References
- E.S.B. Ferreira, A.N. Hulme, H. McNab, A. Quye, The natural
constituents of historical textile dyes, Chem. Soc. Rev., 33 (2004)
329–336.
- Mordor Intelligence Company, Textile Industry – Growth,
Trends, COVID-19 Impact, and Forecasts (2021–2026),
2021. Available at: https://www.mordorintelligence.com/
industry-reports/global-textileindustry---growth-trends-andforecast-
2019–2024, India (Accessed December 14, 2021).
- S.C. Bhatia, Pollution Control in Textile Industry, S. Devraj, Ed.,
Woodhead Publishing, 2017, India.
- T. Setiadi, Y. Andriani, M. Erlania, Treatment of Textile Wastewater
by a Combination of Anaerobic and Aerobic Processes:
A Denim Processing Plant Case, 6th World Congress of Chemical
Engineering, Melbourne, Australia, September 2001.
- H.-R. Kariminiaae-Hamedaani, A. Sakurai, M. Sakakibara,
Decolorization of synthetic dyes by a new manganese
peroxidase-producing white rot fungus, Dyes Pigm., 72 (2007)
157–162.
- A. Gürses, M. Açıkyıldız, K. Güneş, M. Sadi Gürses,
Classification of Dye and Pigments, in: Dyes and Pigments, 1st
ed., Springer, Cham, 2016, pp. 31–45. Available at: https://link.
springer.com/book/10.1007/978-3-319-33892-7#about-this-book
- S. Benkhaya, S. M’rabet, A. El Harfi, A review on
classifications, recent synthesis and applications of textile
dyes, Inorg. Chem. Commun., 115 (2020) 107891, doi: 10.1016/J.INOCHE.2020.107891.
- N.N. Mahapatra, Textile Dyes and Dyeing, CRC Press, New
Delhi, 2016.
- S. Shuang, X. Xing, X. Lejin, H. Zhiqiao, Y. Haiping, C. Jianmeng,
Y. Bing, Mineralization of CI Reactive Yellow 145 in aqueous
solution by ultraviolet-enhanced ozonation, Ind. Eng. Chem.
Res., 47 (2008) 1386–1391.
- N. Pınar Tanatti, Ş. Türkyilmaz, F. Boysan, İ. Ayhan Şengil,
Treatability of textile industry polyester cloth dyeing wastewater
by adsorption and photocatalytic method using nTiO2, Desal.
Water Treat., 201 (2020) 452–461.
- A. El Nemr, O. Abdelwahab, A. El-Sikaily, A. Khaled, Removal
of Direct Blue-86 from aqueous solution by new activated
carbon developed from orange peel, J. Hazard. Mater.,
161 (2009) 102–110.
- N.A. Kalkan, S. Aksoy, E.A. Aksoy, N. Hasirci, Adsorption
of Reactive Yellow 145 onto chitosan coated magnetite
nanoparticles, J. Appl. Polym. Sci., 124 (2012) 576–584.
- L. Bulgariu, L.B. Escudero, O.S. Bello, M. Iqbal, J. Nisar,
K.A. Adegoke, F. Alakhras, M. Kornaros, I. Anastopoulos, The
utilization of leaf-based adsorbents for dyes removal: a review,
J. Mol. Liq., 276 (2019) 728–747.
- B. Cojocariu, A. Mihaela Mocanu, G. Nacu, L. Bulgariu, Possible
utilization of PET waste as adsorbent for Orange G dye removal
from aqueous media, Desal. Water Treat., 104 (2018) 338–345.
- B. Shi, G. Li, D. Wang, C. Feng, H. Tang, Removal of direct
dyes by coagulation: the performance of preformed polymeric
aluminum species, J. Hazard. Mater., 143 (2007) 567–574.
- N.N. Patil, S.R. Shukla, Degradation of Reactive Yellow 145
dye by persulfate using microwave and conventional heating,
J. Water Process Eng., 7 (2015) 314–327.
- C.S. Keskin, A. Özdemir, I. Ayhan Şengil, Simultaneous
decolorization of binary mixture of Reactive Yellow and Acid
Violet from wastewaters by electrocoagulation, Water Sci.
Technol., 63 (2011) 1644–1650.
