References
- P. Miretzky, A.F. Cirelli, Cr(VI) and Cr(III) removal from
aqueous solution by raw and modified lignocellulosic materials:
a review, J. Hazard. Mater., 180 (2010) 1–19.
- A. Mohsenibandpi, B. Kakavandi, R.R. Kalantary, A. Azari, A.
Keramati, Development of a novel magnetite–chitosan composite
for the removal of fluoride from drinking water: adsorption
modeling and optimization, RSC Adv., 5 (2015) 73279–73289.
- D.A. Backhus, J.N. Ryan, D.M. Groher, J.K. MacFarlane,
P.M. Gschwend, Sampling colloids and colloid-associated
contaminants in ground water, Ground Water, 31 (1993) 466–479.
- C. Shen, H. Chen, S. Wu, Y. Wen, L. Li, Z. Jiang, M. Li, W. Liu,
Highly efficient detoxification of Cr(VI) by chitosan–Fe(III)
complex: process and mechanism studies, J. Hazard. Mater.,
244–245 (2013) 689–697.
- N.N. Thinh, P.T.B. Hanh, L.T.T. Ha, L.N. Anh, T.V. Hoang, V.D.
Hoang, L.H. Dang, N.V. Khoi, T.D. Lam, Magnetic chitosan
nanoparticles for removal of Cr(VI) from aqueous solution,
Mater. Sci. Eng., 33 (2013) 1214–1218.
- K. Salnikow, A. Zhitkovich, Genetic and epigenetic mechanisms
in metal carcinogenesis and cocarcinogenesis: nickel, arsenic,
and chromium, Chem. Res. Toxicol., 21 (2008) 28–44.
- F. Gao, H. Gu, H. Wang, X. Wang, B. Xiang, Z. Guo, Magnetic
amine-functionalized polyacrylic acid-nanomagnetite for
hexavalent chromium removal from polluted water, RSC Adv.,
5 (2015) 60208–60219.
- M.K. Dinker, P.S. Kulkarni, Recent advances in silica-based
materials for the removal of hexavalent chromium: a review, J.
Chem. Eng. Data, 60 (2015) 2521–2540.
- N. Kongsricharoern, C. Polprasert, Chromium removal by
a bipolar electro-chemical precipitation process, Water Sci.
Technol., 34 (1996) 109–116.
- Q. Li, Y. Qian, H. Cui, Q. Zhang, R. Tang, J. Zhai, Preparation
of poly(aniline-1,8-diaminonaphthalene) and its application as
adsorbent for selective removal of Cr(VI) ions, Chem. Eng. J.,
173 (2011) 715–721.
- J. Liu, C. Wang., J. Shi, H. Liu, Y. Tong, Aqueous Cr(VI)
reduction by electrodeposited zero-valent iron at neutral pH:
acceleration by organic matters, J. Hazard. Mater., 163 (2009)
370–375.
- X. Huang, Y. Liu, S. Liu, X. Tan, Y. Ding, G. Zeng, Y. Zhou, M.
Zhang, S. Wang, B. Zheng, Effective removal of Cr(VI) using
β-cyclodextrin–chitosan modified biochars with adsorption/
reduction bifuctional roles, RSC Adv., 6 (2016) 94–104.
- J.B. Dima, C. Sequeiros, N.E. Zaritzky, Hexavalent chromium
removal in contaminated water using reticulated chitosan micro/
nanoparticles from seafood processing wastes, Chemosphere,
141 (2015) 100–111.
- C. Lei, X. Zhu, B. Zhu, C. Jiang, Y. Le, J. Yu, Superb adsorption
capacity of hierarchical calcined Ni/Mg/Al layered double
hydroxides for Congo red and Cr(VI) ions, J. Hazard. Mater.,
321 (2017) 801–811.
- G. Crini, P.M. Badot, Application of chitosan, a natural
aminopolysaccharide, for dye removal from aqueous solutions
by adsorption processes using batch studies: a review of recent
literature, Prog. Polym. Sci., 33 (2008) 399–447.
- J.R.R. de Souza, J.P.A. Feitosa, N.M.P.S. Ricardo, M.T.S.
Trevisan, H.C.B. de Paula, C.M. Ulrich, R.W. Owen, Spraydrying
encapsulation of mangiferin using natural polymers,
Food Hydrocolloids, 33 (2013) 10–18.
