References

  1. Y. Namiki, T. Namiki, Y. Ishii, S. Koido, Y. Nagase, A. Tsubota, N. Tada, Y. Kitamoto, Inorganic-organic magnetic nanocomposites for use in preventive medicine: a rapid and reliable elimination system for cesium, Pharm. Res., 29 (2012) 1404–1418.
  2. X. Liu, G.-R. Chen, D.-J. Lee, T. Kawamoto, H. Tanaka, M.-L. Chen, Y.-K. Luo, Adsorption removal of cesium from drinking waters: a mini review on use of biosorbents and other adsorbents, Bioresour. Technol., 160 (2014) 142–149.
  3. C. Vincent, Y. Barré, T. Vincent, J.-M. Taulemesse, M. Robitzer, E. Guibal, Chitin-Prussian blue sponges for Cs(I) recovery: from synthesis to application in the treatment of accidental dumping of metal-bearing solutions, J. Hazard. Mater., 287 (2015) 171–179.
  4. H.-M. Yang, K.-W. Lee, B.-K. Seo, J.-K. Moon, Copper ferrocyanide-functionalized magnetic nanoparticles for the selective removal of radioactive cesium, J. Nanosci. Nanotechnol., 15 (2015) 1695–1699.
  5. H. Yang, H. Li, J. Zhai, L. Sun, Y. Zhao, H. Yu, Magnetic prussian blue/graphene oxide nanocomposites caged in calcium alginate microbeads for elimination of cesium ions from water and soil, Chem. Eng. J., 246 (2014) 10–19.
  6. H. Yang, L. Sun, J. Zhai, H. Li, Y. Zhao, H. Yu, In situ controllable synthesis of magnetic Prussian blue/graphene oxide nanocomposites for removal of radioactive cesium in water, J. Mater. Chem. A, 2 (2014) 326–332.
  7. C. Loos-Neskovic, S. Ayrault, V. Badillo, B. Jimenez, E. Garnier, M. Fedoroff, D.J. Jones, B. Merinov, Structure of copperpotassium hexacyanoferrate(II) and sorption mechanisms of cesium, J. Solid State Chem., 177 (2004) 1817–1828.
  8. T. Sangvanich, V. Sukwarotwat, R.J. Wiacek, R.M. Grudzien, G.E. Fryxell, R.S. Addleman, C. Timchalk,
    W. Yantasee, Selective capture of cesium and thallium from natural waters and simulated wastes with copper ferrocyanide functionalized mesoporous silica, J. Hazard. Mater., 182 (2010) 225–231.
  9. R. Chen, H. Tanaka, T. Kawamoto, M. Asai, C. Fukushima, M. Kurihara, M. Ishizaki, M. Watanabe, M. Arisaka,
    T. Nankawa, Thermodynamics and mechanism studies on electrochemical removal of cesium ions from aqueous solution using a nanoparticle film of copper hexacyanoferrate, ACS Appl. Mater. Interfaces, 5 (2013) 12984–12990.
  10. Y. Zou, X. Wang, A. Khan, P. Wang, Y. Liu, A. Alsaedi, T. Hayat, X. Wang, Environmental remediation and application of nanoscale zero-valent iron and its composites for the removal of heavy metal ions: a review, Environ. Sci. Technol., 50 (2016) 7290–7304.
  11. J. Li, X. Wang, G. Zhao, C. Chen, Z. Chai, A. Alsaedi, T. Hayat, X. Wang, Metal–organic framework-based materials: superior adsorbents for the capture of toxic and radioactive metal ions, Chem. Soc. Rev., 47 (2018) 2322–2356.
  12. 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.
  13. T. Yousefi, M. Torab-Mostaedi, M.A. Moosavian, H.G. Mobtaker, Potential application of a nanocomposite: HCNFe@ polymer for effective removal of Cs(I) from nuclear waste, Prog. Nucl. Energy, 85 (2015) 631–639.
  14. Y. Kim, H.H. Eom, D. Kim, D. Harbottle, J.W. Lee, Adsorptive removal of cesium by electrospun nanofibers embedded with potassium copper hexacyanoferrate, Sep. Purif. Technol., 255 (2021) 117745,
    doi: 10.1016/j.seppur.2020.117745.
