References
- P. Kumar, A. Pournara, K.-H. Kim, V. Bansal, S. Rapti, M.J. Manos,
Metal-organic frameworks: challenges and opportunities for
ion-exchange/sorption applications, Prog. Mater Sci., 86 (2017)
25–74.
- G.M. Naja, B. Volesky, Chapter 2 – Toxicity and Sources of
Pb, Cd, Hg, Cr, As, and Radionuclides in the Environment,
L.K. Wang, J.P. Chen, Y.-T. Hung, N.K. Shammas, Eds., Heavy
Metals in the Environment, CRC Press, Taylor & Francis ebooks,
London, 2009, pp. 14–58.
- A.M. El-Kamash, Evaluation of zeolite A for the sorptive
removal of Cs+ and Sr2+ ions from aqueous solutions using batch
and fixed bed column operations, J. Hazard. Mater., 151 (2008)
432–445.
- B. Aguila, D. Banerjee, Z.M. Nie, Y.S. Shin, S.Q. Ma,
P.K. Thallapally, Selective removal of cesium and strontium
using porous frameworks from high level nuclear waste,
Chem. Commun., 52 (2016) 5940–5942.
- T. Gäfvert, C. Ellmark, E. Holm, Removal of radionuclides at a
waterworks, J. Environ. Radioact., 63 (2002) 105–115.
- D. Ding, Z. Zhang, R.Z. Chen, T.M. Cai, Selective removal of
cesium by ammonium molybdophosphate – polyacrylonitrile
bead and membrane, J. Hazard. Mater., 324 (2017) 753–761.
- F.H. Li, Y. Shang, Z.M. Ding, H.Q. Weng, J.X. Xiao, M.Z. Lin,
Efficient extraction and separation of palladium (Pd) and
ruthenium (Ru) from simulated HLLW by photoreduction, Sep.
Purif. Technol., 182 (2017) 9–18.
- P.-Y. Chen, The assessment of removing strontium and cesium
cations from aqueous solutions based on the combined methods
of ionic liquid extraction and electrodeposition, Electrochim.
Acta, 52 (2007) 5484–5492.
- A. Bhatnagar, M. Sillanpää, Utilization of agro-industrial and
municipal waste materials as potential adsorbents for water
treatment—a review, Chem. Eng., 157 (2010) 277–296.
- T. Bond, E.H. Goslan, S.A. Parsons, B. Jefferson, Disinfection
by-product formation of natural organic matter surrogates and
treatment by coagulation, MIEX and nanofiltration, Water Res.,
44 (2010) 1645–1653.
- F. Ardestani, A. Haghighi Asl, T. Yousefi, M. Torab-Mostaedi,
Impregnated of C6CoFeN6 nanoparticles in poly-1-naphthol for
uptake of Cs(I) from aqueous waste, Sep. Sci. Technol., 54 (2019)
860–875.
- J.-K. Moon, K.-W. Kim, C.-H. Jung, Y.-G. Shul, E.-H. Lee,
Preparation of organic-inorganic composite adsorbent beads
for removal of radionuclides and heavy metal ions, J. Radioanal.
Nucl. Chem., 246 (2000) 299–307.
- M.K. Jha, R.R. Upadhyay, J.-C. Lee, V. Kumar, Treatment of
rayon waste effluent for the removal of Zn and Ca using Indion
BSR resin, Desalination, 228 (2008) 97–107.
- X. Zhao, X.H. Bu, T. Wu, S.-T. Zheng, L. Wang, P.Y. Feng,
Selective anion exchange with nanogated isoreticular positive
metal-organic frameworks, Nat. Commun., 4 (2013) 2344.
- A.J. Cairns, J.A. Perman, L. Wojtas, V.C. Kravtsov, M.H. Alkordi,
M. Eddaoudi, M.J. Zaworotko, Supermolecular building blocks
(SBBs) and crystal design: 12-connected open frameworks
based on a molecular cubohemioctahedron, J. Am. Chem.
Soc., 130 (2008) 1560–1561.
