References
- A.F. Batisha, Sustainability of water purification based on
nanotechnology, Int. J. Sustainability, 2 (2013) 12–24.
- M.A. Tofighy, T. Mohammadi, Adsorption of divalent heavy
metal ions from water using carbon nanotube sheets, J. Hazard.
Mater., 185 (2011) 140–147.
- M. Kumar, H. Furumai, F. Kurisu, I. Kasuga, Potential mobility
of heavy metals through coupled application of sequential
extraction an disotopic exchange: comparison of leaching
tests applied to soil and soak away sediment, Chemosphere,
90 (2013) 796–804.
- A. Khan, S. Khan, M.A. Khan, Z. Qamar, M. Waqas, The uptake
and bioaccumulation of heavy metals by food plants, their
effects on plants nutrients, and associated health risk - a review,
Environ. Sci. Pollut. Res. Int., 22 (2015) 13772–13799.
- L.R. Skubal, N.K. Meshkov, T. Rajh, M. Thurnauer, Cadmium
removal from water using thiolactic acid-modified titanium
dioxide nanoparticles, J. Photochem. Photobiol., A, 148 (2002)
393–397.
- S.K. Sharma, Heavy Metals in Water: Presence, Removal and
Safety, Royal Society of Chemistry, Cambridge, 2015.
- P.B. Tchounwou, C.G. Yedjou, A.K. Patlolla, D.J. Sutton, Heavy
metal toxicity and the environment, EXS, 101 (2012) 133–164.
- J. An, Q.X. Zhou, W.T. Liu, L.P. Ren, Horizontal distribution and
levels of heavy metals in the biggest snowstorm in a century in
Shenyang, China, J. Environ. Sci., 20 (2008) 846–851.
- Y. Xi, Y.T. Luo, J.M. Luo, X.B. Luo, Removal of cadmium(II) from
wastewater using novel cadmium ion-imprinted polymers,
J. Chem. Eng. Data, 60 (2015) 3253–3261.
- EPA, The Provision and Quality of Drinking Water in Ireland,
A Report for the Year 2008–2009, EPA, 2008, p. 102.
- WHO, Guidelines for Drinking Water Quality, Recommendations,
WHO, Geneva, 2008, pp. 317–318.
- NTP, National Toxicology Program, NTP monograph on
health effects of low-level lead, NTP Monogr., 13 (2012) 15–148.
- L.F. Chen, H.W. Lang, Y. Lu, C.H. Cui, S.H. Yu, Synthesis of
an attapulgite Clay@Carbon nanocomposite adsorbent by a
hydrothermal carbonization process and their application in
the removal of toxic metal ions from water, Langmuir, 27 (2011)
8998–9004.
- S. Luo, T.T. Lu, L. Peng, J.H. Shao, Q.R. Zeng, J.D. Gu,
Synthesis of nanoscale zerovalent iron immobilized in alginate
microcapsules for removal of Pb(II) from aqueous solution,
J. Mater. Chem. A, 2 (2014) 15463–15472.
- M. Soylak, A. Kars, I. Narin, Coprecipitation of Ni2+, Cd2+ and
Pb2+ for preconcentration in environmental samples prior
to flame atomic absorption spectrometric determinations,
J. Hazard. Mater., 159 (2008) 435–439.
- M. Ghaedi, Selective and sensitized spectrophotometric
determination of trace amounts of Ni(II) ion using α-benzyl
dioxime in surfactant media, Spectrochim. Acta, Part A,
66 (2007) 295–301.
- G. Bhanjana, N. Dilbaghi, N.K. Singhal, K.-H. Kim, S. Kumar,
Copper oxide nanoblades as novel adsorbent material for
cadmium removal, Ceram. Int., 43 (2017) 6075–6081.
- X. Weng, S. Lin, Y. Zhong, Z. Chen, Chitosan stabilized bimetallic
Fe/Ni nanoparticles used to remove mixed contaminantsamoxicillin
and Cd(II) from aqueous solutions, Chem. Eng. J.,
229 (2013) 27–34.