  15. Y.K. Kim, K. Bae, Y. Kim, D. Harbottle, J.W. Lee, Immobilization of potassium copper hexacyanoferrate in doubly crosslinked magnetic polymer bead for highly effective Cs+ removal and facile recovery, J. Ind. Eng. Chem., 68 (2018) 48–56.
  16. J. Il Park, J.S. Kim, Y.B. Kim, H.J. Kwon, Y.J. Park, Evaluation of polyethersulfone-based composite for selective separation of cesium from acidic media, Bull. Korean Chem. Soc., 37 (2016) 802–809.
  17. S. Gaur, Determination of Cs-137 in environmental water by ion-exchange chromatography, J. Chromatogr. A, 733 (1996) 57–71.
  18. D. Cuc, S. Bouguet-Bonnet, N. Morel-Desrosiers, J.-P. Morel, P. Mutzenhardt, D. Canet, Behavior of cesium and thallium cations inside a calixarene cavity as probed by nuclear spin relaxation. Evidence of cation-π interactions in water, J. Phys. Chem. B, 113 (2009) 10800–10807.
  19. E.H. Borai, R. Harjula, L. Malinen, A. Paajanen, Efficient removal of cesium from low-level radioactive liquid waste using natural and impregnated zeolite minerals, J. Hazard. Mater., 172 (2009) 416–422.
  20. H. Liu, A. Yonezawa, K. Kumagai, M. Sano, T. Miyake, Cs and Sr removal over highly effective adsorbents ETS-1 and ETS-2, J. Mater. Chem. A, 3 (2015) 1562–1568.
  21. Y. Kim, Y.K. Kim, S. Kim, D. Harbottle, J.W. Lee, Nanostructured potassium copper hexacyanoferrate-cellulose hydrogel for selective and rapid cesium adsorption, Chem. Eng. J., 313 (2017) 1042–1050.
  22. S. Xiang, X. Zhang, Q. Tao, Y. Dai, Adsorption of cesium on mesoporous SBA-15 material containing embedded copper hexacyanoferrate, J. Radioanal. Nucl. Chem., 320 (2019) 609–619.
  23. S. Zhuang, J. Wang, Removal of cesium ions using nickel hexacyanoferrates-loaded bacterial cellulose membrane as an effective adsorbent, J. Mol. Liq., 294 (2019) 111682, doi: 10.1016/j. molliq.2019.111682.
  24. N. Genevois, N. Villandier, V. Chaleix, E. Poli, L. Jauberty, V. Gloaguen, Removal of cesium ion from contaminated water: improvement of Douglas fir bark biosorption by a combination of nickel hexacyanoferrate impregnation and TEMPO oxidation, Ecol. Eng., 100 (2017) 186–193.
  25. S. Naeimi, H. Faghihian, Performance of novel adsorbent prepared by magnetic metal–organic framework (MOF) modified by potassium nickel hexacyanoferrate for removal of Cs+ from aqueous solution, Sep. Purif. Technol., 175 (2017) 255–265.
  26. T. Vincent, C. Vincent, Y. Barre, Y. Guari, G. Le Saout, E. Guibal, Immobilization of metal hexacyanoferrates in chitin beads for cesium sorption: synthesis and characterization, J. Mater. Chem. A, 2 (2014) 10007–10021.
  27. Z. Jia, X. Cheng, Y. Guo, L. Tu, In-situ preparation of iron(III) hexacyanoferrate nano-layer on polyacrylonitrile membranes for cesium adsorption from aqueous solutions, Chem. Eng. J., 325 (2017) 513–520.
  28. J.-W. Choi, Y.-J. Park, H.-K. Lee, S.-J. Choi, Amine-functionalized graphene oxide/zinc hexacyanoferrate composites for cesium removal from aqueous solutions, J. Radioanal. Nucl. Chem., 323 (2020) 785–793.
  29. S.M. El-Bahy, D.A. Fadel, Z.M. El-Bahy, A.M. Metwally, Rapid and highly efficient cesium removal by newly synthesized carbomer encapsulated potassium copper hexacyanoferrate composite, J. Environ. Chem. Eng.,
    6 (2018) 1875–1885.
  30. I. Langmuir, The adsorption of gases on plane surfaces of glass, mica and platinum, J. Am. Chem. Soc., 40 (1918) 1361–1403.