- H.-R. Fu, Z.-X. Xu, J. Zhang, Water-stable metal–organic
frameworks for fast and high dichromate trapping via singlecrystal-
to-single-crystal ion exchange, Chem. Mater., 27 (2014)
205–210.
- A.A. Alqadami, M. Naushad, Z.A. Alothman, A.A. Ghfar,
Novel metal–organic framework (MOF) based composite
material for the sequestration of U(VI) and Th(IV) metal ions
from aqueous environment, ACS Appl. Mater. Interfaces,
9 (2017) 36026–36037.
- J.H. Park, Z.U. Wang, L.-B. Sun, Y.-P. Chen, H.-C. Zhou,
Introduction of functionalized mesopores to metal–organic
frameworks via metal–ligand–fragment coassembly, J. Am.
Chem. Soc., 134 (2012) 20110–20116.
- H. Chang, M. Fu, X.-J. Zhao, E.-C. Yang, Four benzimidazolebased
ZnII/CdII polymers extended by aromatic polycarboxylate
coligands: synthesis, structure, and luminescence, J. Coord.
Chem., 63 (2010) 3551–3564.
- E. Şahin, S. İde, M. Kurt, Ş. Yurdakul, Structural investigation
of dibromobis(benzimidazole)Zn(II) complex, J. Mol. Struct.,
616 (2002) 259–264.
- R.M. Silverstein, G.C. Bassler, Spectrometric identification of
organic compounds, J. Chem. Educ., 39 (1962) 546.
- M.S. Nair, R.S. Joseyphus, Synthesis and characterization of
Co(II), Ni(II), Cu(II) and Zn(II) complexes of tridentate Schiff
base derived from vanillin and DL-α-aminobutyric acid,
Spectrochim. Acta, Part A, 70 (2008) 749–753.
- H. Temel, Ü. Çakir, B. Otludil, H.İ. Uğraş, Synthesis, spectral
and biological studies of Mn(II), Ni(II), Cu(II), and Zn(II)
complexes with a tetradentate Schiff base ligand. Complexation
studies and the determination of stability constants (Ke), Synth.
React. Inorg. Met.-Org. Chem., 31 (2001) 1323–1337.
- H. Long, P.X. Wu, N.W. Zhu, Evaluation of Cs+ removal from
aqueous solution by adsorption on ethylamine-modified
montmorillonite, Chem. Eng., 225 (2013) 237–244.
- R.M. Cornell, Adsorption of cesium on minerals: a review,
J. Radioanal. Nucl. Chem., 171 (1993) 483–500.
- M.R. Awual, S. Suzuki, T. Taguchi, H. Shiwaku, Y. Okamoto,
T. Yaita, Radioactive cesium removal from nuclear wastewater
by novel inorganic and conjugate adsorbents, Chem. Eng.,
242 (2014) 127–135.
- M.R. Awual, T. Suzuki, T. Taguchi, H. Shiwaku, Y. Okamoto,
T. Yaita, Selective cesium removal from radioactive liquid
waste by crown ether immobilized new class conjugate
adsorbent, J. Hazard. Mater., 278 (2014) 227–235.
- T. Yousefi, S. Yavarpour, S.H. Mousavi, M. Torab-Mostaedi,
R. Davarkhah, H.G. Mobtaker, FeIIIx SnIIy SnIV1−x−y
Hn [P(Mo3O10)4]·xH2O new nano hybrid, for effective removal of
Sr(II) and Th(IV), J. Radioanal. Nucl. Chem., 307 (2016) 941–953.
- N. Zhang, T. Kawamoto, Y. Jiang, A. Takahashi, M. Ishizaki,
M. Asai, M. Kurihara, Z. Zhang, Z.F. Lei, D. Parajuli,
Interpretation of the role of composition on the inclusion
efficiency of monovalent cations into cobalt hexacyanoferrate,
Chem. Eur. J., 25 (2019) 5950–5958.
- H.A. Alamudy, K. Cho, Selective adsorption of cesium from an
aqueous solution by a montmorillonite-prussian blue hybrid,
Chem. Eng. J., 349 (2018) 595–602.