- S. Mehdizadeh, S. Sadjadi, S.J. Ahmadi, M. Outokesh, Removal
of heavy metals from aqueous solution using platinum
nanoparticles/zeolite-4A, J. Environ. Health Sci. Eng., 12 (2014)
7–13, doi: 10.1186/2052-336X-12-7.
- M. Mahmood-ul-Hassan, V. Suthor, E. Rafique, M. Yasin,
Removal of Cd, Cr, and Pb from aqueous solution by
unmodified and modified agricultural wastes, Environ. Monit.
Assess., 187 (2015) 19–26, doi: 10.1007/s10661-014-4258-8.
- F.G.L.M. Borsagli, A.A.P. Mansur, P. Chagas, L.C.A. Oliveira,
H.S. Mansu, O-carboxymethyl functionalization of chitosan:
complexation and adsorption of Cd(II) and Cr(VI) as heavy
metal pollutant ions, React. Funct. Polym., 97 (2015) 37–47.
- I.A. Aguayo-Villarreal, A. Bonilla-Petriciolet, R. Muñiz-
Valencia, Preparation of activated carbons from pecan nutshell
and their application in the antagonistic adsorption of heavy
metal ions, J. Mol. Liq., 230 (2017) 686–695.
- J. Wang, Y. Zhao, P. Zhang, L. Yang, H. Xu, G. Xi, Adsorption
characteristics of a novel ceramsite for heavy metals removal
from storm water runoff, Chin. J. Chem. Eng., 26 (2018)
96–103.
- G. Sharma, A. Kumar, S. Sharma, M. Naushad, R.P. Dwivedi,
Z.A. Alothman, G.T. Mola, Novel development of nanoparticles
to bimetallic nanoparticles and their composites: a review,
J. King Saud Univ. Sci., 31 (2019) 257–269.
- A.M. Azzam, S.T. El-Wakeel, B.B. Mostafa, M.F. El-Shahat,
Removal of Pb, Cd, Cu and Ni from aqueous solution using
nano scale zero valent iron particles, J. Environ. Chem. Eng.,
4 (2016) 2196–2206.
- C. Jiao, Y. Cheng, W. Fan, J. Li, Synthesis of agar-stabilized
nanoscale zero-valent iron particles and removal study of
hexavalent chromium, Int. J. Environ. Sci. Technol., 12 (2015)
1603–1612.
- Y. Kuang, J. Du, R. Zhou, Z. Chen, M. Megharaj, R. Naidu,
Calcium alginate encapsulated Ni/Fe nanoparticles beads
for simultaneous removal of Cu(II) and monochlorobenzene,
J. Colloid Interface Sci., 447 (2015) 85–91.
- D.M. Yun, H.H. Cho, J.W. Jang, J.W. Park, Nano zero-valent
iron impregnated on titanium dioxide nanotube array film for
both oxidation and reduction of methyl orange, Water Res.,
47 (2013) 1858–1866.
- Y.S. El-Temsah, E.J. Joner, Effects of nano-sized zero-valent
iron (nZVI) on DDT degradation in soil and its toxicity to
collembola and ostracods, Chemosphere, 92 (2013) 131–137.
- R.K. Singhal, B. Gangadhar, H. Basu, V. Manisha, G.R.K. Naidu,
A.V.R. Reddy, Remediation of malathion contaminated soil
using zero valent iron nanoparticles, Am. J. Anal. Chem.,
3 (2012) 76–82.
- B. Geng, Z.H. Jin, T.L. Li, X.H. Qi, Preparation of chitosanstabilized
Fe0 nanoparticles for removal of hexavalent
chromium in water, Sci. Total Environ., 407 (2009) 4994–5000.
- T. Liu, X. Yang, Z.-L. Wang, X. Yan, Enhanced chitosan beadssupported
Fe0-nanoparticles for removal of heavy metals from
electroplating wastewater in permeable reactive barriers,
Water Res., 47 (2013) 6691–6700.
- T. Phenrat, N. Saleh, K. Sirk, R.D. Tilton, G.V. Lowry, Aggregation
and sedimentation of aqueous nanoscale zerovalent iron
dispersions, Environ. Sci. Technol., 41 (2007) 284–290.