- W. Kaminski, E. Tomczak, K. Jaros, Interactions of metal ions
sorbed on chitosan beads, Desalination, 218 (2008) 281–286.
- L. Wu, Z. Qin, F. Yu, J. Ma, Graphene oxide cross-linked
chitosan nanocomposite adsorbents for the removal of Cr
(VI) from aqueous environments, Desal. Wat. Treat., 72 (2017)
300–307.
- P.D. Chethan, B. Vishalakshi, Synthesis of ethylenediamine
modified chitosan and evaluation for removal of divalent metal
ions, Carbohydr. Polym., 97 (2013) 530–536.
- B. Krajewska, Diffusion of metal ions through gel chitosan
membranes, React. Funct. Polym., 47 (2001) 37–47.
- A.J. Varma, S.V. Deshpande, J.F. Kennedy, Metal complexation
by chitosan and its derivatives: a review, Carbohydr. Polym.,
55 (2004) 77–93.
- S.E. Bailey, T.J. Olin, R.M. Bricka, D.D. Adrian, A review of
potentially low-cost sorbents for heavy metals, Water Res., 33
(1999) 2469–2479.
- M.G. Rajiv, S. Meenakshi, Preparation of amino terminated
polyamidoamine functionalized chitosan beads and its Cr(VI)
uptake studies, Carbohydr. Polym., 91 (2013) 631–637.
- R.A.A. Muzzarelli, J. Boudrant, D. Meyer, N. Manno, M.
Demarchis, M.G. Paoletti, Current views on fungal chitin/chitosan, human chitinases, food preservation, glucans,
pectins and inulin: a tribute to Henri Braconnot, precursor of
the carbohydrate polymers science on the chitin bicentennial,
Carbohydr. Polym., 87 (2012) 995–1012.
- H.H. Najafabadi, M. Irani, L.R. Rad, A.H. Haratameh, I.
Haririan, Correction: Removal of Cu2+, Pb2+ and Cr6+ from
aqueous solutions using a chitosan/graphene oxide composite
nanofibrous adsorbent, RSC Adv., 5 (2015) 22390.
- C. Jung, J. Heo, J. Han, N. Her, S.J. Lee, J. Oh, J. Ryu, Y.
Yoon, Hexavalent chromium removal by various adsorbents:
powdered activated carbon, chitosan, and single/multi-walled
carbon nanotubes, Sep. Purif. Technol., 106 (2013) 63–71.
- Y. Wu, Y. Zhang, J. Qian, X. Xin, S. Hu, S. Zhang, J. Wei, An
exploratory study on low-concentration hexavalent chromium
adsorption by Fe(III)-cross-linked chitosan beads, R. Soc.
Open Sci., 4 (2017) 170905.
- V.M. Boddu, K. Abburi, J.L. Talbott, E.D. Smith, Removal
of hexavalent chromium from wastewater using a new
composite chitosan biosorbent, Environ. Sci. Technol., 37
(2003) 4449–4456.
- S. Wu, J. Hu, L. Wei, Y. Du, X. Shi, H. Deng, L. Zhang,
Construction of porous chitosan-xylan-TiO2 hybrid with
highly efficient sorption capability on heavy metals, J. Environ.
Chem. Eng., 2 (2014) 1568–1577.
- F. Zhao, E. Repo, M. Sillanpaa, Y. Meng, D. Yin, W.Z. Tang,
Green synthesis of magnetic EDTA- and/or DTPA-cross-linked
chitosan adsorbents for highly efficient removal of metals, Ind.
Eng. Chem. Res., 54 (2015) 1271–1281.
- L.Y. Wang, M.J. Wang, Removal of heavy metal ions by
poly(vinyl alcohol) and carboxymethyl cellulose composite
hydrogels prepared by a freeze-thaw method, Sustain. Chem.
Eng., 4 (2016) 2830–2837.
- T. Wang, L. Zhang, C. Li, W. Yang, T. Song, C. Tang, Y. Meng, S.
Dai, H. Wang, L. Chai, J. Luo, Synthesis of core-shell magnetic
Fe3O4@poly(m-phenylenediamine) particles for chromium
reduction and adsorption, Environ. Sci. Technol., 49 (2015)
5654–5662.
- M. Mirabedini, M.Z. Kassaee, Removal of toxic Cr(VI) from
water by a novel magnetic chitosan/glyoxal/PVA hydrogel
film, Desal. Wat. Treat., 57 (2016) 14266–14279.
