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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Optimization of Nb-substitution and Cs~+/Sr~(+2) ion exchange in crystalline silicotitanates (CST)
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Optimization of Nb-substitution and Cs~+/Sr~(+2) ion exchange in crystalline silicotitanates (CST)

机译:结晶硅钛酸盐(CST)中Nb取代和Cs〜+ / Sr〜(+2)离子交换的优化

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摘要

Crystalline silicotitanate inorganic ion exchanger, with a sitinakite structure is a candidate material for remediation of aqueous nuclear waste streams. Niobium substituted crystalline silicotitanates (Nb-CST) with varying concentrations of Nb (2, 4, 8, 12 and 24 mmol) and with constant concentrations of Ti-12 mmol, Si-16 mmol, Na-165 mmol were prepared hydrothermally and the products were characterized using techniques viz., XRD, SEM/EDS, DTA/TGA, surface area respectively. Batch experiments were carried out to study the kinetics of uptake of Cs~(137) and Sr~(90), to estimate the decontamination factor (DF) values and distribution coefficients (K_d) for the above synthesized Nb-CST samples from actual radioactive waste solutions. The DF values for uptake of Cs and Sr by N_b-CST for the optimized Nb-concentration of 4 mmol after 24 h of equilibration was 355 and 136 respectively. The Kd values for uptake of Cs and Sr for Nb-CST (Nb-4 mmol) after 24 h of equilibration was found to be 35,490 and 13,500 ml/g respectively. The ion exchange capacity of Nb-CST (Nb-4 mmol) towards Sr ~(90) and Cs~(137) was estimated to be 11.8 and 3.2 meq/g respectively.
机译:具有硅铁矿结构的结晶硅钛酸盐无机离子交换剂是用于修复含水核废料流的候选材料。制备了不同浓度的Nb(2、4、8、12和24 mmol),恒定浓度的Ti-12 mmol,Si-16 mmol,Na-165 mmol的铌取代的结晶硅钛酸盐(Nb-CST),并用水热法制备分别使用XRD,SEM / EDS,DTA / TGA,表面积等技术对产品进行表征。进行批处理实验以研究Cs〜(137)和Sr〜(90)的吸收动力学,以从实际放射性中估算上述合成的Nb-CST样品的去污因子(DF)值和分布系数(K_d)。废物解决方案。平衡24小时后,N_b-CST最佳Nb浓度为4 mmol时,N_b-CST吸收Cs和Sr的DF值分别为355和136。平衡24小时后,Nb-CST(Nb-4 mmol)吸收Cs和Sr的Kd值分别为35,490和13,500 ml / g。 Nb-CST(Nb-4 mmol)对Sr〜(90)和Cs〜(137)的离子交换容量估计分别为11.8和3.2 meq / g。

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