References
- S. Tang, D. Xia, Y. Yao, T. Chen, J. Sun, Y. Yin, W. Shen, Y. Peng,
Dye adsorption by self-recoverable, adjustable amphiphilic
graphene aerogel, J. Colloid Interface Sci., 554 (2019) 682–691.
- Y. Wan, Z.-Y. Liu, P. Song, X.-Q. Zhang, J.-C. Song, Y.-J. Fu,
X.-H. Yao, J. Wang, T. Chen, D.-Y. Zhang, L. Li, C.-Y. Shi, Ionic
liquid groups modified 3D porous cellulose microspheres for
selective adsorption of AO7 dye, J. Cleaner Prod., 240 (2019)
118201, doi: 10.1016/j.jclepro.2019.118201.
- Z. Li, L. Sellaoui, G.L. Dotto, A. Ben Lamine, A. Bonilla-
Petriciolet, H. Hanafy, H. Belmabrouk, M.S. Netto, A. Erto,
Interpretation of the adsorption mechanism of Reactive Black
5 and Ponceau 4R dyes on chitosan/polyamide nanofibers via
advanced statistical physics model, J. Mol. Liq., 285 (2019)
165–170.
- S. Xu, X. Niu, Z. Hou, C. Gao, J. Lu, Y. Pang, M. Fang,
Y. Lu, Y. Chen, J.K. S, T. Li, J. Xu, A multifunctional gelatine–
quaternary ammonium copolymer: an efficient material for
reducing dye emission in leather tanning process by superior
anionic dye adsorption, J. Hazard. Mater., 383 (2019) 121142,
doi: 10.1016/j.jhazmat.2019.121142.
- P.J. Ong, S.W. Tay, L. Hong, Removal of water-soluble dyes
by conjugated organic skeletons through drainflow-diffusion
filtration, J. Environ. Chem. Eng., 6 (2018) 4612–4622.
- H.I. Hamoud, G. Finqueneisel, B. Azambre, Removal of binary
dyes mixtures with opposite and similar charges by adsorption,
coagulation/flocculation and catalytic oxidation in the presence
of CeO2/H2O2 Fenton-like system, J. Environ. Manage., 195
(2017) 195–207.
- J. Wang, T. Zhang, Y. Mei, B. Pan, Treatment of reverse-osmosis
concentrate of printing and dyeing wastewater by electrooxidation
process with controlled oxidation-reduction potential
(ORP), Chemosphere, 201 (2018) 621–626.
- C. Shen, Y. Pan, D. Wu, Y. Liu, C. Ma, F. Li, H. Ma,
Y. Zhang, A crosslinking-induced precipitation process for
the simultaneous removal of poly(vinyl alcohol) and reactive
dye: the importance of covalent bond forming and magnesium
coagulation, Chem. Eng. J., 374 (2019) 904–913.
- J. Li, H. Li, Z. Yuan, J. Fang, L. Chang, H. Zhang, C. Li, Role of
sulfonation in lignin-based material for adsorption removal of
cationic dyes, Int. J. Biol. Macromol., 135 (2019) 1171–1181.
- M.R. Gadekar, M.M. Ahammed, Modelling dye removal by
adsorption onto water treatment residuals using combined
response surface methodology-artificial neural network
approach, J. Environ. Manage., 231 (2019) 241–248.
- C.H. Nguyen, R.S. Juang, Efficient removal of cationic dyes
from water by a combined adsorption-photocatalysis process
using platinum-doped titanate nanomaterials, J. Taiwan Inst.
Chem. Eng., 99 (2019) 166–179.
- M. Hisada, Y. Tomizawa, Y. Kawase, Removal kinetics of
cationic azo-dye from aqueous solution by poly-γ-glutamic
acid biosorbent: contributions of adsorption and complexation/
precipitation to Basic Orange 2 removal, J. Environ. Chem. Eng.,
7 (2019) 103157, doi: 10.1016/j.jece.2019.103157.
- F. Piri, A. Mollahosseini, A. khadir, M. Milani Hosseini, Enhanced
adsorption of dyes on microwave-assisted synthesized
magnetic
zeolite-hydroxyapatite nanocomposite, J. Environ. Chem.
Eng., 7 (2019) 103338, doi: 10.1016/j.jece.2019.103338.
- S. Madan, R. Shaw, S. Tiwari, S.K. Tiwari, Adsorption dynamics
of Congo red dye removal using ZnO functionalized high silica
zeolitic particles, Appl. Surf. Sci., 487 (2019) 907–917.
