196 (2011)
173–179.
- J. Sharma, I.M. Mishra, D.D. Dionysiou, V. Kumar, Oxidative
removal of bisphenol a by UV-C/peroxymonosulfate (PMS):
Kinetics, influence of co-existing chemicals and degradation
pathway, Chem. Eng. J., 276 (2015) 193–204.