首页> 外文期刊>Bulletin of the Korean Chemical Society >Chemical Equilibrium Modeling for Magnetite-Packed Crevice Chemistry in a Nuclear Steam Generator
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Chemical Equilibrium Modeling for Magnetite-Packed Crevice Chemistry in a Nuclear Steam Generator

机译:核蒸汽发生器中填充磁铁矿的缝隙化学反应的化学平衡建模

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摘要

Modeling of a steam generator crevice in a nuclear power system needs to take into account both thermal-hydraulic and chemical phenomena.As a first step towards developing a reliable model,a chemical equilibrium model was developed to predict chemical speciation in a magnetite-packed crevice by adopting the "tableau" method.The model was benchmarked with the available experimental data and the maximum deviation did not exceed two orders of magnitude.The developed model was applied to predict the chemical speciation in a magnetite-packed crevice.It was predicted that caustic environment was developed by the concentration of NaOH and the dissolution of magnetite.The model indicated that the dominant aqueous species of iron in the caustic crevice was FeO_2~-.The increase of electrochemical corrosion potential observed in the experiment was rationalized by the decrease of dissolved hydrogen concentration due to a boiling process.It was predicted that under the deaerated condition magnetite was oxidized to hematite.
机译:核动力系统中蒸汽发生器缝隙的建模需要考虑热工和化学现象。作为开发可靠模型的第一步,开发了化学平衡模型来预测磁铁矿填充缝隙中的化学形态。通过使用“ tableau”方法。该模型以可用的实验数据为基准,最大偏差不超过两个数量级。该开发的模型用于预测磁铁矿填充缝隙中的化学形态。通过NaOH的浓度和磁铁矿的溶解形成了苛性环境。该模型表明苛性缝隙中铁的主要含水种类为FeO_2〜-。由于沸腾过程中溶解的氢浓度。据预测在脱气条件下磁铁矿被氧化成赤铁矿。

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