References
- E.N. Zare, A. Motahari, M. Sillanpää, Nanoadsorbents based
on conducting polymer nanocomposites with main focus on
polyaniline and its derivatives for removal of heavy metal ions/dyes: a review, Environ. Res., 162 (2018) 173–195.
- A.A. Basheer, New generation nano-adsorbents for the removal
of emerging contaminants in water, J. Mol. Liq., 261 (2018)
583–593.
- Y. Dai, Q. Sun, W. Wang, L. Lu, M. Liu, J. Li, S. Yang, Y. Sun,
K. Zhang, J. Xu, Utilizations of agricultural waste as adsorbent
for the removal of contaminants: a review, Chemosphere, 211
(2018) 235–253.
- I. Mironyuk, T. Tatarchuk, M. Naushad, H. Vasylyeva,
I. Mykytyn, Highly efficient adsorption of strontium ions by
carbonated mesoporous TiO2, J. Mol. Liq., 285 (2019) 742–753.
- L. Deng, H. Zeng, Z. Shi, W. Zhang, J. Luo, Sodium dodecyl
sulfate intercalated and acrylamide anchored layered double
hydroxides: a multifunctional adsorbent for highly efficient
removal of Congo red, J. Colloid Interface Sci., 521 (2018)
172–182.
- M. Naushad, A.A. Alqadami, Z.A. AlOthman, I.H. Alsohaimi,
M.S. Algamdi, A.M. Aldawsari, Adsorption kinetics, isotherm
and reusability studies for the removal of cationic dye from
aqueous medium using arginine modified activated carbon,
J. Mol. Liq., 293 (2019) 111442.
- International Agency For Research On Cancer, Overall
evaluations of carcinogenicity: and updating of IARC
monographs, vol. 1 to 42. IARC monographs on the evaluation
of the carcinogenic risk of chemicals to humans: Suppl 7, IARC,
7 (1987) 1–440.
- W.-f. Chen, L. Pan, L.-f. Chen, Z. Yu, Q. Wang, C.-c. Yan,
Comparison of EDTA and SDS as potential surface impregnation
agents for lead adsorption by activated carbon, Appl. Surf.
Sci., 309 (2014) 38–45.
- F. Golmohammadi, M. Hazrati, M. Safari, Removal of reactive
yellow 15 from water sample using a magnetite nanoparticles
coated with covalently immobilized dimethyl octadecyl
[3-(trimethoxysilylpropyl)] ammonium chloride ionic liquid,
Microchem. J., 144 (2019) 64–72.
- M. Naushad, G. Sharma, Z.A. Alothman, Photodegradation
of toxic dye using Gum Arabic-crosslinked-poly (acrylamide)/Ni(OH)2/FeOOH nanocomposites hydrogel, J. Cleaner Prod.,
241 (2019) 118263.
- A. Hassani, L. Alidokht, A. Khataee, S. Karaca, Optimization
of comparative removal of two structurally different basic
dyes using coal as a low-cost and available adsorbent, Taiwan
Inst. Chem. Eng., 45 (2014) 1597–1607.
- C.K. Ahn, D. Park, S.H. Woo, J.M. Park, Removal of cationic
heavy metal from aqueous solution by activated carbon
impregnated with anionic surfactants, J. Hazard. Mater.,
164 (2009) 1130–1136.
- J. Mohanraj, D. Durgalakshmi, S. Balakumar, P. Aruna,
S. Ganesan, S. Rajendran, M. Naushad, Low cost and quick time
absorption of organic dye pollutants under ambient condition
using partially exfoliated graphite, J. Water Process Eng.,
34 (2019) 101078.
- W. Lee, S. Yoon, J.K. Choe, M. Lee, Y. Choi, Anionic surfactant
modification of activated carbon for enhancing adsorption of
ammonium ion from aqueous solution, Sci. Total Environ.,
639 (2018) 1432–1439.