- M. Bergaoui, A. Nakhli, Y. Benguerba, M. Khalfaoui, A. Erto,
F.E. Soetaredjo, S. Ismadji, B. Ernst, Novel insights into the
adsorption mechanism of methylene blue onto organobentonite:
adsorption isotherms modeling and molecular
simulation, J. Mol. Liq., 272 (2018) 697–707.
- R. Hasan, C.C. Chong, H.D. Setiabudi, R. Jusoh, A.A. Jalil,
Process optimization of methylene blue adsorption onto
eggshell–treated palm oil fuel ash, Environ. Technol. Innovation,
13 (2019) 62–73.
- F. Sakr, S. Alahiane, A. Sennaoui, M. Dinne, I. Bakas,
A. Assabbane, Removal of cationic dye (methylene blue) from
aqueous solution by adsorption on two type of biomaterial
of South Morocco, Mater. Today Proc., 22 (2020) 93–96, doi:
10.1016/j.matpr.2019.08.101.
- L. Bouna, A.A. El Fakir, A. Benlhachemi, K. Draoui, S. Villain,
F. Guinneton, Physico-chemical characterization of clays from
Assa-Zag for valorization in cationic dye methylene blue
adsorption, Mater. Today Proc., 22 (2020) 22–27, doi: 10.1016/j.
matpr.2019.08.059.
- L.D. Youcef, L.S. Belaroui, A. López-Galindo, Adsorption of a
cationic methylene blue dye on an Algerian palygorskite, Appl.
Clay Sci., 179 (2019) 105145, doi: 10.1016/j.clay.2019.105145.
- K.Y. Hor, J.M.C. Chee, M.N. Chong, B. Jin, C. Saint, P.E. Poh,
R. Aryal, Evaluation of physicochemical methods in enhancing
the adsorption performance of natural zeolite as low-cost
adsorbent of methylene blue dye from wastewater, J. Cleaner
Prod., 118 (2016) 197–209.
- O. Üner, Hydrogen storage capacity and methylene blue
adsorption performance of activated carbon produced from
Arundo donax, Mater. Chem. Phys., 237 (2019) 121858,
doi: 10.1016/j.matchemphys.2019.121858.
- A.A. Spagnoli, D.A. Giannakoudakis, S. Bashkova, Adsorption
of methylene blue on cashew nut shell based carbons activated
with zinc chloride: the role of surface and structural parameters,
J. Mol. Liq., 229 (2017) 465–471.
- R.M. Novais, A.P.F. Caetano, M.P. Seabra, J.A. Labrincha,
R.C. Pullar, Extremely fast and efficient methylene blue adsorption
using eco-friendly cork and paper waste-based activated
carbon adsorbents, J. Cleaner Prod., 197 (2018) 1137–1147.
- 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.
- D. Nayeri, S.A. Mousavi, M. Fatahi, A. Almasi, F. Khodadoost,
Dataset on adsorption of methylene blue from aqueous
solution onto activated carbon obtained from low cost wastes
by chemical-thermal activation – modelling using response
surface methodology, Data Brief, 25 (2019), doi: 10.1016/j.
dib.2019.104036.
- L. Cui, Z. Cui, Y. Chen, S. Ling, J. Long, P. Yao, Syntheses,
structure, photocatalytic degradation for methylene blue of
Co(II)-based coordination polymers, J. Solid State Chem.,
279 (2019) 120932, doi: 10.1016/j.jssc.2019.120932.
- Y. Wang, Z. Wang, S. Wang, Z. Chen, J. Chen, Y. Chen, J. Fu,
Magnetic poly(cyclotriphosphazene-co-4,4′-sulfonyldiphenol)
nanotubes modified with glacial acetic acid for removing
methylene blue: adsorption performance and mechanism, Eur.
Polym. J., 120 (2019) 109198, doi: 10.1016/j.eurpolymj.2019.08.025.
- M. Duhan, R. Kaur, Phytic acid doped polyaniline nanofibers:
an advanced adsorbent for methylene blue dye, Environ.
Nanotechnol. Monit. Manage., 12 (2019) 100248, doi:
10.1016/j.enmm.2019.100248.
- K. Jalali, E. Pajootan, H. Bahrami, Elimination of
hazardous methylene blue from contaminated solutions by
electrochemically magnetized graphene oxide as a recyclable
adsorbent, Adv. Powder Technol., 30 (2019) 2352–2362.
