References
- I. Arslan-Alaton, A review of the effects of dye-assisting chemicals
on advanced oxidation of reactive dyes in wastewater,
Color. Technol., 119 (2003) 345–353.
- N.S.E. Ahmed, The use of sodium edate in the dyeing of
cotton with reactive dyes, Dyes Pigm., 65 (2005) 221–225.
- A. Khatri, A review on developments in dyeing cotton fabrics
with reactive dyes for reducing effluent pollution, J. Cleaner
Prod., 87 (2015) 50–57.
- K. Srikulkit, P. Santifuengkul, Salt-free dyeing of cotton
cellulose with a model cationic reactive dye, Color. Technol.,
116 (2000) 398–402.
- W. Sun, K. Yang, Discussion on printing and dyeing wastewater
treatment methods, IOP Conf. Ser.: Earth Environ. Sci.,
514 (2020) 052030, doi: 10.1088/1755-1315/514/5/052030.
- A. Babuponnusami, K. Muthukumar, A review on Fenton
and improvements to the Fenton process for wastewater
treatment, J. Environ. Chem. Eng., 2 (2014) 557–572.
- B. Sun, H. Li, X. Li, X. Liu, C. Zhang, H. Xu, X.S. Zhao,
Degradation of organic dyes over Fenton-like Cu2O–Cu/C
catalyst, Ind. Eng. Chem. Res., 57 (2018) 14011–14021.
- M. Muruganandham, R.P.S. Suri, SH. Jafari, M. Sillanpää,
G.-J. Lee, J.J. Wu, M. Swaminathan, Recent developments in
homogeneous advanced oxidation processes for water and
wastewater treatment, Int. J. Photoenergy, 2014 (2014) 164–167.
- T. Zhou, X. Lu, J. Wang, F.S. Wong, Y.Z. Li, Rapid decolorization
and mineralization of simulated textile wastewater in a
heterogeneous Fenton like system with/without external
energy, J. Hazard. Mater., 165 (2009) 193–199.
- C.S.D. Rodrigues, S.A.C. Carabineiro, F.J. Maldonado-Hódar,
L.M. Madeira, Wet peroxide oxidation of dye-containing
wastewaters using nanosized au supported on Al2O3, Catal.
Today, 280 (2017) 165–175.
- L.P. Wang, Y.J. Mao, Y.C. Guo, E.D. Du, Research on the
treatment of dyeing wastewater by heterogeneous catalytic
ozonation process, Adv. Mater. Res., 367 (2011) 3793–3796.
- L.S. Silva, M.M.M. Gonçalves, L.R. Raddi De Araujo, Combined
photocatalytic and biological process for textile wastewater
treatments, Water Environ. Res., 91 (2019) 1490–1497.
- E. Adar, Removal of Acid Yellow 17 from textile wastewater
by adsorption and heterogeneous persulfate oxidation,
Int. J. Environ. Sci. Technol., 18 (2021) 483–498.
- B. Samir, S. Bakhta, N. Bouazizi, Z. Sadaoui, O. Allalou, F. Le
Derf, J. Vieillard, TBO degradation by heterogeneous Fentonlike
reaction using Fe supported over activated carbon,
Catalysts, 11 (2021) 1456, doi: 10.3390/catal11121456.
- S. Hussain, E. Aneggi, S. Maschio, M. Contin, D. Goi, Steel scale
waste as a heterogeneous Fenton-like catalyst for the treatment
of landfill leachate, Environ. Sci. Pollut. Res. Int., 60 (2021)
11715–11724.
- A.S.Y. Liew, S.Y. Nguang, L.J. Minggu, N. Tahir, P.Y. Moh,
Graphene oxide incorporated amino‐functionalized iron
terephthalate composite as a heterogeneous Fenton‐like
catalyst, J. Chin. Chem. Soc., 68 (2021) 1887–1896.
- N.K. Daud, B.H. Hameed, Acid Red 1 dye decolorization by
heterogeneous Fenton-like reaction using Fe/kaolin catalyst,
Desalination, 269 (2011) 291–293.
- C. Guo, X. Qin, R. Guo, Y. Lv, M. Li, Z. Wang, T. Li, Optimization
of heterogeneous Fenton-like process with
Cu-Fe@CTS
as catalyst for degradation of organic matter in leachate
concentrate and degradation mechanism research, Waste
Manage., 134 (2021) 220–230.
