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Chloride-free thermal batteries using molten nitrate electrolytes

机译:使用熔融硝酸盐电解质的无氯热电池

摘要

Thermal batteries using molten nitrate electrolytes offer significantly higher cell voltages and marked improvements in energy and power densities over present thermal batteries. However, a major problem is gas-evolution reactions involving the molten nitrate electrolytes. This gassing problem has blocked the advantages offered by thermal batteries using molten nitrates. The solution to this gassing problem is to eliminate the chloride ion contaminates. The most important step in reducing chloride contamination is the avoidance of potassium perchlorate (KClO4) or any other chlorine-containing substances that can decompose to produce chloride ions in any thermal battery component. The Fe+KClO4 pyrotechnic used to activate thermal batteries is a key example. The decomposition of such substances into chloride ions (Cl—) results in passivating-film breakdown and gas-producing reactions with the molten nitrate electrolyte. These reactions largely involve the lithium-component of the anode used in thermal batteries such as Li—Fe (LAN), Li—Si, and Li—Al. The introduction of chloride ions into the nitrate melt via the pyrotechnic materials produces a rapid breakdown of the protective oxide film on lithium-based anodes and leads to gas-producing reactions.
机译:与目前的热电池相比,使用熔融硝酸盐电解质的热电池可提供更高的电池电压,并显着改善能量和功率密度。但是,主要问题是涉及熔融硝酸盐电解质的气体逸出反应。该放气问题阻碍了使用熔融硝酸盐的热电池所提供的优势。解决该放气问题的方法是消除氯离子污染。减少氯离子污染最重要的步骤是避免高氯酸钾(KClO 4 )或任何其他可分解为热电池组件产生氯离子的含氯物质。用于激活热电池的Fe + KClO 4 烟火技术就是一个很好的例子。此类物质分解为氯离子(Cl-)会导致钝化膜击穿并与熔融硝酸盐电解质发生气体反应。这些反应主要涉及用于热电池的阳极的锂成分,例如Li-Fe(LAN),Li-Si和Li-Al。经由烟火材料将氯离子引入硝酸盐熔体会导致锂基阳极上的保护性氧化膜迅速击穿,并导致产生气体的反应。

著录项

  • 公开/公告号US7629075B2

    专利类型

  • 公开/公告日2009-12-08

    原文格式PDF

  • 申请/专利权人 MELVIN H. MILES;

    申请/专利号US20070893125

  • 发明设计人 MELVIN H. MILES;

    申请日2007-08-14

  • 分类号H01M6/36;

  • 国家 US

  • 入库时间 2022-08-21 18:47:41

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