References
- 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.
- A.K. Jain, V.K. Gupta, A. Bhatnagar, Suhas, A comparative
study of adsorbents prepared from industrial wastes for
removal of dyes, Sep. Sci. Technol., 38 (2003) 463–481.
- P.C. Vandevivere, R. Bianchi, W. Verstraete, Review: treatment
and reuse of wastewater from the textile wet‐processing
industry: review of emerging technologies, J. Chem. Technol.
Biotechnol., 72 (1998) 289–302.
- M.M. Naim, Y.M. El Abd, Removal and recovery of dyestuffs
from dyeing wastewaters, Sep. Purif. Rev., 31 (2002) 171–228.
- R. Kant, Textile dyeing industry an environmental hazard, Nat.
Sci., 4 (2012) 22–26.
- N. Mathur, P. Bhatnagar, P. Bakre, Assessing mutagenicity of
textile dyes from Pali (Rajasthan) using Ames bioassay, Appl.
Ecol. Environ. Res., 4 (2006) 111–118.
- K. Mortelmans, E. Zeiger, The Ames Salmonella/microsome
mutagenicity assay, Mutat. Res. Mol. Mech. Mutagen.,
455 (2000) 29–60.
- S.W. Geis, K.L. Fleming, E.T. Korthals, G. Searle, L. Reynolds,
D.A. Karner, Modifications to the algal growth inhibition test
for use as a regulatory assay, Environ. Toxicol. Chem., 19 (2000)
36–41.
- K. Hunger, R. Hamprecht, P. Miederer, C. Heid, A. Engel,
K. Kunde, W. Mennicke, J. Griffiths, Dye Classes for Principal
Applications, K. Hunger, Ed., Industrial Dyes, Wiley-VCH Verlag
GmbH & Co. KGaA, Weinheim, Germany, 2002, pp. 113–338.
- R.M. Christie, Environmental Aspects of Textile Dyeing,
Elsevier, Woodhead Publishing Ltd., Cambridge, 2007.
- R. Li, B. Gao, K. Guo, Q. Yue, H. Zheng, Y. Wang, Effects of
papermaking sludge-based polymer on coagulation behavior in
the disperse and reactive dyes wastewater treatment, Bioresour.
Technol., 240 (2017) 59–67.
- A.Y. Zahrim, Z.D. Dexter, C.G. Joseph, N. Hilal, Effective
coagulation-flocculation treatment of highly polluted palm
oil mill biogas plant wastewater using dual coagulants:
decolourisation, kinetics and phytotoxicity studies, J. Water
Process Eng., 16 (2017) 258–269.
- A. Turcanu, T. Bechtold, Cathodic decolourisation of reactive
dyes in model effluents released from textile dyeing, J. Cleaner
Prod., 142 (2017) 1397–1405.
- S. Shekoohiyan, G. Moussavi, S. Mojab, A. Alahabadi,
Adsorption of the reactive azo dyes onto NH4Cl-induced
activated carbon, Environ. Health Eng. Manage., 3 (2016) 1–7.
- M.T. Amin, A.A. Alazba, M. Shafiq, Adsorptive removal
of reactive black 5 from wastewater using bentonite clay:
isotherms, kinetics and thermodynamics, Sustainability,
7 (2015) 15302–15318.
- J. Lin, W. Ye, H. Zeng, H. Yang, J. Shen, S. Darvishmanesh,
P. Luis, A. Sotto, B. Van der Bruggen, Fractionation of direct
dyes and salts in aqueous solution using loose nanofiltration
membranes, J. Membr. Sci., 477 (2015) 183–193.
- N. Askari, M. Farhadian, A. Razmjou, H. Hashtroodi,
Nanofiltration performance in the removal of dye from binary
mixtures containing anthraquinone dyes, Desal. Water Treat.,
57 (2016) 18194–18201.
- L. Škodič, S. Vajnhandl, J. Volmajer Valh, T. Željko, B. Vončina,
A. Lobnik, Comparative study of reactive dyes oxidation by
H2O2/UV, H2O2/UV/Fe2+ and H2O2/UV/Fe0 processes, Ozone Sci.
Eng., 39 (2017) 14–23.
- Z. Zhu, M. Zhang, F. Liu, C. Shuang, C. Zhu, Y. Zhang, A. Li,
Effect of polymeric matrix on the adsorption of reactive dye
by anion-exchange resins, J. Taiwan Inst. Chem. Eng., 62 (2016)
98–103.
- G.G. Lenzi, R.F. Evangelista, E.R. Duarte, L.M.S. Colpini,
A.C. Fornari, R. Menechini Neto, L.M.M. Jorge, O.A.A. Santos,
Photocatalytic degradation of textile reactive dye using
artificial neural network modeling approach, Desal. Water
Treat., 57 (2016) 14132–14144.
