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Adsorption

Adsorption Behavior of Platinum Group Metals onto a Silica-based (Crea+Dodec)/SiO2-P Extraction Resin from Simulated High Level Liquid Waste

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Pages 260-266 | Received 02 Jul 2013, Accepted 16 Aug 2014, Published online: 08 Oct 2014

REFERENCES

  • Lee, S. H.; Yoo, J. H.; Kim, J. H. (2004) Ion exchange characteristics of rhodium and ruthenium from s simulated radioactive liquid waste. Korean J. Chem. Eng., 21(5): 1038.
  • Kondo, Y.; Kubota M. (1992) Precipitation behavior of platinum group metals from simulated high level liquid waste in sequential denitration process. J. Nucl. Sci. Technol., 29(2): 140.
  • Lee, S. H.; Kim, K. R.; Jung, C. H.; Chung, H. (1999) Ion exchange characteristics of palladium from nitric acid solution by anion exchangers. Korean J. Chem. Eng., 16(5): 571.
  • Krause, C.; Luckscheiter, B. (1991) Properties and behavior of the platinum group metals in the glass resulting from the vitrification of simulated nuclear fuel reprocessing waste. J Mater. Res., 6: 2535.
  • Xu, Y. L.; Kim, S. Y.; Ito, T.; Tada, T.; Hitomi, K,; Ishii, K. (2013) Adsorption properties and behavior of the platinum group metals onto a silica-based (Crea+TOA)/SiO2-P adsorbent from simulated high level liquid waste of PUREX reprocessing. J. Radioanal. Nucl. Chem., 297(1): 41.
  • Smith, F. J.; Mcduffie, H. F. (1981) Recovery of nonradioactive palladium and rhodium from radioactive waste. Sep. Sci. Technol., 16: 1071.
  • Ruhela, R.; Sharma, J. N.; Tomar, B. S.; Panja, S.; Tripathi, S. C.; Hubli, R. C.; Suri, A. K. (2010) N, N, N, N-tetra(2-ethylhexyl) thiodiglycolamide T(2EH)TDGA: A novel ligand for the extraction of palladium from high level liquid waste (HLLW). Radiochime. Acta., 98: 209.
  • Gaita, R.; Al-Bazi, S. J. (1995) An ion-exchange method for selective separation of palladium, platinum and rhodium from solutions obtained by leaching automotive catalytic converters. Talanta., 42: 249.
  • Yamagishi, I.; Kubota, M. (1989) Separation of technetium with active carbon. J. Nucl. Sci. Technol., 26: 1038.
  • Yamagishi, I.; Kubota, M. (1990) Desorption of technetium from active carbon with alkaline thiocyanate solution. J. Nucl. Sci. Technol., 27: 743.
  • Yamagishi, I.; Kubota, M. (1993) Recovery of technetium with active carbon column in partitioning process of high-level liquid waste. J. Nucl. Sci. Technol., 30: 717.
  • Daskshinamoorthy, A.; Dhami, P. S.; Naik, P. W.; Dudwadkar, N. L.; Munshi, S. K.; Dey, P. K.; Venugopal, V. (2008) Separation of palladium from high level liquid waste of PUREX origin by solvent extraction and precipitation methods using oximes. Desalination, 232: 26.
  • Ozawa, M.; Suzuki, T.; Koyama, S.; Akatsuka, H.; Mimura, H.; Fuiji, Y. (2008) A new back-end cycle strategy for enhancing separation, transmutation and utilization of materials (Adv.-Orient cycle). Prog. Nucl. Energ., 50: 476.
  • Ozawa, M.; Suzuki, T.; Koyama, S.; Fuiji, Y. (2005) Separation of rare metal fission products in radioactive wastes in new directions of their utilization. Prog. Nucl. Energ., 47: 462.
  • Soylak, M.; Tuzen, M. (2008) Coprecipitation of gold(III), palladium(II) and lead(II) for their flame atomic absorption spectrometric determinations. J. Hazard. Mater., 152: 656.
  • Sari, A.; Mendil, D.; Tuzen, M.; Soylak, M. (2009) Biosorption of palladium(II) from aqueous solution by moss (Racomitrium lanuginosum) biomass: equilibrium, kinetic and thermodynamic studies, J. Hazard. Mater., 162: 874.
  • Liu, R.; Wei, Y.; Tozawa, D. (2011) Evaluation study on properties of a macroporous silica-based CMPO extraction resin to be used for minor actinides separation from high level liquid waste. Nucl. Sci. Technol., 22: 18.
  • Wei, Y.; Yamaguchi, M.; Kumagai, M.; Takashima, Y.; Hoshikawa, T.; Kawamura, F. (1998) Separation of actinides from simulated spent fuel solutions by an advanced ion-exchange process. J. Alloys Comp., 271-273: 693.
  • Kim, S. Y.; Xu, Y.; Ito, T.; Wu, Y.; Tada, T.; Hitomi, K.; Kuraoka, E.; Ishii, K. (2012) A novel partitioning process for treatment of high level liquid waste using macroporous silica-based adsorbents. J. Radioanal. Nucl. Chem., 293:13.
  • Ho, Y. S.; Chiu, W. T.; Hsu, C. S.; Huang, C. T. (2004) Sorption of lead ions from aqueous solution using tree fern as a sorbent. Hydrometallurgy, 73: 55.
  • Wu, Y.; Kim, S.Y.; Tozawa, D.; Ito, T.; Tada, T.; Hitomi, K.; Kuraoka, E.; Yamazaki, K.; Ishii, K. (2012) Study on selective separation of cesium from high level liquid waste using a macroporous silicabased supramolecular recognition absorbent. J. Radioanal. Nucl. Chem., 293: 13.
  • EI-Kamash, A. M. (2008) Evaluation of zeolite A for the sorptive removal of Cs+ and Sr2+ ions from aqueous solutions using batch and fixed bad column operations. J. Hazard. Mater., 151: 432.

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