- L. Wu, J.P. She, T.Q. Zhao, Q.Q. Wang, L.L. Xu, Comparative
study on degradation of methyl orange by resin-supported
nano-iron and nano-iron/nickel, Acta Sci. Circum., 33 (2013)
1585–1589.
- Z.T. Liu, C.G. Gu, M. Ye, Y.R. Bian, Y.W. Cheng, F. Wang,
X.L. Yang, Y. Song, X. Jiang, Debromination of polybrominated
diphenyl ethers by attapulgite supported Fe/Ni bimetallic
nanoparticles: influencing factors, kinetics and mechanism,
J. Hazard. Mater., 298 (2015) 328–337.
- Y. Li, Y. Xiao, X.Q. Li, C. Chen, Degradation of phenanthrene
by nanoscale zerovalent iron and its bimetallic nanoparticles,
Acta Sci. Circum., 35 (2015) 499–507.
- G.N. Jovanovic, J.E. Atwater, Z.P. Polona, I. Plazl, Dechlorination
of polychlorinated phenols on bimetallic Pd/Fe catalyst
in a magnetically stabilized fluidized bed, Chem. Eng. J.,
274 (2015) 50–60.
- C. van der Horst, V. Somerset, Technologies for Remediation
of Emerging Contaminants in Wastewater Samples,
E. Fosso-Kankeu, Ed., Nano and Bio‐Based Technologies for
Wastewater Treatment, John Wiley & Sons, Inc., Hoboken,
NJ, USA, 2019, pp. 429–458.
- C. van der Horst, B. Silwana, E. Iwuoha, V. Somerset, Synthesis
and characterisation of bismuth–silver bimetallic nanoparticles
for electrochemical sensor applications, Anal. Lett., 48 (2015)
1–22.
- E. Roy, S. Patra, A. Tiwari, R. Madhuri, P.K. Sharma, Single cell
imprinting on the surface of Ag–ZnO bimetallic nanoparticle
modified grapheme oxide sheets for targeted detection, removal
and photothermal killing of E. coli, Biosens. Bioelectron.,
89 (2017) 620–626.
- H. Wu, Q. Feng, Fabrication of bimetallic Ag/Fe immobilized
on modified biochar for removal of carbon tetrachloride,
J. Environ. Sci., 54 (2017) 346–357.
- Y. Ma, X. Wu, G. Zhang, Core-shell Ag@Pt nanoparticles
supported on sepiolite nanofibers for the catalytic reduction
of nitrophenols in water: enhanced catalytic performance and
DFT study, Appl. Catal., B, 205 (2017) 262–270.
- X. Wang, F. Li, J. Yang, Polyvinyl pyrrolidone-modified
Pd/Fe nanoparticles for enhanced dechlorination of
2,4-dichlorophenal, Desal. Water Treat., 52 (2014) 7925–7936.
- Y. Shen, L. Li, Z. Zhang, Scalable and environmentally friendly
synthesis of hierarchical magnetic carbon nanosheet assemblies
and their application in water treatment, J. Phys. Chem. C,
120 (2016) 6659−6668.
- B. Kakavandi, R.R. Kalantary, M. Farzadkia, A.H. Mahvi,
A. Esrafili, A. Azari, A.R. Yari, A.B. Javid, Enhanced
chromium(VI) removal using activated carbon modified by
zero valent iron and silver bimetallic nanoparticles, J. Environ.
Health Sci. Eng., 15 (2014) 115–124.
- V. Zamora-Mora, M. Fernández-Gutiérrez, Á. González-Gómez,
B. Sanz, J.S. Román, G.F. Goya, R. Hernández, C. Mijangos,
Chitosan nanoparticles for combined drug delivery and
magnetic hyperthermia: from preparation to in vitro studies,
Carbohydr. Polym., 157 (2017) 361–370.
- U. Soni, J. Bajpai, S. Kumar Singh, A.K. Bajpai, Evaluation of
chitosan-carbon based biocomposite for efficient removal
of phenols from aqueous solutions, J. Water Process Eng.,
16 (2017) 56–63.
- V. Sureshkumar, S.C.G. Kiruba Daniel, K. Ruckmani,
M. Sivakumar, Fabrication of chitosan–magnetite nanocomposite
strips for chromium removal, Appl. Nanosci., 6 (2016)
277–285.
