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PHYSICAL CHEMISTRY AND TECHNOLOGY OF ALKALINE LIQUID-METAL COOLANT:A RETROSPECTIVE-PERSPECTIVE LOOK

机译:碱性液体金属冷却剂的物理化学与技术:回顾性透视外观

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摘要

The results of studies on the physical chemistry, mass transfer, and technology of alkali liquid-metal coolant are reported. The state of the coolant is determined by the interaction coolant-impurities-structural materials- protective gas. The impurity sources and their intensity were determined: sodium and sodium-potassium alloy - oxygen, hydrogen (tritium), carbon, products of corrosion of structural materials, nitrogen, and the protective gas, lithium- nitrogen. The following data were obtained on the impurities in the coolant: form, equilibrium concentration, solubility, reaction kinetics, and mechanisms of heterogeneous and homogeneous mass transfer. It was shown that the required concentration of the impurities in sodium and the sodium-potassium alloy guaranteeing the design-basis parameters and a low rate of corrosion of the structural materials is achieved on purification by means of cold traps. Deeper purification of coolants in high temperature NPF intended for use in space is achieved by means of getters (hot traps). The behavior of tritium and hydrogen in the sodium loops in NPP with fast reactors was studied. A new combined system is proposed for purification from impurities in high-temperature NPF for hydrogen production at sodium temperature similar to 900 degrees C.
机译:报道了对物理化学,传质和碱金属冷却剂的物理化学,传质和技术的研究结果。冷却剂的状态由相互作用冷却剂 - 杂质结构材料 - 保护气体决定。杂质来源及其强度确定:钠钠和钠 - 钾合金 - 氧,氢气(氚),碳,结构材料腐蚀的腐蚀产品,氮气和保护气体,锂氮。在冷却剂中的杂质中获得以下数据:形式,平衡浓度,溶解度,反应动力学和非均相和均质传质的机制。结果表明,通过冷阱纯化,实现了保证设计基础参数的钠和保证结构材料的低腐蚀速率的所需浓度和钠钾合金。通过吸气剂(热疏水阀)实现了用于空间的高温NPF中的冷却剂的更深纯化。研究了NPP中钠环中氚和氢气的行为。提出了一种新的组合系统,用于从高温NPF中的杂质纯化钠温度,在钠温度类似于900℃。

著录项

  • 来源
    《Atomic Energy》 |2020年第4期|204-210|共7页
  • 作者单位

    Leipunskii Inst Phys & Power Engn IPPE State Sci Ctr Russian Federat Obninsk Russia;

    Leipunskii Inst Phys & Power Engn IPPE State Sci Ctr Russian Federat Obninsk Russia;

    Leipunskii Inst Phys & Power Engn IPPE State Sci Ctr Russian Federat Obninsk Russia;

  • 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 eng
  • 中图分类
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  • 入库时间 2022-08-18 22:55:20

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