- C. Zaharia, D. Suteu, A. Muresan, R. Muresan, A. Popescu,
Textile wastewater treatment by homogenous oxidation
with hydrogen peroxide, Environ. Eng. Manage. J., 8 (2009)
1359–1369.
- K.K. Krishnani, X. Meng, C. Christodoulatos, V.M. Boddu,
Biosorption mechanism of nine different heavy metals
onto biomatrix from rice husk, J. Hazard. Mater., 153 (2008)
1222–1234.
- N. Atar, A. Olgun, S. Wang, S. Liu, Adsorption of anionic dyes
on boron industry waste in single and binary solutions using
batch and fixed-bed systems, J. Chem. Eng. Data, 56 (2011)
508–516.
- V.K. Garg, M. Amita, R. Kumar, R. Gupta, Basic dye (methylene
blue) removal from simulated wastewater by adsorption using
Indian Rosewood sawdust: a timber industry waste, Dyes
Pigm., 63 (2004) 243–250.
- A. Bhatnagar, A.K. Jain, A comparative adsorption study with
different industrial wastes as adsorbents for the removal of
cationic dyes from water, J. Colloid Interface Sci., 281 (2005)
49–55.
- M.A.M. Salleh, D.K. Mahmoud, W.A.W.A. Karim, A. Idris,
Cationic and anionic dye adsorption by agricultural solid
wastes: a comprehensive review, Desalination, 280 (2011) 1–13.
- S. Senthilkumaar, P. Kalaamani, K. Porkodi, P.R. Varadarajan,
C.V. Subburaam, Adsorption of dissolved reactive red dye
from aqueous phase onto activated carbon prepared from
agricultural waste, Bioresour. Technol., 97 (2006) 1618–1625.
- N.K. Amin, Removal of reactive dye from aqueous solutions
by adsorption onto activated carbons prepared from sugarcane
bagasse pith, Desalination, 223 (2008) 152–161.
- M.A. Tahir, H.N. Bhatti, M. Iqbal, Solar Red and Brittle Blue
direct dyes adsorption onto Eucalyptus angophoroides bark:
equilibrium, kinetics and thermodynamic studies, J. Environ.
Chem. Eng., 4 (2016) 2431–2439.
- M.T. Amin, A.A. Alazba, M. Shafiq, Nonspontaneous and
multilayer adsorption of malachite green dye by Acacia nilotica
waste with dominance of physisorption, Water Sci. Technol.,
76 (2017) 1805–1815.
- J.F. Osma, V. Saravia, J.L. Toca-Herrera, S.R. Couto, Sunflower
seed shells: a novel and effective low-cost adsorbent for the
removal of the diazo dye Reactive Black 5 from aqueous
solutions, J. Hazard. Mater., 147 (2007) 900–905.
- T.A. Khan, R. Rahman, E.A. Khan, Decolorization of bismarck
brown R and crystal violet in liquid phase using modified
pea peels: non-linear isotherm and kinetics modeling, Model.
Earth Syst. Environ., 2 (2016) 141.
- M.Ş. Tanyildizi, Modeling of adsorption isotherms and
kinetics of reactive dye from aqueous solution by peanut hull,
Chem. Eng. J., 168 (2011) 1234–1240.
- V.S. Munagapati, V. Yarramuthi, Y. Kim, K.M. Lee, D.-S. Kim,
Removal of anionic dyes (Reactive Black 5 and Congo Red) from
aqueous solutions using banana peel powder as an adsorbent,
Ecotoxicol. Environ. Saf., 148 (2018) 601–607.
- B. Heibati, S. Rodriguez-Couto, A. Amrane, M. Rafatullah,
A. Hawari, M.A. Al-Ghouti, Uptake of Reactive Black 5 by
pumice and walnut activated carbon: chemistry and adsorption
mechanisms, J. Ind. Eng. Chem., 20 (2014) 2939–2947.
- A. Khan, A. Rashid, R. Younas, Adsorption of reactive black-5
by pine needles biochar produced via catalytic and non-catalytic
pyrolysis, Arabian J. Sci. Eng., 40 (2015) 1269–1278.
- A.M. Kamil, F.H. Abdalrazak, A.F. Halbus, F.H. Hussein,
Adsorption of bismarck brown R dye onto multiwall carbon
nanotubes, J. Environ. Anal. Chem., 1 (2014) 104.
- A. Bhatnagar, A.K. Minocha, M. Sillanpää, Adsorptive removal
of cobalt from aqueous solution by utilizing lemon peel as
biosorbent, Biochem. Eng. J., 48 (2010) 181–186.
- Y.S. Ho, G. McKay, Pseudo-second order model for sorption
processes, Process Biochem., 34 (1999) 451–465.
- A. Hamzah, W.N.W.M. Arifin, K.S. Khoo, L.J. Lee, S.B. Sarmani,
Screening of biosorption bacteria tolerance towards copper and
cadmium from oil sludge pond, J. Radioanal. Nucl. Chem.,
281 (2009) 295–298.
