References
- W.S. Alencar, E.C. Lima, B. Royer, B.D. Dos Santos, T. Calvete,
E.A. Da Silva, C.N. Alves, Application of Aqai stalks as biosorbents
for the removal of the dye Procion Blue MX-R from
aqueous solution, Sep. Sci. Technol., 47 (2012) 513–526.
- C.I. Pearce, J.R. Lloyd, J.T. Guthrie, The removal of color from
textile wastewater using whole bacterial cells: A review, Dyes
Pigm., 58 (2003) 179–196.
- G. McMullan, C. Meehan, A. Conneely, N. Kirby, T. Robinson,
P. Nigam, I.M. Banat, R. Marchant, W.F. Smyth, Microbial
decolorization and degradation of textile dyes, Appl. Microbiol.
Biotechnol., 56 (2001) 81–87.
- N. Dizge, C. Aydiner, E. Demirbas, M. Kobya, S. Kara, Adsorption
of reactive dyes from aqueous solutions by fly ash: kinetic
and equilibrium studies, J. Hazard. Mater., 150 (2008) 737–746.
- P. Senthil Kumar, J. Pavithra, S. Suriya, M. Ramesh, K. Anish
Kumar, Sargassum wightii, a marine alga is the source for
the production of algal oil, bio-oil, and application in the dye
wastewater treatment, Desal. Water Treat., 55 (2015) 1342–1358.
- P. Senthil 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. Water Treat., 52 (2014) 2620–
2633.
- N.F. Cardoso, E.C. Lima, I.S. Pinto, C.V. Amavisca, B. Royer,
R.B. Pinto, W.S. Alencar, S.F.P. Pereira, Application of cupuassu
shell as biosorbent for the removal of textile dyes from aqueous
solution, J. Environ. Manage., 92 (2011) 1237–1247.
- R.O. Alves de Lima, A.P. Bazo, D.M. Salvadori, C.M. Rech, D.
De Palma Oliveira, G. De Aragão Umbuzeiro, Mutagenic and
carcinogenic potential of a textile azo dye processing plant
effluent that impacts a drinking water source, Mutat. Res.
Genet. Toxicol. Environ. Mutagen., 626 (2007) 53–60.
- L.D. Prola, F.M. Machado, C.P. Bergmann, F.E. De Souza, C.R.
Gally, E.C. Lima, M.A. Adebayo, S.L. Dias, T. Calvete, Adsorption
of Direct Blue 53 dye from aqueous solutions by multiwalled
carbon nanotubes and activated carbon, J. Environ
Manage.,130 (2013) 166–175.
- F. Gholami Borujeni, A.H. Mahvi, S. Naseri, M.A. Faramarzi,
R.R. Nabizadeh, M.A. Mohammadi, Enzymatic treatment and
detoxification of Acid Orange 7 from textile wastewater, App.
Biochem. Biotechnol., 165 (2011) 1274–1284.
- V. Mathivanan, S. Geetha Manjari, R. Ineya, R. Saravanathamizhan,
P. Senthil Kumar, K. Ramakrishnan, Enhanced photocatalytic
decolorization of reactive red by sonocatalysis using
TiO2 catalyst: Factorial design of experiments, Desal. Water
Treat., 57 (2016) 7120–7129.
- V.K. Gupta, S. Agarwal, T.A. Saleh, Chromium removal by
combining the magnetic properties of iron oxide with adsorption
properties of carbon nanotubes. Water Res., 45 (2011)
2207–2212.
- S. Dazhong, J. Fana, Z. Weizhi, G. Baoyu, Y. Qin Yan, Q. Kanga,
Adsorption kinetics and isotherm of anionic dyes onto organo-bentonite from single and multisolute systems, J. Hazard.
Mater., 172 (2009) 99–107.
- H. Sadegh, R. Ghoshekandi, S. Agarwal, I. Tyagi, M. Asif, V.K.
Gupta, Microwave-assisted removal of malachite green by carboxylate
functionalized multi-walled carbon nanotubes: Kinetics
and equilibrium study, J. Molec. Liq., 206 (2015) 151–158.
- R. Long, R. Yang, Carbon nanotubes as superior sorbent for
dioxin removal, J. Am. Chem. Soc., 123(9) (2001) 2058–2059.
- W. Konicki, I. Pełech, E. Mijowska, I.J. Ska, Adsorption of
anionic dye Direct Red 23 onto magnetic multi-walled carbon
nanotubes-Fe3C nanocomposite: Kinetics, equilibrium and
thermodynamics, Chem. Eng. J., 210 (2012) 87–95.
