References
- I. Anastopoulos, G.Z. Kyzas, Agricultural peels for dye adsorption:
a review of recent literature, J. Mol. Liq., 200 (2014)
381–389.
- A. Bhatnagar, M. Sillanpää, A. Witek-Krowiak, Agricultural
waste peels as versatile biomass for water purification –
a review, Chem. Eng. J., 270 (2015) 244–271.
- A. Ayati, M.N. Shahrak, B. Tanhaei, M. Sillanpää, Emerging
adsorptive removal of azo dye by metal–organic frameworks,
Chemosphere, 160 (2016) 30–44.
- C. Santhosh, V. Velmurugan, G. Jacob, S.K. Jeong, A.N. Grace,
A. Bhatnagar, Role of nanomaterials in water treatment applications:
a review, Chem. Eng. J., 306 (2016) 1116–1137.
- H.M. Raghunath, Hydrology: Principles, Analysis, Design,
New Age International Publishers, India, 2006.
- Water Pollution, August, National Water Awareness Campaign,
Gaia Atlas of Planet Management, The Guardian, 2003.
- R. Sivashankar, A.B. Sathya, K. Vasantharaj, V. Sivasubramanian,
Magnetic composite an environmental super adsorbent for
dye sequestration – a review, Environ. Nanotechnol. Monit.
Manage., 1–2 (2014) 36–49.
- P.A. Carneiro, G.A. Umbuzeiro, D.P. Oliveira, M.V.B. Zanoni,
Assessment of water contamination caused by a mutagenic
textile effluent/dyehouse effluent bearing disperse dyes,
J. Hazard. Mater., 174 (2010) 694–699.
- S. Natarajan, H.C. Bajaj, R.J. Tayade, Recent advances based
on the synergetic effect of adsorption for removal of dyes
from waste water using photocatalytic process, J. Environ. Sci.,
65 (2018) 201–222.
- V.K. Gupta, Suhas, Application of low-cost adsorbents for dye
removal – a review, J. Environ. Manage., 90 (2009) 2313–2342.
- M. Rafatullah, O. Sulaiman, R. Hashim, A. Ahmad, Adsorption
of methylene blue on low-cost sorbents: a review, J. Hazard.
Mater., 177 (2010) 70–80.
- M. Ghaedi, S. Heidarpour, S.N. Kokhdan, Y.Z. SahFu, T. Viraraghavan,
Fungal decolorization of dye wastewaters: a review,
Bioresour. Technol., 79 (2001) 251–262.
- K.A.G. Gusmao, L.V.A. Gurgel, T.M.S. Melo, L.F. Gil, Adsorption
studies of methylene blue and gentian violet on sugarcane
bagasse modified with EDTA dianhydride (EDTAD) in aqueous
solutions: kinetic and equilibrium aspects, J. Environ. Manage.,
118 (2013) 135–143.
- L. Cottet, C.A.P. Almeida, N. Naidek, M.F.Viante, M.C. Lopes,
N.A. Debacher, Adsorption characteristics of montmorillonite
clay modified with iron oxide with respect to methylene blue
in aqueous media, Appl. Clay Sci., 95 (2014) 25–31.
- X. Liu, J. Luo, Y. Zhu, Y. Yang, S. Yang, Removal of methylene
blue from aqueous solutions by an adsorbent based on metalorganic
framework and polyoxometalate, J. Alloys Comp.,
648 (2015) 986–993.
- H. Aysan, S. Edebali, C. Ozdemir, M.C. Karakaya, N. Karakaya,
Use of chabazite, a naturally abundant zeolite, for
the investigation of the adsorption kinetics and mechanism
of methylene blue dye, Microporous. Mesoporous. Mater.,
235 (2016) 78–86.
- A. Mittal, J. Mittal, A. Malviya, D. Kaur, V.K. Gupta, Decoloration
treatment of a hazardous triarylmethane dye, Light Green SF
(Yellowish) by waste material adsorbents, J. Colloid Interface
Sci., 342 (2010) 518–527.
- A.K. Verma, R.R. Dash, P. Brunia, A review on chemical
coagulation/flocculation technologies for removal of colour
from textile wastewaters, J. Environ. Manage., 93 (2012)
154–168.
- M. Auta, B.H. Hameed, Acid modified local clay beads as
effective low-cost adsorbent for dynamic adsorption of methylene
blue, J. Ind. Eng. Chem., 19 (2013) 1153–1161.
- A.N. Kabra, R.V. Khandare, S.P. Govindwar, Development of a
bioreactor for remediation of textile effluent and dye mixture:
a plant–bacterial synergistic strategy, Water Res., 47 (2010)
1035–1048.
- M. Dastkhoon, M. Ghaedi, A. Asfaram, A. Goudarzi,
S.M. Langroodi, I. Tyagi, S. Agarwal, V.K. Gupta, Ultrasound
assisted adsorption of malachite green dye onto ZnS:Cu-NPAC:
equilibrium isotherms and kinetic studies - response surface
optimization, Sep. Purif. Technol., 156 (2015) 780–788.
- A. Elhalil, H. Tounsadi, R. Elmoubarki, F.Z. Mahjoubi,
M. Farnane, M. Sadiq, M. Abdennouri, S. Qourzal, N. Barka,
Factorial experimental design for the optimization of catalytic
degradation of malachite green dye in aqueous solution by
Fenton process, Water Res. Ind., 15 (2016) 41–48.
- D. Robati, M. Rajabi, O. Moradi, F. Najafi, I. Tyagi, S. Agarwal,
V.K. Gupta, Kinetics and thermodynamics of malachite green
dye adsorption from aqueous solutions on graphene oxide and
reduced graphene oxide, J. Mol. Liq., 214 (2016) 259–263.
- B. Amith, D. Sivanesan, K. Kannan, C. Tapan, Kinetics of
decolorization and biotransformation of Direct Black 38 by
C. hominis and P. Stutzeri’, Appl. Microbiol. Biotechnol., 74 (2007)
1145–1152.
- P. Monash, G. Pugazhenthi, Adsorption of crystal violet dye
from aqueoussolution using mesoporous materials synthesized
at room temperature, Adsorption, 15 (2009) 390–405.
- A.K. Samanta, P. Agarwal, Application of natural dyes on
textiles, Indian J. Fibre Tex. Res., 34 (2009) 384–399.
- Demirbas, Agricultural based activated carbons for the removal
of dyes from aqueous solutions: a review, J. Hazard. Mater.,
167 (2009) 1–9.
- Forgacs, T. Cserhati, G. Oros, Removal of synthetic dyes from
wastewaters: a review, Environ. Int., 30 (2004) 953–971.
- G. Mishra, M. Tripathy, A critical review of the treatment
for decolorization of textile effluent, Colourage, 40 (1993)
35–38.
- E. Eren, B. Afsin, Investigation of a basic dye adsorption from
aqueous solution onto raw and pre-treated sepiolite surfaces,
Dyes Pigm., 73 (2007) 162–167.
- O.D. Tyagi, M.S. Yadav, M. Yadav, A Textbook of Synthetic
Dyes, Vol. 67, Anmol Private Limited, India, 2002.
- E. Eren, Investigation of a basic dye removal from aqueous
solution onto chemically modified Unye bentonite, J. Hazard.
Mater., 166 (2009) 88–93.
- K. Hunger, Industrial Dyes, Chemistry, Properties, Applications,
Wiley-VCH. Weinheim, Germany, 2003.
- A. Tabak, E. Eren, B. Afsin, B. Caglar, Determination of adsorptive
properties of a Turkish Sepiolite for removal of Reactive
Blue 15 anionic dye from aqueous solutions, J. Hazard. Mater.,
16 (2009) 1087–1094.
- A.A. Attia, W.E. Rashwan, S.A. Khedr, Capacity of activated
carbon in the removal of acid dyes subsequent to its thermal
treatment, Dyes Pigm., 69 (2006) 128–136.
- I.M. Banat, P. Nigam, D. Singh, R. Marchant, Microbial decolorization
oftextile-dye containing effluents: a review, Bioresour.
Technol., 58 (1996) 217–227.
- V. Vadivelan, K.V. Kumar, Equilibrium, kinetics, mechanism,
and process design for the sorption of methylene blue onto rice
husk, J. Colloid Interface Sci., 286 (2005) 90–100.
- 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.
- M. Ghaedi, F.N. Azad, K. Dashtian, S. Hajati, A. Goudarzi,
M. Soylak, Central composite design and genetic algorithm
applied for the optimization of ultrasonic-assisted removal of
malachite green by ZnO Nanorod-loaded activated carbon,
Spectrochim. Acta. Part A, 167 (2016) 157–164.
- M. Ghasemi, S. Mashhadi, M. Asif, I. Tyagi, S. Agarwal, V.K. Gupta,
Microwave-assisted synthesis of tetraethylenepentamine functionalized
activated carbon with high adsorption capacity for
malachite green dye, J. Mol. Liq., 213 (2016) 317–325.
- M. Rajabi, B. Mirza, K. Mahanpoor, M. Mirjalili, F. Najafi,
O. Moradi, H. Sadegh, R. Shahryari-ghoshekandi, M. Asif,
I. Tyagi, S. Agarwal, V.K. Gupta, Adsorption of malachite green
from aqueous solution by carboxylate group functionalized
multi-walled carbon nanotubes: determination of equilibrium
and kinetics parameters, J. Ind. Eng. Chem., 34 (2016) 130–138.
- F. Zhang, X. Chen, F. Wu, Y. Ji, High adsorption capability
and selectivity of ZnO nanoparticles for dye removal, Colloids
Surf. A, 509 (2016) 474–483.
- Y. Li, Q. Du, T. Liu, X. Peng, J. Wang, J. Sun, Y. Wang, S. Wu,
Z. Wang, Y. Xia, L. Xia, Comparative study of Methylene Blue
dye adsorption onto activated carbon, graphene oxide, and
carbon nanotubes, Chem. Eng. Res. Des., 91 (2013) 361–368.
- U. Pal, A. Sandoval, S.I. U Madrid, G. Corro, V. Sharma,
P. Mohanty, Mixed titanium, silicon, and aluminum oxide
nanostructures
as novel adsorbent for removal of rhodamine
6G and methylene blue as cationic dyes from aqueous solution,
Chemosphere, 163 (2016) 142–152.
- H.D. Setiabudi, R. Jusoh, S.F.R.M. Suhaimi, S.F. Masrur,
Adsorption of methylene blue onto oil palm (Elaes guineensis)
leaves: process optimization, isotherm, kinetics and thermodynamic
studies, J. Taiwan. Inst. Chem. Eng., 63 (2016)
363–370.
- S. Ramachandani, M. Das, A. Joshi, S.K. Khanna, Effect of
oral and parental administration of metanil yellow on some
hepatic and intestinal biochemical parameters, J. Appl. Toxicol.,
17 (1997) 85–91.
- M. Das, S. Ramchandani, R.K. Upreti, S.K. Khanna, Metanil
Yellow: a biofunctional inducer of hepatic phase I and phase
II xenoblastic-metabolising enzymes, Food Chem. Toxicol.,
35 (1997) 835–838.
- S. Gupta, M. Sundarrajan, K.V.K. Rao, Tumour promotion
by metanil yellow and malachite green during rat hepatocarcinogenesis
is associated with dys-regulated expression of
cell cycle regulatory proteins, Teratog. Carcinog. Mutagen.,
1 (2003) 301–312.
- S.M. Sachdeva, K.V. Mani, S.K. Adval, V.P. Jalpota, K.C. Rasela,
D.S. Chadha, Acquired toxic methaemoglobinaemia, J. Assoc.
Physicians India, 40 (1992) 239–240.
- S.S. Chandro, T. Nagaraja, A food-poisoning outbreak with
chemical dye, an investigation report, Med. J. Armed Forces
India, 43 (1987) 291–300.
- B.M. Hausen, A case of allergic contact dermatitis due to metanil
yellow, Contact Dermatitis, 31 (1994) 117–118.
- H. Tiwari, Assessment of teratogenecity and embryo toxicity
of dye wastewater untreated sludge from sanganer on swiss
albino mice when administered during growth period of
gestation, J. Health Med. Inf., 3 (2012) 1–5.
- S. Sivamani, B.L. Grace, Removal of dyes from wastewater
using adsorption – a review, Int. J. Biosci. Technol., 2 (2009)
47–51.
- M.T. Yagub, T.K. Sen, S. Afroze, H.M. Ang, Dye and its removal
from aqueous solution by adsorption: a review, Adv. Colloid
Interface Sci., 209 (2014) 172–184.
- A.R. Warade, R.W. Gaikwad, R.S. Sapkal, V.S. Sapkal, Study of
removal techniques for dyes by adsorption: a review, Int. J. Adv.