- M. Nadeem, M. Shabbir, M. Abdullah, S. Shah, G. McKay,
Sorption of cadmium from aqueous solution by surfactantmodified
carbon adsorbents, Chem. Eng. J., 148 (2009) 365–370.
- M. Foroughi-dahr, H. Abolghasemi, M. Esmaieli, G. Nazari,
B. Rasem, Experimental study on the adsorptive behavior of
Congo red in cationic surfactant-modified tea waste, Process
Saf. Environ. Prot., 95 (2015) 226–236.
- P. Janoš, V. Šmídová, Effects of surfactants on the adsorptive
removal of basic dyes from water using an organomineral
sorbent—iron humate, J. Colloid Interface Sci., 291 (2005) 19–27.
- X.-l. Song, M.-w. Zhang, Y. Zhang, S.-T. Huang, B.-Y. Geng,
R.-B. Meng, Y.-Z. Yang, Y.-S. Zhong, H.-Y. Liu, Surface
modification of coconut-based activated carbon by SDS and
its effects on Pb2+ adsorption, J. Cent. South Univ., 20 (2013)
1156–1160.
- S. Moradi, Microwave assisted preparation of sodium dodecyl
sulphate (SDS) modified ordered nanoporous carbon and
its adsorption for MB dye, J. Ind. Eng. Chem., 20 (2014) 208–215.
- A. Asfaram, M. Ghaedi, M.H.A. Azqhandi, A. Goudarzi,
S. Hajati, Ultrasound-assisted binary adsorption of dyes onto
Mn@ CuS/ZnS-NC-AC as a novel adsorbent: application of
chemometrics for optimization and modeling, J. Ind. Eng.
Chem., 54 (2017) 377–388.
- T. Mahmood, R. Ali, A. Naeem, M. Hamayun, M. Aslam,
Potential of used Camellia sinensis leaves as precursor for
activated carbon preparation by chemical activation with
H3PO4; optimization using response surface methodology,
Process Saf. Environ. Prot., 109 (2017) 548–563.
- E.P. Barrett, L.G. Joyner, P.P. Halenda, The determination of
pore volume and area distributions in porous substances.
I. Computations from nitrogen isotherms, J. Am. Chem. Soc.,
73 (1951) 373–380.
- F. Rodriguez-Reinoso, M. Molina-Sabio, M. Gonzalez, The
use of steam and CO2 as activating agents in the preparation
of activated carbons, Carbon, 33 (1995) 15–23.
- G.D. Vyavahare, R.G. Gurav, P.P. Jadhav, R.R. Patil, C.B. Aware,
J.P. Jadhav, Response surface methodology optimization for
sorption of malachite green dye on sugarcane bagasse biochar
and evaluating the residual dye for phyto and cytogenotoxicity,
Chemosphere, 194 (2018) 306–315.
- A.M. Ghaedi, S. Karamipour, A. Vafaei, M.M. Baneshi,
V. Kiarostami, Optimization and modeling of simultaneous
ultrasound-assisted adsorption of ternary dyes using copper
oxide nanoparticles immobilized on activated carbon using
response surface methodology and artificial neural network,
Ultrason. Sonochem., 51 (2019) 264–280.
- Z.N. Garba, A.A. Rahim, Process optimization of K2C2O4-activated carbon from Prosopis africana seed hulls using response
surface methodology, J. Anal. Appl. Pyrol., 107 (2014) 306–312.
- D.C. Montgomery, Design and Analysis of Experiments, John
Wiley & Sons, 2017.
- S.K. Lagergren, About the theory of so-called adsorption of
soluble substances, K. Sven. Vetenskapsakad. Handl., 24 (1898)
1–39.
- Y.-S. Ho, G. McKay, Pseudo-second order model for sorption
processes, Process Biochem., 34 (1999) 451–465.
