首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >SPEC Process II. Adsorption of strontium and some typical co-existent elements contained in high level liquid waste onto a macroporous silica-based crown ether impregnated functional composite
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SPEC Process II. Adsorption of strontium and some typical co-existent elements contained in high level liquid waste onto a macroporous silica-based crown ether impregnated functional composite

机译:SPEC流程II。高含量废液中所含锶和一些典型共存元素在大孔二氧化硅基冠醚浸渍功能复合材料上的吸附

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摘要

To separate Sr(II), one of the heat emitting nuclides, from high level liquid waste (HLLW), a macroporous silica-based DtBuCH18C6 polymeric composite, DtOct/SiO2-P, was synthesized by means of molecular modification of 4,4',(5')-di(tert-butylcyclohexano)-18-crown-6 (DtBuC H18C6) with a long-chain 1-octanol. It was performed by impregnating and immobilizing DtBuCH18C6 and 1-octanol molecules into the pores of the SiO2-P particles, the macroporous silica-based support. The adsorption of Sr(II) and some co-existent typical elements Na(I), K(I), Cs(I), Ru(III), Mo(VI), Pd(II), Ba(II), La(III), and Y(III) contained in highly active liquid waste (HLW) towards DtOct/SiO2-P was investigated at 323 K. The effects of contact time and the concentration of HNO3 in a range of 0.1-5.0M on the adsorption of the tested metals were examined. The macroporous silica-based DtOct/SiO2-P polymeric composite showed strong adsorption ability and high selectivity for Sr(II) over all of the tested metals except Ba(II). The optimum acidity of Sr(II) adsorption onto DtOct/SiO2-P was determined to be 2.0M HNO3. The bleeding behavior of DtOct/SiO2-P in aqueous phase was evaluated using total organic carbon (TOC) analysis. The content of TOC increased with increasing the HNO3 concentration and contact time. It resulted from the decrease in the stability of the associated species, C8H17-OHaEuro cent DtBuCH18C6 formed through hydrogen binding, because of high temperature.
机译:为了分离Sr(II),从高放废液(HLLW)中分离出一种散热核素,通过对4,4'进行分子修饰,合成了大孔二氧化硅基DtBuCH18C6聚合物复合物DtOct / SiO2-P。 ,(5')-二(叔丁基环己酮)-18-冠-6(DtBuC H18C6)与长链1-辛醇。通过将DtBuCH18C6和1-辛醇分子浸渍并固定到SiO2-P颗粒(基于大孔二氧化硅的载体)的孔中来进行。 Sr(II)和某些并存的典型元素Na(I),K(I),Cs(I),Ru(III),Mo(VI),Pd(II),Ba(II),La的吸附在323 K下研究了高活性废液(HLW)中对DtOct / SiO2-P的(III)和Y(III)。接触时间和0.1-5.0M范围内的HNO3浓度对其影响检查了测试金属的吸附。大孔二氧化硅基DtOct / SiO2-P聚合物复合材料在除Ba(II)以外的所有测试金属上均显示出强大的吸附能力和对Sr(II)的高选择性。确定Sr(II)吸附在DtOct / SiO2-P上的最佳酸度为2.0M HNO3。使用总有机碳(TOC)分析评估DtOct / SiO2-P在水相中的渗出行为。随着HNO3浓度和接触时间的增加,TOC的含量增加。其原因是由于高温,缔合物种C8H17-OHaEuro%DtBuCH18C6的稳定性通过氢键结合而降低。

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