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Preliminary results of spatial distribution of uranium and thorium in soil profiles near a uranium industrial site, Guangdong province, China

References 1. Landa, E. R., & Gray, J. R. (1995). US Geological Survey research on the environmental fate of uranium mining and milling wastes. Environ. Geol. , 26 , 19–31. 10.1007/BF00776028 . Landa E. R. Gray J. R. 1995 US Geological Survey research on the environmental fate of uranium mining and milling wastes Environ. Geol. 26 19 31 10.1007/BF00776028 2. Lovley, D. R., & Phillips, E. J. P. (1992). Bioremediation of uranium contamination with enzymatic uranium reduction. Environ. Sci. Technol. , 26 , 2228–2234. 10

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Ion exchange investigation for recovery of uranium from acidic pregnant leach solutions

References 1. Chmielewski, A. G. (2013). Nuclear power for Poland. World J. Nucl. Sci. Technol., 3, 123-130. http://dx.doi.org/10.4236/wjnst.2013.34021. 2. Ahmed, S. H., Sharaby, C. M., & El Gammal, E. M. (2013). Uranium extraction from sulfuric acid medium using trioctylamine impregnated activated carbon. Hydrometallurgy, 134/135, 150-157. 3. Kahouli, S. (2011). Re-examining uranium supply and demand: New insights. Energy Policy, 39(1), 358-376. 4. Rejman, W. (1996). Uranium mines in Poland

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Dictyonema black shale and Triassic sandstones as potential sources of uranium

References 1. Ministry of Economy, Government Commissioner for Nuclear Energy. (2014). Program of Polish Nuclear Energy. Warsaw. 2. Uranium 2014: Resources, production and demand. (2014). A Joint Report by the OECD Nuclear Energy Agency and the International Atomic Energy Agency. Paris: OECD. 3. Strzelecki, R., & Wołkowicz, S. (2011). Uran. In S. Wołkowicz, T. Smakowski & S. Speczik (Eds.), Bilans perspektywicznych zasobów kopalin Polski wg stanu na 31 XII 2009 r. (pp. 71-75). Warsaw: PIG-PIB. 4

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Uranium and neodymium partitioning in alkali chloride melts using low-melting gallium-based alloys

(III) and Nd(II) ions in molten LiCl-KCl-CsCl eutectic and individual CsCl. Rus. J. Electrochem., 49(10), 931-937. DOI: 10.1134/S1023193513100121. 9. Maltsev, D. S., Volkovich, V. A., Vladykin, E. N., & Vasin, B. D. (2014). An electrochemical study of uranium (III) and (IV) species in fused alkali chlorides. ECS Trans., 64(4), 357-367. DOI: 10.1149/06404.0357ecst. 10. Kober, V. I., Nichkov, I. F., Raspopin, S. P., & Kuzminikh, V. M. (1979). Thermodynamic properties of saturated by neodymium alloys based on low melting metals. In Proceedings

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Bonding xenon and krypton on the surface of uranium dioxide single crystal

References 1. Bellamy, R. G., & Rich, J. B. (1969). Grain boundary gas release and swelling in high burn-up uranium dioxide. J. Nucl. Mater., 33(1), 64-76. 2. Hargreaves, R., & Collins, D. M. (1976). A quantitative model for fi ssion gas release and swelling in irradiated uranium dioxide. J. Br. Nucl. Energy Soc., 15, 311-318. 3. Ito, K., Iwasaki, R., & Yoshihiko, I. (1985). Finite element model of fi ssion gas release from UO2 fuel. J. Nucl. Sci. Technol., 22(2), 129-138. 4. Mac Iwan, J. R

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Bioassay and alpha spectrometry in indirect monitoring of Spanish workers exposed to enriched uranium

Series 18. Vienna; IAEA; 2000. 4. Los Alamos National Laboratory. Manual of radiobioassay chemistry analytical techniques. LA-10300-M. Health and Environmental Chemistry, HSE-9. Los Alamos, New Mexico; Los Alamos National Laboratory; 1987. 5. ISO 16638-1:2015. Radiological protection - Monitoring and internal dosimetry for specific materials. Part 1: Inhalation of uranium compounds. Geneva: International Organization for Standardization; 2015. 6. European Commission. Technical Recommendations for Monitoring Individuals for Occupational Intakes of

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Construction of new houses on a uranium vein outcrop: a case study from the Czech Republic

model Ore Geol. Rev. 64 215 238 10.1016/j.oregeorev.2014.07.001 13. Nieć, M. (2009). Occurrences of uranium ore in Poland and possibilities for prospecting for uranium deposits. Polityka Energetyczna , 12 (2/2), 435–451. https://www.min-pan.krakow.pl/se/pelne_teksty23/k23z_pe/k23_niec_z.pdf (in Polish). Nieć M. 2009 Occurrences of uranium ore in Poland and possibilities for prospecting for uranium deposits Polityka Energetyczna 12 2/2 435 451 https://www.min-pan.krakow.pl/se/pelne_teksty23/k23z_pe/k23_niec_z.pdf (in

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Carbonization of solid uranyl-ascorbate gel as an indirect step of uranium carbide synthesis

References 1. Chmielewski, A. G. (2008). Nuclear fissile fuels worldwide reserves. Nukleonika, 53(Suppl. 2), S11-S14. 2. Phillips, J. A., Nagley, S. G., & Shaber, E. L. (2012). Fabrication of uranium oxycarbide kernels and compacts for HTR fuel. Nucl. Eng. Des., 251, 261-281. 3. Knight, T. W., & Anghaie, S. (2002). Processing and fabrication of mixed uranium/refractory metal carbide fuels with liquid-phase sintering. J. Nucl. Mater., 306, 54-60. 4. Sahoo, B. D., Joshi, K. D., & Gupta, S. C. (2013

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Rapid estimation of environmental radioactivity surrounding Xiangshan uranium deposits, Jiangxi province, Eastern China

.07.010. 8. Carvalho, F. P., Madruga, M. J., & Reis, M. C. (2007). Radioactivity in the environment around past radium and uranium mining sites of Portugal. J. Environ. Radioact., 96, 39-46. DOI: 10.1016/j.jenvrad.2007.01.016. 9. Tripathi, R. M., Sahoo, S. K., & Jha, V. N. (2008). Assessment of environmental radioactivity at uranium mining, processing and tailings management facility at Jaduguda, India. Appl. Radiat. Isot., 66(11), 1666-1670. DOI: 10.1016/j.apradiso.2007.12.019. 10. Momčilović, M., Kovačević, J., & Dragović, S. (2010

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235U isotopic characterization of natural and enriched uranium materials by using multigroup analysis (MGA) method at a defined geometry using different absorbers and collimators

References 1. Hofstetter, K. J., & Beals, D. M. (2005). Comparison of CdTe and CdZnTe detectors for fi eld determination of uranium isotopic enrichments. J. Radioanal. Nucl. Chem., 263(1), 171-176. 2. Desideri, D., Meli, M. A., Roselli, C., & Testa, C. (2004). Analytical techniques for the separation and determination of transuranium element ultratraces in depleted uranium ammunitions. Int. J. Environ. Anal. Chem., 84(5), 331-339. 3. Mortreau, P., & Berndt, R. (2005). Attenuation of a non-parallel beam of gamma

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