首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Interaction of europium with humic acid covalently bound to silica beads
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Interaction of europium with humic acid covalently bound to silica beads

机译:with与共价结合到硅珠上的腐殖酸的相互作用

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The uptake of Eu3+ (a trivalent actinide homolog) by Aldrich humic acid covalently bonded to an inorganic support is examined. Two types of covalent linkages are used and the synthetic routes to produce the resins are discussed. The use of these resins excludes having to account for humic acid desorption from the surface, yields a well characterized system, and allows the experiment to focus on and account for the role of humic acid in the sorption of Eu. The proton exchange capacity of the resins is examined by titration and the differences observed are traced to the resin synthesis. Europium sorption experiments are performed at pH 4 and pH 6 in 0.1 M NaClO4. Kinetic experiments show equilibrium is reached in 24 hours. The kinetic data are used to evaluate the loading capacity, with results similar to equilibrium experiments. The complexation results are evaluated based on the metal ion charge neutralization model. For the resins an effect of pH and resin synthesis route on the Eu uptake is observed. The uptake increases with pH for both resins. The resin HA-Epo (Epoxy linkage) has a higher metal binding at pH 4, while the resin HA-HAB (2-hydroxylazobenzene linkage) had more proton exchange sites occupied by metal ions at pH 6. Overall, more Eu is bound to HA-Epo at pH 6 since its proton exchange capacity is higher. The evaluated stability constants vary slightly and show a dependence on the linkage group but are similar to Literature values that examined complexation by aquatic humic acid analyzed with the same model. This result supports the utility of the metal ion charge neutralization model and the applicability of the resulting stability constants. [References: 49]
机译:考察了与无机载体共价结合的奥尔德里奇腐殖酸对Eu3 +(三价act系同系物)的吸收。使用两种类型的共价键,并讨论了生产树脂的合成途径。这些树脂的使用排除了必须考虑的腐殖酸从表面的解吸,产生特征明确的体系,并允许实验集中于并考虑腐殖酸在Eu的吸附中的作用。通过滴定检查树脂的质子交换能力,观察到的差异可追溯到树脂合成。 0.1吸附实验是在0.1 M NaClO4中于pH 4和pH 6进行的。动力学实验表明在24小时内达到平衡。动力学数据用于评估负载能力,其结果类似于平衡实验。根据金属离子电荷中和模型评估络合结果。对于树脂,观察到pH和树脂合成路线对Eu摄取的影响。两种树脂的吸收量均随pH的增加而增加。树脂HA-Epo(环氧键)在pH值为4时具有较高的金属结合力,而树脂HA-HAB(2-羟基氮杂苯键)在pH值为6时具有更多的被金属离子占据的质子交换位点。 HA-Epo在pH值为6时,因为它的质子交换能力更高。评估的稳定常数略有不同,并显示出对连接基团的依赖性,但与文献值相似,该文献值检查了用同一模型分析的水生腐殖酸的络合作用。该结果支持金属离子电荷中和模型的实用性和所得稳定性常数的适用性。 [参考:49]

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