References
- S.A. Kosa, N.M. Al-sebaii, I.H. Abd El Maksod, E.Z. Hegazy,
New method for removal of organic dyes using supported iron
oxide as a catalyst, J. Chem., 9 (2016) 1–9.
- E. Forgacs, C. Tibor, G. Oros, Removal of synthetic dyes from
wastewaters: a review, Environ. Int., 30 (2004) 953–971.
- G. Annadurai, M. Chellapandian, M.R.V. Krishnan, Adsorption
of Reactive Dye on chitin, Environ. Monit. Assess., 59 (1999)
111–119.
- P. Monash, G. Pugazhenthi, Investigation of equilibrium and
kinetic parameters of methylene blue adsorption onto MCM-41, Korean J. Chem. Eng., 27 (2010) 1184–1191.
- G. Liu, R. Yang, M. Li, Liquid adsorption of basic dye using
silica aerogels with different textural properties, J. Non-Cryst.
Solids, 356 (2010) 250–257.
- S.B. Wang, H.T. Li, Structure directed reversible adsorption
of organic dye on mesoporous silica in aqueous solution,
Microporous Mesoporous Mater., 97 (2006) 21–26.
- M. Anbia, S.A. Hariri, Removal of methylene blue from aqueous
solution using nanoporous SBA-3, Desalination, 261 (2010)
61–66.
- M.M. Ayad, A.A. El-Nasr, J. Stejskal, Kinetics and isotherm
studies of methylene blue adsorption onto polyaniline
nanotubes base/silica composite, J. Ind. Eng. Chem., 18 (2012)
1964–1969.
- D. Balköse, S. Ulutan, F. Özkan, S. Ülkü, U. Köktürk, Flexible
poly (vinyl chloride)-zeolite composites for dye adsorption
from aqueous solutions, Sep. Sci. Technol., 31 (1996) 1279–1289.
- S. Yetgin, S. Ulutan, D. Balkose, Methylene blue adsorption
from aqueous solutions to flexible poly (vinyl chloride) silica
composites, J. Vinyl Additive Technol., 21 (2015) 42–50.
- O.S. Bello, K.A. Adegoke, A.A. Olaniyan, H. Abdulazeez, Dye
adsorption using biomass wastes and natural adsorbents:
overview and future prospects, Desal. Wat. Treat., 53 (2013)
1292–1315.
- F. Montagnaro, L. Santoro, Reuse of coal combustion ashes
as dyes and heavy metal adsorbents: effect of sieving and
demineralization on waste properties and adsorption capacity,
Chem. Eng. J., 150 (2009) 174–180.
- A. Basu, D. Saha, R. Saha, T. Ghosh, B. Saha, A review on
sources, toxicity and remediation technologies for removing
arsenic from drinking water, Res. Chem. Intermediat., 40 (2014)
447–485.
- M.N. Alam, S. Das, S. Batuta, N. Roy, A. Chatterjee, D. Mandal,
N.A. Begum, Murraya koenegii Spreng. leaf extract: an efficient
green multifunctional agent for the controlled synthesis of Au
nanoparticles, ACS Sustain. Chem. Eng., 2 (2014) 652–664.
- M.B. Ningappa, R. Dinesha, L. Srinivas, Antioxidant and free
radical scavenging activities of polyphenol-enriched curry leaf
(Murraya koenigii L.) extracts, Food Chem., 106 (2008) 720–728.
- E.K. Athanassiou, R.N. Grass, W.J. Stark, Large-scale production
of carbon-coated copper nanoparticles for sensor applications,
Nanotechnology, 17 (2006) 1668–1673.
- P.T. Anastas, J.C. Warner, Green Chemistry: Theory and Practice,
Oxford University Press, New York, 1998, p. 30.
- F. Wu, Q. Yang, Ammonium bicarbonate reduction route to
uniform gold nanoparticles and their applications in catalysis
and surface-enhanced Raman scattering, Nano Res., 4 (2011)
861–869.
- M.N. Alam, S. Batuta, G. Ahamed, S. Das, D. Mandal, N.A.
Begum, Tailoring the catalytic activity of Au nanoparticles
synthesized by a naturally occurring green multifunctional
agent, Arab. J. Chem., (2016) http://dx.doi.org/10.1016/j.arabjc.2016.02.007.
- V.S. Suvith, D. Philip, Catalytic degradation of methylene
blue using biosynthesized gold and silver nanoparticles,
Spectrochim. Acta Part A, 118 (2014) 526–532.
