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ADSORPTION PROPERTIES OF Cs~+ FOR COMPOSITE ADSORBENTS AND THEIR IRRADIATION STABILITIES

机译:复合吸附剂CS〜+的吸附性及其照射稳定性

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Novel composite adsorbents using impregnation-precipitation methods have been developed; these fine crystals are loaded in the macropores of porous silica gels and zeolites, considering the stable granulation of these adsorbents and cost efficiency in the separation processes. The present study deals with the preparation of composite adsorbents, their characterization, breakthrough properties of Cs~+ and irradiation stability. The composite adsorbents (KCoFC-NM (NM: natural mordenite, 0.4~1.0 mm), KCoFC-SG (SG: porous silica gel, NH and Q-10)) were prepared by impregnation-precipitation methods. The breakthrough properties of Cs~+ were examined by varying the kind of matrix (SG and NM), particle size (0.2 ~1.3 mm Φ), flow rate (0.1, 0.2 cm~3/min) and component system (single and mixed solutions). The breakthrough profile for the single solution (200 ppm Cs~+- 400 g/L NaNO_3- 4.3 g/L Na_2SO_4) was considerably affected by the particle size and the KCoFC-SG (Q-10, 0.6~1.0 mm Φ) had an excellent S-shaped profile and relatively large breakthrough capacity (0.038 mmol/g) of Cs~+. The breakthrough capacity for the mixed solution was almost similar to that for the single solution. The breakthrough property of KCoFC-NM column was similar to that of KCoFC-SG (Q-10, 0.6~1.0 mm Φ). The flow rate in the range of 0.1 ~0.2 cm~3/min had no effect on the breakthrough property. The ~(60)Co-irradiation stability of KCoFC-NM in the presence of 400 g/L NaNO_3 was compared with that of KCoFC loaded resin (T-KCFC). The distribution coefficient and saturation capacity of Cs~+ for KCoFC-NM were almost constant even after irradiation up to 2.72 MGy, while those for T-KCFC resin were lowered after irradiation above 0.52 MGy and many cracks were observed on the surface. The KCoFC-SG and KCoFC-NM composites are thus effective for the selective separation of ~(137)Cs in LLW containing highly concentrated sodium nitrate.
机译:已经开发了使用浸渍沉淀方法的新型复合吸附剂;将这些细晶体加载到多孔硅胶和沸石的大孔中,考虑到这些吸附剂的稳定造粒和分离过程中的成本效率。本研究涉及复合吸附剂的制备,其表征,CS〜+和辐照稳定性的突破性。通过浸渍沉淀方法制备复合吸附剂(KCOFC-NM(NM:NM:NM:Nm:Nmery Mordenite,0.4〜1.0mm),KCOFC-SG(SG:多孔硅胶,NH和Q-10)。通过改变基质(SG和NM),粒度(0.2〜1.3mmφ),流速(0.1,0.2cm〜3 / min)和部件系统(单次和混合)来检查Cs〜+的突破性特性解决方案)。通过粒度和KCOFC-SG(Q-10,0.6〜1.0mmφ)相比,单溶液的突破轮廓(200ppm cs〜+ 400g / l纳米= 3.3g / l an-3 4.3g / l Na_2so_4)具有显着影响优异的S形轮廓和相对大的突破容量(0.038mmol / g)的Cs〜+。混合溶液的突破能力几乎与单一溶液相似。 KCOFC-NM柱的突破性与KCOFC-SG(Q-10,0.6〜1.0mmφ)的突破性相似。 0.1〜0.2cm〜3 / min范围内的流速对突破性的性能没有影响。将KCOFC-NM在400g / L纳米α3存在下的〜(60)与KCOFC负载树脂(T-KCFC)的共同辐照稳定性。即使在照射高达2.72摩误后,KCOFC-NM的Cs〜+的分布系数和饱和容量也几乎是恒定的,而在0.52 mgy的照射后,将降低T-KCFC树脂的那些,并且在表面上观察到许多裂缝。因此,KCOFC-SG和KCOFC-NM复合材料是有效的〜(137)Cs在含有高浓度硝酸钠中的LLW中的选择性分离。

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