References
- E. Bazrafshan, F. Kord Mostafapour, Evaluation of color
removal of Methylene blue from aqueous solutions using
plant stem ash of Persica, J. North Khorasan Univ. Med. Sci.,
4 (2012) 523–532.
- M. Shirzad-Siboni, S. Fallah, S. Tajasosi, Removal of Acid Red
18 and Reactive Black 5 dyes from aquatic solution by using
of adsorption on Azollafiliculoides: a kinetic study, J. Guilan
Univ. Med. Sci., 3 (2014) 42–50.
- S. Sobhanardakani, Evaluation of carbon nanotubes efficiency
for removal of Janus Green dye from ganjnameh river water
sample, J. Health Dev., 3 (2015) 282–292.
- N. Yousefi, A. Fatehizadeh, A. Ahmadi, A. Rajabizadh,
A. Toolabi, M. Ahmadian, The efficiency of modified wheat
brad in Reactive black 5 dye removal from aqueous solutions,
J. Health Dev., 3 (2013) 157–169.
- J. Ghobadi, M. Arami, H. Bahrami, Modification of multiwalled
carbon nanotubes and its application for removal of
Direct Blue 86, J. Color Sci. Technol., 3 (2013) 103–112.
- R. Bhattacharyya, S.K. Ray, Removal of Congo red and methyl
violet from water using nano clay filled composite hydrogels
of polyacrylic acid and polyethylene glycol, Chem. Eng. J.,
260 (2015) 269–283.
- Z. Noorimotlagh, M. Javaheri, Z. Rahmati, H. Nourmoradi,
Evaluating the performance of Limecoagulant using synthetic
polymer in dye removal from textile wastewater, J. Ilam Univ.
Med. Sci., 22 (2014) 14–23.
- H. Alidadi, H. Karimian, E. Bazrafshan, A.A. Najaf Poor, S. Rafe,
A Survay on dye removal from colored textile wastewater
using multi-walled carbon nanotubes and palm ash as a
natural adsorbent, J. Res. Environ. Health, 1 (2015) 10–19.
- A. Naghizadeh, A.H. Mahvi, A.R. Mesdaghinia, Application of
MBR technology in municipal wastewater treatment, Arabian
J. Sci. Eng., 36 (2011) 3–10.
- M. Ghaneian, M. Dehvari, N. Jourabi Yazdi, M. Mootab,
B. Jamshidi, Evaluation of efficiency of Russian knapweed
flower powder in removal of Reactive blue 19 from synthetic
textile wastewater, J. Rafsanjan Univ. Med. Sci., 12 (2013)
831–842.
- M. Shirmardi, F. Khodarahmi, M. Heidari Farsani,
A. Naeimabadi, M. Vosughi Niri, Application of oxidized
multiwall carbon nanotubes as a novel adsorbent for removal
of Acid red 18 dye from aqueous solution, J. North Khorasan
Univ. Med. Sci., 4 (2012) 335–346.
- H. Nourmoradi, S. Zabihollahi, H. Pourzamani, Removal of a
common textile dye, navy blue (NB), from aqueous solutions
by combined process of coagulation–flocculation followed
by adsorption, Desal. Water Treat., 57 (2016) 1–12.
- A. Vanamudan, P. Pamidimukkala, Chitosan, nanoclay and
chitosan–nanoclay composite as adsorbents for Rhodamine-6G
and the resulting optical properties, Int. J. Biol. Macromol.,
14 (2015) 127–135.
- K. Naddafi, M. Gholami, Removal of Reactive Red 120 from
aqueous solutions using surface modified natural zeolite,
Iran J. Health Environ., 7 (2015) 277–288.
- A.R. Rahmani, G. Asgari, M. Farrokhi, Removal of Reactive
Black 5 (RB5) dye from aqueous solution using adsorption onto
strongly basic anion exchange resin: equilibrium and kinetic
study, Iran J. Health Environ., 5 (2013) 509–518.
- H. Jafari Mansoorian, A.H. Mahvi, Feasibility of extracted
activated carbon from the leaves of mesquite (Prosopis) as
new adsorbents in the removal of Reactive dyes Red 198 and
Blue 19, J. Health Dev., 3 (2014) 114–127.