Res. Innovat. Ideas Educ., 2 (2016) 3851–3868.
- V. Katheresan, J. Kansedo, S.Y. Lau, Efficiency of Various
Recent Wastewater Dye Removal Methods: A Review, Biochem.
Pharmacol., 6 (2018) 4676–4679.
- B.Y. Shi, G.H. Li, D.S. Wang, C.H. Feng, H.X. Tang, Removal
of direct dyes by coagulation: the performance of preformed
polymeric aluminum species, J. Hazard. Mater., 143 (2007)
567–574.
- Y. Zhou, Z. Liang, Y. Wang, Decolorization and COD removal
of secondary yeast wastewater effluents by coagulation using
aluminum sulphate, Desalination, 225 (2018) 301–311.
- N.A. Oladoja, Headway on natural polymeric coagulants in
water and wastewater treatment operations, J. Water Process.
Eng., 6 (2015) 174–192.
- A. Mishra, M. Bajpai, The flocculation performance of Tamarindus
mucilage in relation to removal of vat and direct dyes,
Bioresour. Technol., 97 (2006) 1055–1059.
- A. Mishra, M. Bajpai, S. Pandey, Removal of dyes by biodegradable
flocculants: a lab scale investigation, Sep. Sci. Technol.,
41 (2006) 583–593.
- Q.Y. Yue, B.Y. Gao, Y. Wang, H. Zhang, X. Sun, S.G. Wang,
R.R. Gu, Synthesis of polyamine flocculants and their potential
use in treating dye wastewater, J. Hazard. Mater., 152 (2008)
221–227.
- X. Huang, B. Gao, Q. Yue, Y. Zhang, S. Sun, Compound
bioflocculant used as a coagulation aid in synthetic dye wastewater
treatment: the effect of solution pH, Sep. Purif. Technol.,
154 (2015) 108–114.
- G. Vijayaraghavan, T. Sivakumar, A. Vimal Kumar, Application
of plant based coagulants for wastewater treatment, Int. J. Adv.
Eng. Res. Stud., 1 (2011) 88–92.
- Y. Wei, A. Ding, L. Dong, Y. Tang, F. Yu, X. Dong, Characterisation
and coagulation performance of an inorganic coagulant - polymagnesium-
silicate-chloride in treatment of simulated dyeing
wastewater, Colloids Surf. A, 470 (2015) 137–141.
- S. Jorfi, G. Barzegar, M. Ahmadi, R.D.C. Soltani, N.A.J. Haghighifard,
A. Takdastan, R. Saeedi, M. Abtahif, Enhanced
coagulation-photocatalytic treatment of Acid red 73 dye and
real textile wastewater using UVA/synthesized MgO nanoparticles,
J. Environ. Manage., 171 (2016) 111–118.
- H. Li, S. Liu, J. Zhao, N. Feng, Removal of reactive dyes from
wastewater assisted with kaolin clay by magnesium hydroxide
coagulation process, Colloids Surf. A, 494 (2016) 222–227.
- A. Ndabigengesere, K.S. Narasiah, Quality of water treated by
coagulation using Moringa oleifera seeds, Water Res., 32 (1998)
781–791.
- J.W. Lee, S.P. Choi, R. Thiruvenkatachari, W.G. Shim, H. Moon,
Evaluation of the performance of adsorption and coagulation
processes for the maximum removal of reactive dyes, Dyes
Pigm., 69 (2006) 196–203.
- F.I. Hai, K. Yamamoto, K. Fukushi, Hybrid treatment systems
for dye wastewater, Crit. Rev. Environ. Sci. Technol., 37 (2007)
315–377.
- C. Ruden, Acrylamide and cancer risk - expert risk assessments
and the public debat, J. Food Chem. Toxicol., 42 (2007)
335–349.
- N. Al-Bastaki, Removal of methyl orange dye and Na2SO4
salt from synthetic waste water using reverse osmosis, Chem.
Eng. Process. Process Intensif., 43 (2004) 1561–1567.
- G. Capar, L. Yilmaz, U. Yetis, Reclamation of acid dye bath
wastewater: effect of pH on nanofiltration performance,
J. Membr. Sci., 281 (2006) 560–569.
- M. Amini, M. Arami, N.M. Mahmoodi, A. Akbari, Dye removal
from colored textile wastewater using acrylic grafted nanomembrane,
Desalination, 267 (2011) 107–113.
- A.Y. Zahrim, N. Hilal, Treatment of highly concentrated dye
solution by coagulation/flocculation-sand filtration and nanofiltration,
Water Res. Ind., 3 (2013) 23–34.
- Y. Zheng, G. Yao, Q. Cheng, S. Yu, M. Liu, C. Gao, Positively
charged thin-film composite hollow fiber nanofiltration membrane
for the removal of cationic dyes through submerged
filtration, Desalination, 328 (2013) 42–50.
- G. Jie, Z. Kongyin, Z. Xinxin, C. Zhijiang, C. Min, C. Tian,
W. Junfu, Preparation and characterization of carboxyl multiwalled
carbon nanotubes/calcium alginate composite hydrogel
nano-filtration membrane, Mater. Lett., 157 (2015) 112–115.
- J. Guo, Q. Zhang, Z. Cai, K. Zhao, Preparation and dye filtration
property of electrospun polyhydroxybutyrate–calcium
alginate/carbon nanotubes composite nanofibrous filtration
membrane, Sep. Purif. Technol., 161 (2016) 69–79.
- N.P. Cheremisinoff, Handbook of Water and Wastewater
Treatment Technologies, Butterworth-Heinemann, Boston, 2002.
- S.A. Avlonitis, I. Poulios, D. Sotiriou, M. Pappas, K. Moutesidis,
Simulated cotton dye effluents treatment and reuse by nanofiltration,
Desalination, 221 (2008) 259–267.
- O. Marmagne, C. Coste, Color removal from textile plant
effluents, Am. Dyestuff. Rep., 85 (1996) 15–20.
- W. Chen, J. Mo, X. Du, Z. Zhang, W. Zhang, Biomimetic dynamic
membrane for aquatic dye removal, Water Res., 151 (2019)
243–251.
- W.J. Lau, A.F. Ismail, Polymeric nanofiltration membranes for
textile dye wastewater treatment: preparation, performance
evaluation, transport modelling, and fouling control: a review,
Desalination, 245 (2009) 321–348.
- C.G. Namboodri, W.S. Perkins, W.K. Walsh, Decolorizing dyes
with chlorine and ozone, Am. Dyest. Rep., 83 (1994) 17–22.
- T. Omura, Design of chlorine-fast reactive dyes: Part 4: degradation
of amino containing azo dyes by sodium-hypochlorite,
Dyes Pigm., 26 (1994) 33–50.
- C. Frijters, R. Vos, G. Scheffer, R. Mulder, Decolorizing and
detoxifying textile wastewater, containing both soluble and
insoluble dyes, in a full scale combined anaerobic/aerobic system,
Water Res., 40 (2006) 1249–1257.
- O.S.G.P. Soares, J.J.M. Orfao, D. Portela, A. Vieira, M.F.R. Pereira,
Ozonation of textile effluents and dye solutions under
continuous operation: influence of operating parameter, J. Hazard.
Mater., 137 (2006) 1664–1673.
- A.B. dos Santos, F.J. Cervantes, J.B. van Lier, Review paper on
current technologies for decolourisation of textile wastewaters:
perspectives for anaerobic biotechnology, Bioresour. Technol.,
98 (2007) 2369–2385.
- J. Wu, H. Doan, S. Upreti, Decolorization of aqueous textile
reactive dye by ozone, Chem. Eng. J., 142 (2008) 156–160.
- A.C. Gomes, L.R. Fernandes, R.M.S. Simoes, Oxidation rates of
two textile dyes by ozone: effect of pH and competitive kinetics,
Chem. Eng. J., 189–190 (2012) 175–181.
- J.B. Parsa, S.H. Negahdar, Treatment of wastewater containing
Acid Blue 92 dye by advanced ozone-based oxidation methods,
Sep. Purif. Technol., 98 (2012) 315–320.
- S. Sharma, J. Buddhdev, M. Patel, J.P. Ruparelia, Studies on
Degradation of Reactive Red 135 Dye in Wastewater using
Ozone, Procedia Eng., 51 (2013) 451–455.
- D. Ge, Z. Zeng, M. Arowo, H. Zou, J. Chen, L. Shao, Degradation
of methyl orange by ozone in the presence of ferrous and persulfate
ions in a rotating packed bed, Chemosphere, 146 (2016)
413–418.
- M. Sundrarajan, G. Vishnu, K. Joseph, Ozonation of lightshaded
exhausted reactive dye bath for reuse, Dyes Pigm.,
75 (2007) 273–278.
- M. Senthilkumar, M. Muthukumar, Studies on the possibility
of recycling reactive dye bath effluent after decolouration using
ozone, Dyes Pigm., 72 (2007) 251–255.
- E.H. Snider, J.J. Porter, Ozone treatment of dye waste, J. Water
Pollut. Control Fed., 46 (1974) 886–894.
- K.K. Panda, A.P. Mathews, Ozone oxidation kinetics of Reactive
Blue 19 anthraquinone dye in a tubular in situ ozone generator
and reactor: modeling and sensitivity analyses, Chem. Eng. J.,
255 (2014) 553–567.
- W.F.L.M. Hoeben, E.M. van Veldhuizen, G.M.W. Kroesen, Gas
phase corona discharge for oxidation of phenol in an aqueous
solution, J. Phys., 32 (1999) 133–137.
- W.T. Shin, S. Yiacoumi, C. Tsouris, S. Dai, A pulseless coronadischarge
process for the oxidation of organic compounds in
water, Ind. Eng. Chem. Res., 39 (2000) 4408–4414.
- N. Sano, T. Kawashima, J. Fujikawa, T. Fujimoto, T. Kitai,
T. Kanki, Decomposition of organic compounds in water by
direct contact of corona discharge: influence of discharge
conditions, Ind. Eng. Chem. Res., 41 (2002) 5906–5911.
- R. Hage, A. Lienke, Applications of transition-metal catalysts
to textile and wood-pulp bleaching, Angew. Chem. Int. Ed.,
23 (2005) 206–222.
- M. Morita, R. Ito, T. Kamidate, H. Watanabe, Kinetics of
peroxidase catalyzed decoloration of Orange II with hydrogen
peroxide, Tex. Res. J., 66 (1996) 470–473.
- S. Meric, D. Kaptan, C. Tunay, Removal of color and COD from
a mixture of four reactive azo dyes using Fenton oxidation
process, J. Environ. Sci. Health A, 38 (2003) 2241–2250.
- S. Wang, A Comparative study of Fenton and Fenton-like
reaction kinetics in decolourisation of wastewater, Dyes
Pigm., 76 (2008) 714–720.
- D.H. Khandelwal, R. Ameta, Use of photo-Fenton reagent in
the degradation of basic yellow 2 in aqueous medium, Res.
J. Recent. Sci., 2 (2013) 39–43.
- M.E. Haddad, A. Regti, M.R. Laamari, R. Mamouni, N. Saffaj,
Use of Fenton reagent as advanced oxidative process for
removing textile dyes from aqueous solutions, J. Mater.
Environ. Sci., 5 (2014) 667–674.
- N.A. Youssef, S.A. Shaban, F.A. Ibrahim, A.S. Mahmoud,
Degradation of methyl orange using Fenton catalytic reaction,
Egypt. J. Petrol., 5 (2016) 317–321.
- M.M. Cheng, W.H. Ma, J. Li, Y.P. Huang, J.C. Zhao, Visible light-assisted degradation of dye pollutants over Fe(III)-loaded
resin in the presence of H2O2 at neutral pH values, Environ.
Sci. Technol., 38 (2004) 1569–1575.
- R. Thiruvenkatachari, S. Vigneswaran, I.S. Moon, A review on
UV/TiO2 photocatalytic oxidation process, Korean J. Chem.
Eng., 25 (2008) 64–72.
- S.H. Lin, C.F. Peng, Treatment of textile wastewater by
electrochemical method, Water Res., 28 (1994) 277–282.
- V.K. Gupta, R. Jain, S. Varshney, Electrochemical removal
of the hazardous dye Reactofix Red 3 BFN from industrial
effluents, J. Colloid Interface Sci., 312 (2007) 292–296.
- S. Zodi, B. Merzouk, O. Potier, F. Lapicque, J.P. Leclerc, Direct
red 81 dye removal by a continuous flow electrocoagulation/
flotation reactor, Sep. Purif. Technol., 108 (2007) 215–222.
