科技报告详细信息
Preparation and Characterization of Uranium Oxides in Support of the K Basin Sludge Treatment Project
Sinkov, Sergey I. ; Delegard, Calvin H. ; Schmidt, Andrew J.
关键词: CORROSION;    DISTRIBUTION;    OXIDATION;    OXYGEN;    PARTICLE SIZE;    PHOSPHORIC ACID;    SLUDGES;    SLURRIES;    SPECTROPHOTOMETRY;    TESTING;    URANINITES;    URANIUM;    URANIUM OXIDES;    VALENCE;    WATER uraninite;    metaschoepite;    uranium metal;    uranium octaoxide;    dehydrated schoepite;    spectrophotometry;    Beer-Lambert;    phosphoric acid;    shrinking core;    Scherrer equation;    selective dissolution;    UO2;    UO3¡2H2O;    U3O8;   
DOI  :  10.2172/940228
RP-ID  :  PNNL-17678
PID  :  OSTI ID: 940228
Others  :  Other: 830403000
Others  :  TRN: US0807111
学科分类:核能源与工程
美国|英语
来源: SciTech Connect
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【 摘 要 】

Uraninite (UO2) and metaschoepite (UO3¡2H2O) are the uranium phases most frequently observed in K Basin sludge. Uraninite arises from the oxidation of uranium metal by anoxic water and metaschoepite arises from oxidation of uraninite by atmospheric or radiolytic oxygen. Studies of the oxidation of uraninite by oxygen to form metaschoepite were performed at 21°C and 50°C. A uranium oxide oxidation state characterization method based on spectrophotometry of the solution formed by dissolving aqueous slurries in phosphoric acid was developed to follow the extent of reaction. This method may be applied to determine uranium oxide oxidation state distribution in K Basin sludge. The uraninite produced by anoxic corrosion of uranium metal has exceedingly fine particle size (6 nm diameter), forms agglomerates, and has the formula UO2.004¹0.007; i.e., is practically stoichiometric UO2. The metaschoepite particles are flatter and wider when prepared at 21°C than the particles prepared at 50°C. These particles are much smaller than the metaschoepite observed in prolonged exposure of actual K Basin sludge to warm moist oxidizing conditions. The uraninite produced by anoxic uranium metal corrosion and the metaschoepite produced by reaction of uraninite aqueous slurries with oxygen may be used in engineering and process development testing. A rapid alternative method to determine uranium metal concentrations in sludge also was identified.

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