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Comparative study on retardation behavior of Cs in crushed and intact rocks: two potential repository host rocks in the Taiwan area
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Comparative study on retardation behavior of Cs in crushed and intact rocks: two potential repository host rocks in the Taiwan area

Chuan-Pin Lee, Ming-Chee Wu, Tsuey-Lin Tsai, Hwa-Jou Wei, Lee-Chung Men 和 Tzung-Yi Lin
Journal of radioanalytical and nuclear chemistry, 卷.293(2), 頁碼.579-586
01/08/2012
Web of Science ID: WOS:000306070700018

摘要

Chemistry Chemistry, Analytical Chemistry, Inorganic & Nuclear Nuclear Science & Technology Physical Sciences Science & Technology Technology
This study investigates sorption and diffusion of Cs in two potential host rocks (granite from Kinmen Island and basalt from Penghu Island) by using batch and through-diffusion methods in order to establish a reliable safety assessment methodology. These methods were applied to crushed and intact rock samples to investigate the actual geological environment. According to solid-phase analysis, including X-ray diffraction, elemental analysis, auto radiography, and polar microscopy, the sorption component primarily contained iron-magnesium (Fe-Mg) minerals in basalt and granite. Moreover, the distribution coefficient (K (d)) of Cs in various concentrations (similar to 10(-2)-10(-7) M) obtained from batch tests indicated a higher sorption capacity in basalt than that in granite because of the 10% Fe-Mg mineral content. The diffusion of Cs in both crushed granite and basalt reached steady state after 110 days, and the apparent diffusion coefficients (D (a)) were 2.86 x 10(-11) and 1.82 x 10(-12) m(2)/s, respectively. However, the value of D (a) for Cs in intact rocks was estimated to be 1.45 x 10(-12) m(2)/s in granite and 0.56 x 10(-12) m(2)/s in basalt, lower than the values obtained using crushed rocks. In addition to the microporous structure (major sorption minerals), it showed that the major retardation of Cs depended on the porosity (theta) of compacted media, according to through-diffusion tests. In fact, the solid/liquid (S/L) ratio decreased as is the case when switching from batch to column experiments and the sorption effect on minerals became even more negligible in retardation of radionuclide migration.

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