- Q. Zhao, C. Zhang, X. Tong, Y. Zou, Y. Li, F. Wei, composite
as magnetic heterogeneous Fenton-like catalyst towards highefficiency
degradation of methyl orange, Water Sci. Technol.,
84 (2021) 159–171.
- H. Xu, B. Yang, Y. Liu, F. Li, C. Shen, C. Ma, Q. Tian, X. Song,
W. Sand, Recent advances in anaerobic biological processes
for textile printing and dyeing wastewater treatment: a
mini-review, World J. Microbiol. Biotechnol., 34 (2018) 165,
doi: 10.1007/s11274-018-2548-y.
- M.M. El-Fass, N.A. Badawy, A.A. El-Bayaa, The influence
of simple electrolyte on the behaviour of some acid dyes in
aqueous media, Spectrochim. Acta, Part A, 16 (1995) 458–461.
- M. Muthukumar, Studies on the effect of inorganic salts on
decolouration of acid dye effluents by ozonation, Dyes Pigm.,
62 (2004) 221–228.
- S.Y. Yang, Y.X. Chen, L.P. Lou, W.U. Xiao-Na, Involvement
of chloride anion in photocatalytic process, J. Environ. Sci.,
17 (2005) 761–765.
- R. Yuan, S.N. Ramjaun, Z. Wang, J. Liu, Photocatalytic
degradation and chlorination of azo dye in saline wastewater:
kinetics and AOX formation, Chem. Eng. J., 192 (2012) 171–178.
- J. Wang, X.Y. Wang, GPCC catalyzed hydrogen peroxide for
decolorization of C.I. Reactive Red 24 from simulated dyeing
wastewater, Water Sci. Technol., 82 (2020) 2381–2388.
- X. Wang, J. Gao, Absorption spectra of gelatin copper complexes
and copper(II) sulfate and their impact on cotton peroxide
bleaching, J. Nat. Fibers, 16 (2019) 307–318.
- X. Wang, J. Tang, An evaluation of the effectiveness of
applying a gelatin–copper complex in the low‐temperature
bleaching of cotton with hydrogen peroxide, Color. Technol.,
133 (2017) 300–304.
- X. Wang, C. Lu, C. Chen, Effect of chicken-feather proteinbased
flame retardant on flame retarding performance of
cotton fabric, J. Appl. Polym. Sci., 131 (2014) 40584, doi: 10.1002/app.40584.
- M. Černík, V.V. Thekkae Padil, Green synthesis of copper oxide
nanoparticles using gum karaya as a biotemplate and their
antibacterial application, Int. J. Nanomed., 8 (2013) 889–898.
- Y. Amelkovich, O. Nazarenko, A. Sechin, P. Visakh, Characterization
of copper nanopowders after natural aging,
IOP Conf. Ser.: Mater. Sci. Eng., 81 (2015) 1–6.
- W. Chen, X. Feng, D. Zhang, F. Lu, H. Wang, J. Tan, Q. Xu, Y. Liu,
Z. Cao, X. Su, In situ synthesis of TiO2/NC on cotton fibers
with antibacterial properties and recyclable photocatalytic
degradation of dyes, RSC Adv., 12 (2022) 19974–19980.
- B. Bianco, I. De Michelis, F. Vegliò, Fenton treatment of complex
industrial wastewater: optimization of process conditions
by surface response method, J. Hazard. Mater., 186 (2011)
1733–1738.
- M. Munoz, G. Pliego, Z.M. de Pedro, J.A. Casas, J.J. Rodriguez,
Application of intensified Fenton oxidation to the treatment
of sawmill wastewater, Chemosphere, 109 (2014) 34–41.
- W. Yuan, C. Zhang, H. Wei, Q. Wang, K. Li, In-situ synthesis
and immobilization of a Cu(II)–pyridyl complex on silica
microspheres as a novel Fenton-like catalyst for RHB
degradation at near-neutral pH, RSC Adv., 7 (2017) 22825–22835.
- L. Zhou, Z. Xu, J. Zhang, Z. Zhang, Y. Tang, Degradation of
hydroxypropyl guar gum at wide pH range by a heterogeneous
Fenton-like process using bentonite-supported Cu(0),
Water Sci. Technol., 82 (2020) 1635–1642.
