References
- Z. Hasan, S.H. Jhung, Removal of hazardous organics from
water using metal-organic frameworks (MOFs): Plausible
mechanisms for selective adsorptions, J. Hazard. Mater., 283
(2015) 329–339.
- C.M. Kao, M.S. Chou, W.L. Fang, B.W. Liu, B.R. Huang, Regulating
color textile wastewater by 3/31 wavelength admi methods
in Taiwan, Chemosphere, 44 (2001) 1055–1063.
- E. Hosseini Koupaie, M. Alavi Moghaddam, S. Hashemi,
Post-treatment of anaerobically degraded azo dye Acid Red 18
using aerobic moving bed biofilm process: enhanced removal
of aromatic amines, J. Hazard. Mater., 195 (2011) 147–154.
- H. Tajizadegan, M. Jafari, M. Rashidzadeh, A. Saffar-Teluri,
A high activity adsorbent of ZnO–Al2O3 nanocomposite particles:
synthesis, characterization and dye removal efficiency,
Appl. Surf. Sci., 276 (2013) 317–322.
- A.Y. Dursun, O. Tepe, Removal of Chemazol Reactive Red 195
from aqueous solution by dehydrated beet pulp carbon, J. Hazard.
Mater., 194 (2011) 303–311.
- M.F. Zhao, Z.B. Tang, P. Liu, Removal of methylene blue from
aqueous solution with silica nano-sheets derived from vermiculite,
J. Hazard. Mater., 158 (2008) 43–51.
- M. Auta, B.H. Hameed, Coalesced chitosan activated carbon
composite for batch and fixed-bed adsorption of cationic and
anionic dyes, Colloids Surf. B, 105 (2013) 199–206.
- S.E. Subramani, N. Thinakaran, Isotherm, kinetic and thermodynamic
studies on the adsorption behavior of textile dyes
onto chitosan, Process Saf. Environ. Prot., 106 (2016) 1–10.
- Z. Khan, K. Jain, A. Soni, D. Madamwar, Microaerophilic degradation
of sulphonated azo dye Reactive Red 195 by bacterial
consortium AR1 through co-metabolism, Int. Biodeterior. Biodegrad.,
94 (2014) 167–175.
- S. Sabar, M.A. Nawi, W.S.W. Ngah, Photocatalytic removal of
Reactive Red 4 dye by immobilised layer-by-layer TiO2/crosslinked
chitosan derivatives system, Desal. Water Treat., 57
(2016) 5851–5857.
- Y. Liu, W. Jin, Y. Zhao, G. Zhang, W. Zhang, Enhanced catalytic
degradation of methylene blue by α-Fe2O3/graphene oxide via
heterogeneous photo-Fenton reactions, Appl. Catal., B, 206
(2017) 642–652.
- K. Rajkumar, M. Muthukumar, Optimization of electro-oxidation
process for the treatment of Reactive Orange 107 using
response surface methodology, Environ. Sci. Pollut. Res., 19
(2012) 148–160.
- S.K. Nataraj, K.M. Hosamani, T.M. Aminabhavi, Nanofiltration
and reverse osmosis thin film composite membrane module
for the removal of dye and salts from the simulated mixtures,
Desalination, 249 (2009) 12–17.
- S.S. Behera, S. Das, P.K. Parhi, S.K. Tripathy, R.K. Mohapatra,
Kinetics, thermodynamics and isotherm studies on adsorption
of methyl orange from aqueous solution using ion exchange
resin Amberlite IRA-400, Desal. Water Treat., 60 (2017 ) 249–251.
- C.M. Futalan, C.C. Kan, M.L. Dalida, K.J. Hsien, C. Pascua,
M.W. Wan, Comparative and competitive adsorption of copper,
lead, and nickel using chitosan immobilized on bentonite,
Carbohyd. Polym., 83 (2011) 528−536.
- G.G. Maghami, G.A. Roberts, Studies on the adsorption of
anionic dyes on chitosan, Makromol. Chem., 189 (1988) 2239–2243.
- A. Kamari, W.S.W. Ngah, Removal of cadmium using chitosan,
Colloid. Surf. B: Biointerf., 73 (2009) 257–266.
- S. Rosa, M.C. Laranjeira, H.G. Riela, V.T. Fávere, Cross-linked
quaternary chitosan as an adsorbent for the removal of the
reactive dye from aqueous solutions, J. Hazard. Mater., 155
(2008) 253–260.
- R. Karthik, S. Meenakshi, Removal of hexavalent chromium
ions from aqueous solution using chitosan/polypyrrole composite,
Desal. Water Treat., 56(6) (2015) 1587–1600.
