References
- C. Parvathi, T. Maruthavanan, Adsorptive removal of Megenta
MB cold brand reactive dye by modified activated carbons
derived from agricultural waste, Indian J. Sci. Technol., 3 (2010)
408–410.
- P. Senthil Kumar, S.J. Varjani, S. Suganya, Treatment of dye
wastewater using an ultrasonic aided nanoparticle stacked
activated carbon: kinetic and isotherm modelling, Bioresour.
Technol., 250 (2018) 716–722.
- Z. Huang, Y. Li, W. Chen, J. Shi, Y. Zhang, Modified bentonite
adsorption of organic pollutants of dye wastewater, Mater.
Chem. Phys., 202 (2017) 266–276.
- A.H. Jawad, A.M. Kadhum, Y. Ngoh, Applicability of dragon
fruit (Hylocereus polyrhizus) peels as low-cost biosorbent for
adsorption of methylene blue from aqueous solution: kinetics,
equilibrium and thermodynamics studies, Desal. Water. Treat.,
109 (2018) 231–240.
- J. Huang, Y. Cao, Z. Liu, Z. Deng, W. Wang, Application of
titanate nanoflowers for dye removal: a comparative study
with titanate nanotubes and nanowires, Chem. Eng. J.,
191 (2012) 38–44.
- D.H.K. Reddy, S.M. Lee, K. Seshaiah, Biosorption of toxic
heavy metal ions from water environment using honeycomb
biomass—an industrial waste material, Water Air Soil Pollut.,
223 (2012) 5967–5982.
- M.M. Abd El-Latif, A.M. Ibrahim, M.F. El-Kady, Adsorption
equilibrium, kinetics and thermodynamics of methylene
blue from aqueous solutions using biopolymer oak sawdust
composite, J. Am. Sci., 6 (2010) 267–283.
- D. Pathania, S. Sharma, P. Singh, Removal of methylene
blue by adsorption onto activated carbon developed from
Ficus carica bast, Arabian J. Chem., 10 (2017) S1445–S1451.
- M. Davodi, H. Alidadi, A. Ramezani, F. Jamali-Behnam,
Z. Bonyadi, Study of the removal efficiency of arsenic from
aqueous solutions using Melia azedarach sawdust modified
with FeO: isotherm and kinetic studies, Desal. Water Treat.,
137 (2019) 292–299.
- S. Nethaji, A. Sivasamy, A.B. Mandal, Adsorption isotherms,
kinetics and mechanism for the adsorption of cationic and
anionic dyes onto carbonaceous particles prepared from
Juglans regia shell biomass, Int. J. Environ. Sci. Technol.,
10 (2013) 231–242.
- I. Anastopoulos, G.Z. Kyzas, Agricultural peels for dye
adsorption: a review of recent literature, J. Mol. Liq., 200 (2014)
381–389.
- L. Ding, B. Zou, W. Gao, Q. Liu, Z. Wang, Y. Guo, X. Wang,
Y. Liu, Adsorption of Rhodamine-B from aqueous solution
using treated rice husk-based activated carbon, Colloids Surf.,
A, 446 (2014) 1–7.
- J. Liu, Z. Wang, H. Li, C. Hu, P. Raymer, Q. Huang, Effect of
solid-state fermentation of peanut shell on its dye adsorption
performance, Bioresour. Technol., 249 (2018) 307–314.
- V. Ponnusami, S. Vikram, S.N. Srivastava, Guava (Psidium
guajava) leaf powder: novel adsorbent for removal of methylene
blue from aqueous solutions, J. Hazard. Mater., 152 (2008)
276–286.
- A. Nowak-Wegrzyn, A.W. Burks, H.A. Sampson, Food
Allergy and Gastrointestinal Syndromes, Middleton’s Allergy
Essentials, Elsevier, Department of Allergy, Immunology, and
Respiratory Medicine Alfred Hospital Monash University,
Melbourne, Australia, 2017, pp. 301–343.
- A. Kheloufi, Z.F. Boukhatem, L. Mansouri, M. Djelilate, Inventory
and geographical distribution of Acacia Mill. (Fabaceae
Mimosaceae) species in Algeria, Biodivers. J., 9 (2018) 51–60.
- J.S. Noh, J.A. Schwarz, Estimation of the point of zero charge
of simple oxides by mass titration, J. Colloid Interface Sci.,
130 (1989) 157–164.
- S.M. Anisuzzaman, C.G. Joseph, Y.H. Taufiq-Yap, D. Krishnaiah,
V.V. Tay, Modification of commercial activated carbon for the
removal of 2,4-dichlorophenol from simulated wastewater,
J. King Saud Univ. Sci., 27 (2015) 318–330.
- G.A. Parks, Chapter 4. Surface Energy and Adsorption at
Mineral/Water Interfaces: An Introduction, M.F. Hochella,
A.F. White, Eds., Mineral-Water Interface Geochemistry,
De Gruyter, Berlin, Boston, 2018,
pp. 133–176.