- British Standard Instution, BS EN ISO 7887: 2011 BSI Standards
Publication Water Quality—Examination and Determination
of Colour, BSI Standards Limited, 2012.
- D. Chen, Y. Cheng, N. Zhou, P. Chen, Y. Wang, K. Li, S. Huo,
P. Cheng, P. Peng, R. Zhang, L. Wang, H. Liu, Y. Liu,
R. Ruan,
Photocatalytic degradation of organic pollutants using TiO2-based photocatalysts: a review, J. Cleaner Prod., 268 (2020)
121725, doi: 10.1016/j.jclepro.2020.121725.
- M. Saquib, M. Muneer, Titanium dioxide mediated photocatalyzed
degradation of a textile dye derivative, acid orange 8,
in aqueous suspensions, Desalination, 155 (2003) 255–263.
- I.H. Cho, K.D. Zoh, Photocatalytic degradation of azo dye
(Reactive Red 120) in TiO2/UV system: optimization and
modeling using a response surface methodology (RSM) based
on the central composite design, Dyes Pigm., 75 (2007) 533–543.
- A.E. Amoli, M. Masoumi, M. Sharifzadeh, F. Babaei,
G. Firouzzade Pasha, Synthesis of TiO2-Fe2O3 nanocomposite
for the photocatalytic degradation of Direct Blue 199 and Basic
Yellow 28 dyes under visible light irradiation, J. Dispersion Sci.
Technol., (2021) 1–9, doi: 10.1080/01932691.2021.1957924.
- N. Areerachakul, S. Sakulkhaemaruethai, M.A.H. Johir,
J. Kandasamy, S. Vigneswaran, Photocatalytic degradation of
organic pollutants from wastewater using aluminium doped
titanium dioxide, J. Water Process Eng., 27 (2019) 177–184.
- R. Dhawle, Z. Frontistis, D. Mantzavinos, P. Lianos, Production
of hydrogen peroxide with a photocatalytic fuel cell and its
application to UV/H2O2 degradation of dyes, Chem. Eng. J.
Adv., 6 (2021) 100109, doi:10.1016/j.ceja.2021.100109.
- F. Zhang, A. Yediler, X. Liang, A. Kettrup, Effects of dye
additives on the ozonation process and oxidation by-products:
a comparative study using hydrolyzed C.I. Reactive Red 120,
Dyes Pigm., 60 (2004) 1–7.
- E.S. Elmolla, M. Chaudhuri, Photocatalytic degradation of
amoxicillin, ampicillin and cloxacillin antibiotics in aqueous
solution using UV/TiO2 and UV/H2O2/TiO2 photocatalysis,
Desalination, 252 (2010) 46–52.
- V. Vatanpour, M. Hazrati, M. Sheydaei, A. Dehqan, Investigation
of using UV/H2O2 pre-treatment process on filterability and
fouling reduction of PVDF/TiO2 nanocomposite ultrafiltration
membrane, Chem. Eng. Process. Process Intensif., 170 (2022)
108677, doi: 10.1016/j.cep.2021.108677.
- V.A. Sakkas, P. Calza, M.A. Islam, C. Medana, C. Baiocchi,
K. Panagiotou, T. Albanis, TiO2/H2O2 mediated photocatalytic
transformation of UV filter 4-methylbenzylidene camphor
(4-MBC) in aqueous phase: statistical optimization and
photoproduct analysis, Appl. Catal., B, 90 (2009) 526–534.
- U.G. Akpan, B.H. Hameed, Parameters affecting the
photocatalytic degradation of dyes using TiO2-based
photocatalysts: a review, J. Hazard. Mater., 170 (2009) 520–529.
- J. Chang, Q. Zhang, Y. Liu, Y. Shi, Z. Qin, Preparation of Fe3O4/TiO2 magnetic photocatalyst for photocatalytic degradation of
phenol, J. Mater. Sci.: Mater. Electron., 29 (2018) 8258–8266.
- M. Muruganandham, M. Swaminathan, Photocatalytic
decolourisation and degradation of Reactive Orange 4 by
TiO2-UV process, Dyes Pigm., 68 (2006) 133–142.
- A. Riga, K. Soutsas, K. Ntampegliotis, V. Karayannis,
G. Papapolymerou, Effect of system parameters and of inorganic
salts on the decolorization and degradation of Procion H-exl
dyes. Comparison of H2O2/UV, Fenton, UV/Fenton, TiO2/UV
and TiO2/UV/H2O2 processes, Desalination, 211 (2007) 72–86.