- E.A. Abdelrahman, R.M. Hegazey, R.E. El-Azabawy, Efficient
removal of methylene blue dye from aqueous media using Fe/Si, Cr/Si, Ni/Si, and Zn/Si amorphous novel adsorbents, J. Mater.
Res. Technol., 8 (2019) 5301–5313.
- Z. Wang, M. Gao, X. Li, J. Ning, Z. Zhou, G. Li, Efficient
adsorption of methylene blue from aqueous solution by
graphene oxide modified persimmon tannins, Mater. Sci. Eng.,
C, 108 (2020) 110196, doi: 10.1016/j.msec.2019.110196.
- M.A. Rauf, S.B. Bukallah, F.A. Hamour, A.S. Nasir, Adsorption
of dyes from aqueous solutions onto sand and their kinetic
behavior, Chem. Eng. J., 137 (2008) 238–243.
- M.A. Rauf, I.A. Shehadi, W.W. Hassan, Studies on the removal
of Neutral Red on sand from aqueous solution and its kinetic
behavior, Dyes Pigm., 75 (2007) 723–726.
- O. Bello, I. Bello, K. Adegoke, Adsorption of dyes using
different types of sand: a review, S. Afr. J. Chem., 66 (2013) 117–
129.
- J. Tang, W. Wu, L. Yu, X. Fan, G. Liu, Y. Yu, Study on adsorption
properties and mechanism of thallium onto titanium-iron
magnetic adsorbent, Sci. Total Environ., 694 (2019) 133625,
doi: 10.1016/j.scitotenv.2019.133625.
- G.P. Mashile, A. Mpupa, A. Nqombolo, K.M. Dimpe,
P.N. Nomngongo, Recyclable magnetic waste tyre activated
carbon-chitosan composite as an effective adsorbent rapid and
simultaneous removal of methylparaben and propylparaben
from aqueous solution and wastewater, J. Water Process Eng.,
33 (2020) 101011, doi: 10.1016/j.jwpe.2019.101011.
- M. Feyzi, L. Nourozi, M. Shariati-Rad, F. Abdi, Kinetic and
equilibrium isotherms of removal malachite green from aqueous
solution by using Fe3O4@SiO2-CPTS magnetic nanoparticles,
Adv. Nanochem., 1 (2019) 29–33.
- S. Braccini, O. Pellegrinelli, K. Krämer, Mössbauer, X-ray and
magnetic studies of Black Sand from the Italian Mediterranean
Sea, World J. Nucl. Sci. Technol., 03 (2013) 91–95.
- F. Ni, P. Xiao, N. Qiu, C. Zhang, Y. Liang, J. Gu, J. Xia, Z. Zeng,
L. Wang, Q. Xue, T. Chen, Collective behaviors mediated
multifunctional black sand aggregate towards environmentally
adaptive solar-to-thermal purified water harvesting, Nano
Energy, 68 (2019) 104311, doi: 10.1016/j.nanoen.2019.104311.
- M. Luo, D. Bowden, P. Brimblecombe, Removal of dyes from
water using a TiO2 photocatalyst supported on Black Sand,
Water Air Soil Pollut., 198 (2009) 233–241.
- M. Luo, D. Bowden, P. Brimblecombe, Preparation of black sandbased
magnetic photocatalysts for photocatalytic oxidation of
aqueous phenol, Appl. Catal., B, 87 (2009) 1–8.
- F. Rahmi, Fathurrahmi, Lelifajri, F. PurnamaWati, Preparation
of magnetic chitosan using local iron sand for mercury removal,
Heliyon, 5 (2019) e01731, doi: 10.1016/j.heliyon.2019.e01731.
- M.D. Tenev, A. Farías, C. Torre, G. Fontana, N. Caracciolo,
S. Boeykens, Cotton industry waste as adsorbent for methylene
blue, J. Sustainable Dev. Energy Water Environ. Syst., 7 (2019)
667–677.
- I. Langmuir, The adsorption of gases on plane surfaces of glass,
mica and platinum, J. Am. Chem. Soc., 40 (1918) 1361–403.
- H.M.F. Freundlich, Over the adsorption in solution, J. Phys.
Chem., 57 (1906) 1100–1107.
- M.J. Temkin, V. Pyzhev, Recent modification to Langmuir
isotherms, Acta Physiochem. USSR, (1940), doi: 10.1016/0016-
3287(93)90022-L.
