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Alternative reagent to mercuric nitrate catalyst for dissolution of aluminum-clad nuclear fuels in nitric acid

机译:硝酸汞催化剂的替代试剂,用于溶解铝包核燃料在硝酸中

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摘要

A substitute additive, HBF4, has been discovered that will replace Hg(NO3)(2) catalyst for dissolving aluminium spent nuclear fuels in nitric acid for recovery of usable materials. The catalyst or substitute is necessary to penetrate a protective oxide film that continuously forms on the,Al surface in the oxidizing acid, A penetration rate of alloy Al-6061 T6 of 40 mg/cm(2)-h can be achieved in a continuous dissolution process at 100 degrees C using a dissolvent of 0.15 M HBF4 in 7 M HNO3 that achieves a steady-state composition of 1.0 M Al3+ and 3.3 M HNO3, while maintaining a corrosion rate of a type 304L stainless steel dissolver vessel of 0.015 mm/mo, The penetration rate of aluminum is correlated with the equilibrium concentration of MF in the system. The postulated mechanism involves dissolution of the alumina film by approximately 0.006 M HF in equilibrium with the HBF4 and completed aluminum fluoride species in nitric acid, which provide a large semi-buffered supply of HF. This allows. the HNO; to attack the aluminum metal. The small concentration of HF does not compete favorably with HNO3; for reaction with and consumption by Al. References: 14
机译:已经发现了一种替代添加剂HBF4,它将取代Hg(NO3)(2)催化剂,用于将铝乏核燃料溶解在硝酸中,以回收可用材料。催化剂或替代物是穿透在氧化酸中Al表面连续形成的保护性氧化膜所必需的,合金Al-6061 T6的渗透率为40 mg/cm(2)-h,在100°C的连续溶解过程中,使用0.15 M HBF4的溶解剂在7 M HNO3中实现1.0 M Al3+和3.3 M HNO3的稳态组成, 在保持304L型不锈钢溶解器容器0.015mm/mo的腐蚀速率的同时,铝的渗透速率与系统中MF的平衡浓度相关。假设的机理涉及氧化铝膜溶解约0.006 M HF,与硝酸中的HBF4和完全氟化铝物质平衡,从而提供大量的半缓冲HF供应。HNO;攻击铝金属。低浓度的HF不能与HNO3竞争;[参考文献:14]

著录项

  • 来源
    《Journal of Materials Research》 |1998年第1期|68-76|共9页
  • 作者

    Anderson PA.; Christian JD.;

  • 作者单位

    Lockheed Martin Idaho Technol Co, Idaho Natl Engn & Environm Lab, Idaho Falls, ID 83415, USA, .;

    artners.org;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 工程材料学;
  • 关键词

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