- C. Tang, V. Chen, The photocatalytic degradation of Reactive
Black 5 using TiO2/UV in an annular photoreactor, Water Res.,
38 (2004) 2775–2781.
- A.T. Toor, A. Verma, C.K. Jotshi, P.K. Bajpai, V. Singh,
Photocatalytic degradation of Direct Yellow 12 dye using UV/TiO2 in a shallow pond slurry reactor, Dyes Pigm., 68 (2006)
53–60.
- M. Ahmad, M.T. Qureshi, W. Rehman, N.H. Alotaibi,
A. Gul, R.S. Abdel Hameed, M. Al Elaimi, M.F.H. Abd El-kader,
M. Nawaz, R. Ullah, Enhanced photocatalytic degradation
of RhB dye from aqueous solution by biogenic catalyst Ag@
ZnO, J. Alloys Compd., 895 (2021) 162636, doi: 10.1016/j.
jallcom.2021.162636.
- W. Qi, Y. Yang, J. Du, J. Yang, L. Guo, L. Zhao, Highly
photocatalytic electrospun Zr/Ag Co-doped titanium dioxide
nanofibers for degradation of dye, J. Colloid Interface Sci.,
603 (2021) 594–603.
- R. Ullah, C. Liu, H. Panezai, A. Gul, J. Sun, X. Wu, Controlled
crystal phase and particle size of loaded-TiO2 using clinoptilolite
as support via the hydrothermal method for degradation
of crystal violet dye in aqueous solution, Arabian J. Chem.,
13 (2020) 4092–4101.
- A.P. Naik, H. Mittal, V.S. Wadi, L. Sane, A. Raj, S.M. Alhassan,
A. Al Alili, S.V. Bhosale, P.P. Morajkar, Super porous TiO2
photocatalyst: tailoring the agglomerate porosity into robust
structural mesoporosity with enhanced surface area for efficient
remediation of azo dye polluted wastewater, J. Environ.
Manage., 258 (2020) 110029, doi: 10.1016/j.jenvman.2019.110029.
- T. Zhang, T. Oyama, A. Aoshima, H. Hidaka, J. Zhao,
N. Serpone, Photooxidative N-demethylation of methylene
blue in aqueous TiO2 dispersions under UV irradiation,
J. Photochem. Photobiol., A, 140 (2001) 163–172.
- M. Muruganandham, M. Swaminathan, Photocatalytic
decolourisation and degradation of Reactive Orange 4 by
TiO2-UV process, Dyes Pigm., 68 (2006) 133–142.
- E.M. Saggioro, A.S. Oliveira, T. Pavesi, C.G. Maia, L.F.V. Ferreira,
J.C. Moreira, Use of titanium dioxide photocatalysis on the
remediation of model textile wastewaters containing azo dyes,
Molecules, 16 (2011) 10370–10386.
- R. Arshad, T.H. Bokhari, T. Javed, I.A. Bhatti, S. Rasheed,
M. Iqbal, A. Nazir, S. Naz, M.I. Khan, M.K.K. Khosa,
M. Iqbal,
M. Zia-Ur-Rehman, Degradation product distribution of
Reactive Red-147 dye treated
by UV/H2O2/TiO2 advanced
oxidation process, J. Mater. Res. Technol., 9 (2020) 3168–3178.
- M.A. Hassaan, A. El Nemr, F.F. Madkour, Testing the advanced
oxidation processes on the degradation of Direct Blue 86 dye in
wastewater, Egypt. J. Aquat. Res., 43 (2017) 11–19.
- L.C. Liu, Y.J. Zhang, H. Chen, P.Y. He, Z.S. Hu, Potential of costeffective
phosphoric acid-based geopolymer as photocatalyst
for dye wastewater degradation, Integr. Ferroelectr., An Int. J.,
218 (2021) 208–214.
- S. Taghavi Fardood, A. Ramazani, S. Moradi, P. Azimzadeh
Asiabi, Green synthesis of zinc oxide nanoparticles using arabic
gum and photocatalytic degradation of Direct Blue 129 dye
under visible light, J. Mater. Sci.: Mater. Electron., 28 (2017)
13596–13601.
