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首页> 外文期刊>AIChE Journal >Chromatographic Partitioning of Cesium by a Macroporous Silica-Calix[4]arene-crown Supramolecular Recognition Composite
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Chromatographic Partitioning of Cesium by a Macroporous Silica-Calix[4]arene-crown Supramolecular Recognition Composite

机译:大孔二氧化硅-Calix [4]芳烃-冠状超分子识别复合材料对铯进行色谱分离

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A macroporous silica-based 1,3-[(2,4-diethyl-heptylethoxy)oxy]-2,4-crown-6-calix[4]arene (Calix[4]arene-R14) supramolecular recognition polymeric composite, (Calix[4]+Oct)/SiO2-P, was synthesized. It was performed by impregnating and immobilizing Calix[4]arene-R14 and n-octanol into the pores of the macroporous SiO2-P particles support. n-Octanol was used to modify Calix[4]arene-R14 through hydrogen bonding. The effect of eight typical fission products contained in highly active liquid waste (HLW) on the adsorption of Cs(I), one of the heat generators, was investigated at 298 K by examining the effect of contact time and the HNO3 concentration in a range of 0.3-7.0 M. (Calix[4]+Oct)/SiO2-P showed excellent adsorption ability and high selectivity for Cs(I) at 4.0 M HN03 over the tested elements. The partitioning of Cs(I) from a simulated HLW was operated by (Calix[4]+Oct)/SiO2-P packed column. Cs(I) was able to be effectively eluted by water and separated from the tested metals. It is demonstrated that (Calix[4]+Oct)/SiO2-P is promising to apply in chromatographic separation of Cs(I) from HLW.
机译:基于大孔二氧化硅的1,3-[(2,4-二乙基庚基乙氧基)氧基] -2,4-冠-6-杯[4]芳烃(Calix [4] arene-R14)超分子识别聚合物复合材料,(合成了杯[4] + Oct)/ SiO 2 -P。它是通过将Calix [4] arene-R14和正辛醇浸渍并固定在大孔SiO2-P颗粒载体的孔中而进行的。正辛醇用于通过氢键修饰Calix [4] arene-R14。通过研究接触时间和HNO3浓度在一定范围内的影响,研究了高活性废液(HLW)中包含的八种典型裂变产物对热发生器之一Cs(I)的吸附的影响。 0.3-7.0 M.(Calix [4] + Oct)/ SiO2-P在4.0 M HNO3上对被测元素表现出出色的吸附能力和对Cs(I)的高选择性。通过(Calix [4] + Oct)/ SiO2-P填充柱对模拟HLW中的Cs(I)进行分配。 Cs(I)能够被水有效洗脱并与被测金属分离。结果表明,(Calix [4] + Oct)/ SiO2-P有望用于高纯水中Cs(I)的色谱分离。

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