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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Chemically durable iron phosphate glasses for vitrifying sodium bearing waste (SBW) using conventional and cold crucible induction melting (CCIM) techniques
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Chemically durable iron phosphate glasses for vitrifying sodium bearing waste (SBW) using conventional and cold crucible induction melting (CCIM) techniques

机译:化学耐用的磷酸铁玻璃,用于使用常规和冷坩埚感应熔化(CCIM)技术将含钠废物(SBW)玻璃化

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摘要

A simulated sodium bearing waste (SBW) was successfully vitrified in iron phosphate glasses (IPG) at a maximum waste loading of 40 wt% using conventional and cold crucible induction melting (CCIM) techniques. No sulfate segregation or crystalline phases were detectable in the IPG when examined by SEM and XRD. The IPG wasteforms containing 40 wt% SBW satisfy current DOE requirements for aqueous chemical durability as evaluated from their bulk dissolution rate (D-R), product consistency test; and vapor hydration test. The fluid IPG wasteforms can be melted at a relatively low temperature (1000 degreesC) and for short times (<6 h). These properties combined with a significantly higher waste loading, and the feasibility of CCIM melting offer considerable savings in time, energy, and cost for vitrifying the SBW stored at the Idaho National Engineering and Environmental Laboratory in iron phosphate glasses. (C) 2003 Elsevier B.V. All rights reserved. [References: 30]
机译:使用常规和冷坩埚感应熔炼(CCIM)技术成功地将模拟的含钠废物(SBW)在磷酸铁玻璃(IPG)中玻璃化,最大废物负荷为40 wt%。当通过SEM和XRD检查时,在IPG中没有检测到硫酸盐偏析或结晶相。含有40%(重量)SBW的IPG废料通过其整体溶解速率(D-R),产品稠度测试评估,可以满足目前的DOE对水性化学耐久性的要求。和蒸气水合测试。 IPG废液可以在较低的温度(1000摄氏度)下短时间(<6小时)熔化。这些特性与明显更高的废物装载量以及CCIM熔化的可行性相结合,为在爱达荷州国家工程和环境实验室中储存在磷酸铁玻璃中的SBW进行玻璃化节省了时间,能源和成本。 (C)2003 Elsevier B.V.保留所有权利。 [参考:30]

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