- D.S. Malik, C.K. Jain, A.K. Yadav, G.K. Vishwavidyalaya,
Preparation and characterization of plant based
low-cost
adsorbents, J. Global Biosci., 4 (2015) 1824–1829.
- D. Kibami, P. Chubaakum, K.S. Rao, S. Dipak, Preparation
and characterization of activated carbon from Fagopyrum
esculentum Moench by HNO3 and H3PO4 chemical activation,
Der Chem. Sin., 5 (2014) 46–55.
- E. Papirer, E. Guyon, N. Perol, Contribution to the study of
the surface groups on carbons—II: spectroscopic methods,
Carbon, 16 (1978) 133–140.
- M.T. Yagub, T.K. Sen, H.M. Ang, Equilibrium, kinetics, and
thermodynamics of methylene blue adsorption by pine tree
leaves, Water Air Soil Pollut., 223 (2012) 5267–5282.
- N.P. Adetya, U.F. Arifin, E. Anggriyani, The removal of
chromium(VI) from tannery waste using Spirulina sp.
immobilized silica gel, Turk. J. Chem., 45 (2021) 1854–1864.
- H. Lin, K. Chen, L. Du, P. Gao, J. Zheng, Y. Liu, L. Ma, Efficient
and selective adsorption of methylene blue and methyl violet
dyes by yellow passion fruit peel, Environ. Technol., 43 (2022)
3519–3530.
- W. Hassan, U. Farooq, M. Ahmad, M. Athar, M.A. Khan,
Potential biosorbent, Haloxylon recurvum plant stems, for the
removal of methylene blue dye, Arabian J. Chem., 10 (2017)
S1512–S1522.
- O. Sulaiman, M.H.M. Amini, M. Rafatullah, R. Hashim,
A. Ahmad, Adsorption equilibrium and thermodynamic
studies of copper(II) ions from aqueous solutions by oil
palm leaves, Int. J. Chem. React. Eng., (2010) 8, doi: 10.2202/1542-6580.2350.
- X. Han, X. Niu, X. Ma, Adsorption characteristics of methylene
blue on poplar leaf in batch mode: equilibrium, kinetics
and thermodynamics, Korean J. Chem. Eng., 29 (2012)
494–502.
- M.C. Terkhi, F. Taleb, P. Gossart, A. Semmoud, A. Addou,
Fourier transform infrared study of mercury interaction with
carboxyl groups in humic acids, J. Photochem. Photobiol., A,
198 (2008) 205–214.
- M. Mathivanan, S. Syed Abdul Rahman, R. Vedachalam,
S. Karuppiah, Ipomoea carnea: a novel biosorbent for the
removal of methylene blue (MB) from aqueous dye solution:
kinetic, equilibrium and statistical approach, Int. J. Phytorem.,
23 (2021) 982–1000.
- N.M. Nurazzi, M.R.M. Asyraf, M. Rayung, M.N.F. Norrrahim,
S.S. Shazleen, M.S.A. Rani, A.R. Shafi, H.A. Aisyah,
M.H.M. Radzi, F.A. Sabaruddin, R.A. Ilyas, E.S. Zainudin,
K. Abdan, Thermogravimetric analysis properties of cellulosic
natural fiber polymer composites: a review on influence of
chemical treatments, Polymers, 13 (2021) 2710, doi: 10.3390/polym13162710.
- N.B.R. Legrand, M. Lucien, O. Pierre, B.E. Fabien, N.P. Marcel,
A.A. Jean, Physico-chemical and thermal characterization of
a lignocellulosic fiber, extracted from the bast of Cola lepidota stem, J. Miner. Mater. Charact. Eng., 8 (2020) 377–392.
- H. Yang, R. Yan, H. Chen, H. Dong, H.D. Lee, C. Zheng,
Characteristics of hemicellulose, cellulose and lignin
pyrolysis, Fuel, 86 (2007) 1781–1788.
- Z. Aksu, Application of biosorption for the removal of
organic pollutants: a review, Process Biochem., 40 (2005)
997–1026.
- A. Ouldmoumna, L. Reinert, N. Benderdouche, B. Bestani,
L. Duclaux, Characterization and application of three novel
biosorbents Eucalyptus globulus, Cynara cardunculus, and
Prunus cerasefera to dye removal, Desal. Water Treat., 51 (2013)
3527–3538.
- W. Zou, H. Bai, S. Gao, K. Li, Characterization of modified
sawdust, kinetic and equilibrium study about methylene blue
adsorption in batch mode, Korean J. Chem. Eng., 30 (2013)
111–122.