- M.A. Hubbe, S. Azizian, S. Douven, Implications of apparent
pseudo-second-order adsorption kinetics onto cellulosic
materials: a review, BioResources, 14 (2019) 7582–7626.
- O. Duman, C. Özcan, T. Gürkan Polat, S. Tunç, Carbon
nanotube-based magnetic and non-magnetic adsorbents for
the high-efficiency removal of diquat dibromide herbicide
from water: OMWCNT, OMWCNT-Fe3O4 and OMWCNT-κ-
carrageenan-Fe3O4 nanocomposites, Environ. Pollut., 244 (2019)
723–732.
- O. Duman, E. Ayranci, Adsorptive removal of cationic
surfactants from aqueous solutions onto high-area activated
carbon cloth monitored by in situ UV spectroscopy, J. Hazard.
Mater., 174 (2010) 359–367.
- E. Ayranci, O. Duman, Structural effects on the interactions
of benzene and naphthalene sulfonates with activated carbon
cloth during adsorption from aqueous solutions, Chem. Eng. J.,
156 (2010) 70–76.
- A.R. Kul, H. Koyuncu, Adsorption of Pb(II) ions from aqueous
solution by native and activated bentonite: kinetic, equilibrium
and thermodynamic study, J. Hazard. Mater., 179 (2010)
332–339.
- S.K. Srivastava, R. Tyagi, N. Pant, Adsorption of heavy metal
ions on carbonaceous material developed from the waste
slurry generated in local fertilizer plants, Water Res., 23 (1989)
1161–1165.
- W.J. Weber, J.C. Morris, Kinetics of adsorption on carbon from
solution, J. Sanitary Eng. Div., 89 (1963) 31–60.
- E. Demirbas, M. Kobya, E. Senturk, T. Ozkan, Adsorption
kinetics for the removal of chromium(VI) from aqueous
solutions on the activated carbons prepared from agricultural
wastes, Water SA, 30 (2004) 533–539.
- I. Langmuir, The Adsorption of gases on plane surface of glass,
mica and platinum, J. Am. Chem. Soc., 40 (1918) 1361–1403.
- A. Günay, E. Arslankaya, İ. Tosun, Lead removal from aqueous
solution by natural and pretreated clinoptilolite: adsorption
equilibrium and kinetics, J. Hazard. Mater., 146 (2007) 362–371.
- H.N. Tran, S.-J. You, A. Hosseini-Bandegharaei, H.-P. Chao,
Mistakes and inconsistencies regarding adsorption of contaminants
from aqueous solutions: a critical review, Water Res.,
120 (2017) 88–116.
- S.O. Lesmana, N. Febriana, F.E. Soetaredjo, J. Sunarso, S. Ismadji,
Studies on potential applications of biomass for the separation
of heavy metals from water and wastewater, Biochem. Eng. J.,
44 (2009) 19–41.
- O. Duman, S. Tunç, B.K. Bozoğlan, T.G. Polat, Removal
of triphenylmethane and reactive azo dyes from aqueous
solution by magnetic carbon nanotube-κ-carrageenan-Fe3O4
nanocomposite, J. Alloys Compd., 687 (2016) 370–383.
- O. Duman, S. Tunç, T.G. Polat, B.K. Bozoğlan, Synthesis
of magnetic oxidized multiwalled carbon nanotube-κ-
carrageenan-Fe3O4 nanocomposite adsorbent and its application
in cationic Methylene Blue dye adsorption, Carbohydr. Polym.,
147 (2016) 79–88.
- O. Duman, S. Tunç, T.G. Polat, Determination of adsorptive
properties of expanded vermiculite for the removal of C I
Basic Red 9 from aqueous solution: kinetic, isotherm and
thermodynamic studies, Appl. Clay Sci., 109–110 (2015) 22–32.
- M.T. Amin, A.A. Alazba, M. Shafiq, Adsorption of copper (Cu2+)
from aqueous solution using date palm trunk fibre: isotherms
and kinetics, Desal. Water Treat., 57 (2016) 22454–22466.
- H.M.F. Freundlich, Over the adsorption in solution, J. Phys.
Chem., 57 (1906) 385–471.
- M.A.A. Shahmirzadi, S.S. Hosseini, N.R. Tan, Enhancing
removal and recovery of magnesium from aqueous solutions by
using modified zeolite and bentonite and process optimization,
Korean J. Chem. Eng., 33 (2016) 3529–3540.
- N. Ayawei, A.T. Ekubo, D. Wankasi, E.D. Dikio, Adsorption
of congo red by Ni/Al-CO3: equilibrium, thermodynamic and
kinetic studies, Orient. J. Chem., 31 (2015) 1307–1318.
- U. Israel, U.M. Eduok, Biosorption of zinc from aqueous
solution using coconut (Cocos nucifera L.) coirdust, Arch. Appl.
Sci. Res., 4 (2012) 809–819.