- I. Dmitriev, I. Kuryndin, N. Bobrova, M. Smirnov, Swelling
behavior and network characterization of hydrogels from
linear polyacrylamide crosslinked with glutaraldehyde,
Mater. Today Commun., 4 (2015) 93–100.
- J. Cao, Y. Tan, Y. Che, H. Xin, Novel complex gel beads
composed of hydrolyzed polyacrylamide and chitosan: an
effective adsorbent for the removal of heavy metal from
aqueous solution, Bioresour. Technol., 101 (2010) 2558–2561.
- M.L. Masheane, L.N. Nthunya, S.P. Malinga, E.N. Nxumalo,
B.B. Mamba, S.D. Mhlanga, Synthesis of Fe-Ag/f-MWCNT/
PES nanostructured-hybrid membranes for removal of Cr(VI)
from water, Sep. Purif. Technol., 184 (2017) 79–87.
- P.A. Kavakli, C. Kavakli, O. Guven, Preparation and
characterization of Fe(III)-loaded iminodiacetic acid modified
GMA grafted nonwoven fabric adsorbent for anion adsorption,
Radiat. Phys. Chem., 94 (2014) 105–110.
- I. Yoshida, M. Nishimura, K. Matsuo, K. Ueno, Studies of the
selective adsorption of anion by metal ion loaded ion-exchange
resin. V. Adsorption of phosphate ion on ion-exchange resin
loaded with zirconium(IV), IRC 50-Zr(IV), Sep. Purif. Technol.,
18 (1983) 73–82.
- M. Amara, H. Kerdjoudj, A modified anion-exchange
membrane applied to purification of effluent containing
different anions. Pre-treatment before desalination,
Desalination, 206 (2007) 205–209.
- N. Yi, Y. Wu, J. Wei, S. Zhang, P. Ji, Adsorption of the low
concentration Cr(VI) on magnetic chitosan/PVA hydrogel
beads, Fresenius Environ. Bull., 25 (2016) 2174–2182.
- L. Li, L. Fan, M. Sun, H. Qiu, X. Li, H. Duan, C. Luo, Adsorbent
for chromium removal based on graphene oxide functionalized
with magnetic cyclodextrin–chitosan, Colloids Surf., B, 58
(2013) 169–175.
- H. Cui, M. Fu, S. Yu, M.K. Wang, Reduction and removal of
Cr(VI) from aqueous solutions using modified by products of
beer production, J. Hazard. Mater., 186 (2011) 1625–1631.
- N.R. Kildeeva, P.A. Perminov, L.V. Vladimirov, V.V. Novikov,
S.N. Mikhailov, About mechanism of chitosan cross-linking
with glutaraldehyde, Russ. J. Bioorg. Chem., 35 (2009) 360–369.
- M.C. Dartiguenave, M.J. Bertrand, K.C. Waldron,
Glutaraldehyde: behavior in aqueous solution, reaction with
proteins, and application to enzyme crosslinking, Biotechniques,
37 (2004) 790–802.
- R. Huang, B. Yang, Q. Liu, Removal of chromium(VI) ions from
aqueous solutions with protonated crosslinked chitosan, J.
Appl. Polym. Sci., 129 (2013) 908–915.
- O.A.C. Monterio Jr., C. Airoldi, Some studies of crosslinking
chitosan-glutaraldehyde interaction in a homogeneous system,
Int. J. Biol. Macromol., 26 (1999) 119–128.
- D. Liu, C. Poon, K. Lu, C. He, W. Lin, Self-assembled nanoscale
coordination polymers with trigger release properties for
effective anticancer therapy, Nat. Commun., 5 (2014) 4182–4192.
- S.J. Lim, J.H. Lee, M.G. Piao, M.K. Lee, D.H. Oh, H.
Hwang du, Q.Z. Quan, C.S. Yong, H.G. Choi, Effect of
sodium carboxymethylcellulose and fucidic acid on the gel
characterization of polyvinylalcohol-based wound dressing,
Arch. Pharm. Res., 33 (2010) 1073–1081.
- K. Dusek, W. Prins, Structure and elasticity of non-crystalline
polymer networks, Adv. Polym. Sci., 6 (1969) 1–102.
- M. Zhang, Y. Liu, T. Li, W. Xu, B. Zheng, X. Tan, H. Wang, Y. Guo,
F. Guo, S. Wang, Chitosan modification of magnetic biochar
produced from Eichhornia crassipes for enhanced sorption of
Cr(VI) from aqueous solution, RSC Adv., 5 (2015) 46955–46964.
