References
- S. Soni, P.K. Bajpai, J. Mittal, C. Arora, Utilisation of cobalt
doped iron based MOF for enhanced removal and recovery
of methylene blue dye from waste water, J. Mol. Liq.,
314 (2020) 113642, https://doi.org/10.1016/j.molliq.2020.113642.
- V. Kumar, P. Saharan, A.K. Sharma, A. Umar, I. Kaushal,
A. Mittal, Y. Al-Hadeethi, B. Rashad, Silver doped manganese
oxide-carbon nanotube nanocomposite for enhanced
dye-sequestration: isotherm studies and RSM modelling
approach, Ceram. Int., 46 (2020) 10309–10319.
- A. Mittal, J. Mittal, Chapter 11 – Hen Feather: A Remarkable
Adsorbent for Dye Removal, S.K. Sharma, Ed., Green
Chemistry for Dyes Removal from Wastewater: Research
Trends and Applications, Scrivener Publishing LLC, USA, 2015,
pp. 409–457.
- M. Vasuki, M. Karthika, Adsorption characteristic of
Naphthol blue black-B on activated carbon derived from
coconut shell and palmyra fruit nut shell – a comparative
study, Shanlax Int. J. Arts Sci. Humanities, 4 (2017) 336–338.
- X. Wang, C. Jiang, B. Hou, Y. Wang, C. Hao, J. Wu, Carbon
composite lignin-based adsorbents for the adsorption of
dyes, Chemosphere, 206 (2018) 587–596.
- M. Karthika, M. Vasuki, Adsorptive removal of synthetic
dye effluent using sago waste as low-cost adsorbent, Int.
J. Waste Resour., 8 (2018) 344, . doi: 10.4172/2252-5211.1000344
- J. Mittal, Permissible synthetic food dyes in India,
Resonance – Int. J. Sci. Educ., 25 (2020) 567–577.
- V.S. Munagapati, V. Yarramuth, Y. Kima, K.M. Lee, D.-S. Kim,
Removal of anionic dyes (Reactive Black 5 and Congo red)
from aqueous solutions using Banana Peel Powder as an
adsorbent, Ecotoxicol. Environ. Saf., 148 (2018) 601–607.
- A. Akram, A.N. Chaleshtori, F.M. Meghadddam, M.M. Sadeghi,
R.R. Rahimi, S. Hemati, A.A. Ahmadi, Removal of Acid red
18 (Azo-dye) from aqueous solution by adsorption onto
activated charcoal prepared from almond shell, J. Environ. Sci.
Manage., 20 (2017) 9–16.
- R. Kaur, H. Kaur, Adsorptive removal of Amido Black 10B
from aqueous solution using stem carbon of Ricinus communis as adsorbent, Asian J. Chem., 31 (2019) 1071–1076.
- R.M.C. Somasekhara, L. Sivaramakrishna, R.A. Varada, The
use of an agricultural waste material, Jujuba seeds for the
removal of anionic dye (Congo red) from aqueous medium,
J. Hazard. Mater., 203 (2012) 118–127.
- S. Lagergren, About the theory of so-called adsorption of
soluble substances, Kongl. Vetensk. Acad. Handl., 24 (1898)
1–39.
- Y.S. Ho, G. McKay, Pseudo-second order model for
sorption processes, Process Biochem., 34 (1999) 451–465.
- F.C. Wu, R.L. Tseng, R.S. Juang, Characteristics of Elovich
equation used for the analysis of adsorption kinetics
in dye-chitosan systems, Chem. Eng. J., 150 (2009) 366–373.
- W.J. Weber, J.C. Morris, Kinetics of adsorption on carbon,
from solution, J. Sanit. Eng. Div., 89 (1963) 31–60.
- I. Langmuir, The adsorption of gases on plane surfaces
of glass, mica and platinum, J. Am. Chem. Soc., 40 (1918)
1361–1403.
- H.M.F. Freundlich, Uber die adsorption in Losungen,
Z. Phys. Chem., 57 (1906) 385–470.
- M.M. Dubinin, L.V. Radushkevich, Equation of the
characteristic curve of activated charcoal, Proc. Acad. Sci.