- R. Yuvakkumar, V. Elango, V. Rajendran, N. Kannan, Preparation
and characterization of zero valent iron nanoparticles, Dig.
J. Nanomater. Biostruct., 6 (2011) 1771–1776.
- J.O. Marques Neto, C.R. Bellato, J.L. Milagres, K.D. Pessoa,
E.S. De Alvarenga, Preparation and evaluation of chitosan
beads immobilized with iron(III) for the removal of As(III)
and As(V) from water, J. Braz. Chem. Soc., 24 (2013) 121–132.
- B. Silwana, C. van der Horst, E. Iwuoha, V. Somerset, Synthesis,
characterisation and electrochemical evaluation of reduced
graphene oxide modified antimony nanoparticles, Thin Solid
Films, 592 (2015) 124–134.
- V. Somerset, C. Van der Horst, B. Silwana, C. Walters,
E. Iwuoha, Biomonitoring and evaluation of metal concentrations
in sediment and crab samples from the north-west
province of South Africa, Water Air Soil Pollut., 226 (2015)
43–67, doi: 10.1007/s11270-015-2329-2.
- M.A. Correa-Duarte, M. Giersig, N.A. Kotov, L.M. Liz-Marzan,
Control of packing order of self-assembled monolayers
of magnetite nanoparticles with and without SiO2 coating
by microwave irradiation, Langmuir, 14 (1998) 6430–6435.
- G. Saraswathy, S. Pal, C. Rose, T.P. Sastry, A novel bio-inorganic
bone implant containing deglued bone, chitosan and gelatin,
Bull. Mater. Sci., 24 (2001) 415–420.
- S. Mekahlia, B.B. Ouzid, Chitosan-copper(II) complex as
antibacterial agent: synthesis, characterization and coordinating
bond-activity correlation study, Phys. Procedia, 2 (2009)
1045–1053.
- A. Azari, H. Gharibi, B. Kakavandi, G. Ghanizadeh, A. Javid,
A.H. Mahvi, K. Sharafi, T. Khosravia, Magnetic adsorption
separation process: an alternative method of mercury extracting
from aqueous solution using modified chitosan coated Fe3O4
nanocomposites, J. Chem. Technol. Biotechnol., 92 (2017)
188–200.
- S. Wazed Ali, S. Rajendran, M. Josh, Synthesis and characterization
of chitosan and silver loaded chitosan nanoparticles
for bioactive polyester, Carbohydr. Polym., 83 (2001) 438–446.
- K.V.H. Prashanth, F.S. Kittur, R.N. Tharanathan, Solid state
structure of chitosan prepared under different N-deacetylating
conditions, Carbohydr. Polym., 50 (2002) 27–33.
- L. Kong, Y. Gao, W. Cao, Y. Gong, N. Zhao, X. Zhang,
Preparation and characterization of nano-hydroxyapatite/chitosan composite, J. Biomed. Mater. Res. Part A, 75 (2005)
275–282.
- X. Wang, Y. Du, H. Liu, Preparation, characterization and
antimicrobial activity of chitosan–Zn complex, Carbohydr.
Polym., 56 (2004) 21–26.
- J.-W. Rhim, S.-I. Hong, H.-M. Park, K.W. Perry, Preparation and
characterization of chitosan-based nanocomposite films with
antimicrobial activity, J. Agric. Food Chem., 54 (2006) 5814–5822.
- M.H. Rashid, T.K. Mandal, Synthesis and catalytic application
of nanostructured silver dendrites, J. Phys. Chem. C, 111 (2007)
16750–16760.
- X.Y. Wang, C. Chen, H.L. Liu, J. Ma, Characterization and
evaluation of catalytic dechlorination activity of Pd/Fe
bimetallic nanoparticles, Ind. Eng. Chem. Res., 47 (2008)
8645–8651.
- S. Shahabuddin, N.M. Sarih, F.H. Ismail, M.M. Shahid,
N.M. Huang, Synthesis of chitosan grafted polyaniline/Co3O4
nanocube nanocomposites and their photocatalytic activity
toward methylene blue dye degradation, RSC Adv., 5 (2015)
83857–83867.