- V.K. Vidhu, D. Philip, Catalytic degradation of organic dyes
using biosynthesized silver nanoparticles, Micron, 56 (2014)
54–62.
- M. Maham, M. Nasrollahzadeh, S.M. Sajadi, M. Nekoei,
Biosynthesis of Ag/reduced graphene oxide/Fe3O4 using
Lotus Garcinii leaf extract and its application as a recyclable
nanocatalyst for the reduction of 4-nitrophenol and organic
dyes, J. Colloid Interface Sci., 497 (2017) 33.
- M. Sajjadi, M. Nasrollahzadeh, S.M. Sajadi, Green synthesis
of Ag/Fe3O4 nanocomposite using Euphorbia peplus Linn leaf
extract and evaluation of its catalytic activity, J. Colloid Interface
Sci., 497 (2017) 1.
- M. Maryami, M. Nasrollahzadeh, E. Mehdipour, S.M. Sajadi,
Preparation of the Ag/RGO nanocomposite by use of Abutilon
hirtum leaf extract: a recoverable catalyst for the reduction of
organic dyes in aqueous medium at room temperature, Int. J.
Hydrogen Energy, 41 (2016) 21236.
- M. Nasrollahzadeh, M. Atarod, B. Jaleh, M. Gandomi, In situ
green synthesis of Ag nanoparticles on graphene oxide/TiO2
nanocomposite and their catalytic activity for the reduction of
4-nitrophenol, Congo red and methylene blue, Ceramics Int., 42
(2016) 8587.
- A. Hatamifard, M. Nasrollahzadeh, S.M. Sajadi, Biosynthesis,
characterization and catalytic activity of an Ag/zeolite
nanocomposite for base- and ligand-free oxidative
hydroxylation of phenylboronic acid and reduction of a variety
of dyes at room temperature, New J. Chem., 40 (2016) 2501.
- M. Atarod, M. Nasrollahzadeh, S.M. Sajadi, Euphorbia
heterophylla leaf extract mediated green synthesis of Ag/TiO2
nanocomposite and investigation of its excellent catalytic
activity for reduction of variety of dyes in water, J. Colloid
Interface Sci., 462 (2016) 272.
- B. Khodadadi, M. Bordbar, A. Yeganeh-Faal, M.J.
Nasrollahzadeh, Green synthesis of Ag nanoparticles/clinoptilolite using Vaccinium macrocarpon fruit extract and
its excellent catalytic activity for reduction of organic dyes, J.
Alloys Compd., 719 (2017) 82.
- B. Khodadadi, M. Bordbar, M. Nasrollahzadeh, Achillea
millefolium L. extract mediated green synthesis of waste peach
kernel shell supported silver nanoparticles: application of the
nanoparticles for catalytic reduction of a variety of dyes in
water, J. Colloid Interface Sci., 493 (2017) 85.
- S.S. Momeni. M. Nasrollahzadeh, A. Rustaiyan, Biosynthesis
and application of Ag/bone nanocomposite for the hydration
of cyanamides in Myrica gale L. extract as a green solvent, J.
Colloid Interface Sci., 499 (2017) 93.
- Z. Issaabadi, M. Nasrollahzadeh, S.M. Sajadi, Efficient catalytic
hydration of cyanamides in aqueous medium and in the
presence of Naringin sulfuric acid or green synthesized silver
nanoparticles by using Gongronema latifolium leaf extract, J.
Colloid Interface Sci., 503 (2017) 57.
- A. Yeganeh-Faal, M. Bordbar, N. Neghadar, M. Nasrollahzadeh,
In situ green synthesis of Cu nanoparticles supported on natural
Natrolite zeolite for the reduction of 4- nitrophenol, congo red
and methylene blue, IET Nanobiotechnol., 11 (2017) 669.
- A. Rostami-Vartooni, M. Nasrollahzadeh, M. Salavati-Niasari,
M. Atarod, Photocatalytic degradation of azo dyes by titanium
dioxide supported silver nanoparticles prepared by a green
method using Carpobrotus acinaciformis extract, J. Alloys
Compd., 689 (2016) 15.
- A. Rostami-Vartooni, M. Nasrollahzadeh, M. Alizadeh, Green
synthesis of perlite supported silver nanoparticles using
Hamamelis virginiana leaf extract and investigation of its
catalytic activity for the reduction of 4-nitrophenol and Congo
red, J. Alloys Compd., 680 (2016) 309.