- J. Gülen, B. Akın, M. Özgür, Ultrasonic-assisted adsorption of
methylene blue on sumac leaves, Desal. Water Treat., 57 (2016)
9286–9295.
- G. Manikandan, S. Kumar, A. Saravanan, Modelling and
analysis on the removal of methylene blue dye from aqueous
solution using physically/chemically modified Ceiba pentandra
seeds, J. Ind. Eng. Chem., 62 (2018) 446–461.
- W.J. Weber, J.C. Morris, Kinetics of adsorption on carbon from
solution, J. Sanit. Eng. Div., 89 (1963) 31–60.
- G. Boyd, A. Adamson, L. Myers Jr, The exchange adsorption
of ions from aqueous solutions by organic zeolites. II. Kinetics,
J. Am. Chem. Soc., 69 (1947) 2836–2848.
- I. Langmuir, The constitution and fundamental properties of
solids and liquids. Part I. Solids, J. Am. Chem. Soc., 38 (1916)
2221–2295.
- H. Freundlich, Über die adsorption in lösungen, Z. Phys.
Chem., 57 (1907) 385–470.
- M. Temkin, V. Pyzhev, Recent modifications to Langmuir
isotherms, Acta Physiochim URSS, 12 (1940) 217–225.
- M. Dubinin, The equation of the characteristic curve of
activated charcoal, Dokl. Akad. Nauk. SSSR., 55 (1947) 327–329.
- T. Weber, Chakravorti, Pore and solid diffusion models for
fixed-bed adsorbers, AIChE J., 20 (1974) 228–238.
- M. Ghasemi, S. Mashhadi, M. Asif, I. Tyagi, S. Agarwal,
V.K. Gupta, Microwave-assisted synthesis of tetraethylenepentamine
functionalized activated carbon with high
adsorption capacity for Malachite green dye, J. Mol. Liq.,
213 (2016) 317–325.
- Z. Cheng, L. Zhang, X. Guo, X. Jiang, T. Li, Adsorption
behavior of direct red 80 and congo red onto activated carbon/
surfactant: process optimization, kinetics and equilibrium,
Spectrochim. Acta Part A, 137 (2015) 1126–1143.
- M.R. Malekbala, M.A. Khan, S. Hosseini, L.C. Abdullah,
T.S. Choong, Adsorption/desorption of cationic dye on
surfactant modified mesoporous carbon coated monolith:
equilibrium, kinetic and thermodynamic studies, J. Ind. Eng.
Chem., 21 (2015) 369–377.
- R. Ali, T. Mahmood, S.U. Din, A. Naeem, M. Aslam,
M. Farooq, Efficient removal of hazardous malachite green
dye from aqueous solutions using H2O2 modified activated
carbon as potential low-cost adsorbent: kinetic, equilibrium,
and thermodynamic studies, Desal. Water Treat., 151 (2019)
167–182.
- A. Gallardo-Moreno, C. González-García, M. Gonzalez-Martin,
J. Bruque, Arrangement of SDS adsorbed layer on carbonaceous
particles by zeta potential determinations, Colloids Surf. A,
249 (2004) 57–62.
- E. El-Shafey, S.N. Ali, S. Al-Busafi, H.A. Al-Lawati, Preparation
and characterization of surface functionalized activated
carbons from date palm leaflets and application for methylene
blue removal, J. Environ. Chem. Eng., 4 (2016) 2713–2724.
- E.G. Lemraski, S. Sharafinia, Kinetics, equilibrium and
thermodynamics studies of Pb2+ adsorption onto new activated
carbon prepared from Persian mesquite grain, J. Mol. Liq.,
219 (2016) 482–492.
- Q. Sun, R.G. Saratale, G.D. Saratale, D.-S. Kim, Pristine
and modified radix Angelicae dahuricae (Baizhi) residue for
the adsorption of methylene blue from aqueous solution:
a comparative study, J. Mol. Liq., 265 (2018) 36–45.
- R.M. Novais, A.P. 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.
