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Oxidation characteristics of lead-alloy coolants in air ingress accident

机译:空气进入事故中铅合金冷却剂的氧化特性

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The chemical behaviors of lead (Pb) based coolants in the air ingress accident of fast reactors were investigated by means of the thermodynamic considerations and the static oxidation experiments for Pb alloys at various chemical compositions. The results of the static oxidation tests for lead-bismuth (Pb-Bi) alloys indicated that Pb was depleted from the alloy due to the preferential formation of PbO in air at 773K. Bi was not involved in this oxidation procedure. Pb-Bi oxide and Bi2O3 were formed after the enrichment of Bi in the alloys due to the Pb depletion. The thickness of the oxide layer formed on liquid LBE at static condition was approximately 1mm. The oxidation rates of the alloys were much larger than that of the steels, and became larger with higher Pb concentration in the alloys. The compatibility of Pb-Bi alloys with stainless steel was worse when the Pb concentration in the alloys became low, since the dissolution type corrosion was promoted by the Bi composition in the alloy. The Pb-Li alloys were oxidized as they formed Li2PbO3 and Li2CO3. Then, Li was depleted from the alloy. These oxides of the coolant can be generated in the low temperature region of the reactor system after the increase of oxygen concentration in the coolant system in the air ingress accident.
机译:通过热力学考虑和在各种化学组合物的PB合金中的PB合金的静态氧化实验研究了在快速反应器的空气进入事故中的铅(Pb)冷却剂的化学行为。铅 - 铋(PB-BI)合金的静氧化试验结果表明,由于在773K处的空气中优先形成PBO,Pb从合金中耗尽。 BI没有参与该氧化过程。在合金中富集Bi之后形成Pb-Bi氧化物和BI2O3由于PB耗尽而形成。在静态条件下在液体LBE上形成的氧化物层的厚度约为1mm。合金的氧化速率远大于钢的氧化率,并且在合金中具有较高的Pb浓度更大。当合金中的PB浓度变低时,Pb-Bi合金具有不锈钢的相容性差,因为合金中的BI组合物促进了溶解型腐蚀。在形成Li 2PBO 3和Li 2 CO 3时,Pb-Li合金被氧化。然后,李从合金中耗尽。在空气进入事故中的冷却剂系统中的氧浓度增加之后,可以在反应器系统的低温区域中产生冷却剂的这些氧化物。

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