- B. Merzouk, B. Gourich, K. Madani, C.H. Vial, A. Sekki,
Removal of a disperse red dye from synthetic wastewater
by chemical coagulation and continuous electrocoagulation.
A comparative study, Desalination, 272 (2012) 246–253.
- E. Pajootan, M. Arami, N.M. Mahmood, Binary system dye
removal by electrocoagulation from synthetic and real colored
wastewaters, J. Taiwan. Inst. Chem. Eng., 43 (2012) 282–290.
- M.K. Mbacke, C. Kane, N.O. Diallo, C.M. Diop, F. Chauvet,
M. Comtat, T. Tzedakis, Electrocoagulation process applied
on pollutants treatment-experimental optimization and
fundamental investigation of the crystal violet dye removal,
J. Environ. Chem. Eng., 4 (2016) 4001–4011.
- X. Gao, W. Li, R. Mei, C. Zhu, B. Zhou, L. Ma, Q. Wei, Effect of
the B2H6/CH4/H2 ratios on the structure and electrochemical
properties of boron-doped diamond electrode in the electrochemical
oxidation process of azo dye, J. Electroanal. Chem.,
832 (2019) 247–253.
- D. Dogan, H. Turkdemir, Electrochemical oxidation of textile
dye indigo, J. Chem. Technol. Biotechnol., 80 (2005) 916–923.
- A.M. Faouzi, B. Nasr, G. Abdellatif, Electrochemical degradation
of anthraquinone dye Alizarin Red S by anodic oxidation
on boron-doped diamond, Dyes Pigm., 73 (2007) 86–89.
- F.H. Oliveira, M.E. Osugi, F.M.M. Paschoal, D, Profeti, P. Olivi,
M.V.B. Zanoni, Electrochemical oxidation of an acid dye by
active chlorine generated using Ti/Sn(1-x)Ir O-x(2) electrodes,
J. Appl. Electrochem., 37 (2007) 583–592.
- N. Remya, J.G. Lin, Current status of microwave application
in wastewater treatment - a review, Chem. Eng. J., 166 (2011)
797–813.
- 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.
- Y. Liu, X. He, X. Duan, Y. Fu, D. Fatta-Kassinos, D.D. Dionysiou,
Significant role of UV and carbonate radical on the
degradation of oxytetracycline in UV-AOPs: kinetics and
mechanism, Water Res., 95 (2016) 195–204.
- P. Klan, M. Vavrik, Non-catalytic remediation of aqueous
solutions by microwave-assisted photolysis in the presence of
H2O2, J. Photochem. Photobiol. A, 177 (2006) 24–33.
- S. Hisaindee, M.A. Meetani, M.A. Rauf, Application of
LC-MS to the analysis of advanced oxidation process (AOP)
degradation of dye products and reaction mechanisms,
Trends Anal. Chem., 49 (2013) 31–44.
- M. Cheng, G. Zeng, D. Huang, C. Lai, P. Xu, C. Zhang,
Y. Liu, Hydroxyl radicals based advanced oxidation processes
(AOPs) for remediation of soils contaminated with
organic compounds: a review, Chem. Eng. J., 284 (2016)
582–598.
- F. Lelario, M. Brienza, S.A. Bufo, L. Scrano, Effectiveness
of different advanced oxidation processes (AOPs) on the
abatement of the model compound mepanipyrim in water,
J. Photochem. Photobiol. A, 321 (2016) 187–201.
- P.V. Nidheesh, M. Zhou, M.A. Oturan, Chemosphere An
overview on the removal of synthetic dyes from water by
electrochemical advanced oxidation processes, Chemosphere,
197 (2018) 210–227.
- M. Izadifard, G. Achari, C.H. Langford, Degradation of
sulfolane using activated persulfate with UV and UV-Ozone,
Water Res., 125 (2017) 325–331.
- G. Subramanian, G. Madras, Introducing saccharic acid as an
efficient iron chelate to enhance photo-Fenton degradation of
organic contaminants, Water Res., 104 (2016) 168–177.
- M. Muruganandham, M. Swaminathan, Decolourisation of
Reactive Orange 4 by Fenton and Photo-Fenton Oxidation
Technology, Dyes Pigm., 63 (2004) 315–321.
- V.M. Bandala, L. Montoya, M. Mata, New species and records
of Crepidotus from costa rica and mexico, Fungal Divers.,
32 (2008) 9–29.
- J. Macias-Sanchez, L. Hinojosa-Reyes, J.L. Guzman-Mar,
J.M. Peralta-Hernandez, A. Hernandez-Ramírez, Performance
of the photo-Fenton process in the degradation of a model azo
dye mixture, Photochem. Photobiol. Sci., 10 (2011) 332–337.
- Y.J. Shih, C.H. Ho, Y.H. Huang, Photo-Fenton oxidation of
azo dye Reactive Black B using an immobilized iron oxide
as heterogeneous catalyst, Water Environ. Res., 85 (2013)
340–345.
- L.A. de Luna, T.H. da Silva, R.F. Nogueira, F. Kummrow,
G.A. Umbuzeiro, Aquatic toxicity of dyes before and after
photo-Fenton treatment, J. Hazard. Mater., 276 (2014)
332–338.
- A.G. Trovo, A.K. Hassan, M. Sillanpaa, W.Z. Tang, Degradation
of Acid Blue 161 by Fenton and photo-Fenton processes, Int. J.
Environ. Sci. Technol., 13 (2016) 147–158.
- I. Arslan-Alaton, A review of the effects of dye-assisting
chemicals on advanced oxidation of reactive dyes in
wastewater, Coloration, 119 (2003) 345–353.
- A. Akyol, H.C. Yatmaz, M. Bayramoglu, Photocatalytic
decolorization of Remazol Red RR in aqueous ZnO
suspensions, Appl. Catal. B, 54 (2004) 19–24.
- A. Aguedach, S. Brosillon, J. Morvan, E.K. Lhadi, Photocatalytic
degradation of azo-dyes reactive black 5 and reactive yellow
145 in water over a newly deposited titanium dioxide, Appl.
Catal. B, 57 (138) 55–62.
- M.A. Behnajady, N. Modirshahla, R. Hamzavi, Kinetic study
on photocatalytic degradation of C.I. Acid Yellow 23 by ZnO
photocatalyst, J. Hazard. Mater., 133 (2006) 226–232.
- T.K. Ghorai, D. Dhak, S.K. Biswas, S. Dalai, P. Pramanik,
Photocatalytic oxidation of organic dyes by nano-sized metal
molybdate incorporated titanium dioxide (MxMoxTi1-xO6)
(M=Ni, Cu, Zn) photocatalysts, J. Mol. Catal A: Chem.,
273 (2007) 224–229.
- F. Han, V.S.R. Kambala, M. Srinivasan, D. Rajarathnam,
R. Naidu, Tailored titanium dioxide photocatalysts for the
degradation of organic dyes in wastewater treatment: a
review, Appl. Catal. A, 359 (2009) 25–40.
- C.D. Raman, S. Kanmani, Textile dye degradation using nano
zero valent iron: a review, J. Environ. Manage., 177 (2016)
341–355.
- K. Vinodgopal, J. Peller, Hydroxyl radical-mediated advanced
oxidation processes for textile dyes: a comparison of the
radiolytic and sonolytic degradation of the monoazo dye Acid
Orange 7, Res. Chem. Intermed., 29 (2003) 307–316.
- O. Martins Ad, V.M. Canalli, C.M.N. Azevedo, M. Pires,
Degradation of pararosaniline (C.I. Basic Red 9 monohydrochloride)
dye by ozonation and sonolysis, Dyes Pigm.,
68 (2006) 227–234.
- G. Ameta, P. Vaishnav, R.K. Malkani, S.C. Ameta, Sonolytic,
Photocatalytic and sonophotocatalytic degradation of
toluidine blue, J. Indian Council Chem., 26 (2009) 100–105.
- R.R. Nair, R.L. Patel, Treatment of dye wastewater by sonolysis
process, Int. J. Res. Modern Eng. Emerg. Technol., 2 (2014) 1–6.
- S. Chakma, L. Das, V.S. Moholkar, Dye decolorization with
hybrid advanced oxidation processes comprising sonolysis/
Fenton-like/photo-ferrioxalate systems: a mechanistic
investigation, Sep. Purif. Technol., 156 (2015) 596–607.
- C.I. Pearce, J. Lloyd, J.T. Guthrie, The removal of colour from
textile wastewater using whole bacterial cells: a review, Dyes
Pigm., 58 (2003) 179–196.
- S. Jeevanantham, A. Saravanan, R.V. Hemavathy, P.S. Kumar,
P.R. Yaashikaa, D. Yuvaraj, Removal of toxic pollutants
from water environment by phytoremediation: a survey on
application and future prospects, Environ. Technol. Innovat.,
13 (2019) 264–276.
- B.E. Barragan, C. Costa, M. Carmen Marquez, Biodegradation
of azo dyes by bacteria inoculated on solid media, Dyes Pigm.,
75 (2007) 73–81.
- E. Kalmis, N. Azbar, F. Kalyoncu, Evaluation of two wild
types of Pleurotus ostreatus (MCC07 and MCC20) isolated
from nature for their ability to decolorize Benazol Black ZN
textile dye in comparison to some commercial types of white
rot fungi: Pleurotus ostreatus, Pleurotus djamor, and Pleurotus
citrinopileatus, Can. J. Microbiol., 54 (2008) 366–370.
- P. Kaushik, A. Malik, Fungal dye decolorization: recent
advances and future potential, Environ. Int., 35 (2009) 127–141.
- Y. Qu, S. Shi, F. Ma, B. Yan, Decolorization of reactive dark
blue K-R by the synergism of fungus and bacterium using
response surface methodology, Bioresour. Technol., 101 (2010)
8016–8023.
- N. Gomi, S. Yoshida, K. Matsumoto, M. Okudomi, H. Konno,
T. Hisabori, Y. Sugano, Degradation of the synthetic dye
amaranth by the fungus Bjerkandera adusta Dec 1: inference
of the degradation pathway from an analysis of decolorized
products, Biodegradation, 22 (2011) 1239–1245.
- Y. Qu, X. Cao, Q. Ma, S. Shi, L. Tan, X. Li, H. Zhou, X. Zhang, J.
Zhou, Aerobic decolorization and degradation of Acid Red B
by a newly isolated Pichia sp. TCL, J. Hazard. Mater., 223–224
(2012) 31–38.
- C. Miranda Rde, B. Gomes Ede, N. Pereira Jr., M.A. Marin-
Morales, K.M. Machado, N.B. Gusmao, Biotreatment of
textile effluent in static bioreactor by Curvularia lunata URM
6179 and Phanerochaete chrysosporium URM 6181, Bioresour.
Technol., 142 (2013) 361–367.
- L. Tan, S. Ning, X. Zhang, S. Shi, Aerobic decolorization and
degradation of azo dyes by growing cells of a newly isolated
yeast Candida tropicalis TL-F1, Bioresour. Technol., 138 (2013)
307–313.
- S.K. Sen, S. Raut, P. Bandyopadhyay, S. Raut, Fungal
decolouration and degradation of azo dyes: a review, Fungal
Biol. Rev., 30 (2016) 112–133.
- H.S. Rai, M.S. Bhattacharyya, J. Singh, T.K. Bansal, P. Vats,
U.C. Banerjee, Removal of dyes from the effluent of textile
and dyestuff manufacturing industry: a review of emerging
techniques with reference to biological treatment, Crit. Rev.
Environ. Sci. Technol., 35 (2005) 219–238.
- R. Sani, U. Banerjee, Decolorization of triphenylmethane
dyes and textile and dye-stuff effluent by Kurthia sp., Enzyme
Microbial. Technol., 24 (1999) 433–437.
- H.G. Kulla, Aerobic bacterial degradation of azo dyes, FEMS
Microbiol. Lett., 12 (1981) 387–399.
- J.A. Bumpus, B.J. Brock, Biodegradation of crystal violet
by the white rot fungus Phanerochaete chrysosporium, Appl.
Environ. Microbiol., 54 (1988) 1143–1150.
- K. Vasdev, R.C. Kuhad, R.K. Saxena, Decolorization of triphenylmethane
dyes by a bird’s nest fungus Cyathus bulleri,
Current Microbiol., 30 (1995) 269–272.
- Y. Fu, T. Viraraghavan, Fungal decolorization of dye wastewaters:
a review, Bioresour. Technol., 79 (2001) 251–262.
- N.K. Pazarlioglu, R.O. Urek, F. Ergun, Biodecolourization of
Direct Blue 15 by immobilized Phanerochaete chrysosporium,
Process Biochem., 40 (2005) 1923–1929.