- P. Pal, A. Pal, Surfactant-modified chitosan beads for cadmium
ion adsorption, Int. J. Biol. Macromol., 104 (2017) 1548–1555.
- L. Zhao, L. Gao, Coating multi-walled carbon nanotubes
with zinc sulfide, J. Mater. Chem., 14 (2004) 1001–1004.
- X. Wei, Z. Wu, C. Du, Z. Wu, B.-C. Ye, G. Cravotto, Enhanced
adsorption of atrazine on a coal-based activated carbon
modified with sodium dodecyl benzene sulfonate under
microwave heating, J. Taiwan Inst. Chem. Eng., 77 (2017)
257–262.
- H. Guedidi, L. Reinert, J.-M. Lévêque, Y. Soneda, N. Bellakhal,
L. Duclaux, The effects of the surface oxidation of activated
carbon, the solution pH and the temperature on adsorption of
ibuprofen, Carbon, 54 (2013) 432–443.
- F. Ansari, M. Ghaedi, M. Taghdiri, A. Asfaram, Application
of ZnO nanorods loaded on activated carbon for ultrasonic
assisted dyes removal: experimental design and derivative
spectrophotometry method, Ultrason. Sonochem., 33 (2016)
197–209.
- A.M. Vargas, A.C. Martins, V.C. Almeida, Ternary adsorption of
acid dyes onto activated carbon from flamboyant pods (Delonix
regia): analysis by derivative spectrophotometry and response
surface methodology, Chem. Eng. J., 195 (2012) 173–179.
- J. Zolgharnein, M. Bagtash, T. Shariatmanesh, Simultaneous
removal of binary mixture of Brilliant Green and Crystal
Violet using derivative spectrophotometric determination,
multivariate optimization and adsorption characterization of
dyes on surfactant modified nano-γ-alumina, Spectrochim.
Acta Part A, 137 (2015) 1016–1028.
- M. Goswami, P. Phukan, Enhanced adsorption of cationic
dyes using sulfonic acid modified activated carbon, J. Environ.
Chem. Eng., 5 (2017) 3508–3517.
- F. Marrakchi, M. Auta, W. Khanday, B. Hameed, High-surfacearea
and nitrogen-rich mesoporous carbon material from
fishery waste for effective adsorption of methylene blue,
Powder Technol., 321 (2017) 428–434.
- A. Khodabandehloo, A. Rahbar-Kelishami, H. Shayesteh,
Methylene blue removal using Salix babylonica (weeping
willow) leaves powder as a low-cost biosorbent in batch mode:
kinetic, equilibrium, and thermodynamic studies, J. Mol. Liq.,
244 (2017) 540–548.
- E. Daneshvar, A. Vazirzadeh, A. Niazi, M. Sillanpää, A. Bhatnagar,
A comparative study of methylene blue biosorption
using different modified brown, red and green macroalgae–
effect of pretreatment, Chem. Eng. J., 307 (2017) 435–446.
- I. Shittu, A.A. Edathil, A. Alsaeedi, S. Al-Asheh, K. Polychronopoulou,
F. Banat, Development of novel surfactant
functionalized porous graphitic carbon as an efficient adsorbent
for the removal of methylene blue dye from aqueous solutions,
J. Water Process Eng., 28 (2019) 69–81.
- S. Kaur, S. Rani, R. Mahajan, M. Asif, V.K. Gupta, Synthesis and
adsorption properties of mesoporous material for the removal
of dye safranin: kinetics, equilibrium, and thermodynamics,
J. Ind. Eng. Chem., 22 (2015) 19–27.
- M. Ghaedi, A. Ansari, M. Habibi, A. Asghari, Removal
of malachite green from aqueous solution by zinc oxide
nanoparticle loaded on activated carbon: kinetics and isotherm
study, J. Ind. Eng. Chem., 20 (2014) 17–28.
