References
- H. Berneth, Ullmann’s Encyclopedia of Industrial Chemistry,
7th ed., John Wiley & Sons, New York, NY, 2008.
- Kirk-Othmer Encyclopedia of Chemical Technology, 3rd ed.,
Vol. 1–26, John Wiley and Sons, New York, NY, 1978–1984, 1980,
pp. V12: 106.
- J. Clifton, J.B. Leikin, Methylene blue, Am. J. Ther., 10 (2003)
289–291.
- K.D. Belaid, S. Kacha, M. Kameche, Z. Derriche, Adsorption
kinetics of some textile dyes onto granular activated carbon,
J. Environ. Chem. Eng., 1 (2013) 496–503.
- B. Acemioğlu, Batch kinetic study of sorption of methylene blue
by perlite, Chem. Eng. J., 106 (2005) 73–81.
- A.L. Ahmad, M.M. Loh, J.A. Aziz, Preparation and
characterization of activated carbon from oil palm wood and its
evaluation on methylene blue adsorption, Dyes Pigm., 75 (2007)
263–272.
- T. Akar, I. Tosun, Z. Kaynak, E. Ozkara, O. Yeni, E.N. Sahin,
S.T. Akar, An attractive agro-industrial by-product in environmental
cleanup: dye biosorption potential of untreated olive
pomace, J. Hazard. Mater., 166 (2009) 1217–1225.
- Z. Aksu, Biosorption of reactive dyes by dried activated sludge:
equilibrium and kinetic modelling, Biochem. Eng. J., 7 (2001)
79–84.
- K.G. Bhattacharyya, A. Sharma, Kinetics and thermodynamics
of methylene blue adsorption on neem (Azadirachta indica)
leaf powder, Dyes Pigm., 65 (2005) 51–59.
- S.A. Odoemelam, U.N. Emeh, N.O. Eddy, Experimental and
computational chemistry studies on the removal of methylene
blue and malachite green dyes from aqueous solution by neem
(Azadirachta indica) leaves, J. Taibah Univ. Sci., 12 (2018) 255–265.
- H. Patel, R.T. Vashi, A comparison study of removal of
methylene blue dye by adsorption on neem leaf powder (NLP)
and activated NLP, J. Environ. Eng. Landscape, 21 (2013) 36–41.
- H.A. Al-Aoh, Equilibrium, thermodynamic and kinetic study
for potassium permanganate adsorption by neem leaves
powder, Desal. Water Treat., 170 (2019) 101–110.
- S.K. Theydan, M.J. Ahmed, Adsorption of Methylene blue
onto biomass-based activated-carbon by FeCl3 activation:
equilibrium, kinetics, and thermodynamic studies, J. Anal.
Appl. Pyrolysis, 97 (2012) 116–122.
- S. Lagergren, About the theory of so-called adsorption of
soluble substances, K. Sven. Vetenskapsakad. Handl., 24 (1898)
1–39.
- G. Blanchard, M. Maunaye, G. Martin, Removal of heavy
metals from waters by means of natural zeolites, Water Res.,
18 (1984) 1501–1507.
- W.J. Weber, J.C. Morris, Kinetics of adsorption on carbon
from solutions, J. Sanitary Eng. Div., 89 (1963) 31–60.
- H.A. Al-Aoh, Adsorption performances of nickel oxide
nanoparticles (NiO NPs) towards bromophenol blue dye (BB),
Desal. Water Treat., 110 (2018) 229–238.
- H. Deng, J. Lu, G. Li, G. Zhang, X. Wang, Adsorption of
methylene blue on adsorbent materials produced from cotton
stalk, Chem. Eng. J., 172 (2011) 326–334.
- S. Senthil kumaar, P.R. Varadarajan, K. Porkodi, C.V. Subbhuraam,
Adsorption of methylene blue onto jute fiber carbon:
kinetics and equilibrium studies, J. Colloid Interface Sci., 284
(2005) 78–82.
- T. Liu, Y. Li, Q. Du, J. Sun, Y. Jiao, G. Yang, Z. Wang, Y. Xia,
W. Zhang, K. Wang, H. Zhu, D. Wu, Adsorption of Methylene
blue from aqueous solution by graphene, Colloids Surf., B,
90 (2012) 197–203.
- L.B.L. Lim, N. Priyantha, C.H. Ing, M.K. Dahri, D.T.B. Tennakoon,
T. Zehra, M. Suklueng, Artocarpus odoratissimus skin as
a potential low-cost biosorbent for the removal of methylene
blue and methyl violet 2B, Desal. Water Treat., 53 (2015) 964–975.
- F. Ahmad, W.M.A.W. Daud, M.A. Ahmad, R. Radzi, Using
cocoa (Theobroma cacao) shell-based activated carbon to remove
4-nitrophenol from aqueous solution: kinetics and equilibrium
studies, Chem. Eng. J., 178 (2011) 461–467.
- X.-L. Wu, Y. Shi, S. Zhong, H. Lin, J.-R. Chen, Facile synthesis
of Fe3O4-graphene@ mesoporous SiO2 nanocomposites for
efficient removal of methylene blue, Appl. Surf. Sci., 378 (2016)
80–86.
