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Impurity levels in cerium oxide microspheres prepared by internal gelation sol-gel methods

机译:内凝胶溶胶 - 凝胶方法制备的氧化铈微球中的杂质水平

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Impurity levels were measured in cerium oxide microspheres fabricated by modified internal gelation sol-gel methods. A combination of glow discharge mass spectrometry, electron impact mass spectrometry, combustion gas analysis, and instrumental gas analysis were used to assess a wide range of potential elemental impurities. Low concentrations of carbon, nitrogen, and hydrogen impurities in microspheres showed a dependence on how microspheres were washed. Silicon impurities are believed to derive from silicone oil used during sol-gel processing. Spheres washed by the preferred approach had impurity levels below 100 ppm for all elements tested. For applications such as nuclear fuels, sol-gel methods could meet purity specifications as long as metal nitrate feed solutions of sufficient purity are used and microspheres are washed appropriately. In this study, cerium was used as a surrogate for plutonium-238, which is used in radioisotope power systems as a heat source, to determine whether carbon or other impurities were concentrated during internal gelation processing and remained after heat treatments. Analyses indicated low concentrations of impurities in cerium oxide microspheres after sintering steps that were well below documented limits for plutonium-238 oxide fuels. Modified washing methods, combined with a pressurized water treatment, resulted in sintered cerium oxide sol-gel microspheres with low impurity levels.
机译:用改性内凝胶溶胶 - 凝胶方法制造的氧化铈微球中测量杂质水平。辉光放电质谱,电子冲击质谱,燃烧气体分析和仪器气体分析的组合用于评估各种潜在的元素杂质。微球中的低浓度的碳,氮和氢杂质表现出依赖性微球的洗涤。据信硅杂质衍生自溶胶 - 凝胶加工期间使用的硅油。通过优选的方法洗涤的球体具有低于100ppm的杂质水平,对于测试的所有元素。对于核燃料,溶胶 - 凝胶方法可以满足纯度规格,只要使用足够纯度的金属硝酸盐进料溶液,并且适当洗涤微球。在该研究中,铈被用作钚-338的替代物,其用于放射性同位素动力系统作为热源,以确定在内部凝胶加工过程中浓缩碳或其他杂质,并保持在热处理后。分析表明烧结步骤氧化铈微球中的低浓度浓度,其在低于钚-238氧化物燃料的记录限度下均匀。改性洗涤方法与加压水处理结合,导致氧化铈溶胶 - 凝胶微球,具有低杂质水平。

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