- F.M. Zhang, J.S. Knapp, K.N. Tapley, Decolourisation of
cotton bleaching effluent with wood rotting fungus, Water
Res., 33 (1999) 919–928.
- P. Nigam, G. Armour, I.M. Banat, D. Singh, R. Marchant,
Physical removal of textile dyes from effluents and solidstate
fermentation of dye-adsorbed agricultural residues, Bioresour.
Technol., 72 (2000) 219–226.
- Salony, S. Mishra, V.S. Bisaria, Production and characterization
of laccase from Cyathus bulleri and its use in decolourization
of recalcitrant textile dyes, Appl. Microbiol. Biotechnol.,
71 (2006) 646–653.
- U. Pagga, D. Brown, The degradation of dyestuffs: Part II.
Behaviour of dyestuffs in aerobic biodegradation tests,
Chemosphere, 15 (1986) 479–491.
- E. Razo-Flores, M. Luijten, B. Donlon, G. Lettinga, J. Field,
Biodegradation of selected azo dyes under methanogenic
conditions, Water Sci. Technol., 36 (1997) 65–72.
- W. Delee, C. O’Neill, F.R. Hawkes, H.M. Pinheiro, Anaerobic
treatment of textile effluents: a review, J. Chem. Technol.
Biotechnol., 73 (1998) 323–335.
- F.P. Zee van der, G. Lettinga, J.A. Field, Azo dye decolourisation
by anaerobic sludge, Chemosphere, 44 (2001) 1169–1176.
- M. Jayapal, H. Jagadeesan, M. Shanmugam, J.P. Danisha,
S. Murugesan, Sequential anaerobic-aerobic treatment using
plant microbe integrated system for degradation of azo dyes
and their aromatic amines by-products, J. Hazard. Mater.,
354 (2018) 231–243.
- A. Stolz, Basic and applied aspects in the microbial degradation
of azo dyes, Appl. Microbiol. Biotechnol., 56 (2001) 69–80.
- D. Brown, P. Laboureur, The degradation of dyestuffs: part I.
Primary biodegradation under anaerobic conditions, Chemosphere,
12 (1983) 397–404.
- D. Brown, B. Hamburger, The degradation of dye stuffs.
Part III. Investigations of their ultimate degradability,
Chemosphere, 16 (1987) 1539–1553.
- 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.
- K.G. Bhattacharyya, A. Sarma, Adsorption characteristics
of the dye, Brilliant Green, on Neem leaf powder, Dyes Pigm.,
57 (2003) 211–222.
- G. Crini, Non-conventional low-cost adsorbents for dye
removal: a review, Bioresour. Technol., 97 (2006) 1061–1085.
- M.D. LeVan, G. Carta, C.M. Yon, In: R.H. Perry, D.W. Green,
J.O. Maloney, Eds., Adsorption and Ion Exchange, 7th ed.
Perry’s Chemical Engineers, Handbook McGraw-Hill,
New York, 1997.
- D.A. Clifford, Ion Exchange and Inorganic Adsorption,
In: R.D. Letterman, Ed., Water Quality and Treatment, 5th ed.,
McGraw-Hill, New York, 1999.
- G.P. Handreck, T.D. Smith, Adsorption of methylene blue
from aqueous solution by ZSM-5-type zeolites and related
silica polymorphs, J. Chem. Soc., 84 (1988) 4191–4201.
- S. Karcher, A. Kornmuller, M. Jekel, Screening of commercial
sorbents for the removal of reactive dyes, Dyes Pigm., 51 (2001)
111–125.
- V. Meshko, L. Markovska, M. Mincheva, A.E. Rodrigues,
Adsorption of basic dyes on granular acivated carbon and
natural zeolite, Water Res., 35 (2001) 3357–3366.
- Y. Yu, Y.Y. Zhuang, Z.H. Wang, M.Q. Qiu, Adsorption
of water-soluble dyes onto modified resin, Chemosphere,
54 (2004) 425–430.
- B. Armagan, O. Ozdemir, M. Turan, M.S. Celik, The removal
of reactive azo dyes by natural and modified zeolites, J. Chem.
Technol. Biotechnol., 78 (2003) 725–732.
- O. Ozdemir, B. Armagan, M. Turan, M.S. Celik, Comparison
of the adsorption characteristics of azo-reactive dyes on
mezoporous minerals, Dyes Pigm., 62 (2004) 49–60.
- X. Yuan, S.P. Zhuo, W. Xing, H.Y. Cui, X.D. Dai, X.M. Liu,
Z.F. Yan, Aqueous dye adsorption on ordered mesoporous
carbons, J. Colloid Interface Sci., 310 (2007) 83–89.
- H. Nur, A.F.N.A. Manan, L.K. Wei, M.N.M. Muhid, H. Hamdan,
Simultaneous adsorption of a mixture of paraquat and
dye by NaY zeolite covered with alkylsilane, J. Hazard.
Mater., 117 (2005) 5–40.
- J. Fan, A. Li, W. Yang, L. Yang, Q. Zhang, Adsorption of
water-soluble dye XBR onto styrene and acrylic ester resins,
Sep. Purif. Technol., 51 (2006) 338–344.
- X. Zhang, A. Li, Z. Jiang, Q. Zhang, Adsorption of dyes and
phenol from water on resin adsorbents: effect of adsorbate size and
pore size distribution, J. Hazard. Mater., 137 (2006) 1115–1122.
- C.-H. Liu, J.-S. Wu, H.-C. Chiu, S.-Y. Suen, K.H. Chu, Removal
of anionic reactive dyes from water using anion exchange
membranes as adsorbers, Water Res., 41 (2007) 1491–1500.
- S. Raghu, C. Ahmed Basha, Chemical or electrochemical
techniques, followed by ion exchange, for recycle of textile
dye wastewater, J. Hazard. Mater., 149 (2007) 324–330.
- S. Wang, E. Ariyanto, Competitive adsorption of malachite
green and Pb ions on natural zeolite, J. Colloid Interface Sci.,
314 (2007) 25–31.
- P.S. Kumar, K. Ramakrishnan, R. Gayathri, Removal of
nickel (II) from aqueous solutions by ceralite IR 120 cationic
exchange resins, J. Eng. Sci. Technol., 5 (2010) 232–243.
- S.K. Alpat, O. Ozbayrak, S. Alpat, H. Akcay, The adsorption
kinetics and removal of cationic dye, Toluidine Blue O, from
aqueous solution with Turkish zeolite, J. Hazard. Mater.,
151 (2008) 213–220.
- S.D. Alexandratos, Ion-exchange resins: a retrospective from
industrial and engineering chemistry research, Ind. Eng.
Chem. Res., 48 (2009) 388–398.
- O.B. Akpor, M. Muchie, Remediation of heavy metals in
drinking water and wastewater treatment systems: processes
and applications, Int. J. Phys. Sci., 5 (2010) 1807–1817.
- M. Wawrzkiewicz, Removal of C.I. Basic Blue 3 dye by
sorption onto cation exchange resin, functionalized and nonfunctionalized
polymeric sorbents from aqueous solutions
and wastewaters, Chem. Eng. J., 217 (2013) 414–425.
- C.L. Mantell, Adsorption, McGraw-Hill Book Company,
New York, 1951.
- K.G. Pavithra, P.S. Kumar, V. Jaikumar, Removal of colorants
from wastewater: a review on sources and treatment strategies,
J. Ind. Eng. Chem., 75 (2019) 1–19.
- J.S. Mattson, H.B.J. Mark, Activated Carbon Surface Chemistry
and Adsorption from Solution, Marcel Dekker, New York,
1971.
- A.I. Liapis, Fundamentals of Adsorption, Engineering Foundation,
New York, 1987.
- H.M. Freeman, Standard Handbook of Hazardous Waste
Treatment and Disposal, McGraw-Hill, New York, 1989.
- M. Pirbazari, B.N. Badriyha, R.J. Miltner, GAC adsorber
design for removal of chlorinated pesticide, J. Environ. Eng.,
117 (1991) 80–100.
- F. Quignon, F. Thomas, C. Gantzer, A. Huyard, L. Schwartzbrod,
Virus adsorption in a complex system: an experimentally
designed study, Water Res., 32 (1998) 1222–1230.
- K. Imamura, E. Ikeda, T. Nagayasu, T. Sakiyama, K. Nakanishi,
Adsorption behavior of methylene blue and its congeners
on a stainless steel surface, J. Colloid Interface Sci., 245 (2002)
50–57.
- R.C. Bansal, M. Goyal, Activated Carbon Adsorption, Taylor
& Francis Group, Boca Raton, 2005.
- L.-C. Juang, C.-C. Wang, C.-K. Lee, Adsorption of basic dyes
onto MCM-41, Chemosphere, 64 (2006) 1920–1928.
- Y. Onal, Kinetics of adsorption of dyes from aqueous solution
using activated carbon prepared from waste apricot, J. Hazard.
Mater., 137 (2006) 1719–1728.
- M.J. Iqbal, M.N. Ashiq, Adsorption of dyes from aqueous
solutions on activated charcoal, J. Hazard. Mater., 139 (2007)
57–66.
- G. Wang, W. Li, H. Chen, B. Li, The direct liquefaction
of sawdust
in tetralin, Energy Sources Part A, 29 (2007)
1221–1231.
- M. Turabik, Adsorption of basic dyes from single and binary
component systems onto bentonite: simultaneous analysis
of Basic Red 46 and Basic Yellow 28 by first order derivative
spectrophotometric analysis method, J. Hazard. Mater., 158
(2008) 52–64.
- W. Yang, D. Wu, R. Fu, Effect of surface chemistry on the
adsorption of basic dyes on carbon aerogels, Colloids Surf. A,
312 (2008) 118–124.
- G. Bayramoglu, B. Altintas, M.Y. Arica, Adsorption kinetics
and thermodynamic parameters of cationic dyes from aqueous
solutions by using a new strong cation-exchange resin,
Chem. Eng. J., 152 (2009) 339–346.
- S.D. Khattri, M.K. Singh, Removal of malachite green from
dye wastewater using neem sawdust by adsorption, J. Hazard.
Mater., 167 (2009) 1089–1094.
- A.A. Ahmad, B.H. Hameed, Fixed-bed adsorption of reactive
azo dye onto granular activated carbon prepared from waste,
J. Hazard. Mater., 175 (2010) 298–303.
- K. Nuithitikul, S. Srikhun, S. Hirunpraditkoon, Kinetics and
equilibrium adsorption of Basic Green 4 dye on activated
carbon derived from durian peel: effects of pyrolysis and
post-treatment conditions, J. Taiwan. Inst. Chem. Eng., 41
(2010) 591–598.
- Y. Kismir, A.Z. Aroguz, Adsorption characteristics of the
hazardous dye Brilliant Green on Saklıkent mud, Chem. Eng. J.,
172 (2011) 199–206.
- G. Moussavi, R. Khosravi, The removal of cationic dyes from
aqueous solutions by adsorption onto pistachio hull waste,
Chem. Eng. Res. Des., 89 (2011) 2182–2189.
- I.M. Ahmed, M.S. Gasser, Adsorption study of anionic
reactive dye from aqueous solution to Mg–Fe–CO3 layered
double hydroxide (LDH), Appl. Surf. Sci., 259 (2012)
650–656.
- M. Paul, N. Pal, A. Bhaumik, Selective adsorption and release of
cationic organic dye molecules on mesoporous borosilicates,
Mater. Sci. Eng. C, 32 (2012) 1461–1468.
- L. Chen, B. Bai, Equilibrium kinetic, thermodynamic, and in
situ regeneration studies about methylene blue adsorption by
the raspberry-like TiO2@yeast microspheres, Ind. Eng. Chem.
Res., 52 (2013) 15568–15577.
- A.S. Elsherbiny, Adsorption kinetics and mechanism of acid
dye onto montmorillonite from aqueous solutions: stoppedflow
measurements, Appl. Clay. Sci., 83–84 (2013) 56–62.
- M. Wang, L. Wang, Synthesis and characterization of carboxymethyl
cellulose/organic montmorillonite nanocomposites
and its adsorption behavior for congo red dye, Water Sci.
Eng., 6 (2013) 272–282.
- R. Shukla, G. Madras, Facile synthesis of aluminium cobalt
oxide for dye adsorption, J. Environ. Chem. Eng., 2 (2014)
2259–2268.
- B. Yahyaei, S. Azizian, Rapid adsorption of binary dye
pollutants onto the nanostructured mesoporous alumina,
J. Mol. Liq., 199 (2014) 88–95.
- R. Hazzaa, M. Hussein, Adsorption of cationic dye from
aqueous solution onto activated carbon prepared from olive
stones, Environ. Technol. Innovation, 4 (2015) 36–51.
