References
- F. Mbarki, T. Selmi, A. Kesraoui, M. Seffen, Low-cost activated
carbon preparation from Corn stigmata fibers chemically
activated using H3PO4, ZnCl2 and KOH: study of methylene
blue adsorption, stochastic isotherm and fractal kinetic,
Ind. Crops Prod., 178 (2022) 114546, doi: 10.1016/j.indcrop.
2022.114546.
- S. Rani, S. Chaudhary, Adsorption of methylene blue and
crystal violet dye from wastewater using Citrus limetta peel as
an adsorbent, Mater. Today Proc., 60 (2022) 336–344.
- N.C. Joshi, P. Gururani, Advances of graphene oxide-based
nanocomposite materials in the treatment of wastewater
containing heavy metal ions and dyes, Curr. Res. Green
Sustainable Chem., 5 (2022) 100306, doi: 10.1016/j.crgsc.2022.100306.
- S.K.A. Solmaz, A. Birgül, G.E. Üstün, T. Yonar, Colour and COD
removal from textile effluent by coagulation and advanced
oxidation processes, Color. Technol., 122 (2006) 102–109.
- A.E. Ghaly, R. Ananthashankar, M. Alhattab, V.V. Rama-
krishnan, Production, characterization and treatment of
textile effluents: a critical review, J. Chem. Eng. Process.
Technol., 5 (2014) 1–19.
- R. Taheri-Ledari, K. Valadi, S. Gharibi, A. Maleki, Synergistic
photocatalytic effect between green LED light and Fe3O4/ZnO-modified natural pumice: a novel cleaner product for
degradation of methylene blue, Mater. Res. Bull., 130 (2020)
110946, doi: 10.1016/j.materresbull.2020.110946.
- A. Gürses, D. Yalvaç, K. Güneş, E. Şahin, M. Açıkyıldız,
The adsorption-desorption mechanisms on the powdered
activated carbon (PAC) of an anionic textile dye (RBY 3GL),
Desal. Water Treat., 70 (2017) 134–138.
- E. Zuriaga-Agusti, E. Alventosa-deLara, S. Barredo-Damas,
M.I. Alcaina-Miranda, M.I. Iborra-Clar,
J.A. Mendoza-Roca,
Performance of ceramic ultrafiltration membranes and
fouling behavior of a dye-polysaccharide binary system,
Water Res., 51 (2014) 199–210.
- R. Gong, M. Li, C. Yang, Y. Sun, J. Chen, Removal of cationic
dyes from aqueous solution by adsorption on peanut hull,
J. Hazard. Mater., 121 (2005) 247–250.
- E. Özkan, A. Gürses, M. Açıkyıldız, K. Güneş, Optimization
of process parameters for removal of Cr(VI) by Hypnum
cupressiforme using response surface methodology (RSM),
Fresenius Environ. Bull., 21 (2012) 3421–3423.
- A. Alverez-Gallegos, D. Pletcher, The removal of low level
organics via hydrogen peroxide formed in a reticulated
vitreous carbon cathode cell. Part 2: The removal of phenols
and related compounds from aqueous effluents, Electrochim.
Acta, 44 (1999) 2483–2492.
- Y. Yoshida, S. Ogata, S. Nakamatsu, T. Shimamune, K. Kikawa,
H. Inoue, C. Iwakura, Decoloration of azo dye using atomic
hydrogen permeating through a Pt-modified palladized Pd
sheet electrode, Electrochim. Acta, 45 (1999) 409–414.
- M. Rivera, M. Pazos, M. Sanroman, Improvement of dye
electrochemical treatment by combination with ultrasound
technique, J. Chem. Technol. Biotechnol., 84 (2009) 1118–1124.
- S. Sachdeva, A. Kumar, Preparation of nanoporous composite
carbon membrane for separation of Rhodamine B dye,
J. Membr. Sci., 329 (2009) 2–10.
- B. Meroufel, O. Benali, M. Benyahia, Y. Benmoussa, M. Zenasni,
Adsorptive removal of anionic dye from aqueous solutions
by Algerian kaolin: characteristics, isotherm, kinetic and
thermodynamic studies, J. Mater. Environ. Sci., 4 (2013) 482–491.
