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Oxygen control technique in molten lead and lead-bismuth eutectic systems

机译:熔融铅和铅铋共晶系统中的氧气控制技术

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The key aspects of oxygen control technique used for steel corrosion mitigation in lead-alloy systems include the thermodynamic stability of protective oxides, oxygen concentration range, measurement and control methods, and oxide layer structures and transport properties. Practical conditions for oxygen control and the proper oxygen concentration ranges for typical nonisothermal liquid lead and lead-bismuth eutectic (LBE) systems are presented based on the available thermodynamic and solubility data. Theoretical expressions for the widely used oxygen sensor signals are obtained. The sensors are calibrated by comparing the experimental results from a nonisothermal LBE loop and the theoretical calculations. Analyses show that the fully turbulent flow leads to a nearly uniform oxygen concentration over the entire loop, and there is no significant delay of sensor response to a change of the operating condition. Under conditions of actively controlled oxygen in lead and LBE, the possible behaviors for oxidation, corrosion, and corrosion product precipitation are analyzed, providing the means to optimize corrosion control through oxide protection.
机译:用于减轻铅合金系统钢腐蚀的氧气控制技术的关键方面包括保护性氧化物的热力学稳定性,氧气浓度范围,测量和控制方法以及氧化物层的结构和传输性能。根据现有的热力学和溶解度数据,介绍了控制氧气的实际条件和典型的非等温液态铅和铅铋共晶(LBE)系统的合适氧浓度范围。获得了广泛使用的氧气传感器信号的理论表达式。通过比较非等温LBE回路的实验结果和理论计算,对传感器进行校准。分析表明,完全湍流导致整个回路中的氧气浓度接近均匀,并且传感器对操作条件变化的响应没有明显的延迟。在铅和LBE中的氧气受到主动控制的条件下,分析了可能发生的氧化,腐蚀和腐蚀产物沉淀行为,从而提供了通过氧化物保护来优化腐蚀控制的方法。

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