- R. Sivashankar, A.B. Sathya, U. Krishnakumar, V. Sivasubramanian,
Synthesis of magnetic biocomposite for efficient
adsorption of azo dye from aqueous solution, Ecotoxicol.
Environ. Saf., 121 (2015) 149–153.
- S.O. Akpotu, B. Moodley, Synthesis and characterization
of citric acid grafted MCM-41 and its adsorption of cationic
dyes, J. Environ. Eng., 4 (2016) 4503–4513.
- F. Zhang, B. Ma, X. Jiang, Y. Ji, Dual function magnetic
hydroxyapatite nanopowder for removal of malachite green
and Congo red from aqueous solution, Powder Technol.,
302 (2016) 207–214.
- Z. Liang, Z. Zhao, T. Sun, W. Shi, F. Cui, Enhanced adsorption
of the cationic dyes in the spherical CuO/meso-silica nano
composite and impact of solution chemistry, J. Colloid
Interface Sci., 485 (2017) 192–200.
- Y. Qi, M. Yang, W. Xu, S. He, Y. Men, Natural polysaccharidesmodified
graphene oxide for adsorption of organic dyes
from aqueous solutions, J. Colloid Interface Sci., 486 (2017)
84–96.
- R. Rakhshaee, Y. Noorani, Comparing three methods of
simultaneous synthesis and stabilization of Fe3O4 nanoparticles:
changing physicochemical properties of products
to improve kinetic and thermodynamic of dye adsorption,
J. Magn. Magn. Mater., 422 (2017) 128–140.
- C. Pelekani, V.L. Snoeyink, Competitive adsorption between
atrazine and Methylene Blue on activated carbon: the
importance
of pore size distribution, Carbon, 38 (2000)
1423–1436.
- C. Tien, Adsorption Calculations and Modeling, Butterworth-Heinemann, Boston, 1994.
- T. Van der Plas, The Texture and the Surface Chemistry of
Carbons, in: B.G. Linsen, Ed., Physical and Chemical Aspects
of Adsorbens and Catalysts, Academic Press, London, 1970.
- M.O. Corapcioglu, C.P. Huang, The surface acidity and characterization
of some commercial activated carbons, Carbon,
25 (1987) 569–578.
- I.N. Najm, V.L. Snoeyink, B.W.J. Lykins, J.Q. Adams, Using
powdered activated carbon: a critical review, Am. Water
Works Assoc., 83 (1991) 65–76.
- F.A. Di Giano, A.S. Natter, Disperse dye-carrier interactions
on activated carbon, J. Water Pollut. Control. Fed., 49 (1977)
235–244.
- G.M. Walker, L.R. Weatherley, Kinetics of acid dye adsorption
on GAC, Water Res., 33 (1999) 1895–1899.
- S. Suganya, P.S. Kumar, Influence of ultrasonic waves on
preparation of active carbon from coffee waste for the
reclamation of effluents containing Cr(VI) ions, J. Ind. Eng.
Chem., 60 (2018) 418–430.
- Y. Al-Degs, M.A.M. Khraisheh, S.J. Allen, M.N.A. Ahmad,
Sorption behaviour of cationic and anionic dyes from aqueous
solution on different types of activated carbons, Sep. Sci.
Technol., 36 (2001) 91–102.
- P.J.M. Carrott, M.M.L. Ribeiro Carrott, J.M.V. Nabais, J.P.P.
Ramalho, Influence of surface ionization on the adsorption
of aqueous zinc species by activated carbons, Carbon, 35
(1997) 403–410.
- P.J.M. Carrott, M.M.L. Ribeiro Carrott, J.M.V. Nabais, Influence
of surface ionization on the adsorption of aqueous
mercury chlorocomplexes by activated carbons, Carbon,
36 (1998) 11–17.
- C. Gabaldon, P. Marzal, A. Seco, J.A. Gonzalez, Cadmium and
copper removal by a granular activated carbon in laboratory
column systems, Sep. Sci. Technol., 35 (2000) 1039–1053.
- R.W. Kuennen, R.M. Taylor, K. Van Dyke, K. Groenevelt,
Removing lead from drinking water with a point-of-use GAC
fixed-bed adsorber, J. Am. Water Works Assoc., 84 (1992)
91–101.
- A. Macias-Garcia, C. Valenzuela-Calahorro, V. Gomez-Serrano,
A. Espinosa-Mansilla, Adsorption of Pb2+ by heat-treated acid
sulfurized activated carbon, Carbon, 31 (1993) 1249–1255.
- J.S. Zogorski, S.D. Faust, J.H. Haas, The kinetics of adsorption
of phenols by granular activated carbon, J. Colloid Interface
Sci., 55 (1976) 329–341.
- F. Caturla, J.M. Martin-Martinez, M. Molina-Sabio,
F. Rodriguez-Reinoso,
R. Torregrosa, Adsorption of substituted
phenols on activated carbon, J. Colloid Interface Sci., 124 (1988)
528–534.
- J.T. Paprowicz, Activated carbons for phenols removal from
wastewaters, Environ. Technol., 11 (1990) 71–82.
- P.J.M. Carrott, P.A.M. Mourao, M.M.L. Ribeiro Carrott,
E.M. Goncalves, Separating surface and solvent effects and
the notion of critical adsorption energy in the adsorption
of phenolic compounds by activated carbons, Langmuir,
21 (2005) 11863–11869.
- P.A.M. Mourao, P.J.M. Carrott, M.M.L. Ribeiro Carrott,
Application of different equations to adsorption isotherms
of phenolic compounds on activated carbons prepared from
cork, Carbon, 44 (2006) 2422–2429.
- M. Pirbazari, W.J. Weber Jr., Removal of Dieldrin from water
by activated carbon, J. Environ. Eng., 110 (1984) 656–669.
- J. Hu, T. Aizawa, Y. Ookubo, T. Morita, Y. Magara, Adsorptive
characteristics of ionogenic aromatic pesticides in water on
powdered activated carbon, Water Res., 32 (1988) 2593–2600.
- K. Urano, E. Yamamoto, M. Tonegawa, K. Fujie, Adsorption
of chlorinated organic compounds on activated carbon from
water, Water Res., 25 (1991) 1459–1464.
- M.C. Lee, J.C. Crittenden, V.L. Snoeyink, M. Ari, Design
of carbon beds to remove humic substances, J. Environ. Eng.,
109 (1983) 631–645.
- M. Pirbazari, B.N. Badriyha, S.H. Kim, R.J. Miltner, Evaluating
GAC adsorbers for the removal of PCBs and Toxaphene,
J. Am. Water Works Assoc., 84 (1992) 83–90.
- M. Bele, A. Kodre, I. Arcon, J. Grdadolnik, S. Pejovnik,
J.O. Besenhard, Adsorption of cetyltrimethylammonium
bromide
on carbon black from aqueous solution, Carbon,
36 (1998) 1207–1212.
- A.N. Malhas, R.A. Abuknesha, R.G. Price, Removal of detergents
from protein extracts using activated charcoal prior to
immunological analysis, J. Immunol. Methods, 264 (2002)
37–43.
- M.E. Flentje, D.G. Hager, Reevaluation of granular-carbon
filters for taste and odor control, J. Am. Water Works Assoc.,
56 (1964) 191.
- S. Lalezary, M. Pirbazari, M.J. McGuire, Evaluating activated
carbons for removing low concentrations of taste-and odorproducing
organics, J. Am. Water Works Assoc., 78 (1986)
76–82.
- D.M. Giusti, R.A. Conway, C.T. Lawson, Activated carbon
adsorption of petrochemicals, J. Water Pollut. Control. Fed.,
46 (1974) 947–965.
- I. Saito, The removal of Hexacyanoferrate(II) and (III) ions
in dilute aqueous solution by activated carbon, Water Res.,
18 (1984) 319–323.
- G. McKay, M.J. Bino, A.R. Altameni, The adsorption of various
pollutants from aqueous solutions on to activated carbon,
Water Res., 19 (1985) 491–495.
- M.C. Annesini, F. Gironi, M. Ruzzi, C. Tomei, Adsorption
of organic compounds onto activated carbon, Water Res.,
21 (1987) 567–571.
- E.H. Smith, Evaluation of multicomponent adsorption equilibria
for organic mixtures onto activated carbon, Water Res.,
25 (1991) 125–134.
- P.S. Kumar, S. Ramalingam, K. Sathishkumar, Removal of
methylene blue dye from aqueous solution by activated
carbon prepared from cashew nut shell as a new low-cost
adsorbent, Korean J. Chem. Eng., 28 (2011) 149–155.
- C. Donati, M. Drikas, R. Hayes, G. Newcombe, Microcystin-LR
adsorption by powdered activated carbon, Water Res., 28 (1994)
1735–1742.
- P.J.M. Carrott, M.M.L. Ribeiro Carrott, I.P.P. Cansado,
J.M.V. Nabais, Reference data for the adsorption of benzene
on carbon
materials, Carbon, 38 (2007) 465–474.
- L. Hemphill, V. Ramaiah, M. Valentine, Thermal Regeneration
of Activated Carbon, 32nd Purdue Industrial Waste Conference,
Purdue University, 1997, pp. 116–126.
- M.A. Rollar, M.T. Suidan, W.H. Goss, S.A. Vargo, Regeneration
of five activated carbon with methanol, J. Environ. Eng.,
108 (1982) 1361.
- R.J. Martin, W.J. Ng, The repeated exhaustion and regeneration
of activated carbon, Water Res., 21 (1987) 961–965.
- G. Newcombe, M. Drikas, Chemical regeneration of granular
activated carbon from an operating water treatment plant,
Water Res., 27 (1993) 161–165.
- S. Notthakum, J.C. Crittenden, D.W. Hand, D.L. Perram,
M.E. Mullins, Regeneration of adsorbents using heterogeneous
advanced oxidation, J. Environ. Eng., 119 (1993)
695.
- R.M. Narbaitz, J. Cen, Electrochemical regeneration of granular
activated carbon, Water Res., 28 (1994) 1771–1778.
- E.J. Kilduff, C.J. King, Effect of carbon adsorbent surface
properties on the uptake and solvent regeneration of phenol,
Ind. Eng. Chem. Res., 36 (1997) 1603–1613.
- E.A. Taiwo, A. Adesina, Electrochemical regeneration of a
native activated carbon, Chem. Biochem. Eng. Q., 19 (2005)
269–273.
- M.H. Zhou, L.C. Lei, Electrochemical regeneration of activated
carbon loaded with p-nitrophenol in a fluidized electrochemical
reactor, Electrochim. Acta, 51 (2005) 4489–4496.
- 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.
- Y. Zhou, L. Zhang, Z. Cheng, Removal of organic pollutants
from aqueous solution using agricultural wastes: a review,
J. Mol. Liq., 212 (2015) 739–762.
- S. Chowdhury, R. Mishra, P. Saha, P. Kushwaha, Adsorption
thermodynamics, kinetics and isosteric heat of adsorption of
malachite green onto chemically modified rice husk, Desalination,
265 (2011) 159–168.
- J.M. Dias, M.C.M. Alvim-Ferraz, M.F. Almeida, J. Rivera-
Utrilla, M. Sanchez-Polo, Waste materials for activated carbon
preparation and its use in aqueous-phase treatment: a review,
J. Environ. Manage., 85 (2007) 833–846.
- O. Ioannidou, A. Zabaniotou, Agricultural residues as precursors
for activated carbon production – a review, Renew.
Sust. Energy Rev., 11 (2007) 1996–2005.
- F.E. Okieimen, C.O. Okiemen, R.A. Wuana, Preparation and
characterization of activated carbon from rice husks, J. Chem.
Soc., 32 (2007) 126–136.
- D. Savova, E. Apak, E. Ekinci, F. Yardim, N. Petrova,
T. Budinova, M. Razvigorova, V. Minkova, Biomass conversion
to carbon adsorbents and gas, Biomass Bioenergy, 21 (2001)
133–142.
- K.A. Adegoke, O.S. Bello, Dye sequestration using agricultural
wastes as adsorbents, Water Resour. Ind., 12 (2015) 8–24.
- P.J.M. Carrott, M.M.L. Ribeiro Carrott, P.A.M. Mourao,
R.P. Lima, Preparation of activated carbons from cork by
physical activation in carbon dioxide, Adsorpt. Sci., 21 (2003)
669–681.
- R. Sanghi, B. Bhattacharya, Review on decolorisation of
aqueous dye solutions by low cost adsorbents, Coloration
Technol., 118 (2003) 256–269.
- N.H. Phan, S. Rio, C. Faur, L. Le Coq, P. Le Cloirec,
T.H. Nguyen, Production of fibrous activated carbons from
natural cellulose (jute, coconut) fibers for water treatment
applications,
Carbon, 44 (2006) 2569–2577.