- D. Güçlü, N. Şirin, S. Şahinkaya, M.F. Sevimli, Advanced
treatment of coking wastewater by conventional and modified
Fenton processes, Environ. Prog. Sustainable Energy, 32 (2013)
176–180.
- Z. Hui, F. Hao, W. Yan, C. Lu, Decolorization of orange II by
heterogeneous Fenton process using goethite as catalyst,
Environ. Eng. Manage. J., 14 (2015) 737–744.
- D. Yuan, C. Zhang, S. Tang, Z. Wang, Q. Sun, X. Zhang,
T. Jiao, Q. Zhang, Ferric ion-ascorbic acid complex catalyzed
calcium peroxide for organic wastewater treatment: optimized
by response surface method, Chin. Chem. Lett., 32 (2021)
3387–3392.
- I. Gulkaya, G. Surucu, F. Dilek, Importance of H2O2/Fe2+
ratio in Fenton’s treatment of a carpet dyeing wastewater,
J. Hazard. Mater., 136 (2016) 763–769.
- C.-Y. Chang, Y.-H. Hsieh, K.-Y. Cheng, L.-L. Hsieh, T.-C. Cheng,
K.-S. Yao, Effect of pH on Fenton process using estimation of
hydroxyl radical with salicylic acid as trapping reagent, Water
Sci. Technol., 58 (2008) 873–879.
- J.F. Perez-Benito, Copper(II)-catalyzed decomposition
of hydrogen peroxide: catalyst activation by halide ions,
Monatsh. Chem., 132 (2001) 1477–1492.
- Z. Shan, M. Lu, L. Wang, B. MacDonald, J. MacInnis,
M. Mkandawire, X. Zhang, K.D. Oakes, Chloride accelerated
Fenton chemistry for the ultrasensitive and selective
colorimetric detection of copper, Chem. Commun., 52 (2016)
2087–2090.
- H. Xu, M. Prasad, Y. Liu, Schorl: a novel catalyst in mineralcatalyzed
Fenton-like system for dyeing wastewater
discoloration, J. Hazard. Mater., 165 (2009) 1186–1192.
- R. Cao, J. Guo, X. Hua, Y. Xu, Investigation on decolorization
kinetics and thermodynamics of lignocellulosic
xylooligosaccharides by highly selective adsorption with
Amberlite XAD-16N, Food Chem., 310 (2020) 125934,
doi: 10.1016/j.foodchem.2019.125934.
- Y.H. Mao, Y. Guan, Q.K. Zheng, X.N. Feng, X.X. Wang,
Adsorption thermodynamic and kinetic of disperse dye on
cotton fiber modified with tolylene diisocyanate derivative,
Cellulose, 18 (2011) 271–279.
- A.F. Bertea, R. Butnaru, R. Berariu, Reducing pollution
in reactive cotton dyeing through wastewater recycling,
Cellul. Chem. Technol., 47 (2017) 133–139.
- R. Yamaguchi, S. Kurosu, M. Suzuki, Y. Kawase, Hydroxyl
radical generation by zero-valent iron/Cu (ZVI/Cu) bimetallic
catalyst in wastewater treatment: heterogeneous Fenton/Fenton-like reactions by Fenton reagents formed in-situ under
oxic conditions, Chem. Eng. J., 334 (2018) 1537–1549.
- N.K. Pandey, H.B. Li, L. Chudal, B. Bui, E. Amador, M.B. Zhang,
H.M. Yu, M.L. Chen, X. Luo, W. Chen, Exploration of coppercysteamine
nanoparticles as an efficient heterogeneous Fentonlike
catalyst for wastewater treatment, Mater. Today Phys.,
22 (2022) 100587, doi: 10.1016/j.mtphys.2021.100587.
- L. Wang, Y. Miao, M. Lu, Z. Shan, S. Lu, J. Hou, Q. Yang, X. Liang,
T. Zhou, D. Curry, Chloride-accelerated Cu-Fenton chemistry
for biofilm removal, Chem. Commun., 53 (2017) 5862–5865.
- H. Lee, J. Seong, K.-M. Lee, H.-H. Kim, J. Choi, J.-H. Kim,
C. Lee, Chloride-enhanced oxidation of organic contaminants
by Cu(II)-catalyzed Fenton-like reaction at neutral pH,
J. Hazard. Mater., 344 (2018) 1174–1180.