References
- N. Onursal, A.R. Kul, Cu(II) İyonlarının aktive edilmiş karışık
tipteki kil ile sudan uzaklaştırılması, izoterm, kinetik ve
termodinamik parametrelerin incelenmesi (Removal of Cu(II)
ions from water with activated mixed type clay, investigation
of isotherm, kinetic and thermodynamic parameters),
Euroasıa J. Math.-Eng. Nat. Med. Sci., (2019) 63–85.
- D. Karadağ, Y. Koç, M. Turan, M. Öztürk, A comparative study
of linear and non-linear regression analysis for ammonium
exchange by clinoptilolite zeolite, J. Hazard. Mater., 144 (2007)
432–437.
- M. Kostoglou, T.D. Karapantsios, Why is the linearized
form of pseudo-second order adsorption kinetic model so
successful
in fitting batch adsorption experimental data?,
Colloids Interfaces, 6 (2022) 55, doi: 10.3390/colloids6040055.
- Y.S. Ho, G. McKay, Pseudo-second order model for sorption
processes, Process Biochem., 34 (1999) 451–465.
- N. Onursal, Pb(II) İyonlarının aktive edilmiş karışık tipteki kil
ile sudan uzaklaştırılması izoterm kinetik ve termodinamik
parametrelerin incelenmesi (Removal of Pb(II) ions from
water with activated mixed type clay investigation of
isotherm kinetic and thermodynamic parameters), Euroasia
Math. Eng. Nat. Med. Sci., (2019) 9–22.
- M. Alaqarbeh, Adsorption phenomena: definition, mechanisms,
and adsorption types: short review, Green Appl. Chem.,
13 (2021) 43–51.
- A. Umar Isah, G. Abdulraheem, S. Bala, S. Muhammad,
M. Abdullahi, Kinetics, equilibrium and thermodynamics
studies of C.I. Reactive Blue 19 dye adsorption on coconut
shell based activated carbon, Int. Biodeterior. Biodegrad.,
102 (2015) 265–273.
- W.J. Weber Jr., J. Carrell Morris, Kinetics of adsorption on
carbon from solution, J. Sanit. Eng. Div., 89 (1963) 31–38.
- M.C. Dal, Cu(II), Ni(II) ve Co(II)’nin Karacadağ skoryası ile
adsorpsiyonunun izoterm, kinetik ve termodinamik analizi,
Dicle Üniversitesi Fen Bilimleri Enstitüsü, Diyarbakir, 2021.
Isotherm, kinetic and thermodynamic analysis of adsorption
of Cu(II), Ni(II) and Co(II) with Karacadağ scoria, Dicle
University Institute of Science and Technology, Diyarbakır, 2021.
- M.C. Dal, N. Onursal, E. Arıca, Ö. Yavuz, Diyarbakır Karacadağ
kırmızı tepe skoryası ile Cu(II)’nin adsorpsiyon kinetiğinin
incelenmesi, Dümf Mühendislik Dergisi, 12 (2021) 337–346
(Investigation of Cu(II) adsorption kinetics by Diyarbakır
Karacadağ kırmızı tepe scoria), DUJE, J. Eng., 12 (2021) 337–346.
- N. Onursal, Y. Altunkaynak, A. Baran, M.C. Dal, Adsorption
of nickel(II) ions from aqueous solutions using Malatya clay:
equilibrium, kinetic, and thermodynamic studies. Environ.
Prog. Sustainable Energy, 42 (2023) e14150, doi: 10.1002/ep.14150.
- N.F. Campos, C.M.B.M. Barbosa, J.M. Rodríguez-Díaz,
M.M.M.B. Duarte, Removal of naphthenic acids using
activated charcoal: kinetic and equilibrium studies. Adsorpt.
Sci. Technol., 36 (2018) 1405–1421.
- Y. Altunkaynak, M. Canpolat, Ö. Yavuz, Adsorption of
cobalt(II) ions from aqueous solution using orange peel
waste: equilibrium, kinetic and thermodynamic studies,
J. Iran. Chem. Soc., 19 (2022) 2437–2448.
- M.N. Atalar, A. Baran, A. Hatipoğlu, M.F. Baran, Ö. Yavuz,
N. Aktepe, C. Keskin, The characterization of silver nanoparticles
synthesized from prunus spinosa fruit and determination
of antimicrobial effects on some food pathogens,
Eur. J. Sci. Technol., 32 (2021) 298–305.
- N. Onursal, M.C. Dal, Cu(II) iyonlarının doğal karışık tipteki
kil ile sulu ortamdan uzaklaştırılması, izoterm, kinetik ve
termodinamik parametrelerin incelenmesi (Removal of
Cu(II) ions from aqueous environment via natural mixed
clay, examination of isotherm, kinetic and thermodynamic
parameters), Euroasia J. Math. Eng. Nat. Med. Sci., (2020)
85–103.
- A. Baran, Gümüş Nano malzemelerin çevre dostu, hızlı sentezi
ve biomedikal uygulamaları DÜMF Mühendislik Dergisi
(Environmentally friendly, rapid synthesis and biomedical
applications of silver nanomaterials), DUMF J. Eng., (2021)
329–336.
- S. Lagergren, Zur Theorie der sogenannten Adsorption
gelöster Stoffe, Kungliga Svenska Vetenskapsakademiens.
Handlingar, 24 (1898) 1–39.
- Y.-s. Ho, Comment on “removal of heavy metals from aqueous
solution by carbon nanotubes: adsorption equilibrium and
kinetics” by Li, Y.H., Di, Z.C., Luan, Z.K., Ding, J., Zuo, H., Wu,
X.Q., Xu, C.L. and Wu, D.H., J. Environ. Sci., 17 (2005) 175–176.