- M.A. Lillo-Rodenas, J.P. Marco-Lozar, D. Cazorla-Amoros,
A. Linares-Solano, Activated carbons prepared by pyrolysis of
mixtures of carbon precursor/alkaline hydroxide, J. Analyt.
Appl. Pyrolysis, 80 (2007) 166–174.
- M.A. Ahmad, N.K. Rahman, Equilibrium, kinetics and thermodynamic
of Re-mazol Brilliant Orange 3R dye adsorption on
coffee husk-based activated carbon, Chem. Eng. J., 170 (2011)
154–161.
- K.Y. Foo, B.H. Hameed, Coconut husk derived activated
carbon via microwave induced activation: effects of activation
agents, preparation parameters and adsorption performance,
Chem. Eng. J., 184 (2012) 57–65.
- U. Gecgel, H. Kolancilar, Adsorption of Remazol brilliant blue
R on activated carbon prepared from a pine cone, Nat. Prod.
Res., 26 (2012) 659–664.
- M. Lanzetta, C. Di Blasi, Pyrolysis kinetics of wheat and corn
straw, J. Anal. Appl. Pyrolysis, 44 (1998) 181–192.
- M. Ahmedna, W.E. Marshall, R.M. Rao, Production of granular
activated carbons from select agricultural byproducts and
evaluation of their physical, chemical and adsorption properties,
Bioresour. Technol., 71 (2000) 13–123.
- T. Hassanein, B. Koumanova, Evaluation of adsorption potential
of the agricultural waste wheat straw for Basic Yellow 21,
J. Chem. Technol. Metall., 45 (2010) 407–414.
- P.K. Malik, Use of activated carbons prepared from sawdust
and rice-husk for adsorption of acid dyes: a case study of Acid
Yellow 36, Dyes Pigm., 56 (2003) 239–249.
- P.K. Malik, Dye removal from wastewater using activated
carbon developed from sawdust: adsorption equilibrium and
kinetics, J. Hazard. Mater., 113 (2004) 81–88.
- B.G. Prakash Kumar, L.R. Miranda, M. Velan, Adsorption
of Bismark Brown dye on activated carbons prepared from
rubber wood sawdust (Hevea brasiliensis) using different
activation methods, J. Hazard. Mater., 126 (2005) 63–70.
- R.S. Juang, F.C. Wu, R.L. Tseng, Characterization and use of
activated carbons prepared from bagasses for liquid-phase
adsorption, Colloids Surf. B, 201 (2002) 191–199.
- E. Altintig, G. Arabaci, H. Altundag, Preparation and characterization
of the antibacterial efficiency of silver loaded activated
carbon from corncobs, Surf. Coat. Technol., 304 (2016)
63–67.
- M. Valix, W.H. Cheung, G. McKay, Preparation of activated
carbon using low temperature carbonisation and physical
activation of high ash raw bagasse for acid dye adsorption,
Chemosphere, 56 (2004) 493–501.
- A.E. Putun, N. Ozbay, E.P. Onal, E. Putun, Fixed-bed pyrolysis
of cotton stalk for liquid and solid products, Fuel Process.
Technol., 86 (2005) 1207–1219.
- I.A.W. Tan, A.L. Ahmad, B.H. Hameed, Adsorption of basic
dye on high surface area activated carbon prepared from
coconut husk: equilibrium, kinetic and thermodynamic
studies, J. Hazard. Mater., 154 (2008) 337–346.
- Y.P. Guo, S.F. Yang, W.Y. Fu, J.R. Qi, R.Z. Li, Z.C. Wang,
H.D. Xu, Adsorption of malachite green on micro- and
mesoporous rice husk-based active carbon, Dyes Pigm.,
56 (2003) 219–229.
- M.M. Mohamed, Acid dye removal: comparison of surfactant
modified mesoporous FSM-16 with activated carbon derived
from rice husk, J. Colloid Interface Sci., 272 (2004) 28–34.
- W. Li, J.H. Peng, L.B. Zhang, H.Y. Xia, N. Li, K.B. Yang,
X.Y. Zhu, Investigations on carbonization processes of plain
tobacco stems and H3PO4-impregnated tobacco stems used for
the preparation of activated carbons with H3PO4 activation,
Ind. Crops Prod., 28 (2008) 73–80.
- T. Yang, A.C. Lua, Characteristics of activated carbons prepared
from pistachio-nut shells by physical activation,
J. Colloid
Interface Sci., 267 (2003) 408–417.
- M. Ahmedna, W.E. Marshall, A.A. Husseiny, R.M. Rao,
I. Goktepe, The use of nutshell carbons in drinking water filters
for removal of trace metals, Water Res., 38 (2004) 1062–1068.
- A. Kumar, H.M. Jena, Removal of methylene blue and phenol
onto prepared activated carbon from Fox nutshell by chemical
activation in batch and fixed-bed column, J. Cleaner
Prod., 137 (2016) 1246–1259.
- T. Tay, S. Ucar, S. Karagoz, Preparation and characterization
of activated carbon from waste biomass, J. Hazard. Mater.,
165 (2009) 481–485.
- I.A.W. Tan, A.L. Ahmad, B.H. Hameed, Enhancement of
basic dye adsorption uptake from aqueous solutions using
chemically modified oil palm shell activated carbon, Colloids
Surf. A, 318 (2008) 88–96.
- L.S. Tan, K. Jain, C.A. Rozaini, Adsorption of textile dye
from aqueous solution on pretreated mangrove bark, an
agricultural waste: equilibrium and kinetics studies, J. Appl.
Sci. Environ. Sanit., 5 (2010) 283–294.
- A.-A. Pelaez-Cid, A.-M. Herrera-Gonzalez, M. Salazar-Villanueva, A. Bautista-Hernandez, Elimination of textile dyes
using activated carbons prepared from vegetable residues
and their characterization, J. Environ. Manage., 181 (2016)
269–278.
- T. Zhang, W.P. Walawender, L.T. Fan, M. Fan, D. Daugaard,
R.C. Brown, Preparation of activated carbon from forest and
agricultural residues through CO2 activation, Chem. Eng. J.,
105 (2004) 53–59.
- B. Royer, N.F. Cardoso, E.C. Lima, J.P. Vaghetti, N.M. Simon,
T. Calvete, R.C. Veses, Applications of Brazilian pine-fruit shell
in natural and carbonized forms as adsorbents to removal
of methylene blue from aqueous solutions: kinetic and
equilibrium study, J. Hazard. Mater., 164 (2009) 1213–1222.
- G.H. Oh, C.R. Park, Preparation and characteristics of ricestraw
based porous carbons with high adsorption capacity,
Fuel, 81 (2002) 327–336.
- V. Minkova, S.P. Marinov, R. Zanzi, E. Bjornbom, T. Budinova,
M. Stefanova, L. Lakov, Thermochemical treatment of biomass
in a flow of steam or in a mixture of steam and carbon dioxide,
Fuel Process. Technol., 62 (2000) 45–52.
- A. Abdel-Nasser, El-Hendawy, S.E. Samra, B.S. Girgis, Adsorption
characteristics of activated carbons obtained from
corncobs, Colloids Surf. A, 180 (2001) 209–221.
- V. Minkova, M. Razvigorova, E. Bjornbom, R. Zanzi, T. Budinova,
N. Petrov, Effect of water vapour and biomass nature on
the yield and quality of the pyrolysis products from biomass,
Fuel Process. Technol., 70 (2001) 53–61.
- B.S. Girgis, S.S. Yunis, A.M. Soliman, Characteristics of
activated carbon from peanut hulls in relation to conditions
of preparation, Mater. Lett., 57 (2002) 164–172.
- M. Fan, W. Marshall, D. Daugaard, R.C. Brown, Steam
activation of chars produced from oat hulls and corn stover,
Bioresour. Technol., 93 (2004) 103–107.
- Y.S. Al-Degs, M.I. El-Barghouthi, A.H. El-Sheikh, G.M. Walker,
Effect of solution pH, ionic strength, and temperature on
adsorption behavior of reactive dyes on activated carbon,
Dyes Pigm., 77 (2008) 16–23.
- E.N. El Qada, S.J. Allen, G.M. Walker, Adsorption of basic
dyes from aqueous solution onto activated carbons, Chem.
Eng. J., 135 (2008) 174–184.
- M. Abassi, N.R. Asl, Removal of hazardous reactive blue
19 dye from aqueous solution by agricultural waste, J. Iran.
Chem. Res., 2 (2009) 221–230.
- P.S. Kumar, S.J. Varjani, S. Suganya, Treatment of dye
wastewater using an ultrasonic aided nanoparticle stacked
activated carbon: kinetic and isotherm modelling, Bioresour.
Technol., 250 (2018) 716–722.
- S.T. Ong, P.S. Keng, S.L. Lee, M.H. Leong, Y.T. Hung, Equilibrium
studies for the removal of basic dye by sunflower
seed
husk (Helianthus annus), Int. J. Phys. Sci., 5 (2010) 1270–1276.
- T. Parvathi, T. Maruthvanan, S. Sivamani, C. Prakash,
C.V. Koushik, Role of tapioca peel activated carbon (TPAC) in
decolourisation of Red Brown C4R reactive dye, Indian J. Sci.
Technol., 3 (2010) 290–292.
- C. Senthamarai, P.S. Kumar, M. Priyadharshini, P. Vijayalakshmi,
V.V. Kumar, P. Baskaralingam, K.V. Thiruvengadaravi,
S. Sivanesan, Adsorption behavior of methylene blue dye
onto surface modified Strychnos potatorum seeds, Env. Prog.
Sustain. Energy, 32 (2013) 624–632.
- R.R.V. Hemavathy, P.S. Kumar, S. Suganya, V. Swetha,
S.J. Varjani, Modelling on the removal of toxic metal ions from
aquatic system by different surface modified Cassia fistula
seeds, Bioresour. Technol., 281 (2019) 1–9.
- O.A. Ekpete, M. Horsfall Jr., Preparation and characterization
of activated carbon derived from fluted pumpkin stem waste
(Telfairia occidentalis Hook F), Res. J. Chem. Sci., 1 (2011) 10–17.
- S. Patil, S. Renukdas, N. Patil, Removal of methylene blue, a
basic dye from aqueous solution by ad-sorption using teak
tree (Tectona grandis) bark powder, Int. J. Environ. Sci., 1 (2011)
711–725.
- R. Srivastava, D.C. Rupainwar, A comparative evaluation for
adsorption of dye on neem bark and mango bark powder,
Indian J. Chem. Technol., 18 (2011) 67–75.
- E. Gunasundari, P.S. Kumar, Adsorption isotherm, kinetics
and thermodynamic analysis of Cu(II) ions onto the dried
algal biomass (Spirulina platensis), J. Ind. Eng. Chem., 56 (2017)
129–144.
- P.R. Yaashikaa, P.S. Kumar, S.J. Varjani, A. Saravanan,
Advances in production and application of biochar from
lignocellulosic feedstocks for remediation of environmental
pollutants, Bioresour. Technol., (2019), doi: 10.1016/j.biortech.
2019.122030.
- S.K. Kansal, A. Kumari, Potential of M. oleifera for the treatment
of water and wastewater, Chem. Rev., 114 (2014) 4993–5010.
- A. Hashem, R.A. Akasha, A. Ghith, D.A. Hussein, Adsorbent
based on agri-cultural wastes for heavy metal and dye
removal: a review, Energy Educ. Sci. Technol., 19 (2007)
69–86.
- M. Balat, Mechanisms of thermochemical biomass conversion
processes, Energy Sources Part A, 30 (2010) 649–659.
- R.A. Young, Structure, Swelling and Bonding of Cellulose
Fibers, in: Cellulose: Structure, Modification, and Hydrolysis,
Wiley and Sons, New York, 1986, pp. 91–128.
- H.L. Hergert, E.K. Pye, Recent History of Organo Solv
Pulping,
in: Tappi Notes-Solvent Pulping Symposium, 1992,
pp, 9–26.
- G.I. Mantanis, R.A. Young, R.M. Rowell, Swelling of compressed
cellulose fiber webs in organic liquids, Cellulose,
2 (1995) 1–22.
- R. Garcia-Valls, T.A. Hatton, Metal ion complexation with
lignin derivatives, Chem. Eng. J., 94 (2003) 99–105.
- D. Mohan, C.U. Pittman J., P.H. Steele, Pyrolysis of wood/biomass for bio-oil: a critical review, Energy Fuels, 20 (2006)
848–889.