- M. Gholami, H. Mohammadi, S. Mirhosseini, A. Ameri,
Z. Javadi, Evaluation of powdered-activated carbon treatment
(PACT) process in textile dye removal, ZUMS J., 61 (2007) 59–70.
- A. Naghizadeh, M. Kamranifar, A.R. Yari, M.J. Mohammadi,
Equilibrium and kinetics study of reactive dyes removal from
aqueous solutions by bentonite nanoparticles, Desal. Water
Treat., 97 (2017) 329–337.
- M.R. Rezaee-Mofrad, M.B. Miranzadeh, M. Pourgholi,
H. Akbari, R. Dehghani, Evaluating the efficiency of advanced
oxidation methods on dye removal from textile wastewater,
Feyz J. Kashan Univ. Med. Sci., 17 (2013) 9–32.
- E. Derakhshani, A. Naghizadeh, Ultrasound regeneration of
multi wall carbon nanotubes saturated by humic acid, Desal.
Water Treat., 52 (2014) 7468–7472.
- Z. Eren, F.N. Acar, Adsorption of Reactive Black 5 from an
aqueous solution: equilibrium and kinetic studies, Desalination,
194 (2006) 1–10.
- V. Gupta, Application of low-cost adsorbents for dye
removal–a review, J. Environ. Manage., 90 (2009) 2313–2342.
- H. Jafari Mansoorian, A.H. Mahvi, F. Kord Mostafapoor,
M. Alizadeh, Equilibrium and synthetic studies of methylene
blue dye removal using ash of walnut shell, J. Health Field.,
3 (2013) 48–55.
- S. Ling, C. Yee, H. Eng, Removal of a cationic dye using
deacetylated chitin (chitosan), Res. J. Appl. Sci., 3 (2011) 1445–1448.
- L. Pietrelli, I. Francolini, A. Piozzi, Dyes adsorption from
aqueous solutions by chitosan, Sep. Sci. Technol., 50 (2015)
1101–1107.
- S. Moussavi, M. Emamjomeh, M. Ehrampoush, M. Dehvari,
S. Jamshidi, Removal of Acid Orange 7 dye from synthetic
textile wastewater by single-walled carbon nanotubes:
adsorption studies, isotherms and kinetics, J. Rafsanjan Univ.
Med. Sci., 12 (2014) 907–918.
- A. Naghizadeh, A. Karimi, E. Derakhshani, A. Esform, Singlewalled
carbon nanotubes (SWCNTs) as an efficient adsorbent
for removal of reactive dyes from water solution: equilibrium,
kinetic, and thermodynamic, Environ. Qual. Manage., (2021),
doi: 10.1002/tqem.21753 (in Press).
- M. Samarghandi, M. Noori Sepehr, M. Zarrabi, M. Norouzi,
F. Amraie, Mechanism and removal efficiency of CI Acid Blake
1 by pumice stone adsorbent, Iran J. Health Environ., 3 (2011)
399–410.
- G. Ghanizadeh, G. Asgari, Removal of Methylene Blue dye
from synthetic wastewater with bone char, Iran J. Health
Environ., 2 (2009) 104–113.
- M. Ghaneian, T. Jasemizad, F. Sahlabadi, M. Miri, M. Mootab,
Survey the efficiency of barberry stem powder in removal of the
Reactive Blue 19 from textile industrial wastewater, J. Rafsanjan
Univ. Med. Sci., 13 (2014) 631–640.
- A. Mahvi, B. Heibati, Removal efficiency of azo dyes from
textile effluent using activated carbon made from walnut
wood and determination of isotherms of Acid Red 18, J. Health
Hyg., 3 (2011) 7–15.
- A. Naghizadeh, S. Nasseri, A.H. Mahvi, R.R. Kalantary,
A. Rashidi, Continuous adsorption of natural organic matters
in a column packed with carbon nanotubes, J. Environ. Health
Sci. Eng., 11 (2013) 14, doi: 10.1186/2052-336X-11-14.
- M. Samadi, M. Saghi, K. Ghadiri, M. Hadi, M. Beikmohammadi,
Performance of simple Nano Zeolite Y and modified Nano
Zeolite Y in phosphor removal from aqueous solutions,
Iran J. Health Environ., 3 (2010) 27–36.
- M. Chauhan, B. Sharma, R. Kumar, G.R. Chaudhary,
A.A. Hassan, S. Kumar, Green synthesis of CuO nanomaterials
and their proficient use for organic waste removal and
antimicrobial application, Environ. Res., 168 (2019) 85–95.
