References
- M.R. Samarghandi, M. Zarrabi, A. Amrane, G.H. Safari,
S. Bashiri, Application of acidic treated pumice as an adsorbent
for the removal of azo dye from aqueous solutions: kinetic,
equilibrium and thermodynamic studies, Iran. J. Environ.
Health Sci. Eng., 9 (2012) 1–9.
- A.K. Kushwaha, N. Gupta, M.C. Chattopadhyaya, Removal
of cationic methylene blue and malachite green dyes from
aqueous solution by waste materials of Daucus carota, J. Saudi
Chem. Soc., 18 (2014) 200–207.
- A.F. Hassan, A.M. Abdel-Mohsen, M.M.G. Fouda, Comparative
study of calcium alginate, activated carbon, and their composite
beads on methylene blue adsorption, Carbohydr. Polym., 102
(2014) 192–198.
- J.-Z. Yi, L.-M. Zhang, Removal of methylene blue dye from
aqueous solution by adsorption onto sodium humate/polyacrylamide/clay hybrid hydrogels, Bioresour. Technol.,
99 (2008) 2182–2186.
- F.A. Pavan, A.C. Mazzocato, Y. Gushikem, Removal of methylene
blue dye from aqueous solutions by adsorption using yellow
passion fruit peel as adsorbent, Bioresour. Technol., 99 (2008)
3162–3165.
- L. Wang, J. Zhang, A. Wang, Removal of methylene blue from
aqueous solution using chitosan-g-poly(acrylic acid)/montmorillonite
superadsorbent nanocomposite, Colloids Surf., A,
322 (2008) 47–53.
- L. Wang, J. Zhang, A. Wang, Fast removal of methylene
blue from aqueous solution by adsorption onto chitosan-g-poly(acrylic acid)/attapulgite composite, Desalination, 266 (2011)
33–39.
- M. Changmai, M.K. Purkait, Kinetics, equilibrium and
thermodynamic study of phenol adsorption using NiFe2O4
nanoparticles aggregated on PAC, J. Water Process Eng.,
16 (2017) 90–97.
- G. Gangadhar, U. Maheshwari, S. Gupta, Application of
nanomaterials for the removal of pollutants from effluent
streams, J. Nanosci. Nanotechnol., 2 (2012) 140–150.
- M. Changmai, P. Banerjee, K. Nahar, M.K. Purkait, A novel
adsorbent from carrot, tomato and polyethylene terephthalate
waste as a potential adsorbent for Co (II) from aqueous solution:
kinetic and equilibrium studies, J. Environ. Chem. Eng., 6 (2018)
246–257.
- S. Dehestaniathar, A. Rezaee, Adsorption of nitrate from
aqueous solution using activated carbon-supported Fe0, Fe2(SO4)3, and FeSO4, J. Adv. Environ. Health Res., 2 (2014) 36–43.
- B. Kakavandi, A.J. Jonidi, R.K. Rezaei, S. Nasseri, A. Ameri, A.
Esrafily, Synthesis and properties of Fe3O4-activated carbon
magnetic nanoparticles for removal of aniline from aqueous
solution: equilibrium, kinetic and thermodynamic studies, Iran.
J. Environ. Health Sci. Eng., 10 (2013) 1–9.
- M.H. Do, N.H. Phan, T.D. Nguyen, T.T.S. Pham, V.K. Nguyen,
T.T. Vu, T.K.P. Nguyen, Activated carbon/Fe3O4 nanoparticle
composite: Fabrication, methyl orange removal and regeneration
by hydrogen peroxide, Chemosphere, 85 (2011) 1269–1276.
- E. Shahnazari-Shahrezaie, A. Nezamzadeh-Ejhieh, A zeolite
modified carbon paste electrode based on copper exchanged
clinoptilolite nanoparticles for voltammetric determination of
metronidazole, RSC Adv., 23 (2017) 14247–14253.
- Z. Deng, M. Liang, H. Li, Z. Zhu, Advances in Preparation of
Modified Activated Carbon and its Applications in the Removal
of Chromium (VI) from Aqueous Solutions, IOP Conference
Series: Earth and Environmental Science, IOP Publishing,
Shanghai, China, 2016, pp. 132–141.
- M. Ghaedi, H. Karimi, F. Yousefi, Silver and zinc oxide
nanostructures loaded on activated carbon as new adsorbents
for removal of methylene green: a comparative study, Hum.
Exp. Toxicol., 33 (2014) 956–967.
- P.L. Hariani, M. Faizal, Ridwan, Marsi, D. Setiabudidaya,
Removal of Procion Red MX-5B from songket’s industrial
wastewater in South Sumatra Indonesia using activated carbon-Fe3O4 composite, Sustainable Environ. Res., 28 (2018) 158–164.
- J. Liu, Y. Wang, Y. Fang, T. Mwamulima, S. Song, C. Peng,
Removal of crystal violet and methylene blue from aqueous
solutions using the fly ash-based adsorbent material-supported
zero-valent iron, J. Mol. Liq., 250 (2018) 468–467.
- W.C. Qian, X.P. Luo, X. Wang, M. Guo, B. Li, Removal of
methylene blue from aqueous solution by modified bamboo
hydrochar, Ecotoxicol. Environ. Saf., 157 (2018) 300–306.
- A.R. Satayeva, C.A. Howell, A.V. Korobeinyk, J. Jandosov,
V.J. Inglezakis, Z.A. Mansurov, S.V. Mikhalovsky, Investigation
of rice husk derived activated carbon for removal of nitrate
contamination from water, Sci. Total Environ., 630 (2018)
1237–1245.
- 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.