- P.S. Kumar, R.V. Abhinaya, K.G. Lashmi, V. Arthi, R. Pavithra,
V. Sathyaselvabala, S.D. Kirupha, S. Sivanesan, Adsorption
of methylene blue dye from aqueous solution by agricultural
waste: equilibrium, thermodynamics, kinetics, mechanism
and process design, Colloid J., 73 (2011) 651–661.
- M.H. Liu, S.N. Hong, J.H. Huang, H.Y. Zhan, Adsorption/desorption behavior between a novel amphoteric granular
lignin adsorbent and reactive red K-3B in aqueous solutions,
J. Environ. Sci., 17 (2005) 212–214.
- M.H. Liu, J.H. Huang, Removal and recovery of cationic
dyes from aqueous solutions using spherical sulfonic lignin
adsorbent, J. Appl. Polym. Sci., 101 (2006) 2284–2291.
- P.J.M. Suhas, M.M.L. Ribeiro, Lignin from natural adsorbent
to activated carbon: a review, Bioresour. Technol., 98 (2007)
2301–2312.
- P.S. Kumar, R. Sivaranjanee, U. Vinothini, M. Raghavi,
K. Rajasekar, K. Ramakrishnan, Adsorption of dye onto raw
and surface modified tamarind seeds: isotherms, process
design, kinetics and mechanism, Desal. Wat. Treat., 52 (2014)
2620–2633.
- A.B. Albadarin, M.N. Collins, M. Naushad, S. Shirazian,
G. Walker, C. Mangwandi, Activated lignin-chitosan extruded
blends for efficient adsorption of methylene blue, Chem. Eng.
J., 307 (2017) 264–272.
- S.Y.H. Zhang, P. Dubey, J.L. Margrave, S.S. Shukla, The role
of sawdust in the removal of unwanted materials from water,
J. Hazard. Mater., 95 (2002) 137–152.
- Y.S. Ho, G. McKay, Kinetic models for the sorption of dye
from aqueous solution by wood, Process. Saf. Environ. Prot.,
76 (1998) 183–191.
- 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.
- M. Ozacar, I.A. Sengil, Adsorption of metal complex dyes
from aqueous solutions by pine sawdust, Bioresour. Technol.,
96 (2005) 791–795.
- S.D. Khattri, M.K. Singh, Colour removal from synthetic
dye wastewater using a bioadsorbent, Water Air Soil Pollut.,
120 (2000) 283–294.
- V.K. Garg, R. Gupta, A. Bala-Yadav, R. Kumar, Dye removal
from aqueous solution by adsorption on treated sawdust,
Bioresour. Technol., 89 (2003) 121–124.
- F.A. Batzias, D.K. Sidiras, Dye adsorption by calcium chloride
treated beech sawdust in batch and fixed-bed systems,
J. Hazard. Mater., 114 (2004) 167–174.
- S. Suganya, P.S. Kumar, A. Saravanan, P.S. Rajan, C. Ravikumar,
Computation of adsorption parameters for the removal of dye
from wastewater by microwave assisted sawdust: theoretical
and experimental analysis, Environ. Toxicol. Pharmacol.,
50 (2017) 45–57.
- F.A. Batzias, D.K. Sidiras, Dye adsorption by prehydrolysed
beech sawdust in batch and fixed-bed systems, Bioresour.
Technol., 98 (2007) 1208–1217.
- A.E. Ofomaja, Y.S. Ho, Effect of temperatures and pH on
methyl violet biosorption by Mansonia wood sawdust,
Bioresour. Technol., 99 (2008) 5411–5417.
- V.S. Mane, P.V. Vijay Babu, Studies on the adsorption of
Brilliant Green dye from aqueous solution onto low-cost
NaOH treated saw dust, Desalination, 273 (2011) 321–329.
- L. Sun, D. Chen, S. Wan, Z. Yu, Performance, kinetics, and
equilibrium of methylene blue adsorption on biochar derived
from eucalyptus saw dust modified with citric, tartaric, and
acetic acids, Bioresour. Technol., 198 (2015) 300–308.
- S. Agarwal, I. Tyagi, V.K. Gupta, N. Ghasemi, M. Shahivand,
M. Ghasemi, Kinetics, equilibrium studies and thermodynamics
of methylene blue adsorption on Ephedra strobilacea
saw dust and modified using phosphoric acid and zinc
chloride, J. Mol. Liq., 218 (2016) 208–218.
- P.T. Williams, N. Nugranad, Comparison of products from
the pyrolysis and catalytic pyrolysis of rice husks, Energy,
25 (2000) 493–513.
- K. Mohanty, J.T. Naidu, B.C. Meikap, M.N. Biswas, Removal
of crystal violet from wastewater by activated carbons prepared
from rice husk, Ind. Eng. Chem. Res., 45 (2006) 5165–5171.
- S. Chakraborty, S. Chowdhury, P.D. Saha, Adsorption of
Crystal Violet from aqueous solution onto NaOH-modified
rice husk, Carbohydr. Polym., 84 (2011) 1533–1541.
- G. McKay, J.F. Porter, G.R. Prasad, The removal of dye colours
from aqueous solutions by adsorption on low-cost materials,
Water Air Soil Pollut., 114 (1999) 423–438.
- D. Kalderis, S. Bethanis, P. Paraskeva, E. Diamadopoulos,
Production of activated carbon from bagasse and rice husk
by a single-stage chemical activation method at low retention
times, Bioresour. Technol., 99 (2008) 6809–6816.
- P.S. Kumar, K. Ramakrishnan, S.D. Kirupha, S. Sivanesan,
Thermodynamic and kinetic studies of cadmium adsorption
from aqueous solution onto rice husk, Braz. J. Chem. Eng.,
27 (2010) 347–355.
- C. Ravikumar, P.S. Kumar, S.K. Subhashni, P.V. Tejaswini,
V. Varshini, Microwave assisted fast pyrolysis of corn cob, corn
stover, saw dust and rice straw: experimental investigation
on bio-oil yield and high heating values, Sustainable Mater.
Technol., 11 (2017) 19–27.
- Y. Safa, H.N. Bhatti, Biosorption of Direct Red-31 and Direct
Orange-26 dyes by rice husk: application of factorial design
analysis, Chem. Eng. Res. Des., 89 (2011) 2566–2574.
- F. Adam, L. Muniandy, R. Thankappan, Ceria and titania
incorporated silica based catalyst prepared from rice husk:
adsorption and photocatalytic studies of methylene blue,
J. Colloid Interface Sci., 406 (2011) 209–216.
- L. Lin, S.-R. Zhai, Z.-Y. Xiao, Y. Song, Q.-D. An, X.-W. Song,
Dye adsorption of mesoporous activated carbons produced
from NaOH-pretreated rice husks, Bioresour. Technol., 136
(2013) 437–443.
- M.P. Tavlieva, S.D. Genieva, V.G. Georgieva, L.T. Vlaev, Kinetic
study of brilliant green adsorption from aqueous solution
onto white rice husk ash, J. Colloid Interface Sci., 409 (2013)
112–122.
- L. Ding, B. Zou, W. Gao, Q. Liu, Z. Wang, Y. Guo, X. Wang,
Y. Liu, Adsorption of Rhodamine-B from aqueous solution
using treated rice husk-based activated carbon, Colloids Surf.
A, 446 (2014) 1–7.
- L. Leng, X. Yuan, G. Zeng, J. Shao, X. Chen, Z. Wu, H. Wang,
X. Peng, Surface characterization of rice husk bio-char produced
by liquefaction and application for cationic dye
(Malachite green) adsorption, Fuel, 155 (2015) 77–85.
- G.M.K. Tolba, N.A.M. Barakat, A.M. Bastaweesy, E.A. Ashour,
W. Abdelmoez, M.H. El-Newehy, S.S. Al-Deyab, H.Y. Kim,
Effective and highly recyclable nanosilica produced from the
rice husk for effective removal of organic dyes, J. Ind. Eng.
Chem., 29 (2015) 134–145.
- A. Masoumi, K. Hemmati, M. Ghaemy, Low-cost nanoparticles
sorbent from modified rice husk and a copolymer for efficient
removal of Pb(II) and crystal violet from water, Chemosphere,
146 (2016) 253–262.
- S. Chanda, Y. Baravalia, M. Kaneria, K. Rakholiya, Fruit and
Vegetable Peels – Strong Natural Source of Antimicrobics,
FORMATEX, Badajoz, Spain, 2010, pp. 444–450.
- C. Namasivayam, N. Muniasamy, K. Gayatri, M. Rani, K. Ranganathan,
Removal of dyes from aqueous solutions by cellulosic
waste orange peel, Bioresour. Technol., 57 (1996) 37–43.
- R. Sivaraj, C. Namasivayam, K. Kadirvelu, Orange peel as
an adsorbent in the removal of acid violet 17 (acid dye) from
aqueous solutions, Waste Manage., 21 (2001) 105–110.
- C. Namasivayam, R.T. Yamuna, J. Jayanthi, Removal of
methylene blue from wastewater by adsorption on cellulosic
waste, orange peel, Cellulose Chem. Technol., 37 (2003)
333–339.
- M. Arami, N.Y. Limaee, N.M. Mahmoodi, N.S. Tabrizi, Removal
of dyes from colored textile wastewater by orange peel
adsorbent: equilibrium and kinetic studies, J. Colloid Interface
Sci., 288 (2005) 371–376.
- F.D. Ardejani, K. Badii, N.Y. Limaee, N.M. Mahmoodi,
M. Arami, S.Z. Shafaei, A.R. Mirhabibi, Numerical modelling
and laboratory studies on the removal of Direct Red 23 and
Direct Red 80 dyes from textile effluents using orange peel,
a low-cost adsorbent, Dyes Pigm., 73 (2007) 178–185.
- A. Khaled, A. El Nemr, A. El-Sikaily, O. Abdelwahab,
Treatment of artificial textile dye effluent containing Direct
Yellow 12 by orange peel carbon, Desalination, 238 (2009)
210–232.
- A.E. 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.
- J. Liang, J. Wu, P. Li, X.Wang, B. Yang, Shaddock peel as a
novel low-cost adsorbent for removal of methylene blue
from dye wastewater, Desal. Wat. Treat., 39 (2012) 70–75.
- S.X. Hou, Adsorption properties of pomelo peels against
methylene blue in dye wastewater, Adv. Mater. Res., 634–638
(2013) 178–181.
- M.R. Mafra, L. Igarashi-Mafra, D.R. Zuim, E.C. Vasques,
M.A. Ferreira, Adsorption of remazol brilliant blue on an
orange peel adsorbent, Brazil. J. Chem. Eng., 30 (2013) 657–665.
- GEd. Nascimento, M.M.M.B. Duarte, N.F. Campos,
C.M.B.D.M. Barbosa, V.L.D. Silva, Adorption of the reactive
gray BF-2R dye on orange peel: kinetics and equilibrium
studies, Desal. Wat. Treat., 52 (2013) 1578–1588.
- M.E. Argun, D. Guclu, M. Karatas, Adsorption of Reactive
Blue 114 dye by using a new adsorbent: Pomelo peel, J. Ind.
Eng. Chem., 20 (2014) 1079–1084.
- A. Asfaram, M.R. Fathi, S. Khodadoust, M. Naraki, Removal
of Direct Red 12B by garlic peel as a cheap adsorbent: kinetics,
thermodynamic and equilibrium isotherms study of removal,
Spectrochim. Acta A. Mol. Biomol. Spectrosc., 127 (2014)
415–421.
- O.S. Bello, M.A. Ahmad, B. Semire, Scavenging malachite
green dye from aqueous solutions using pomelo (Citrus
grandis) peels: kinetic, equilibrium and thermodynamic
studies, Desal. Wat. Treat., 56 (2015) 521–535.
- M.E. Fernandez, G.V. Nunell, P.R. Bonelli, A.L. Cukierman,
Activated carbon developed from orange peels: batch and
dynamic competitive adsorption of basic dyes, Ind. Crops
Prod., 62 (2014) 437–445.
- B.O. Isiuk, M. Horsfall, A.I. Spiff, Removal of methyl red from
aqueous solution by NaOH-activated cassava peels carbon
in a fixed-bed column, Res. J. Appl. Sci., 9 (2014) 238–243.
- S.-W. Liew, S.-T. Ong, Removal of basic blue 3 dye using
pomelo peel, Asian J. Chem., 26 (2014) 3808–3814.
- L.D. Luo, H.Y. Huang, J.H. Bi, L.L. Tan, H. Zhang, D. Zhang,
Optimization of malachite green by KOH-modified grapefruit
peel activated carbon: application of response surface methodology,
Appl. Mech. Mater., 529 (2014) 611–615.