- E.D. Revellame, D.L. Fortela, W. Sharp, R. Hernandez,
M.E. Zappi, Adsorption kinetic modeling using pseudo-first
order and pseudo-second order rate laws: a review, Cleaner
Eng. Technol., 1 (2020) 100032, doi: 10.1016/j.clet.2020.100032.
- S. Talal, Sorption kinetics: obtaining a pseudo-second order
rate equation based on a mass balance approach, J. Environ.
Chem. Eng., 2 (2014) 1001–1006.
- R.Kh. Khamizov, A pseudo-second order kinetic equation
for sorption processes, Russ. J. Phys. Chem. A, 94 (2020)
171–176.
- Y. Liu, New insights into pseudo-second-order kinetic equation
for adsorption, Colloids Surf., A, 320 (2008) 275–278.
- O. Hamdaoui, Common mistake in adsorption papers: the
Blanchard et al.’s pseudo-second order kinetics model equation,
Process Eng. J., 1 (2017) 29–30.
- Y.S. Ho, Adsorption of Heavy Metals From Waste Streams by
Peat, Ph.D. Thesis, University of Birmingham, Birmingham,
UK, 1995.
- Y.S. Ho, G. McKay, D.A.J. Wase, C.F. Forster, Study of the
sorption of divalent metal ions on to peat, Adsorpt. Sci.
Technol., 18 (2000) 639–650.
- Y.-S. Ho, Review of second-order models for adsorption
systems, J. Hazard. Mater., 136 (2006) 681–689.
- Y.-S. Ho, The real pseudo-second-order rate equation, Ind.
Crops Prod., 52 (2014) 17, doi: 10.1016/j.indcrop.2013.09.037.
- Y. Khambhaty, K. Mody, S. Basha, B. Jha, Pseudo-second-order
kinetic models for the sorption of Hg(II) onto dead biomass of
marine Aspergillus niger: comparison of linear and non-linear
methods, Colloids Surf., A, 328 (2008) 40–43.
- I.O. Oboh, O.E. Aluyor, T.O.K. Audu, Second-order kinetic
model for the adsorption of divalent metal ions on Sida acuta
leaves, Int. J. Phys. Sci., 8 (2013) 1722–1728.
- M. Ghaedi, E. Shojaeipour, A.M. Ghaedi, R. Sahraei, Isotherm
and kinetics study of malachite green adsorption onto copper
nanowires loaded on activated carbon: artificial neural
network modeling and genetic algorithm optimization,
Spectrochim. Acta, Part A, 142 (2015) 135–149.
- E.U. Etim, Removal of methyl blue dye from aqueous
solution by adsorption unto ground nut waste, Biomed. J. Sci.
Tech. Res., 15 (2019) 11365–11371.
- K. Vasanth Kumar, Linear and non-linear regression analysis
for the sorption kinetics of methylene blue onto activated
carbon, J. Hazard. Mater. B, 137 (2006) 1538–1544.
- A. Adnan, S.P. Thanasupsin, Kinetic studies using a
linear regression analysis for a sorption phenomenon of
17a-methyltestosterone by Salvinia cucullata in an active plant
reactor, Environ. Eng. Res. (EER), 21 (2016) 384–392.
- Y.T. Huang, M. Shih, Comparative analysis of different
linearized expressions of estimating the pseudo-second-order
kinetic parameters for the adsorption of methylene blue on
hydrochloric acid-treated rice husk, Int. J. Sci. Res. Publ.,
7 (2017) 255–260.
- Y.-T. Huang, L.-C. Lee, M.-C. Shih, A study on the pseudosecond-
order kinetic equation for the adsorption of methylene
blue onto nitric acid-treated rice husk: comparison of linear
methods, Int. J. Sci. Res. Publ., 8 (2018) 509–515.
- N. Onursal, M.C. Dal, Altı tip yalancı-ikinci dereceli
(Ho-McKay) kinetik denkleminin malahit yeşilinin Siirt
Kurtalan/Ağaçlıpınar kili ile adsorpsiyonunda karşılaştırılmalı
doğrusal yöntemler (Comparative linear methods for the
adsorption of malachite green with Siirt Kurtalan/Ağaçlıpınar
clay of six types of pseudo-second order (Ho-McKay) kinetic
equations), International Siirt Scientific Research Congress,
Siirt/Türkiye, 2021.
- N. Onursal, Siirt Koçpınar Karışık Tip Kil ile Ni(II) İyon
Adsorpsiyonu İçin Pseudo-İkinci Kinetik Derece Modelinden
Elde Edilen Lineerleştirilmiş 6 Tip Denklem ile Deneysel
Verilerle Kinetik Model Doğrulaması (Mixed type clay
and ni(ii) ion adsorption, kinetic model verification with
experimental data with 6 linearized equations obtained from
pseudo-second kinetic degree model), Int. J. Pure Appl. Sci.,
8 (2022) 441–448.
- N. Onursal, Removal of Ni(II) ions from aqueous solutions
with Siirt Koçpınar mixed type clay investigation of isotherm,
thermodynamic and kinetic parameters, Desal. Water Treat.,
276 (2022) 150–159.
- L. Fan, X. Wang, J. Miao, Q. Liu, J. Cai, X. An, F. Chen, L. Cheng,
W. Chen, H. Luo, X. Zhang, K. Zhang, D. Ma, Na4P2O7-modified biochar derived from sewage sludge: effective Cu(II)-adsorption removal from aqueous solution, Adsorpt. Sci.
Technol., 2023 (2023) 8217910, doi: 10.1155/2023/8217910.
- S. Kursunoglu, I. Demir, The potential of pistachio shell-based
activated carbons for metal removal from aqueous solutions:
a review, Energy Sources Part A, 44 (2022) 8572–8590.