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Immobilization of Hanford LAW in iron phosphate glasses

机译:Hanford LAW在磷酸铁玻璃中的固定化

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Iron phosphate glasses containing 30 w% of a high sodium and sulfur Hanford low-activity waste (LAW) simulant was successfully melted in electric furnaces at 1000-1050 degreesC for 2-3 h. No sulfate salt segregation or crystalline phases were detectable in the glassy wasteform when examined by scanning electron microscope and X-ray diffiractometer. This suggests that the waste loading in the iron phosphate glasses will not be limited by the SO3 content of the LAW as is currently the case in borosilicate glasses. At 30 wt% LAW, the iron phosphate glass wasteform satisfies DOE's product consistency test and vapor hydration test requirements for aqueous chemical durability, but the chemical durability depends upon the overall composition. The high fluidity and electrical conductivity of the iron phosphate melts suggest that iron phosphate wasteforms can be melted in a hot or cold crucible induction melter as an alternative to melting in a joule-heated melter. These properties combined with a significantly higher waste loading offer a considerable savings in time, energy and cost for vitrifying the Hanford LAW in iron phosphate glasses. (C) 2003 Elsevier B.V. All rights reserved. [References: 25]
机译:含有30 w%的高钠和硫的汉福德低活性废物(LAW)模拟物的磷酸铁玻璃已成功地在1000-1050摄氏度的电炉中熔化2-3小时。用扫描电子显微镜和X射线衍射仪检查时,在玻璃状废料中未检测到硫酸盐偏析或结晶相。这表明磷酸铁玻璃中的废物负荷将不受法律(如目前的硼硅酸盐玻璃)中SO3含量的限制。磷酸铁玻璃废料的含量为LAW的30 wt%时,满足了DOE的产品一致性测试和蒸汽水合测试对水性化学耐久性的要求,但化学耐久性取决于整体成分。磷酸铁熔体的高流动性和导电性表明,磷酸铁废料可在热或冷坩埚感应熔炉中熔化,以替代在焦耳加热的熔炉中熔化。这些性能与明显更高的废物量相结合,可为玻璃化磷酸铁玻璃中的汉福德定律玻璃化带来大量的时间,能源和成本节省。 (C)2003 Elsevier B.V.保留所有权利。 [参考:25]

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