- R. Lafi, S. Rezma, A. Hafiane, Removal of toluidine blue from
aqueous solution using orange peel waste (OPW), Desal. Wat.
Treat., 56 (2015) 2754–2765.
- G. Annadurai, R. Juang, D. Lee, Use of cellulose-based wastes
for adsorption of dyes from aqueous solutions, J. Hazard.
Mater., 92 (2002) 263–274.
- S. Banerjee, M.G. Dastidar, Use of jute processing wastes for
treatment of wastewater contaminated with dye and other
organics, Bioresour. Technol., 96 (2005) 1919–1928.
- K.G. Bhattacharyya, A. Sharma, Kinetics and thermodynamics
of methylene blue adsorption on Neem (Azadirachta indica)
leaf powder, Dyes Pigm., 65 (2005) 51–59.
- Z. Aksu, I.A. Isoglu, Use of agricultural waste sugar beet
pulp for the removal of Gemazol turquoise blue-G reactive
dye from aqueous solution, J. Hazard. Mater., 137 (2006)
418–430.
- Y. Bulut, H.A. Aydin, Kinetics and thermodynamics study of
methylene blue adsorption on wheat shells, Desalination, 194
(2006) 259–267.
- K.V. Kumar, K. Porkodi, Mass transfer, kinetics and equilibrium
studies for the biosorption of methylene blue using
Paspalum notatum, J. Hazard. Mater., 146 (2007) 214–226.
- M. Dogan, H. Abak, M. Alkan, Biosorption of methylene blue
from aqueous solutions by hazelnut shells: equilibrium,
parameters
and isotherms, Water Air Soil Pollut., 192 (2008)
141–153.
- N.A. Oladoja, I.O. Asia, C.O. Aboluwoye, Y.B. Oladimeji,
A.O. Ashogbon, Studies on the sorption of basic dye by
rubber (Hevea brasiliensis) seed shell, Turk. J. Eng. Environ.
Sci., 32 (2008) 143–152.
- L.S. Oliveira, A.S. Franca, T.M. Alves, S.D.F. Rocha, Evaluation
of untreated coffee husks as potential biosorbents for treatment
of dye contaminated waters, J. Hazard. Mater., 155 (2008)
507–512.
- V. Ponnusami, S. Vikram, S.N. Srivastava, Guava (Psidium
guajava) leaf powder: novel adsorbent for removal of methylene
blue from aqueous solutions, J. Hazard. Mater., 152 (2008)
276–286.
- F. Batzias, D. Sidiras, E. Schroeder, C. Weber, Simulation of
dye adsorption on hydrolyzed wheat straw in batch and
fixed-bed systems, Chem. Eng. J., 148 (2009) 459–472.
- B.H. Hameed, Removal of cationic dye from aqueous solution
using jackfruit peel as non-conventional low-cost adsorbent,
J. Hazard. Mater., 162 (2009) 344–350.
- S.D. Gisi, G. Lofrano, M. Grassi, M. Notarnicola, Characteristics
and adsorption capacities of low-cost sorbents for
wastewater
treatment: a review, Sustain. Mater. Technol.,
9 (2016) 10–40.
- A. Bhatnagar, M. Sillanpaa, Utilization of agro-industrial
and municipal waste materials as potential adsorbents
for water treatment - a review, Chem. Eng. J., 157 (2010)
277–296.
- A. Bhatnagar, V.J.P. Vilar, C.M.S. Botelho, R.A.R. Boaventura,
A review of the use of redmud as adsorbent for the removal
of toxic pollutants from water and wastewater, Environ.
Technol., 32 (2011) 231–249.
- V.K. Gupta, S.K. Srivastava, D. Mohan, Equilibrium uptake,
sorption dynamics, process optimization, and column operations
for the removal and recovery of malachite green from
wastewater using activated carbon and activated slag, Ind.
Eng. Chem. Res., 36 (1997) 2207–2218.
- A.K. Jain, V.K. Gupta, A. Bhatnagar, M. Suhas, Utilization of
industrial waste products as adsorbents for the removal of
dyes, J. Hazard. Mater., 101 (2003) 31–42.
- P. Janos, H. Buchtova, M. Ryznarova, Sorption of dyes
from aqueous solutions onto fly ash, Water Res., 37 (2003)
4938–4944.
- K. Okada, N. Yamamoto, Y. Kameshima, A. Yasumori, Adsorption
properties of activated carbon fromwaste newspaper
prepared by chemical and physical activation, J. Colloid Interface
Sci., 262 (2003) 194–199.
- S. Wang, Y. Boyjoo, A. Choueib, Z.H. Zhu, Removal of dyes
from aqueous solution using fly ash and red mud, Water Res.,
39 (2005) 129–138.
- S. Wang, L. Li, H. Wu, Z.H. Zhu, Unburned carbon as a lowcost
adsorbent for treatment of methylene blue-containing
wastewater, J. Colloid Interface Sci., 292 (2005) 336–343.
- A. Tor, Y. Cengeloglu, Removal of congo red from aqueous
solution by adsorption onto acid activated red mud, J. Hazard.
Mater., 138 (2006) 409–415.
- J.X. Lin, S.L. Zhan, M.H. Fang, X.Q. Qian, H.Yang, Adsorption
of basic dye from aqueous solution onto fly ash, J. Environ.
Manage., 87 (2008) 193–200.
- W.-T. Tsai, H.-C. Hsu, T.-Y. Su, K.-Y. Lin, C.-M. Lin, Removal
of basic dye (methylene blue) from wastewaters utilizing beer
brewery waste, J. Hazard. Mater., 154 (2008) 73–78.
- Q. Wang, Z. Luan, N. Wei, J. Li, C. Liu, The color removal
of dye wastewater by magnesium chloride/red mud (MRM)
from aqueous solution, J. Hazard. Mater., 170 (2009)
690–698.
- P. Pengthamkeerati, T. Satapanajaru, N. Chatsatapattayakul,
P. Chairattanamanokorn, N. Sananwai, Alkaline treatment
of biomass fly ash for reactive dye removal from aqueous
solution, Desalination, 261 (2010) 34–40.
- D. Sun, X. Zhang, Y. Wu, X. Liu, Adsorption of anionic dyes
from aqueous solution on fly ash, J. Hazard. Mater., 181 (2010)
335–342.
- G. Atun, G. Hisarl, A.E. Kurtoglu, N. Ayar, A comparison
of basic dye adsorption onto zeolitic materials synthesized
from fly ash, J. Hazard. Mater., 187 (2011) 562–573.
- P. Hareesh, K.B. Babitha, S. Shukla, Processing fly ash
stabilized hydrogen titanate nano-sheets for industrial dye-removal
application, J. Hazard. Mater., 229–230 (2012) 177–182.
- S. Banerjee, G.C. Sharma, M.C. Chattopadhyaya, Y.C. Sharma,
Kinetic and equilibrium modeling for the adsorptive removal
of methylene blue from aqueous solutions on of activated
fly ash (AFSH), J. Environ. Chem. Eng., 2 (2014) 1870–1880.
- C. Jarusiripot, Removal of reactive dye by adsorption over
chemical pretreatment coal based bottom ash, Procedia
Chem., 9 (2014) 121–130.
- M. Shirzad-Siboni, S.J. Jafari, O. Giahi, I. Kim, S.M. Lee,
J.K. Yang, Removal of acid blue 113 and reactive black 5 dye
from aqueous solutions by activated red mud, J. Ind. Eng.
Chem., 20 (2014) 1432–1437.
- M. Visa, A.-M. Chelaru, Hydrothermally modified fly ash
for heavy metals and dyes removal in advanced wastewater
treatment, Appl. Surf. Sci., 303 (2014) 14–22.
- A. Duta, M. Visa, Simultaneous removal of two industrial
dyes by adsorption and photocatalysis on a fly-ash–TiO2
composite, J. Photochem. Photobiol. A, 306 (2015) 21–30.
- V. Tharaneedhar, P.S. Kumar, A. Saravanan, C. Ravikumar,
V. Jaikumar, Prediction and interpretation of adsorption
parameters for the sequestration of methylene blue dye from
aqueous solution using microwave assisted corncob activated
carbon, Sustain. Mater. Technol., 11 (2017) 1–11.
- W. Hajjaji, R.C. Pullar, J.A. Labrincha, F. Rocha, Aqueous Acid
Orange 7 dye removal by clay and red mud mixes, Appl. Clay.
Sci., 126 (2016) 197–206.
- Saakshy, K. Singh, A.B. Gupta, A.K. Sharma, Fly ash as low
cost adsorbent for treatment of effluent of handmade paper
industry-kinetic and modelling studies for direct black dye,
J. Cleaner Prod., 112 (2016) 1227–1240.
- W. Cherdcho, S. Nithettham, J. Charoenpanich, Removal of
Cr(VI) from synthetic wastewater by adsorption onto coffee
ground and mixed waste tea, Chemosphere, 221 (2019)
758–767.
- Z. Jiang, D. Hu, Molecular mechanism of anionic dyes
adsorption on cationized rice husk cellulose from agricultural
wastes, J. Mol. Liq., 276 (2019)105–114.
- S. Hashemian, K. Salari, Z.A. Yazdi, Preparation of activated
carbon from agricultural wastes (almond shell and orange
peel) for adsorption of 2-pic from aqueous solution, J. Ind.
Eng. Chem., 20 (2014) 1892–1900.
- N. Tahir, H.N. Bhatti, M. Iqbal, S. Noreen, Biopolymers
composites with peanut hull waste biomass and application
for Crystal Violet adsorption, Int. J. Bio. Macromol., 94 (2017)
210–220.
- D. Tian, Z. Xu, D. Zhang, W. Chen, J. Cai, H. Deng, Z. Sun,
Y. Zhou, Micro–mesoporous carbon from cotton waste activated
by FeCl3/ZnCl2: preparation, optimization, characterization
and adsorption of methylene blue and eriochrome
black T, J. Solid State Chem., 269 (2019) 580–587.
- A.L. Denardin da rosa, E. Carissimi, G.L. Dotto, H. Sander,
L.A. Feris, Biosorption of Rhodamine B dye from dyeing stones
effluents using the green microalgae Chlorella pyrenoidosa,
J. Cleaner Prod., 198 (2018) 1302–1310.
- R. Dallel, A. Kesraoui, M. Seffeh, Biosorption of cationic
dye onto “Phragmites australis” fibers: characterization and
mechanism, J. Environ. Chem. Eng., 6 (2018) 7247–7256.
- D. tomato, F.C. Drumm, P. Grassi, J. Georgin, A.E. Gerhardt,
G.L. Dotto, M.A. Mazutti, Residual biomass of Nigrospora sp,
from process of the microbial oil extraction for the biosorption
of procion red H-E7B dye, J. Water Process Eng., 31 (2019)
100818.
- P.T. Juchen, H.H. Piffer, M.T, Veit, G. Goncalves, S.M. Palacio,
J.C. Zanette, Biosorption of reactive blue BF-5G dye by malt
bagasse: kinetic and equilibrium studies, J. Environ. Chem.
Eng., 6 (2018) 7111–7118.
- T.A. Nguyen, C.C. fu, R.S. Juang, Biosorption and biodegradation
of a sulphur dye in high-strength dyeing wastewater
by Acidithiobacillus thioxidans, J. Environ. Manage., 182 (2016)
265–271.
- H.D. Bouras, A.R. Yeddou, N. Bouras, D. Hellel, M.D. Holtz,
N. Sabaou, A. Chergui, B. Nadjemi, Biosorption of Congo red
dye by Aspergillus carbonsrius M333 and Penicillium glabrum
Pg1: kinetics, equilibrium and thermodynamic studies,
J. Taiwan Inst. Chem. Eng., 80 (2017) 915–923.
- N. Mokhtar, E.A. Aziz, A. Aris, W.F.W. Ishak, N.S. Mohd Ali,
Biosorption of azo-dye using marine macro alga of Euchema
spinosum, J. Environ. Chem. Eng., 5 (2017) 5721–5731.
- S. Mona, A. Kaushik, C.P. Laushik, Biosorption of reactive
dye by waste biomass of Nostoc linckia, Ecol. Eng., 37 (2011)
1589–1594.
- I.G. Coroniulla, L.M. Barrera, E.C. Urbina, Kinetic, isotherm
abnd thermodynamic studies of amaranth dye biosorption
from aqueous solution onto water hyacinth leaves, J. Environ.
Manage., 152 (2015) 99–108.
- M. Daoud, O. Benturki, P. Girods, A. Donnot, S. Fontona,
Adsorption ability of activated carbons from Phoenix
dactylifera rachis and Ziziphus jujuba stones for the removal
of commercial dye and the treatment of dyestuff wastewater,
Microchem. J., 148 (2019) 49–52.