  31. H. Freundlich, Adsorption in solution, Phys. Chem. Soc., 40 (2009) 1361–1368.
  32. M.J. Temkin, V. Pyzhev, Recent modifications to Langmuir isotherms, Acta Physicochim. URSS, 12 (1940) 217–222.
  33. M.M. Dubinin, The Equation of the Characteristic Curve of Activated Charcoal, Proceedings of the Academy of Sciences, 1947, pp. 327–329.
  34. S.M. El-Bahy, Z.M. El-Bahy, Immobilization of 2-amino pyridine onto poly(acrylonitrile-co-N,Ń-methylenebisacrylamide) nanoparticles for the removal of Hg(II), Cd(II) and Cr(III): batch and column techniques, J. Environ. Chem. Eng., 5 (2017) 3560–3571.
  35. S.K. Lagergren, About the theory of so-called adsorption of soluble substances, Sven. Vetenskapsakad. Handingarl., 24 (1898) 1–39.
  36. Y.-S. Ho, Second-order kinetic model for the sorption of cadmium onto tree fern: a comparison of linear and non-linear methods, Water Res., 40 (2006) 119–125.
  37. W.J. Weber Jr., J.C. Morris, Equilibria and capacities for adsorption on carbon, J. Sanit. Eng. Div., 90 (1964) 79–108.
  38. S.H. Chien, W.R. Clayton, Application of Elovich equation to the kinetics of phosphate release and sorption in soils, Soil Sci. Soc. Am. J., 44 (1980) 265–268.
  39. S.K. Milonjić, A consideration of the correct calculation of thermodynamic parameters of adsorption,
    J. Serbian Chem. Soc., 72 (2007) 1363–1367.
  40. Z. Du, M. Jia, X. Wang, Cesium removal from solution using PAN-based potassium nickel hexacyanoferrate(II) composite spheres, J. Radioanal. Nucl. Chem., 298 (2013) 167–177.
  41. A. Takahashi, N. Minami, H. Tanaka, K. Sue, K. Minami, D. Parajuli, K.-M. Lee, S. Ohkoshi, M. Kurihara,
    T. Kawamoto, Efficient synthesis of size-controlled open-framework nanoparticles fabricated with a micro-mixer: route to the improvement of Cs adsorption performance, Green Chem., 17 (2015) 4228–4233.
  42. X. Wang, Y. Zhang, S. Jiang, X. Ji, Y. Liu, C.E. Banks, Cubic copper hexacyanoferrates nanoparticles: facile template-free deposition and electrocatalytic sensing towards hydrazine, Int. J. Electrochem., 2011 (2011) 395724, doi: 10.4061/2011/395724.
  43. Y. Kim, H.H. Eom, Y.K. Kim, D. Harbottle, J.W. Lee, Effective removal of cesium from wastewater via adsorptive filtration with potassium copper hexacyanoferrate-immobilized and polyethyleneimine-grafted graphene oxide, Chemosphere, 250 (2020) 126262, doi: 10.1016/j.chemosphere.2020.126262.
  44. P.A. Haas, A review of information on ferrocyanide solids for removal of cesium from solutions, Sep. Sci. Technol., 28 (1993) 2479–2506.
  45. H. Yang, H. Li, J. Zhai, H. Yu, In situ growth of Prussian blue nanocrystal within Fe3+ crosslinking PAA resin for radiocesium highly efficient and rapid separation from water, Chem. Eng. J., 277 (2015) 40–47.
  46. S.M. El-Bahy, New iminodiacetate chelating resin-functionalized Fe3O4 nanoparticles: synthesis, characterization, and application for the removal of some noxious metal ions from wastewater, J. Chem. Eng. Data, 63 (2018) 2299–2313.
  47. S.M. El-Bahy, Z.M. El-Bahy, Synthesis and characterization of polyamidoxime chelating resin for adsorption of Cu(II), Mn(II) and Ni(II) by batch and column study, J. Environ. Chem. Eng., 4 (2016) 276–286.
  48. S.M. El-Bahy, Z.M. El-Bahy, Synthesis and characterization of a new iminodiacetate chelating resin for removal of toxic heavy metal ions from aqueous solution by batch and fixed bed column methods, Korean J. Chem. Eng., 33 (2016) 2492–2501.
  49. H.-M. Yang, K.S. Hwang, C.W. Park, K.-W. Lee, Sodium-copper hexacyanoferrate-functionalized magnetic nanoclusters for the highly efficient magnetic removal of radioactive caesium from seawater, Water Res., 125 (2017) 81–90.