- E.F.D. Januário, T.B. Vidovix, L.A.D. Araújo, L. Bergamasco
Beltran, R. Bergamasco, A.M.S. Vieira, Investigation of Citrus
reticulata peels as an efficient and low-cost adsorbent for the
removal of safranin orange dye, Environ. Technol., 43 (2022)
4315–4329.
- H.M.F. Freundlich, Over the adsorption in solution, J. Phys.
Chem., 57 (1906) 1100–1107.
- S.K. Lagergren, About the theory of so-called adsorption
of soluble substances, Sven. Vetenskapsakad, Handingarl,
24 (1898) 1–39.
- Y.S. Ho, G. McKay, Kinetic models for the sorption of dye
from aqueous solution by wood, Process Saf. Environ. Prot.,
76 (1998) 183–191.
- W.J. Weber, J.C. Morris, Kinetic of adsorption on carbon
from solution, J. Sanit. Eng. Div., 89 (1963) 31–59.
- B. Bestani, N. Benderdouche, B. Benstaali, M. Belhakem,
A. Addou, Methylene blue and iodine adsorption onto an
activated desert plant, Bioresour. Technol., 99 (2008) 8441–8444.
- T.K. Sen, S. Afroze, H.M. Ang, Equilibrium, kinetics and
mechanism of removal of methylene blue from aqueous
solution by adsorption onto pinecone biomass of Pinus radiate,
Water Air Soil Pollut., 218 (2011) 499–515.
- I. Langmuir, The constitution and fundamental properties of
solids and liquids. Part I. Solids, J. Am. Chem. Soc., 38 (1916)
2221–2295.
- P.O. Boamah, Q. Zhang, M. Hua, Y. Huang, Y. Liu, W. Wang,
Y. Liu, Lead removal onto cross-linked low molecular weight
chitosan pyruvic acid derivatives, Carbohydr. Polym.,
110 (2014) 518–527.
- R. Han, W. Zou, W. Yu, S. Cheng, Y. Wang, J. Shi, Biosorption
of methylene blue from aqueous solution by fallen phoenix
tree’s leaves, J. Hazard. Mater., 141 (2007) 156–162.
- 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. Ansari, F. Khan, A. Ahmad, Cauliflower leave, an
agricultural waste biomass adsorbent, and its application for
the removal of MB dye from aqueous solution: equilibrium,
kinetics, and thermodynamic studies, Int. J. Anal. Chem., 2016
(2016) 1–10.
- Z. Bingul, E. Adar, Usability of spent Salvia officinalis as a lowcost
adsorbent in the removal of toxic dyes: waste assessment
and circular economy, Int. J. Environ. Anal. Chem., (2021) 1–16,
doi: 10.1080/03067319.2021.1949588.
- B.T. Gemici, H.U. Ozel, H.B. Ozel, Removal of methylene
blue onto forest wastes: adsorption isotherms, kinetics and
thermodynamic analysis, Environ. Technol. Innovation,
22 (2021) 101501, doi: 10.1016/j.eti.2021.101501.
- C. Ammar, Y. El-Ghoul, M. Jabli, Characterization and
valuable use of Calotropis gigantea seedpods as a biosorbent of
methylene blue, Int. J. Phytorem., 23 (2021) 1085–1094.
- R. Fiaz, M. Hafeez, R. Mahmood, Ficcus palmata leaves as a
low-cost biosorbent for methylene blue: thermodynamic and
kinetic studies, Water Environ. Res., 91 (2019) 689–699.
- M. Kerrou, N. Bouslamti, A. Raada, A. Elanssari, D. Mrani,
M.S. Slimani, The use of sugarcane bagasse to remove the
organic dyes from wastewater, Int. J. Anal. Chem., 2021 (2021)
1–11.
- Z. Belala, M. Jeguirim, M. Belhachemi, F. Addoun,
G. Trouvé, Biosorption of basic dye from aqueous solutions
by date stones and palm-trees waste: kinetic, equilibrium and
thermodynamic studies, Desalination, 271 (2011) 80–87.
- R.N. Oliveira, M.C. Mancini, F.C.S. Oliveira, T.M. Passos,
B. Quility, R.M.S. Thire, G.B. Mcguiness, FTIR analysis and
quantification of phenols and flavonoids of five commercially
available plants extracts used in wound healing, Rev. Mater.,
21 (2016) 767–779.
- 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.
- H.E. Ezerie, R.M.K. Shamsul, M. Amirhossein, H. Mohamed,
Characterization and optimization of effluent dye removal
using a new low-cost adsorbent: equilibrium, kinetics and
thermodynamic study, Process Saf. Environ. Prot., 98 (2015)
16–32.
- J. Bortoluz, F. Ferrarini, L.R. Bonetto, J. da Silva Crespo,
M. Giovanela, Use of low-cost natural waste from the furniture
industry for the removal of methylene blue by adsorption:
isotherms, kinetics and thermodynamics, Cellulose, 27 (2020)
6445–6466.