- V. Gupta, A. Shrivastava, N. Jain, Biosorption of chromium(VI)
from aqueous solutions by green algae spirogyra species,
Water Res., 35 (2001) 4079–4085.
- F. Karacan, U. Ozden, S. Karacan, Optimization of manufacturing
conditions for activated carbon from Turkish lignite by
chemical activation using response surface methodology,
Appl. Therm. Eng., 27 (2007) 1212–1218.
- S. Farooq, A.H. Al Maani, Z. Naureen, J. Hussain, A. Siddiqa,
A. Al Harrasi, Synthesis and characterization of copper
oxide-loaded activated carbon nanocomposite: adsorption
of methylene blue, kinetic, isotherm, and thermodynamic
study, J. Water Process Eng., 47 (2022) 102692, doi: 10.1016/j.
jwpe.2022.102692.
- V. Prajaputra, Z. Abidin, S. Budiarti, D.T. Suryaningtyas,
N. Isnaini, Comparative study of methylene blue adsorption
using alkali-activated pumice from Bali and Banten, J. Phys. Conf.
Ser., 1882 (2021) 012118, doi: 10.1088/1742-6596/1882/1/012118.
- D. Öztürk, T. Şahan, Design and optimization of Cu(II)
adsorption conditions from aqueous solutions by low-cost
adsorbent pumice with response surface methodology,
Pol. J. Environ. Stud., 24 (2015) 1749–1756.
- F. Akbal, Adsorption of basic dyes from aqueous solution onto
pumice powder, J. Colloid Interface Sci., 286 (2005) 455–458.
- M. Moradi, M. Fazlzadehdavil, M. Pirsaheb, Y. Mansouri,
T. Khosravi, K. Sharafi, Response surface methodology (RSM)
and its application for optimization of ammonium ions
removal from aqueous solutions by pumice as a natural and
low-cost adsorbent, Arch. Environ. Prot., 42 (2016) 33–43.
- 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) 1–10.
- S.H. Khorzughy, T. Eslamkish, F.D. Ardejani, M.R. Heydartaemeh,
Cadmium removal from aqueous solutions by pumice
and nano-pumice, Korean J. Chem. Eng., 32 (2015) 88–96.
- M. Yavuz, F. Gode, E. Pehlivan, S. Ozmert, Y.C. Sharma, An
economic removal of Cu2+ and Cr3+ on the new adsorbents:
pumice and polyacrylonitrile/pumice composite, Chem. Eng. J.,
137 (2008) 453–461.
- K. Güneş, A. Gürses, E. Şahin, T.B. Barın, M. Açıkyıldız,
Comparative study of the adsorption of cationic and anionic
dyes by aluminum(III) modified clay, Fresenius Environ. Bull.,
30 (2021) 13264–13273.
- L. Boughrara, F. Zaoui, F.Z. Sebba, B. Bounaceur, S.O. Kada,
New alginic acid derivatives ester for methylene blue dye
adsorption: kinetic, isotherm, thermodynamic, and mechanism
study, Int. J. Biol. Macromol., 205 (2022) 651–663.
- M. Açıkyıldız, A. Gürses, K. Güneş, D. Yalvaç, A comparative
examination of the adsorption mechanism of an anionic textile
dye (RBY 3GL) onto the powdered activated carbon (PAC)
using various the isotherm models and kinetics equations
with linear and non-linear methods, Appl. Surf. Sci., 354 (2015)
279–284.
- A. Abin-Bazaine, A.C. Trujillo, M. Olmos-Marquez, Adsorption
Isotherms: Enlightenment of the Phenomenon of Adsorption,
M. Ince, O. Kaplan Ince, Wastewater Treatment, IntechOpen,
London, 2022, pp. 15–29.
- M. Açıkyıldız, A. Gürses, K. Güneş, E. Şahin, Adsorption
of textile dyes from aqueous solutions onto clay: kinetic
modelling and equilibrium isotherm analysis, Front. Chem.,
11 (2023) 1156457, doi: 10.3389/fchem.2023.1156457.