- M.A. Ahmad, N.K. Rahman, Equilibrium, kinetics and
thermodynamic of Remazol Brilliant Orange 3R dye adsorption
on coffee husk-based activated carbon, Chem. Eng. J., 170 (2011)
154–161.
- A. Asfaram, M. Ghaedi, S. Agarwal, I. Tyagi, V.K. Gupta,
Removal of basic dye Auramine-O by ZnS: Cu nanoparticles
loaded on activated carbon: optimization of parameters using
response surface methodology with central composite design,
RSC Adv., 5 (2015) 18438–18450.
- C.H. Giles, D. Smith, A. Huitson, A general treatment and
classification of the solute adsorption isotherm. I. Theoretical,
J. Colloid Interface Sci., 47 (1974) 755–765.
- H. Laksaci, A. Khelifi, B. Belhamdi, M. Trari, The use of prepared
activated carbon as adsorbent for the removal of orange G from
aqueous solution, Microchem. J., 145 (2019) 908–913.
- P. Rai, R.K. Gautam, S. Banerjee, V. Rawat, M. Chattopadhyaya,
Synthesis and characterization of a novel SnFe2O4@ activated
carbon magnetic nanocomposite and its effectiveness in the
removal of crystal violet from aqueous solution, J. Environ.
Chem. Eng., 3 (2015) 2281–2291.
- Y.-D. Liang, Y.-J. He, T.-T. Wang, L.-H. Lei, Adsorptive removal
of gentian violet from aqueous solution using CoFe2O4/activated carbon magnetic composite, J. Water Process Eng.,
27 (2019) 77–88.
- A. Jalil, S. Triwahyono, M. Yaakob, Z. Azmi, N. Sapawe,
N. Kamarudin, H. Setiabudi, N. Jaafar, S. Sidik, S. Adam,
Utilization of bivalve shell-treated Zea mays L. (maize) husk leaf
as a low-cost biosorbent for enhanced adsorption of malachite
green, Bioresour. Technol., 120 (2012) 218–224.
- C. Muthukumaran, V.M. Sivakumar, M. Thirumarimurugan,
Adsorption isotherms and kinetic studies of crystal violet dye
removal from aqueous solution using surfactant modified
magnetic nanoadsorbent, J. Taiwan Inst. Chem. Eng., 63 (2016)
354–362.
- P. Pal, A. Pal, Dye removal using waste beads: efficient
utilization of surface-modified chitosan beads generated after
lead adsorption process, J. Water Process Eng., 31 (2019) 100882.
- N.A. El Essawy, S.M. Ali, H.A. Farag, A.H. Konsowa,
M. Elnouby, H.A. Hamad, Green synthesis of graphene from
recycled PET bottle wastes for use in the adsorption of dyes in
aqueous solution, Ecotoxicol. Environ. Saf., 145 (2017) 57–68.
- A. Salima, B. Benaouda, B. Noureddine, L. Duclaux, Application
of Ulva lactuca and Systoceira stricta algae-based activated
carbons to hazardous cationic dyes removal from industrial
effluents, Water Res., 47 (2013) 3375–3388.
- J. Gülen, Z. Altın, M. Özgür, Removal of amitraz from aqueous
solutions on clay by adsorption technique at industrial
scale, Mater. Test., 59 (2017) 94–100.
- T.B. Pushpa, J. Vijayaraghavan, S.S. Basha, V. Sekaran, K. Vijayaraghavan,
J. Jegan, Investigation on removal of malachite green
using EM based compost as adsorbent, Ecotoxicol. Environ.
Saf., 118 (2015) 177–182.
- H.N. Tran, S.-J. You, H.-P. Chao, Fast and efficient adsorption
of methylene green 5 on activated carbon prepared from new
chemical activation method, J. Environ. Manage., 188 (2017)
322–336.