- A.T.M. Salem, X.L. Hu, D.Q. Yin, Synthesised magnetic
nanoparticles coated zeolite (MNCZ) for the removal of arsenic
(As) from aqueous solution, J. Exp. Nanosci., 9 (2014) 551–560.
- J. Saini, V.K. Garg, R.K. Gupta, Removal of Methylene Blue
from aqueous solution by Fe3O4@Ag/SiO2 nanospheres:
synthesis, characterization and adsorption performance, J. Mol.
Liq., 250 (2018) 413–422.
- Z. Mahmoudi, S. Azizian, B. Lorestani, Removal of methylene
blue from aqueous solution: a comparison between adsorption
by iron oxide nanospheres and ultrasonic degradation, J. Mater.
Environ., 5 (2014) 1332–1335.
- S. Luo, M.-N. Shen, F. Wang, Q.-R. Zeng, J.-H. Shao, J.-D. Gu,
Synthesis of Fe3O4-loaded porous carbons developed from
rice husk for removal of arsenate from aqueous solution,
Int. J. Environ. Sci. Technol., 13 (2016) 1137–1148.
- A. Mockovčiaková, Z. Orolínová, M. Matik, P. Hudec,
E. Kmecová, Iron oxide contribution to the modification of
natural zeolite, Acta Montan Slovaca, 11 (2006) 353–357.
- A. Seidmohammadi, G. Asgari, M. Leili, A. Dargahi,
A. Mobarakian, Effectiveness of quercus branti activated carbon
in removal of methylene blue from aqueous solutions, Arch.
Hyg. Sci., 4 (2015) 217–225.
- D. Chen, Z. Zeng, Y. Zeng, F. Zhang, M. Wang, Removal of
methylene blue and mechanism on magnetic γ-Fe2O3/SiO2
nanocomposite from aqueous solution, Water Res. Ind., 15 (2016)
1–13.
- A. Nasrullah, A.H. Bhat, A. Naeem, M.H. Isa, M. Danish, High
surface area mesoporous activated carbon-alginate beads for
efficient removal of methylene blue, Int. J. Biol. Macromol.,
107 (2018) 1792–1799.
- M. Zarei, N. Djafarzadeh, L. Khadir, Removal of direct blue
129 from aqueous medium using surfactant-modified zeolite:
a neural network modeling, Environ. Health Eng. Manage.,
5 (2018) 101–113.
- B. Hameed, A.T.M. Din, A.L. Ahmad, Adsorption of methylene
blue onto bamboo-based activated carbon: kinetics and
equilibrium studies, J. Hazard. Mater., 141 (2007) 819–825.
- A. Shokrolahzadeh, R.A. Shokuhi, J. Adinehvand, Modification
of nano clinoptilolite zeolite using sulfuric acid and its
application toward removal of arsenic from water sample,
J. Nanoanalysis, 4 (2017) 48–58.
- S. Arivolix, M. Hema, S. Parthasarathy, N. Manju, Adsorption
dynamics of methylene blue by acid activated carbon, J. Chem.
Pharm. Res., 2 (2010) 626–641.
- 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.
- A. Azhdarpoor, R. Nikmanesh, F. Khademi, A study of Reactive
Red 198 adsorption on iron filings from aqueous solutions,
Environ. Technol., 35 (2014) 2956–2960.
- S. Akyil, M.A.A. Aslani, M. Eral, Sorption characteristics of
uranium onto composite ion exchangers, J. Radioanal. Nucl.
Chem., 256 (2003) 45–51.
- G. Annadurai, R.S. Juang, D.J. Lee, Use of cellulose-based
wastes for adsorption of dyes from aqueous solutions, J. Hazard
Mater, 92 (2002) 263–74.
- K.Y. Foo, B.H. Hameed, Insights into the modeling of adsorption
isotherm systems, Chem. Eng. J., 156 (2010) 2–10.
- X. Jin, M.-q. Jiang, X.-q. Shan, Z.-g. Pei, Z. Chen, Adsorption of
methylene blue and orange II onto unmodified and surfactantmodified
zeolite, J. Colloid Interface Sci., 328 (2008) 243–247.
- M.V. Dinu, M.M. Lazar, E.S. Dragan, Dual ionic cross-linked
alginate/clinoptilolite composite microbeads with improved
stability and enhanced sorption properties for methylene blue,
React. Funct. Polym., 116 (2017) 31–40.
- J.A. Lori, A.O. Lawal, E.J. Ekanem, Adsorption characteristics
of active carbons from pyrolysis of bagasse, sorghum and millet
straws in ortho phosphoric acid, Environ. Sci. Technol., 1 (2008)
124–134.
- I.O. Brahim, M. Belmedani, A. Belgacem, H. Hadoun,
Z. Sadaoui, Discoloration of azo dye solutions by adsorption on
activated carbon prepared from the cryogenic grinding of used
tires, Chem. Eng. Trans., 38 (2014) 121–126.
- D.A. Fungaro, L.C. Grosche, A. Pinheiro, J. de Carvalho Izidoro,
S. Borrely, Adsorption of methylene blue from aqueous solution
on zeolitic material for color and toxicity removal, Orbital:
Electron. J. Chem., 2 (2011) 235–247.
- 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.
- S. Mousavi, M. Mehralian, M. Khashij, S. Parvaneh, Methylene
Blue removal from aqueous solutions by activated carbon
prepared from N. microphyllum (AC-NM): RSM analysis,
isotherms and kinetic studies, Global Nest J., 19 (2017) 697–705.
- F. Jafari‐zare, A. Habibi‐yangjeh, Competitive adsorption
of methylene blue and rhodamine B on natural zeolite:
thermodynamic and kinetic studies, Chinese J. Chem., 28 (2010)
346–359.