- Ç. Doğar, A. Gürses, M. Açıkyıldız, E. Özkan, Thermodynamics
and kinetic studies of biosorption of a basic dye from aqueous
solution using green algae Ulothrix sp., Colloids Surf., B,
76 (2010) 279–285.
- F. Largo, R. Haounati, S. Akhouairi, H. Ouachtak, R. El Haouti,
A. El Guerdaoui, N. Hafid, D.M.F. Santos, F. Akbal, A. Kuleyin,
A. Jada, A.A. Addi, Adsorptive removal of both cationic and
anionic dyes by using sepiolite clay mineral as adsorbent:
experimental and molecular dynamic simulation studies,
J. Mol. Liq., 318 (2020) 114247, doi: 10.1016/j.molliq.2020.114247.
- E.E. Oguzie, B.N. Okolue, E.E. Ebenso, G.N. Onuoha,
A.I. Onuchukwu, Evaluation of the inhibitory effect of
methylene blue dye on the corrosion of aluminium in
hydrochloric acid, Mater. Chem. Phys., 87 (2004) 394–401.
- Z. Derakhshan, M.A. Baghapour, M. Ranjbar, M. Faramarzian,
Adsorption of methylene blue dye from aqueous solutions
by modified pumice stone: kinetics and equilibrium studies,
Health Scope, 2 (2013) 136–144.
- A. Gürses, S. Karaca, M. Açikyildiz, M. Ejder, Thermodynamics
and mechanism of cetyltrimethylammonium adsorption onto
clayey soil from aqueous solutions, Chem. Eng. J., 147 (2009)
194–201.
- M. Alkan, M. Karadaş, M. Doğan, Ö. Demirbaş, Adsorption
of CTAB onto perlite samples from aqueous solutions,
J. Colloid Interface Sci., 291 (2005) 309–318.
- M. Doğan, A. Türkyilmaz, M. Alkan, Ö. Demirbaş, Adsorption
of copper(II) ions onto sepiolite and electrokinetic properties,
Desalination, 238 (2009) 257–270.
- K. Mukherjee, A. Kedia, K.J. Rao, S. Dhir, S. Paria, Adsorption
enhancement of methylene blue dye at kaolinite clay–water
interface influenced by electrolyte solutions, RSC Adv., 5 (2015)
30654–30659.
- I.H. Nurwahid, L.C.C. Dimonti, A.A. Dwiatmoko, J.-M. Ha,
R.T. Yunarti, Investigation on SiO2 derived from sugarcane
bagasse ash and pumice stone as a catalyst support for silver
metal in the 4-nitrophenol reduction reaction, Inorg. Chem.
Commun., 135 (2022) 109098, doi: 10.1016/j.inoche.2021.109098.
- V. Prajaputra, Z. Abidin, D.T. Suryaningtyas, H. Rizal,
Characterization of Na-P1 zeolite synthesized from pumice
as low-cost materials and its ability for methylene blue
adsorption, IOP Conf. Ser.: Earth Environ. Sci., 399 (2019)
012014, doi: 10.1088/1755-1315/399/1/012014.
- M.N. Sepehr, M. Zarrabi, H. Kazemian, A. Amrane,
K. Yaghmaian, H.R. Ghaffari, Removal of hardness agents,
calcium and magnesium, by natural and alkaline modified
pumice stones in single and binary systems, Appl. Surf. Sci.,
274 (2013) 295–305.
- B. Ersoy, A. Sariisik, S. Dikmen, G. Sariisik, Characterization
of acidic pumice and determination of its electrokinetic
properties in water, Powder Technol., 197 (2010) 129–135.
- A.E. Körlü, S. Yapar, S. Perinçek, H. Yılmaz, C. Bağıran, Dye
removal from textile wastewater through the adsorption by
pumice used in stone washing, Autex Res. J., 15 (2015) 158–163.
- A. Tambe, A. Gadhave, A. Pathare, G. Shirole, Novel pumice@
SO3H catalyzed efficient synthesis of
2,4,5-triarylimidazoles
and acridine-1,8-diones under microwave assisted solventfree
path, Sustainable Chem. Pharm., 22 (2021) 100485,
doi: 10.1016/j.scp.2021.100485.