- M.M. Dubinin, L.V. Radushkevich, The equation of the
characteristic curve of activated charcoal, Phys. Chem. Sect.,
55 (1947) 327–329, doi: 10.4236/ojs.2014.41001.
- D.F. Zhou, L.T.P.H.S. X. Guo, The characterization
and amoxicillin adsorption activity of mesopore CaCO3
microparticles prepared using rape flower pollen, Minerals,
9 (2019) 2–11.
- K. Shahul Hameed, P. Muthirulan, M. Meenakshi Sundaram,
Adsorption of chromotrope dye onto activated carbons
obtained from the seeds of various plants: equilibrium and
kinetics studies, Arabian J. Chem., 10 (2017) 2225–2233.
- S. Lagergren, About the theory of so-called adsorption of
soluble substances, K. Sven. Vetenskapsakad. Handl., 24 (1898)
1–39.
- Y. Ho, G. McKay, Pseudo-second-order model for sorption
processes, Process Biochem., 34 (1999) 451–465.
- A.K. Bhattacharya, C. Venkobachar, Removal of cadmium(II)
by low cost adsorbents, J. Environ. Eng., (United States), 110
(1984) 110–122.
- S.Y. Elovich, O.G. Larionov, Theory of adsorption from
nonelectrolyte solutions on solid adsorbents - 1. Simplified
analysis of the equation of the adsorption isotherm from
solutions, Bull. Acad. Sci. USSR Div. Chem. Sci., 11 (1962)
191–197.
- M. Rajabi, O. Moradi, M. Sillanpää, K. Zare, A.M. Asiri,
S. Agarwal, V.K. Gupta, Removal of toxic chemical ethidium
monoazide bromide using graphene oxide: thermodynamic
and kinetics study, J. Mol. Liq., 293 (2019) 111484, doi: 10.1016/j.
molliq.2019.111484.
- Á.d.J. Ruíz-Baltazar, S.Y. Reyes-López, M.d.L. Mondragón-Sánchez, A.I. Robles-Cortés, R. Pérez, Eco-friendly synthesis
of Fe3O4 nanoparticles: evaluation of their catalytic activity in
methylene blue degradation by kinetic adsorption models,
Results Phys., 12 (2019) 989–995.
- F. Tukur, J. Barminas, M. Khan, A. Abel, Potential of magnetic
sand as catalyst for the heterogeneous transesterification of
luffa (Luffa cylindrica) seed oil to biodiesel, Curr. J. Appl. Sci.
Technol., 21 (2017) 1–11.
- M. Stoia, R. Istratie, Cornelia, P. ˘curariu, Investigation of
magnetite nanoparticles stability in air by thermal analysis
and FTIR spectroscopy, J. Therm. Anal. Calorim., 125 (2016)
1185–1198.
- V.A. Tiwow, M. Arsyad, P. Palloan, M.J. Rampe, Analysis of
mineral content of iron sand deposit in Bontokanang Village and
Tanjung Bayang Beach, South Sulawesi, Indonesia, J. Phys. Conf.
Ser., 997 (2018) 012010, doi: 10.1088/1742-6596/997/1/012010.
- Z. Chen, Y. Li, Y. Wu, J. Hu, Hydrothermal synthesis and
mechanism and property study of La-doped BiFeO3 crystallites,
J. Mater Sci. Mater. Electron., 23 (2012) 1402–1408.
- M. Jahandar, A. Zarrabi, M.A. Shokrgozar, H. Mousavi,
Synthesis, characterization and application of polyglycerol
coated Fe3O4 nanoparticles as a nano-theranostics agent, Mater.
Res. Express, 2 (2015) 2–10.
- Rahmi, Ismaturrahmi, I. Mustafa, Methylene blue removal
from water using H2SO4 crosslinked magnetic chitosan
nanocomposite beads, Microchem. J., 144 (2019) 397–402.
- N. Boukhalfa, M. Boutahala, N. Djebri, A. Idris, Maghemite/ alginate/functionalized multiwalled carbon nanotubes beads
for methylene blue removal: adsorption and desorption studies,
J. Mol. Liq., 275 (2019) 431–440.
- N. Wang, Z. Zhang, J. Huang, Y. Hu, Facile synthesis of copper
ions chelated sand via dopamine chemistry for recyclable and
sustainable catalysis, Chem. Eng. Sci., 203 (2019) 312–320.