- B.C. Qu, J. Zhou, X.M. Xiang, C.L. Zheng, H.X. Zhao, X.B. Zhou,
Adsorption behavior of Azo Dye C. I. Acid Red 14 in aqueous
solution on surface soils, J. Environ. Sci., 20 (2008) 704–709.
- 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.
- H.A. Al-Aoh, R. Yahya, M.J. Maah, M.R. Bin Abas, Adsorption
of Methylene blue on activated carbon fiber prepared from
coconut husk: isotherm, kinetics and thermodynamics studies,
Desal. Water Treat., 52 (2014) 6720–6732.
- I. Langmuir, The constitution and fundamental properties
of solids and liquids, J. Am. Chem. Soc., 38 (1916) 2221–2295.
- H.M.F. Freundlich, Over the adsorption in solution, J. Phys.
Chem., 57 (1906) 385–470.
- M.I. Temkin, V. Pyzhev, Kinetics of ammonia synthesis on
promoted iron catalyst, Acta Physiochim. URSS, 12 (1940)
327–356.
- A.A.A. Darwish, M. Rashad, H.A. Al-Aoh, Methyl orange
adsorption comparison on nanoparticles: isotherm, kinetics,
and thermodynamic studies, Dyes Pigm., 160 (2019) 563–571.
- A.O. Al-Abdullatif, A.H. Yahaya, R. Yahya, H.A. Al-Aoh,
Isotherm parameters of methylene blue adsorption on coconut
husk fiber based-activated carbon, World Appl. Sci. J., 31(2014)
01–04.
- M.K. Dahri, M.R.R. Kooh, L.B.L. Lim, Application of Casuarina
equisetifolia needle for the removal of methylene blue and
malachite green dyes from aqueous solution, Alexandria Eng.
J., 54 (2015) 1253–1263.
- N. Priyantha, L.B.L. Lim, D.T.B. Tennakoon, E.T.Z. Liaw,
C.H. Ing, A.B. Liyandeniya, Biosorption of cationic dyes on
bread fruit (Artocarpus altilis) peel and core, Appl. Water Sci.,
8 (2018) 1–11, doi: 10.1007/s13201-018-0648-3.
- M. Ceglowski, G. Schroeder, Removal of heavy metal ions
with the use of chelating polymers obtained by grafting
pyridine – pyrazole ligands onto polymethyl-hydro siloxane,
Chem. Eng. J., 259 (2015) 885–893.
- W. Song, B. Gao, X. Xu, L. Xing, S. Han, P. Duan, W. Song,
R. Jia, Adsorption–desorption behavior of magnetic amine/Fe3O4 functionalized biopolymer resin towards anionic dyes
from wastewater, Bioresour. Technol., 210 (2016) 123–130.
- M. Ptaszkowska-Koniarz, J. Goscianska, R. Pietrzak, Adsorption
of dyes on the surface of polymer nanocomposites modified
with methylamine and copper(II) chloride, J. Colloid Interface
Sci., 504 (2017) 549–560.
- A. Guediri, A. Bouguettoucha, D. Chebli, N. Chafai, A. Amrane,
Molecular dynamic simulation and DFT computational studies
on the adsorption performances of methylene blue in aqueous
solutions by orange peel-modified phosphoric acid, J. Mol.
Struct., 1202 (2020) 127290, doi: 10.1016/j.molstruc.2019.127290.
- P. Satish, S. Renukdas, N. Patel, Removal of methylene blue,
a basic dye from aqueous solutions by adsorption using teak
tree (Tectona grandis) bark powder, Int. J. Environ. Sci., 1 (2011)
711–726.
- 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 annuus), Int. J. Phys. Sci., 5 (2010) 1270–1276.
- F. Ferrero, Dye removal by low-cost adsorbents: hazelnut
shells in comparison with wood sawdust, J. Hazard. Mater.,
142 (2007) 144–152.
- L.B.L. Lim, N. Priyantha, H.I. Chieng, M.K. Dahri, Artocarpus
camansi Blanco (Breadnut) core as low-cost adsorbent for the
removal of methylene blue: equilibrium, thermodynamics, and
kinetics studies, Desal. Water Treat., 57 (2016) 5673–5685.
- H.I. Chieng, T. Zehra, L.B.L. Lim, N. Priyantha, D.T.B. Tennakoon,
Sorption characteristics of peat of Brunei Darussalam
IV: equilibrium, thermodynamics and kinetics of adsorption
of methylene blue and malachite green dyes from aqueous
solution, Environ. Earth Sci., 72 (2014) 2263–2277.
- L.B.L. Lim, N. Priyantha, D.T.B. Tennakoon, H.I. Chieng,
M.K. Dahri, M. Suklueng, Breadnut peel as a highly effective
low-cost biosorbent for methylene blue: equilibrium,
thermodynamic and kinetic studies, Arabian J. Chem., 10 (2017)
S3216–S3228.
- N. Priyantha, L.B.L. Lim, M.K. Dahri, Dragon fruit skin as a
potential biosorbent for the removal of methylene blue dye
from aqueous solution, Int. Food. Res. J., 22 (2015) 2141–2148.