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Some Experiments on Sorption Behavior of Iodide ions into CSH Gel under the Condition Saturated with Saline Groundwater

机译:盐水地下水饱和碘化物离子对CSH凝胶中的吸附行为的研究

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The main hydrate of cement is calcium silicate hydrate (CSH). Such a cement-based material is essential for constructing the geological disposal system of TRU radioactive wastes including 1-129 in Japan. So far, the sorption behavior of iodine on CSH gel has been examined by using the CSH samples dried once. However, the Japan's repository would be constructed under water table. Therefore, we must focus on also the interaction of altered cementitious material and iodine under the condition saturated with saline groundwater. In this study, the sorption behavior of iodide ions into CSH gel, formed without dried processes, was examined in imitated saline groundwater. Ca/Si ratio was set to 0.4, 0.8, 1.2 and 1.6, and NaCl concentration of each sample also was set to 0.6 M, 0.06 M or 0.006 M. These samples were synthesized with CaO, SiO2 (fumed silica), and distilled water in a given combination of 20 ml/g in liquid/solid ratio. A Nal solution was added after curing the CSH gel (hereinafter referred to as the "Surface sorption sample") for 7 days, setting the initial concentration of Nal to 0.5 mM in sample tube. The values of Eh and pH of each sample showed iodide ions as the chemical species of iodine in the sample tube. Furthermore, this study prepared the "Co-precipitation sample" of CSH gel with iodide ions. Here, the Nal solution was added before curing the CSH gel. For all samples, the contact time-period of the CSH gel with iodide ions was set to 7 days. After each contact time-period, each sample for analyses was separated into the solid and the liquid phases by 0.20 μm membrane filter. In the liquid phase, the concentrations of Ca, I, Si and Na ions in the liquid phase were measured by ICP-AES. Besides, the Raman spectra were obtained from the solid phases of the surface sorption sample and the co-precipitation sample without dried process. The results showed that the sorption of iodide ions into CSH gel strongly depends on the amount of water included in the CSH gel. Such a sorption behavior was confirmed in both co-precipitation samples and the surface sorption samples, even if the Ca/Si ratio is low. This means that iodide ions can be easily immobilized through the water-molecular of CSH gel. Besides, Na concentration did not so much affect the sorption behavior of iodide ions into CSH gel. In addition, the Raman spectra showed that the degree of polymerization of SiO4 tetrahedrons in CSH gel was unaffected with increasing Na ions concentration. These results suggest that the CSH gel saturated with groundwater would retard the migration of iodide ions, even if the groundwater includes salinity.
机译:水泥的主要水合物是硅酸钙水合物(CSH)。这种基于水泥的材料对于构建特鲁特放射废物的地质处理系统,包括在日本1-129的地质处理系统必不可少。到目前为止,通过使用一次干燥的CSH样品,研究了碘对CSH凝胶的吸附行为。但是,日本的存储库将在水表下构建。因此,我们必须专注于在饱和地下水饱和的条件下改变水泥材料和碘的相互作用。在本研究中,在模仿盐水地下水中检测在没有干燥的过程中形成的CSH凝胶中的碘离子进入CSH凝胶的吸附行为。 Ca / Si比设定为0.4,0.8,1.2和1.6,并且每个样品的NaCl浓度也设定为0.6μm,0.06μm或0.006米。这些样品用CaO,SiO 2(熏蒸二氧化硅)和蒸馏水合成。在给定的20ml / g以液/实向比的组合中。在固化CSH凝胶后加入NAL溶液(以下称为“表面吸附样品”)7天,在样品管中将NAL的初始浓度设定为0.5mm。每个样品的EH和pH值显示碘化物离子作为样品管中碘的化学物质。此外,该研究制备了CSH凝胶的“共沉淀样品”与碘离子。在此,在固化CSH凝胶之前加入NAL溶液。对于所有样品,将CSH凝胶与碘离子的接触时间周期设定为7天。在每个接触时间 - 过时后,将每个用于分析的样品用0.20μm膜过滤器分离成固体和液相。在液相中,通过ICP-AES测量液相中的Ca,I,Si和Na离子的浓度。此外,从表面吸附样品的固相和共沉淀样品的固相获得拉曼光谱而不干燥的方法。结果表明,碘离子进入CSH凝胶的吸附力强烈取决于CSH凝胶中包含的水量。即使CA / Si比率低,在共沉淀样品和表面吸附样品中,在共沉淀样品和表面吸附样品中证实了这种吸附行为。这意味着碘化物离子可以容易地固定通过CSH凝胶的水分子。此外,Na浓度不会影响碘离子的吸附行为进入CSH凝胶。此外,拉曼光谱表明,CSO4四边体在CSH凝胶中的聚合程度不受纳米离子浓度的影响。这些结果表明,即使地下水包括盐度,饱和地下水饱和的CSH凝胶也会延迟碘化物离子的迁移。

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