- N. Somsesta, V. Sricharoenchaikul, D. Aht-Ong, Adsorption
removal of methylene blue onto activated carbon/cellulose biocomposite
films: equilibrium and kinetic studies, Mater. Chem.
Phys., 240 (2020) 122221, doi: 10.1016/j.matchemphys.2019.122221.
- J. Qiu, P. Fan, Y. Feng, F. Liu, C. Ling, A. Li, Comparison of the
adsorption behaviors for methylene blue on two renewable gels
with different physical state, Environ. Pollut., 254 (2019), doi:
10.1016/j.envpol.2019.113117.
- A.H. Jawad, R. Razuan, J.N. Appaturi, L.D. Wilson, Adsorption
and mechanism study for methylene blue dye removal with
carbonized watermelon (Citrullus lanatus)rind prepared
via one-step liquid phase H2SO4 activation, Surf. Interfaces,
16 (2019) 76–84.
- C. Ozer, M. Imamoglu, Adsorptive transfer of methylene blue
from aqueous solutions to hazelnut husk carbon activated with
potassium carbonate, Desal. Water Treat., 94 (2017) 236–243.
- C. Ozer, F. Boysan, M. Imamoglu, Efficient removal of Cd(II),
Cu(II), Ni(II) and Pb(II) by polyamine-polyurea polymer
modified with 2,4-dihydroxybenzaldehyde from synthetic and
real wastewaters, Desal. Water Treat., 85 (2017) 320–329.
- Richa, A.R. Choudhury, Synthesis of a novel gellan-pullulan
nanogel and its application in adsorption of cationic dye from
aqueous medium, Carbohydr. Polym., 227 (2019) 115291,
doi: 10.1016/j.carbpol.2019.115291.
- T. Yao, L. Qiao, K. Du, High tough and highly porous graphene/carbon nanotubes hybrid beads enhanced by carbonized
polyacrylonitrile for efficient dyes adsorption, Microporous
Mesoporous Mater., 292 (2020) 109716, doi: 10.1016/j.
micromeso.2019.109716.
- S. Mallakpour, F. Tabesh, Tragacanth gum based hydrogel
nanocomposites for the adsorption of methylene blue:
comparison of linear and non-linear forms of different
adsorption isotherm and kinetics models, Int. J. Biol. Macromol.,
133 (2019) 754–766.
- S. Mallakpour, S. Rashidimoghadam, Poly(vinyl alcohol)/
vitamin C-multi walled carbon nanotubes composites and
their applications for removal of methylene blue: advanced
comparison between linear and nonlinear forms of adsorption
isotherms and kinetics models, Polymer (Guildf), 160 (2019)
115–125.
- M. Rafatullah, O. Sulaiman, R. Hashim, A. Ahmad, Adsorption
of methylene blue on low-cost adsorbents: a review, J. Hazard.
Mater., 177 (2010) 70–80.
- T. Sarat Chandra, S.N. Mudliar, S. Vidyashankar, S. Mukherji,
R. Sarada, K. Krishnamurthi, V.S. Chauhan, Defatted algal
biomass as a non-conventional low-cost adsorbent: surface
characterization and methylene blue adsorption characteristics,
Bioresour. Technol., 184 (2015) 395–404.
- S. Kang, L. Qin, Y. Zhao, W. Wang, T. Zhang, L. Yang, F. Rao,
S. Song, Enhanced removal of methyl orange on exfoliated
montmorillonite/chitosan gel in presence of methylene blue,
Chemosphere, 238 (2020) 124693, doi: 10.1016/j.chemosphere.
2019.124693.
- S. Shakoor, A. Nasar, Removal of methylene blue dye from
artificially contaminated water using Citrus limetta peel waste
as a very low cost adsorbent, J. Taiwan Inst. Chem. Eng.,
66 (2016) 154–163.
- C. Ozer, M. Imamoglu, Y. Turhan, F. Boysan, Toxicological
and environmental chemistry removal of methylene blue from
aqueous solutions using phosphoric acid activated carbon
produced from hazelnut husks Removal of methylene blue
from aqueous solutions using phosphoric acid activated carbon
produced from hazelnut husks, Toxicol. Environ. Chem.,
94 (2012) 1283–1293.
- W. Tanthapanichakoon, P. Ariyadejwanich, P. Japthong,
K. Nakagawa, S.R. Mukai, H. Tamon, Adsorption-desorption
characteristics of phenol and reactive dyes from aqueous
solution on mesoporous activated carbon prepared from waste
tires, Water Res., 39 (2005) 1347–1353.