- M. Muruganandham, M. Swaminathan, TiO2-UV photocatalytic
oxidation of Reactive Yellow 14: effect of operational parameters,
J. Hazard. Mater., 135 (2006) 78–86.
- M. Muruganandham, M. Swaminathan, Advanced oxidative
decolourisation of Reactive Yellow 14 azo dye by UV/TiO2, UV/H2O2, UV/H2O2/Fe2+ processes – a comparative study, Sep. Purif.
Technol., 48 (2006) 297–303.
- A. Sridevi, B.R. Ramji, G.K.D. Prasanna Venkatesan,
V. Sugumaran, P. Selvakumar, A facile synthesis
of TiO2/BiOCl and TiO2/BiOCl/La2O3 heterostructure photocatalyst for
enhanced charge separation efficiency with improved UV-light
catalytic activity towards Rhodamine B and Reactive Yellow
86, Inorg. Chem. Commun., 130 (2021) 108715, doi: 10.1016/j.
inoche.2021.108715.
- E.C. Ilinoiu, R. Pode, F. Manea, L.A. Colar, A. Jakab, C. Orha,
C. Ratiu, C. Lazau, P. Sfarloaga, Photocatalytic activity of
a nitrogen-doped TiO2 modified zeolite in the degradation
of Reactive Yellow 125 azo dye, J. Taiwan Inst. Chem. Eng.,
44 (2013) 270–278.
- A. Akshaya, P. Chinnaiyan, D. Unni, G. Keerthana, Use of TiO2
and rice husk ash to study the removal of Reactive Yellow
Dye as contaminant in water, Mater. Today:. Proc., 5 (2018)
24268–24276.
- N. Bougdour, A. Sennaoui, I. Bakas, A. Assabbane, Experimental
evaluation of Reactive Yellow 17 degradation using UV light
and iron ions activated peroxydisulfate: efficiency and kinetic
model, Sci. Technol. Mater., 30 (2018) 157–165.
- G.E. do Nascimento, D.C. Napoleão, P.K. de Aguiar Silva,
R.M. da Rocha Santana, A.M.R. Bastos, L.E.M.C. Zaidan,
M.C. de Moura, L.C.B.B. Coelho, M.M.M.B. Duarte, Photoassisted
degradation, toxicological assessment, and modeling
using artificial neural networks of Reactive Gray BF-2R dye,
Water, Air, Soil Pollut., 229 (2018) 1–15.
- S.¸ Gül, Ö. Özcan-Yıldırım, Degradation of Reactive Red 194 and
Reactive Yellow 145 azo dyes by O3 and
H2O2/UV-C processes,
Chem. Eng. J., 155 (2009) 684–690.
- M. Neamtu, I. Siminiceanu, A. Yediler, A. Kettrup, Kinetics
of decolorization and mineralization of reactive azo dyes in
aqueous solution by the UV/H2O2 oxidation, Dyes Pigm.,
53 (2002) 93–99.
- U. Bali, E. Çatalkaya, F. Şengül, Photodegradation of Reactive
Black 5, Direct Red 28 and Direct Yellow 12 using UV, UV/H2O2
and UV/H2O2/Fe2+: a comparative study, J. Hazard. Mater.,
114 (2004) 159–166.
- S. Kodavatiganti, A.P. Bhat, P.R. Gogate, Intensified degradation
of Acid Violet 7 dye using ultrasound combined with hydrogen
peroxide, Fenton, and persulfate, Sep. Purif. Technol.,
279 (2021) 119673, doi:10.1016/j.seppur.2021.119673.
- N. Mohan, N. Balasubramanian, In-situ electrocatalytic
oxidation of Acid Violet 12 dye effluent, J. Hazard. Mater.,
136 (2006) 239–243.
- B. Krishnakumar, M. Swaminathan, Influence of operational
parameters on photocatalytic degradation of a genotoxic azo
dye Acid Violet 7 in aqueous ZnO suspensions, Spectrochim.
Acta, Part A, 81 (2011) 739–744.
- I. Muthuvel, M. Swaminathan, Photoassisted Fenton
mineralisation of Acid Violet 7 by heterogeneous Fe(III)–Al2O3
catalyst, Catal. Commun., 8 (2007) 981–986.