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Selective Sorption of Actinides by Titania Nanoparticles Covalently Functionalized with Simple Organic Ligands

机译:通过简单的有机配体共价官能化的二氧化钛纳米粒子对Act系元素的选择性吸附

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Although current and proposed reprocessing of used nuclear fuel is performed predominantly by solvent extraction processes, solid phase sorbent materials have many advantages including the ability to avoid production of large volumes of organic waste. Therefore, three titania nanoparticle based sorbent materials have been developed, functionalized with organic ligands designed to impart selectivity for elements relevant to important separations at the back end of the nuclear fuel cycle. A novel, simplified method of covalent functionalization to the titania surface has been utilized, and the resulting materials have been shown to be hydrolytically stable at pH 2. The sorption behavior of these organofunctionalized titania materials was investigated over a wide pH range with a selection of elements including fission products and actinides. Titania nanoparticles functionalized with an amine or phosphate moiety were able to demonstrate exclusive extraction of uranium under optimized conditions. Titania nanoparticles functionalized with a picolinamide moiety exhibited superior minor actinide sorption properties, in terms of both efficiency and selectivity, to solvent extraction processes using similar organic moieties. As such, organo-functionalized titania materials as solid phase sorbents show promise as a future alternative to solvent extraction processes for nuclear separations.
机译:尽管当前和建议的对废旧核燃料的后处理主要通过溶剂萃取工艺进行,但固相吸附剂材料具有许多优势,包括能够避免产生大量有机废物。因此,已经开发了三种基于二氧化钛纳米粒子的吸附剂材料,这些吸附剂材料被有机配体官能化,该有机配体旨在为与核燃料循环后端重要分离相关的元素赋予选择性。已经使用了一种新颖的,简化的对二氧化钛表面进行共价官能化的方法,并且已证明所得材料在pH 2时具有水解稳定性。这些有机官能化的二氧化钛材料的吸附行为在很宽的pH范围内进行了选择。元素包括裂变产物和act系元素。用胺或磷酸盐部分官能化的二氧化钛纳米颗粒能够证明在优化条件下独家萃取铀。就效率和选择性而言,用吡啶啉酰胺部分官能化的二氧化钛纳米粒子在使用相似有机部分的溶剂萃取过程中表现出优异的次要act系元素吸附性能。因此,作为固相吸附剂的有机功能化二氧化钛材料显示出有望成为用于核分离的溶剂萃取工艺的未来替代品。

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