References
- S. Islam, A study on the solutions of environment
pollutions and worker’s health problems caused by textile
manufacturing operations, Biomed. J. Sci. Tech. Res., 28 (2020),
doi: 10.26717/bjstr.2020.28.004692.
- K. Paździor, L. Bilińska, S. Ledakowicz, A review of the
existing and emerging technologies in the combination of
AOPs and biological processes in industrial textile wastewater
treatment, Chem. Eng. J., 376 (2019) 120597, doi: 10.1016/j.cej.2018.12.057.
- E. GilPavas, I. Dobrosz-Gómez, M.-Á. Gómez-García,
Optimization and toxicity assessment of a combined electrocoagulation,
H2O2/Fe2+/UV and activated carbon adsorption
for textile wastewater treatment, Sci. Total Environ.,
651 (2019) 551–560.
- F.J. Beltran, Ozone Reaction Kinetics for Water and Wastewater
Systems, CRC Press, United States, Headquarters
Location: Boca Raton, Florida, 2004.
- I. Oller, S. Malato, J.A. Sánchez-Pérez, Combination of
advanced oxidation processes and biological treatments for
wastewater decontamination – a review, Sci. Total Environ.,
409 (2011) 4141–4166.
- Y. Anjaneyulu, N. Sreedhara Chary, D. Samuel Suman Raj,
Decolourization of industrial effluents - available methods
and emerging technologies - a review, Rev. Environ. Sci. Bio/Technol., 4 (2005) 245–273.
- K. Chaudhari, V. Bhatt, A. Bhargava, S. Seshadri, Combinational
system for the treatment of textile wastewater: a future
perspective, Asian J. Water Environ. Pollut., 8 (2011) 127–136.
- C.R. Holkar, A.J. Jadhav, D.V. Pinjari, N.M. Mahamuni,
A.B. Pandit, A critical review on textile wastewater treatments:
possible approaches, J. Environ. Manage., 182 (2016)
351–366.
- T. Robinson, G. McMullan, R. Marchant, P. Nigam,
Remediation of dyes in textile effluent: a critical review on
current treatment technologies with a proposed alternative,
Bioresour. Technol., 77 (2001) 247–255.
- S. Ledakowicz, K. Paździor, Recent achievements in dyes
removal focused on advanced oxidation processes integrated
with biological methods, Molecules (Basel, Switzerland),
26 (2021), doi: 10.3390/molecules26040870.
- L. Bilińska, M. Gmurek, Novel trends in AOPs for textile
wastewater treatment. Enhanced dye by-products removal
by catalytic and synergistic actions, Water Resour. Ind.,
26 (2021), doi: 10.1016/j.wri.2021.100160.
- J.C. Cardoso, G.G. Bessegato, M.V. Boldrin Zanoni, Efficiency
comparison of ozonation, photolysis, photocatalysis and
photoelectrocatalysis methods in real textile wastewater
decolorization, Water Res., 98 (2016) 39–46.
- C.A. Somensi, E.L. Simionatto, S.L. Bertoli, A. Wisniewski,
C.M. Radetski, Use of ozone in a pilot-scale plant for textile
wastewater pre-treatment: physico-chemical efficiency,
degradation by-products identification and environmental
toxicity of treated wastewater, J. Hazard. Mater., 175 (2010)
235–240.
- J. Ma, Y. Chen, J. Nie, L. Ma, Y. Huang, L. Li, Y. Liu, Z. Guo,
Pilot-scale study on catalytic ozonation of bio-treated dyeing
and finishing wastewater using recycled waste iron
shavings as a catalyst, Sci. Rep., 8 (2018) 1–11.
- A. Baban, A. Yediler, D. Lienert, N. Kemerdere, A. Kettrup,
Ozonation of high strength segregated effluents from a
woollen textile dyeing and finishing plant, Dyes Pigm.,
58 (2003) 93–98.
- K. Paździor, J. Wrebiak, A. Klepacz-Smółka, M. Gmurek,
L. Bilińska, L. Kos, J. Sójka-Ledakowicz, S. Ledakowicz,
Influence of ozonation and biodegradation on toxicity of
industrial textile wastewater, J. Environ. Manage., 195 (2017)
166–173.
- I.A. Shaikh, F. Ahmed, A.R. Sahito, A.A. Pathan, In-situ
decolorization of residual dye effluent in textile jet dyeing
machine by ozone, Pak. J. Anal. Environ. Chem., 15 (2014)
72–76.
- J. Wang, H. Liu, Y. Gao, Q. Yue, B. Gao, B. Liu, K. Guo,
X. Xu, Pilot-scale advanced treatment of actual high-salt textile
wastewater by a UV/O3 pressurization process: evaluation
of removal kinetics and reverse osmosis desalination
process, Sci. Total Environ., 857 (2023) 159725, doi: 10.1016/J.SCITOTENV.2022.159725.
- International Organization for Standardization (ISO), ISO
11348-3:2007, Water Quality, Determination of the Inhibitory
Effect of Water Samples on the Light Emission of Vibrio
fischeri (Luminescent Bacteria Test) – Part 3: Method Using
Freeze-Dried Bacteria, 2007.
- G. Persoone, B. Marsalek, I. Blinova, A. Törökne, D. Zarina,
L. Manusadzianas, G. Nalecz-Jawecki, L. Tofan, N. Stepanova,
L. Tothova, B. Kolar, A practical and user-friendly toxicity
classification system with microbiotests for natural waters
and wastewaters, Environ. Toxicol., 18 (2003) 395–402.