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Leaching characteristics of glassy waste forms containing two different incineration ashes

机译:包含两种不同焚烧灰的玻璃状废料的浸出特性

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摘要

Several glassy waste forms are fabricated from two different incineration ashes, respectively, at different mixing ratios of ashes to base glass. Incineration ashes used in the experiments are hazardous waste (HW) incineration ash from a paint factory and simu- lated radioactive waste (RW) incineration ash from a nuclear power plant. To assess the chemical durability, which is known to be the most important factor in the waste form integrity, of glassy waste forms, long-term leaching tests such as MCC-4S (for HW glassy waste form) and ISO (for RW glassy waste form) methods were conducted at 70℃ for over 500 days. By observing the initial leach ratio of glass components, it was found that silicon and calcium uniformly leached out after the early leaching of sodium and boron. For sodium and boron, diffusion is a dominant leaching mechanism, while dissolution associated with diffusion affects the leaching of silicon and calcium. Like glass constituents, leaching characteristics of hazardous metals and surrogate nuclides are also dependent upon solubility.
机译:由两种不同的焚烧灰分别以不同的灰与基础玻璃的混合比制成几种玻璃状废物。实验中使用的焚烧灰是涂料厂的危险废物(HW)焚烧灰和核电站的模拟放射性废物(RW)焚烧灰。为了评估玻璃废料的化学耐久性(已知是废料形态完整性中最重要的因素),长期浸出测试,例如MCC-4S(用于HW玻璃废料)和ISO(用于RW玻璃废料)在70℃下进行500天以上。通过观察玻璃组分的初始浸出率,发现硅和钙在钠和硼的早期浸出后均匀地浸出。对于钠和硼,扩散是主要的浸出机理,而与扩散相关的溶解会影响硅和钙的浸出。像玻璃成分一样,有害金属和替代核素的浸出特性也取决于溶解度。

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