- H.-H. Cho, K. Wepasnick, B.A. Smith, F.K. Bangash,
D.H. Fairbrother, W.P. Ball, Sorption of aqueous Zn(II) and
Cd(II) by multiwall carbon nanotubes: the relative roles of
oxygen-containing functional groups and graphenic carbon,
Langmuir, 26 (2009) 967–981.
- C.P.J. Isaac, A. Sivakumar, Removal of lead and cadmium
ions from water using Annona squamosa shell: kinetic and
equilibrium studies, Desal. Water Treat., 51 (2013) 7700–7709.
- C. Obi, O.E. Njoku, Removal of Ni(II) and Pb(II) ions from
aqueous solutions by grapefruit (Citrus paradisi) mesocarp
biomass, J. Appl. Sci. Environ. Manage., 19 (2015) 536–444.
- K.S. Low, C.K. Lee, K.P. Lee, Sorption of copper by dye-treated
oil-palm fibres, Bioresour. Technol., 44 (1993) 109–112.
- G.O. El-Sayed, H.A. Dessouki, S.S. Ibrahiem, Removal of Zn(II),
Cd(II) and Mn(II) from aqueous solutions by adsorption on
maize stalks, Malaysian J. Anal. Sci., 15 (2011) 8–21.
- N. Mansouriieh, M.R. Sohrabi, M. Khosravi, Adsorption
kinetics and thermodynamics of organophosphorus profenofos
pesticide onto Fe/Ni bimetallic nanoparticles, Int. J. Environ.
Sci. Technol., 13 (2016) 1393–1404.
- R. Sahraei, M. Ghaemy, Synthesis of modified gum tragacanth/graphene oxide composite hydrogel for heavy metal ions
removal and preparation of silver nanocomposite for
antibacterial activity, Carbohydr. Polym., 157 (2017) 823–833.
- Y. Bulut Y, Z. Tez, Removal of heavy metals from aqueous
solution by sawdust adsorption, J. Environ. Sci., 19 (2007)
160–166.
- Z.S. Pour, M. Ghaemy, Removal of dyes and heavy metal
ions from water by magnetic hydrogel beads based on poly
(vinyl alcohol)/carboxymethylstarch-g-poly(vinyl imidazole),
RSC Adv., 5 (2015) 64106–64118.
- R. Khandanlou, M.B. Ahmad, H.R. Fard Masoumi, K. Shameli,
M. Basri, K. Kalantari, Rapid adsorption of copper(II) and
lead(II) by rice straw/Fe3O4 nanocomposite: optimization,
equilibrium isotherms, and adsorption kinetics study, PLoS
One, 10 (2015) 1–19.
- R.K. Gautam, P.K. Gautam, S. Banerjee, S. Soni, S.K. Singh,
M.C. Chattopadhyaya, Removal of Ni(II) by magnetic nanoparticles,
J. Mol. Liq., 204 (2015) 60–69.
- G.M. Walker, L.R. Weatherley, Adsorption of dyes from aqueous
solution - the effect of adsorbent pore size distribution and dye
aggregation, Chem. Eng. J., 83 (2001) 201–206.
- H.K. Boparai, M. Joseph, D.M. O’Carroll, Kinetics and
thermodynamics of cadmium ion removal by adsorption onto
nano zerovalent iron particles, J. Hazard. Mater., 186 (2011)
458–465.
- L.P. Lingamdinne, H. Roh, Y.L. Choi, J.R. Koduru, J.K. Yang,
Y.Y. Chang, Influencing factors on sorption of TNT and RDX
using rice husk biochar, J. Ind. Eng. Chem., 32 (2015) 178–186.
- T. Wang, J. Lin, Z. Chen, M. Megharaj, R. Naidu, Green
synthesized iron nanoparticles by green tea and eucalyptus
leaves extracts used for removal of nitrate in aqueous solutions,
J. Cleaner Prod., 83 (2014) 413–419.
- L. Fan, Y. Zhang, X. Li, C. Luo, F. Lu, H. Qiu, Removal of alizarin
red from water environment using magnetic chitosan with
alizarin red as imprinted molecules, Colloids Surf., B, 91 (2012)
250–257.