Phys. Chem. Sect. USSR, 55 (1974) 331–333.
- M. Zbair, K. Ainassaari, A. Drif, S. Ojala, M. Bottlinger,
M. Pirilä, R.L. Keiski, M. Bensite, R. Brahmi, Toward new
benchmark adsorbents: preparation and characterization of
activated carbon from argan nut shell for bisphenol A removal,
Environ. Sci. Pollut. Res., 25 (2018) 1869–1882.
- E. Vunain, D. Kenneth, T. Biswick, Synthesis and characterization
of low-cost activated carbon prepared from Malawian
baobab fruit shells by H3PO4 activation for removal of Cu(II)
ions: equilibrium and kinetics studies, Appl. Water Sci., 7 (2017)
4301–4319.
- M.T. Vu, H.P. Chao, T. Van Trinh, T.T. Le, C.C. Lin, H.N. Tran,
Removal of ammonium from groundwater using NaOH-treated
activated carbon derived from corncob wastes: batch and
column experiments, J. Cleaner Prod, 180 (2018) 560–570.
- H.N. Tran, C.-K. Lee, T.V. Nguyen, H.-P. Chao, Saccharidederived
microporous spherical biochar prepared from hydrothermal
carbonization and different pyrolysis temperatures:
synthesis, characterization, and application in water
treatment, Environ. Technol., 39 (2018) 2747–2760.
- S.M. Yakout, G. Sharaf El-Deen, Characterization of activated
carbon prepared by phosphoric acid activation of olive
stones, Arabian J. Chem., 9 (2016) S1155–S1162.
- H.N. Tran, S.J. You, T.V. Nguyen, H.P. Chao, Insight into
the adsorption mechanism of cationic dye onto biosorbents
derived from agricultural wastes, Chem. Eng. Commun.,
204 (2017) 1020–1036.
- A.C. Martins, O. Pezoti, A.L. Cazetta, K.C. Bedin,
D.A.S. Yamazaki, G.F.G. Bandoch, T. Asefa, J.V. Visentainer,
V.C. Almeida, Removal of tetracycline by NaOH-activated
carbon produced from macadamia nut shells: kinetic and
equilibrium studies, Chem. Eng. J., 260 (2015) 291–299.
- S. Wong, Y. Lee, N. Ngadi, I.M. Inuwa, B.M. Nurul Balqis,
Synthesis of activated carbon from spent tea leaves for
aspirin removal, Chin. J. Chem. Eng., 26 (2018) 1003–1011.
- Z. Hu, H. Chen, F. Ji, S. Yuan, Removal of Congo red
from aqueous solution by cattail root, J. Hazard. Mater.,
173 (2010) 292–297.
- M.C. Somasekhara Reddy, Removal of direct dye from
aqueous solution with a novel adsorbent made from tamarind
fruit shell, an agricultural solid waste, J. Sci. Ind. Res.,
65 (2006) 443–446.
- S. Venkat, P.V. Vijay Babu, Kinetic and equilibrium studies
on the removal of Congo red from aqueous solution using
Eucalyptus wood (Eucalyptus globulus) sawdust, J. Taiwan Inst.
Chem. Eng., 44 (2013) 81–88.
- E. Ghasemian, Z. Palizban, Comparisons of azo dye adsorptions
onto activated carbon and silicon carbide nanoparticles
loaded on activated carbon, Int. J. Environ. Sci. Technol.,
13 (2016) 501–512.
- S. Yadav, A. Asthana, R. Chakraborty, B. Jain, A.K. Singh,
S.A.C. Carabineiro, M.A.B. Susan, Cationic dye removal using
novel magnetic/activated charcoal/β-cyclodextrin/alginate
polymer nanocomposite, Nanomaterials (Basel), 10 (2020)
170, doi: 10.3390/nano10010170.
- H. Ait Ahsaine, M. Zbair, Z. Anfar, Y. Naciri, R. El Haouti,
N. El Alem, M. Ezahri, Cationic dyes adsorption onto
high surface area ‘almond shell’ activated carbon: kinetics,
equilibrium isotherms, and surface statistical modeling, Mater.
Today Chem., 8 (2018) 121–132.