- S.B. Fagan, A.G.S. Filho, J.O.G. Lima, J.M. Filho, O.P. Ferreira,
I.O. Mazali et al., 1,2-Dichlorobenzene interacting with carbon
nanotubes, Nano Lett., 4(7) (2004) 1285–1288.
- G.P. Rao, C. Lu, F. Su, Sorption of divalent metal ions from
aqueous solution by carbon nanotubes: A review, Sep. Purif.
Technol., 58 (2007) 24–231.
- V.K. Gupta, B. Gupta, A. Rastogi, S. Agarwal, A. Nayak, A
comparative investigation on adsorption performances of
mesoporous activated carbon prepared from waste rubber tire
and activated carbon for a hazardous azo dye-Acid Blue 113, J.
Hazard. Mater., 186 (2011) 891–901.
- T.A. Saleh, V.K. Gupta, Column with CNT/magnesium oxide
composite for lead (II) removal from water, Environ. Sci. Pollut.
Res., 19 (2012) 1224–1228.
- L. Ai, L. Li, Efficient removal of organic dyes from aqueous
solution with ecofriendly biomass-derived carbon@montmorillonite
nanocomposites by one-step hydrothermal process,
Chem. Eng. J., 223 (2013) 688–695.
- W.E. Teo, S. Ramakrishna, A review on electrospinning design
and nanofiber assemblies, Nanotechnology, 17 (2006) 89–106.
- K. Ohkawa, D. Cha, H. Kim, A. Nishida, H. Yamamoto, Electrospinning
of chitosan, Macromol. Rapid Commun., 25 (2004)
1600–1605.
- C.J. Buchko, L.C. Chena, Y. Shena, D.C. Martin, Processing and
microstructural characterization of porous biocompatible protein
polymer thin films, Polymer, 40 (1999) 7397–7407.
- W. Qingqing, D. Yuanzhi, F. Quan, H. Fenglin, L. Keyu, L.
Jingyan, W. Qufu, Nanostructures and surface nanomechanical
properties of polyacrylonitrile/graphene oxide composite
nanofibers by electrospinning, J. Appl. Polym. Sci., 128 (2013)
1152–1157.
- X. Li, C. Zeng, J. Jiang, L. Ai, Magnetic cobalt nanoparticles
embedded in hierarchically porous nitrogen-doped carbon
frameworks for highly efficient and well-recyclable catalysis,
J. Mater. Chem. A., 4 (2016) 7476–7482.
- K. Saeed, S. Haider, T.J. Oh, S.Y. Park, Preparation of amidoxime
modified polyacrylonitrile (PAN-oxime) nanofibers and
their applications to metal ions adsorption, J. Membr. Sci., 322
(2008) 400–405.
- S. Saber-Samandari, H. Joneidi-Yekta, M. Mohseni, Adsorption
of anionic and cationic dyes from aqueous solution using gelatin-based magnetic nanocomposite beads comprising carboxylic
acid functionalized carbon nanotube, Chem. Eng. J., 308
(2017) 1133–1144.
- S. Swaminathan, A. Muthumanickam, N.M. Imayathamizhan,
An effective Removal of Methylene blue dye using Polyacrylonitrile
Yarn waste/ Graphene oxide nanofibrous composite,
Int. J. Environ. Sci. Technol., 12 (2015) 3499–3508.
- S. Lagergren, B.K. Svenska, Zur theorie der sogenannten
adsorption geloester stoffe, Vetenskaps Akad, Handl., 24 (1898)
1–39.
- Y.S. Ho, G. McKay, Pseudo-second order model for sorption
processes, Process Biochem., 34 (1999) 451–465.
- G. Baskar, S.K. Pavithraa, K. Sheraz Fahada, S. Renganathan,
Optimization, equilibrium, kinetic modeling, and thermodynamic
studies of biosorption of aniline blue by the dead
biomass of Aspergillus fumigates, Desal. Water Treat., 52 (2014)
3547–3554.
- K.R. Hall, L.C. Eagleton, A. Acrivers, T. Vermenlem, Pore and
solid diffusion and kinetics in fixed adsorption constant pattern
conditions, Ind. Eng. Chem. Res., 5 (1966) 212–223.
- M. Khan, I.M. Lo, Removal of ionizable aromatic pollutants
from contaminated water using nano-Fe2O3 based magnetic
cationic hydrogel: Sorptive performance, magnetic separation
and reusability, J. Hazard. Mater., 322 (2017) 195–204.
- D.M. Manohar, B.F. Noeline, T.S. Anirudhan, Adsorption performance
of Al-pillared bentonite clay for the removal of cobalt
(II) from aqueous phase, Appl. Clay Sci., 31 (2006) 194–206.
- 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.