- N. Lapa, R. Barbosa, M.H. Lopes, B. Mendes, P. Abelha,
I. Gulyurtlu, J.S. Oliveira, Chemical and ecotoxicological
characterization of ashes obtained from sewage sludge
combustion in a fluidised-bed reactor, J. Hazard. Mater., 147
(2007) 175–183.
- H. Li, Z. Li, T. Liu, X. Xiao, Z. Peng, L. Deng, A novel
technology for biosorption and recovery hexavalent chromium
in wastewater by bio-functional magnetic beads, Bioresour.
Technol., 99 (2008) 6271–6279.
- M. Kumar, B.P. Tripathi, V.K. Shahi, Crosslinked chitosan/
polyvinyl alcohol blend beads for removal and recovery
of Cd(II) from wastewater, J. Hazard. Mater., 172 (2009)
1041–1048.
- Y. Jiang, X. Yu, T. Luo, Y. Jia, J. Liu, X. Huang, γ‑Fe2O3
nanoparticles encapsulated millimeter-sized magnetic chitosan
beads for removal of Cr(VI) from water: thermodynamics,
kinetics, regeneration, and uptake mechanisms, J. Chem. Eng.
Data, 58 (2013) 3142–3149.
- D. Xu, K. Zhu., X. Zheng, R. Xiao, Poly(ethylene-co-vinyl
alcohol) functional nanofiber membranes for the removal of
Cr(VI) from water, Ind. Eng. Chem. Res., 54 (2015) 6836–6844.
- Y.A. Aydin, N.D. Aksoy, Adsorption of chromium on chitosan:
optimization, kinetics and thermodynamics, Chem. Eng. J., 151
(2009) 188–194.
- S. Hena, Removal of chromium hexavalent ion from aqueous
solutions using biopolymer chitosan coated with poly 3-methyl
thiophene polymer, J. Hazard. Mater., 181 (2010) 474–479.
- S. Karahan, M. Yurdakoc, Y. Seki, K. Yurdakoc, Removal of
boron from aqueous solution by clays and modified clays, J.
Colloid Interface Sci., 293 (2006) 36–42.
- G. Bayramoglu, M.Y. Arica, Adsorption of Cr(VI) onto PEI
immobilized acrylate-based magnetic beads: isotherms, kinetics
and thermodynamics study, Chem. Eng. J., 139 (2008) 20–28.
- Y. Lu, B. Jiang, L. Fang, F. Ling, J. Gao, F. Wu, X. Zhang, High
performance NiFe layered double hydroxide for methyl
orange dye and Cr(VI) adsorption, Chemosphere, 152 (2016)
415–422.
- L. Zhang, W. Xia, X. Liu, W. Zhang, Synthesis of titanium
cross-linked chitosan composite for efficient adsorption and
detoxification of hexavalent chromium from water, J. Mater.
Chem., 3 (2015) 331–340.
- J. Ananpattarachai, P. Kajitvichyanukul, Enhancement of
chromium removal efficiency on adsorption and photocatalytic
reduction using a bio-catalyst, titania-impregnated chitosan/
xylan hybrid film, J. Clean. Prod., 130 (2016) 126–136.
- L. Sun, L. Zhang, C. Liang, Z. Yuan, Y. Zhang, W. Xu, J. Zhang,
Y. Chen, Chitosan modified Fe0 nanowires in porous anodic
alumina and their application for the removal of hexavalent
chromium from water, J. Mater. Chem., 21 (2011) 5877–5880.
- L. Luo, W. Cai, J. Zhou, Y. Li, Facile synthesis of boehmite/PVA
composite membrane with enhanced adsorption performance
towards Cr(VI), J. Hazard. Mater., 318 (2016) 452–459.
- H. Ren, Z. Gao, D. Wu, J. Jiang, Y. Sun, C. Luo, Efficient Pb(II)
removal using sodium alginate-carboxymethyl cellulose
gel beads: preparation, characterization, and adsorption
mechanism, Carbohydr. Polym., 137 (2016) 402–409.
- B. Jiang, J. Guo, Z. Wang, X. Zheng, J. Zheng, W. Wu, M. Wu, Q.
Xue, A green approach towards simultaneous remediations of
chromium(VI) and arsenic(III) in aqueous solution, Chem. Eng.
J., 262 (2015) 1144–1151.