- M. Sorbiun, E.S. Mehr, A. Ramazani, S.T. Fardood, Biosynthesis
of Ag, ZnO and bimetallic Ag/ZnO alloy nanoparticles by
aqueous extract of oak fruit hull (Jaft) and investigation of
photocatalytic activity of ZnO and bimetallic Ag/ZnO for
degradation of basic violet 3 dye, J. Mater. Sci. – Mater. Electron.,
29 (2018) 2806–2814.
- S.T. Fardood, A. Ramazani, S.W. Joo, Sol-gel synthesis and
characterization of zinc oxide nanoparticles using black tea
extract, JACR, 11 (2017) 8–17.
- S.T. Fardood, A. Ramazani, S. Moradi, P.A. Asiabi, Green
synthesis of zinc oxide nanoparticles using Arabic gum and
photocatalytic degradation of direct blue 129 dye under visible
light, J. Mater. Sci. - Mater. Electron., 28 (2017) 13596–13601.
- S.T. Fardood, A. Ramazani, S. Moradi, A novel green synthesis
of nickel oxide nanoparticles using Arabic gum, Chem. J.
Moldova, 12 (2017) 115–118.
- S.T. Fardood, A. Ramazani, Z. Golfar, S.W. Joo, Green
synthesis of Ni-Cu-Zn ferrite nanoparticles using tragacanth
gum and their use as an efficient catalyst for the synthesis of
polyhydroquinoline derivatives, Appl. Organomet. Chem., 31
(2017) 3823.
- S.T. Fardood, A. Ramazani, S.W. Joo, Eco-friendly synthesis of
magnesium oxide nanoparticles using Arabic gum, JACR, 12
(2018) 8–15.
- M. Sorbiun, E.S. Mehr, A. Ramazani, S.T Fardood, Green
synthesis of zinc oxide and copper oxide nanoparticles using
aqueous extract of oak fruit hull (Jaft) and comparing their
photocatalytic degradation of basic violet 3, Int. J. Environ. Res.,
12 (2018) 29–37.
- M.A. Hubbe, S.H. Hassan, J. Ducoste, Cellulosic substrates for
removal of pollutants from aqueous system, BioResources, 6
(2011) 2161–2287.
- I. Langmuir, The constitution and fundamental properties of
solids and liquids. Part I. Solids, J. Am. Chem. Soc., 38 (1916)
2221–2295.
- A. Torabinejad, N. Nasirizadeh, M.E. Yazdanshenas, H.A.
Tayebi, Synthesize and characterization of aminosilane
functionalized MCM-41 for removal of anionic dye: kinetic and
thermodynamic study, Int. J. Nano Dimension, 7 (2016) 295–307.
- H. Freundlich, Kolloidfällung und Adsorption, Angew. Chem.
Int. Ed., 1907. https://doi.org/10.1002/ange.19070201805.
- S. Mondal, N. Roy, R.A. Laskar, I. Sk, S. Basu, D. Mandal,
N.A. Begum, Biogenic synthesis of Ag, Au and bimetallic Au/Ag alloy nanoparticles using aqueous extract of mahogany
(Swietenia mahogani JACQ.) leaves, Colloids Surf., B, 82 (2011)
497–504.
- M.N. Alam, S. Das, S. Batuta, D. Mandal, N.A. Begum, Greennanochemistry
for safe environment: bio-friendly synthesis
of fluorescent monometallic (Ag and Au) and bimetallic (Ag/
Au alloy) nanoparticles having pesticide sensing activity, J.
Nanostruct. Chem., 6 (2016) 373–395.
- F.B. Abdur Rahman, M. Akter, M.Z. Abedin, Dyes removal from
textile wastewater using orange peels, IJSTR, 2 (2013) 47–50.
- H. Bar, D.K. Bhui, G.P. Sahoo, P. Sarkar, S.P. De, A. Misra, Green
synthesis of silver nanoparticles using latex of Jatropha curcas,
Colloids Surf., A, 339 (2009) 134−139.
- S.S. Shankar, A. Rai, A. Ahmad, M. Sastry, Rapid synthesis of
Au, Ag, and bimetallic Au core–Ag shell nanoparticles using
Neem (Azadirachta indica) leaf broth, J. Colloid Interface Sci., 275
(2004) 496–502.
- P. Mukherjee, A. Ahmad, D. Mandal, S. Senapati, S.R. Sainkar,
M.I. Khan, R. Ramani, R. Pasricha, P.V. Ajaykumar, M. Alam,
M. Sastry, R. Kumar, Bioreduction of AuCl4- ions by the fungus,
Verticillium sp. and surface trapping of the gold nanoparticles
formed, Angew. Chem. Int. Ed. Engl., 40 (2011) 3585–3588.