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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Complex formation between UO22+ and alpha-isosaccharinic acid: insights on a molecular level
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Complex formation between UO22+ and alpha-isosaccharinic acid: insights on a molecular level

机译:UO22 +和α-异季甲酸之间的复杂形成:分子水平的见解

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摘要

Cellulosic materials present as tissue, paper, wood, or filter materials in low and intermediate level waste will degrade under alkaline conditions if water ingresses in a cementitious backfilled repository. The main degradation product is isosaccharinic acid. Complex formation with isosaccharinic acid may adversely affect the retention of radionuclides by the sorption or formation of solid phases. Hence, this compound is of particular concern in the context of nuclear waste disposal. Structural information of complexes is limited to spherical metal centers and little is known about the interaction of uranyl ((UO22+)-O-VI) with isosaccharinic acid. Therefore, the interaction of UO22+ with alpha-isosaccharinate (ISA) was studied under acidic conditions focusing particularly on the structural characterization of the formed complexes. Attenuated total reflection Fourier-transform infrared (ATR-FTIR), nuclear magnetic resonance (NMR), UV-Vis, extended X-ray absorption fine structure (EXAFS) spectroscopy and electrospray-ionization mass spectrometry (ESI-MS) were combined with theoretical calculations to obtain a process understanding on the molecular level. The dominant binding motifs in the formed complexes are 5- and 6-membered rings involving the carboxylic group as well as the alpha- or beta-hydroxy group of ISA. Two concentration dependent complex formation mechanisms were identified involving either mono- ([UO2(ISA)(H2O)(3)](+)) or binuclear ([(UO2)(2)(ISA)(H2O)(6)](3+)) species. Furthermore, this study unveils the interaction of UO22+ with the protonated alpha-isosaccharinic acid (HISA) promoting its transformation to the corresponding alpha-isosaccharinate-1,4-lactone (ISL) and inhibiting the formation of polynuclear UO22+-ISA species. Future studies on related systems will benefit from the comprehensive knowledge concerning the behavior of ISA as a complexing agent gained in the present study.
机译:如果水泥回填的储存库中的水入口,含有纤维素材料,纸张,木材或过滤物质的含量为纸巾,纸,木材或过滤物质将在碱性条件下降低。主要的降解产物是异淀粉酸。具有异季甲酸的复杂形成可能对通过吸附或形成固相的吸附或形成的放射性核素的保留不利影响。因此,在核废料处理的背景下,该化合物特别关注。复合物的结构信息仅限于球形金属中心,并且关于铀酰((UO 2 2 +) - O-VI)与异糖酸的相互作用很少。因此,在聚焦的酸性条件下,研究了UO22 +与α-异胆醌(ISA)的相互作用,特别是在形成的复合物的结构表征上。衰减的总反射傅里叶变换红外(ATR-FTIR),核磁共振(NMR),UV-VI,延伸X射线吸收细结构(EXAFS)光谱和电喷雾电离质谱(ESI-MS)与理论相结合计算以获得分子水平的过程理解。所形成的配合物中的主要结合基序是5-和6-元环,涉及羧基以及ISA的α-或β-羟基。鉴定了两种浓度依赖性复杂的形成机制,涉及单 - ([UO 2(ISA)(H 2 O)(3)](+))或二核([(UO 2)(2)(ISA)(H2O)(6)]( 3+)))物种。此外,该研究推出了UO22 +与质子化α-异糖糖(HIRA)的相互作用促进其转化为相应的α-异糖酸酯-1,4-内酯(ISL)并抑制聚核UO22 + -ISA物种的形成。关于相关系统的未来研究将受益于有关ISA作为本研究中获得的络合剂的行为的综合知识。

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    Helmholtz Zentrum Dresden Rossendorf Inst Resource Ecol Bautzner Landstr 400 D-328 Dresden Germany;

    Helmholtz Zentrum Dresden Rossendorf Inst Resource Ecol Bautzner Landstr 400 D-328 Dresden Germany;

    Helmholtz Zentrum Dresden Rossendorf Inst Resource Ecol Bautzner Landstr 400 D-328 Dresden Germany;

    Leibniz Univ Hannover Inst Radioecol &

    Radiat Protect Herrenhauser Str 2 D-30419 Hannover Germany;

    Helmholtz Zentrum Dresden Rossendorf Inst Resource Ecol Bautzner Landstr 400 D-328 Dresden Germany;

    Helmholtz Zentrum Dresden Rossendorf Inst Resource Ecol Bautzner Landstr 400 D-328 Dresden Germany;

    Helmholtz Zentrum Dresden Rossendorf Inst Resource Ecol Bautzner Landstr 400 D-328 Dresden Germany;

    Helmholtz Zentrum Dresden Rossendorf Inst Resource Ecol Bautzner Landstr 400 D-328 Dresden Germany;

    Helmholtz Zentrum Dresden Rossendorf Inst Resource Ecol Bautzner Landstr 400 D-328 Dresden Germany;

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  • 正文语种 eng
  • 中图分类 化学;无机化学;
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