Separation of Cesium-137, Strontium-90 and Actinides from Waters and Wastewaters: A Short Review of the Materials and Processes
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[1] M. Papanikolaou,et al. Uranium removal from acidic aqueous solutions by Saccharomyces cerevisiae, Debaryomyces hansenii, Kluyveromyces marxianus and Candida colliculosa , 2009 .
[2] M. Maslova,et al. Sorption of Cs+ and Sr2+ by ion exchanger based on titanium phosphate , 2008 .
[3] Y. Onishi,et al. Chernobyl : what have we learned? : the successes and failures to mitigate water contamination over 20 years , 2007 .
[4] P. Pohl,et al. Adsorption of Radionuclides (134Cs, 85Sr, 226Ra, 241Am) by Extracted Biomasses of Cyanobacteria (Nostoc Carneum, N. Insulare, Oscillatoria Geminata and Spirulina Laxis-Sima) and Phaeophyceae (Laminaria Digitata and L. Japonica; Waste Products from Alginate Production) at Different pH , 2006, Journal of Applied Phycology.
[5] I. Smirnov,et al. Some aspects of fundamental chemistry of the Universal Extraction (UNEX) process for the simultaneous separation of major radionuclides (cesium, strontium, actinides, and lanthanides) from radioactive wastes , 2006 .
[6] E. Pavlidou,et al. Separation of Uranium from Aqueous Solutions Using Al3+‐ and Fe3+‐modified Titanium‐ and Zirconium Phosphates , 2006 .
[7] V. Nikashina,et al. URANIUM SORPTION BY ORGANOZEOLITES AND FERROMAGNETIC ORGANOZEOLITES FROM WASTE WATER OF SPECIAL LAUNDRY , 2006 .
[8] O. V. Kuchma,et al. EXPERIMENTAL APPROACH TO THE SYNTHESIS OF HYBRID ADSORBENTS ON THE BASIS OF POLYSILOXANE XEROGELS FUNCTIONALIZED WITH CALIX[4]ARENES AND THEIR DERIVATIVES , 2006 .
[9] Risto Harjula,et al. Selective removal of radionuclides from nuclear waste effluents using inorganic ion exchangers , 2006 .
[10] L. Spasonova,et al. BIOSORBENTS IN SURFACE WATERS IN SITU TREATMENT AGAINST RADIONUCLIDES , 2006 .
[11] V. N. Romanovskiy,et al. A Comparison of Crystalline Silicotitanate and Ammonium Molybdophosphate-Polyacrylonitrile Composite Sorbent for the Separation of Cesium from Acidic Waste , 2005 .
[12] K. Gloe. Macrocyclic chemistry: current trends and future perspectives. , 2005 .
[13] B. Moyer,et al. Use of Macrocycles in Nuclear-Waste Cleanup: A Realworld Application of a Calixcrown in Cesium Separation Technology , 2005 .
[14] V. Strelko,et al. Preparation and Properties of Spherically Granulated Titanium Phosphate Modified with Fe(III) Hexacyanoferrate(II) , 2004 .
[15] N. Hassan,et al. Resorcinol - formaldehyde adsorption of cesium from Hanford waste solutions, Part I. Batch equilibrium study , 2004 .
[16] D. Vaniman,et al. The distribution of zeolites and their effects on the performance of a nuclear waste repository at Yucca Mountain, Nevada, U.S.A. , 2003 .
[17] H. Arafat,et al. Letter report - parametric studies on the use of in situ formed magnetite for the removal of Sr and actinides from tank waste at the Savannah River site. , 2003 .
[18] A. Rudenko,et al. Sorption of Cesium on Titanium and Zirconium Phosphates , 2003 .
[19] R. M. Izatt,et al. The Selective Separation of Anions and Cations in Nuclear Waste Using Commercially Available Molecular Recognition Technology (MRT) Products , 2003 .
[20] C. Nash,et al. Evaluating the residence time for cesium removal from simulated Hanford tank wastes using SuperLig® 644 resin , 2003 .
[21] J. Kameník,et al. Comparison of some commercial and laboratory prepared caesium ion-exchangers , 2003 .
[22] S. Y. Tret'yakov. Sorption of 90Sr and 137Cs on Natural Sorbents in Model Environmental Systems , 2002 .
[23] D. Hobbs. Screening Evaluation of Alternate Sorbents and Methods for Strontium and Actinide Removal from Alkaline Salt Solution , 2001 .
[24] A. Clearfield,et al. Cesium and strontium ion exchange on the framework titanium silicate M2Ti2O3SiO4.nH2O (M = H, Na). , 2001, Environmental science & technology.
[25] J. Dozol,et al. Extraction of Strontium and Cesium by Dicarbollides, Crown Ethers and Functionalized Calixarenes , 2000 .
[26] D. Hobbs. Evaluation of Alternate Materials and Methods for Strontium and Alpha Removal from Savannah River Site High-Level Waste Solutions , 2000 .
[27] Garrett N. Brown,et al. Studies of sorbent/ion-exchange materials for the removal of radioactive strontium from liquid radioactive waste and high hardness groundwaters , 2000 .
[28] I. M. Umar,et al. The uptake of radioisotopes onto clays and other natural materials , 1999 .
[29] Gregory R. Choppin,et al. Chemical Separation Technologies and Related Methods of Nuclear Waste Management , 1999 .
[30] A. Shadrin,et al. New Extraction Technologies for Management of Radioactive Wastes , 1999 .
[31] P. Beneš,et al. The Environmental Impacts of Uranium Mining and Milling and the Methods of Their Reduction , 1999 .
[32] C. Musikas. Review of Possible Technologies for Actinide Separations Using Other Extractants Than TBP , 1999 .
[33] T. Pinnavaia,et al. Natural microporous materials in environmental technology. , 1999 .
[34] G. Jarvinen. Technology Needs for Actinide and Technetium Separations Based on Solvent Extraction, Ion Exchange, and Other Processes , 1999 .
[35] P. I. Mitchell. Radionuclide Dispersal Pathways: Some General Considerations and Examples , 1998 .
[36] P. Sterne,et al. Actinides and the environment , 1998 .
[37] A. Clearfield,et al. SYNTHESIS AND CHARACTERIZATION OF ION EXCHANGE PROPERTIES OF SPHERICALLY GRANULATED TITANIUM PHOSPHATE , 1997 .
[38] E. Horwitz,et al. Diphonix® Resin: A Review of Its Properties and Applications , 1997 .
[39] D. B. Chamberlain,et al. Optimization of Magnetite Carrier Precipitation Process for Plutonium Waste Reduction , 1997 .
[40] Richard E. Wilson,et al. Nuclear Energy: Principles, Practices, and Prospects , 1997 .
[41] Peter Rogers,et al. Integrated urban water resources management , 1993 .
[42] Merril Eisenbud,et al. Environmental Radioactivity - From Natural, Industrial, and Military Sources, Fourth Edition , 1987 .