- M.N. Nadagouda, G. Hoag, J. Collins, R.S. Varma, Green
synthesis of Au nanostructures at room temperature using
biodegradable plant surfactants, Cryst. Growth Des., 9 (2009)
4979–4983.
- S.J. Ikhmayies, Characterization of nanomaterials. JOM,
66 (2014) 28–29.
- J. Lu, Y. Li, X. Yan, B. Shi, D. Wang, H. Tang, Sorption of atrazine
onto humic acids (HAs) coated nanoparticles, Colloids Surf.,
A, 347 (2009) 90–96.
- Z. Warrior, L. Shahbazi, A. Badiee, Synthesis and modification
of nano-cavity silica surface with mono and dendrimer
amine groups in order to remove methylene blue color from
effluent, Water Wastewater J., 27 (2016) 19–28.
- A. Naghizadeh, H. Shahabi, E. Derakhshani, F. Ghasemi,
Synthesis of nanochitosan for the removal of fluoride from
aqueous solutions: a study of isotherms, kinetics, and
thermodynamics, Fluoride, 50 (2017) 256–268.
- A. Naghizadeh, S.J. Mousavi, E. Derakhshani, M. Kamranifar,
S.M. Sharifi, Fabrication of polypyrrole composite on perlite
zeolite surface and its application for removal of copper from
wood and paper factories wastewater, Korean J. Chem. Eng.,
35 (2018) 662–670.
- M. Yousaf, Removal of RY 42 anionic dye pollutant from
aqueous solution using novel reusable adsorbent prepared
from water chestnut peel and fruit, Int. J. Curr. Eng., 8 (2018)
33–40.
- Z. Jiang, J. Xie, D. Jiang, Z. Yan, J. Jing, D. Liu, Enhanced
adsorption of hydroxyl contained/anionic dyes on nonfunctionalized
Ni@SiO2 core–shell nanoparticles: kinetic and
thermodynamic profile, Appl. Surf. Sci., 292 (2014) 301–310.
- M. Kamranifar, F. Masoudi, A. Naghizadeh, M. Asri, Fabrication
and characterization of magnetic cobalt ferrite nanoparticles
for efficient removal of humic acid from aqueous solutions,
Desal. Water Treat., 144 (2019) 233–242.
- N. Özbay, A. Yargıç, R.Z. Yarbay-Şahin, E. Önal, Full
factorial experimental design analysis of reactive dye
removal by carbon adsorption, J. Chem., 2013 (2013) 234904,
doi: 10.1155/2013/234904.
- H.Y. Zhu, R. Jiang, Y.Q. Fu, J.H. Jiang, L. Xiao, G.M. Zeng,
Preparation, characterization and dye adsorption properties
of γ-Fe2O3/SiO2/chitosan composite, Appl. Surf. Sci., 258 (2011)
1337–1344.
- A.H. Mahvi, B. Heibati, Removal efficiency of azo dyes from
textile effluent using activated carbon made from walnut
wood and determination of isotherms of Acid Red 18,
J. Health Ardabil Univ. Med. Sci., 3 (2010) 7–15.
- D. Balarak, H. Abasizdeh, Z. Jalalzayi, P. Rajiv, P. Vanathi, Batch
adsorption of Acid Blue 113 dye from aqueous solution using
surfactant-modified zeolite, Indian J. Environ. Prot., 40 (2020)
927–933.
- Z. Salahshor, A. Shahbazi, A. Badiee, Synthesis and modification
of nano-cavity silica surface with mono and dendrimer
amine groups in order to remove methylene blue color from
effluent, J. Water Wastewater, 27 (2016) 19–28.
- M. Malakootian, M. Macky, Assessing the performance of
removal Acid Orange 7 bye from aqueous solutions and
textile waste water by nanoporous MCM-41 silica absorbent
functionalized by diamine group, J. Rafsanjan Univ. Med. Sci.,
15 (2016) 37–50.
- A. Naghizadeh, M. Ghofouri, Synthesis of low cost nanochitosan
from Persian Gulf shrimp shell for efficient removal of Reactive
Blue 29 (RB29) dye from aqueous solution, Iran. J. Chem.
Chem. Eng., 38 (2019) 93–103.