- D. Wu, L. Hu, Y. Wang, Q. Wei, L. Yan, T. Yan, Y. Li, B. Du,
EDTA modified β-cyclodextrin/chitosan for rapid removal of
Pb(II) and acid red from aqueous solution, J. Colloid Interface
Sci., 523 (2018) 56–64.
- N. Mirzaei, M. Hadi, M. Gholami, R.F. Fard, M.S. Aminabad,
Sorption of acid dye by surfactant modificated natural zeolites,
J. Taiwan Inst. Chem. Eng., 59 (2016) 186–194.
- C. Hua, R.h. Zhang, F. Bai, P. Lu, X.f. Liang, Removal of chromium
(VI) from aqueous solutions using quaternized chitosan
microspheres, Chin. J. Chem. Eng., 25 (2017) 153–158.
- Y.C. Wong, Y.S. Szeto, W.H. Cheung, G. McKay, Adsorption of
acid dyes on chitosan - equilibrium isotherm analyses, Process
Biochem., 39 (2004) 693–702.
- I. Langmuir, The constitution and fundamental properties of
solids and liquids, J. Am. Chem. Soc., 38 (1916) 2221–2295.
- H. Freundlich, Uber die adsorption in losungen, Zeitsch. Phys.
Chem., 57 (1906) 385–470.
- K.R. Hall, L.C. Eagleton, A. Acrivos, T. Vermeulen, Pore and
solid diffusion kinetics in fixed bed adsorption under constant
pattern conditions, Ind. Eng. Chem. Fundam., 5 (1966) 212–223.
- A.K. Bhattacharya, S.N. Mandal, S.K. Das, Adsorption of Zn(II)
from aqueous solution by using different adsorbents, Chem.
Eng. J., 123 (2006) 43–51.
- Y.S. Ho, Removal of copper ions from aqueous solution by tree
fern, Water Res., 37 (2003) 2323–2330.
- K.K. Singh, A.K. Singh S.H. Hasan, Low cost biosorbent wheat
bran for the removal of cadmium from wastewater: Kinetic
and equilibrium studies, Bioresour. Technol., 97 (2006) 994–1001.
- A. Sari, M. Tuzen, Removal of Cr(VI) from aqueous solution by
Turkish vermiculite: equilibrium, thermodynamic and kinetic
studies, Sep. Sci. Technol., 43 (2008) 3563–3581.
- M.S. Gasser, G.H.A. Morad, H.F. Aly, Batch kinetics and thermodynamics
of chromium ions removal from waste solutions
using synthetic adsorbents, J. Hazard. Mater., 142 (2007) 118–
129.
- W. Rudzinski, W. Plazinski, Kinetics of solute adsorption at
solid/solution interfaces: A theoretical development of the
empirical pseudo-first and pseudo second-order kinetic rate
equations, based on applying the statistical rate theory of
interfacial transport, J. Phys. Chem. B., 110 (2006) 16514–16525.
- Y.S. Ho, G. McKay, The kinetics of sorption of divalent metal
ions onto sphagnum moss peat, Water Res., 34 (2000) 735–742.
- Z. Berizi, S.Y. Hashemi, M. Hadi, A. Azari, A.H. Mahvi, The
study of non-linear kinetics and adsorption isotherm models
for Acid Red 18 from aqueous solutions by magnetite nanoparticles
and magnetite nanoparticles modified by sodium alginate,
Water Sci. Technol., 74 (2016) 1235–1242.
- L. Wang, W. Yan, C. He, H. Wen, Z. Cai, Z.x. Wang, Z.Z. Chen,
W.F. Liu, Microwave-assisted preparation of nitrogen doped
biochars by ammonium acetate activation for adsorption of
acid red 18, Appl. Surf. Sci., 433 (2018) 222–231.
- B. Heibati, S. Rodriguez-Couto, M.A. Al-Ghouti, M. Asif, I.
Tyagi, S. Agarwal, V. K.r Gupta, Kinetics and thermodynamics
of enhanced adsorption of the dye AR 18using activated carbons
prepared from walnut and poplar woods, J. Mol. Liq., 208
(2015) 99–105.
- M. Shabandokht, E. Binaeian, H. Tayebi, Adsorption of food
dye Acid red 18 onto polyaniline-modified rice husk composite:
isotherm and kinetic analysis, Desal. Water Treat., 57 (2016)
27638–27650.
- S.Z. Qiao, Q.H. Hua, F. Haghseresht, X.J. Hu, G.Q. Lua, An
investigation on the adsorption of acid dyes on bentonite based
composite adsorbent, Sep. Purif. Technol., 67 (2009) 218–225.