- L. Zhang, H. Zhang, W. Guo, Y. Tian, Removal of malachite
green and crystal violet cationic dyes from aqueous solution
using activated sintering process red mud, Appl. Clay Sci.,
93 (2014) 85–93.
- E. Daneshvar, A. Vazirzadeh, A. Niazi, M. Kousha, M. Naushad,
A. Bhatnagar, Desorption of Methylene blue dye from brown
macroalga: effects of operating parameters, isotherm study
and kinetic modeling, J. Cleaner Prod., 152 (2017) 443–453.
- A.A. Oladipo, M. Gazi, Enhanced removal of crystal violet by
low cost alginate/acid activated bentonite composite beads:
optimization and modelling using non-linear regression
technique, J. Water Process Eng., 2 (2014) 43–52.
- S. Hosseini, M.A. Khan, M.R. Malekbala, W. Cheah, T.S. Choong,
Carbon coated monolith, a mesoporous material for the
removal of methyl orange from aqueous phase: adsorption
and desorption studies, Chem. Eng. J., 171 (2011) 1124–1131.
- A. Asfaram, M. Ghaedi, S. Hajati, M. Rezaeinejad, A. Goudarzi,
M.K. Purkait, Rapid removal of Auramine-O and Methylene
blue by ZnS: Cu nanoparticles loaded on activated carbon:
a response surface methodology approach, J. Taiwan Inst.
Chem. Eng., 53 (2015) 80–91.
- J. Sharma, B.S. Kaith, A.K. Sharma, A. Goel, Gum xanthanpsyllium-
cl-poly (acrylic acid-co-itaconic acid) based adsorbent
for effective removal of cationic and anionic dyes: adsorption
isotherms, kinetics and thermodynamic studies, Ecotoxicol.
Environ. Saf., 149 (2018) 150–158.
- M. Jafari, M.R. Rahimi, M. Ghaedi, K. Dashtian, ZnO
nanoparticles loaded different mesh size of porous activated
carbon prepared from Pinus eldarica and its effects on
simultaneous removal of dyes: multivariate optimization,
Chem. Eng. Res. Des., 125 (2017) 408–421.
- E.A. Dil, M. Ghaedi, A. Ghaedi, A. Asfaram, A. Goudarzi,
S. Hajati, M. Soylak, S. Agarwal, V.K. Gupta, Modeling of
quaternary dyes adsorption onto ZnO–NR–AC artificial neural
network: analysis by derivative spectrophotometry, J. Ind. Eng.
Chem., 34 (2016) 186–197.
- K. Dashtian, S. Porhemat, A.R. Rezvani, M. Ghaedi,
M.M. Sabzehmeidani, Adsorption of semisoft pollutants
onto Bi2S3/Ag2S-AC under the influence of ultrasonic waves
as external filed, J. Ind. Eng. Chem., 60 (2018) 390–400.
- M. Jamshidi, M. Ghaedi, K. Dashtian, S. Hajati, A. Bazrafshan,
Sonochemical assisted hydrothermal synthesis of ZnO: Cr
nanoparticles loaded activated carbon for simultaneous
ultrasound-assisted adsorption of ternary toxic organic dye:
derivative spectrophotometric, optimization, kinetic and
isotherm study, Ultrason. Sonochem., 32 (2016) 119–131.
- S. Jana, J. Ray, B. Mondal, T. Tripathy, Efficient and selective
removal of cationic organic dyes from their aqueous solutions
by a nanocomposite hydrogel, katira gum-cl-poly (acrylic acidco-N, N-dimethylacrylamide)@ bentonite, Appl. Clay Sci.,
173 (2019) 46–64.
- T.N.V. de Souza, S.M.L. de Carvalho, M.G.A. Vieira,
M.G.C. da Silva, D.D.S.B. Brasil, Adsorption of basic dyes onto
activated carbon: experimental and theoretical investigation of
chemical reactivity of basic dyes using DFT-based descriptors,
Appl. Surf. Sci., 448 (2018) 662–670.