- H.I. Adegoke, F. AmooAdekola, O.S. Fatoki, B.J. Ximba,
Adsorption of Cr(VI) on synthetic hematite (α-Fe2O3) nanoparticles
of different morphologies, Korean J. Chem. Eng.,
31 (2014) 142–154.
- R. Salehi, M. Arami, N.M. Mahmoodi, H. Bahrami, S. Khorramfar,
Novel biocompatible composite (chitosan-zinc oxide
nanoparticle): preparation, characterization and dye adsorption
properties, Colloids Surf., B, 80 (2010) 86–93.
- M.R. El-Naggar, M. Amin, Impact of alkali cations on
properties of metakaolin and metakaolin/slag geopolymers:
microstructures in relation to sorption of 134 Cs radionuclide,
J. Hazard. Mater., 344 (2018) 913–924.
- R. Saberi, Y. Es-Hagh, S. Azad, A. Rajabi, Comparison of cesium
adsorption behavior of CHCF-PAN, MnO2-PAN, STS-PAN,
CM-PAN and AMP-PAN synthesized composites from aqueous
solution, Desal. Water Treat., 107 (2018) 207–217.
- H.-R. Yu, J.-Q. Hu, Z. Liu, X.-J. Ju, R. Xie, W. Wang, L.-Y. Chu,
Ion-recognizable hydrogels for efficient removal of cesium
ions from aqueous environment, J. Hazard. Mater., 323 (2017)
632–640.
- R. Awual, Ring size dependent crown ether based mesoporous
adsorbent for high cesium adsorption from wastewater, Chem.
Eng., 303 (2016) 539–546.
- A.K. Kaygun, M. Eral, S.A. Erenturk, Removal of cesium and
strontium using natural attapulgite: evaluation of adsorption
isotherm and thermodynamic data, J. Radioanal. Nucl. Chem.,
311 (2017) 1459–1464.
- S. Fan, J. Tang, Y. Wang, H. Li, H. Zhang, J. Tang, Z. Wang,
X. Li, Biochar prepared from co-pyrolysis of municipal sewage
sludge and tea waste for the adsorption of methylene blue from
aqueous solutions: kinetics, isotherm, thermodynamic and
mechanism, J. Mol. Liq., 220 (2016) 432–441.
- R.M. Ali, H.A. Hamad, M.M. Hussein, G.F. Malash, Potential of
using green adsorbent of heavy metal removal from aqueous
solutions: adsorption kinetics, isotherm, thermodynamic,
mechanism and economic analysis, Ecol. Eng., 91 (2016)
317–332.
- K.-Y. Lee, M.S. Park, J.M. Kim, M. Oh, E.-H. Lee, K.-W.
Kim, D.-Y. Chung, J.-K. Moon, Equilibrium, kinetic and
thermodynamic study of cesium adsorption onto nanocrystalline
mordenite from high-salt solution, Chemosphere, 150 (2016)
765–771.
- K.Y. Foo, B.H. Hameed, Insights into the modeling of adsorption
isotherm systems, Chem. Eng. J., 156 (2010) 2–10.
- S. Rangabhashiyam, N. Anu, M.S. Giri Nandagopal,
N. Selvaraju, Relevance of isotherm models in biosorption of
pollutants by agricultural byproducts, J. Environ. Chem. Eng., 2
(2014) 398–414.
- M.J. Temkin, V. Pyzhev, Recent modifications to Langmuir
isotherms, Acta Phys. Chim. Sin., 12 (1940) 217–222.
- A.K. Vipin, B. Hu, B. Fugetsu, Prussian blue caged in alginate/calcium beads as adsorbents for removal of cesium ions from
contaminated water, J. Hazard. Mater., 258 (2013) 93–101.
- A. Nilchi, R. Saberi, M. Moradi, H. Azizpour, R. Zarghami,
Adsorption of cesium on copper hexacyanoferrate–PAN
composite ion exchanger from aqueous solution, Chem. Eng. J.,
172 (2011) 572–580.