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HIGH TEMPERATURE SPECIATION OF THE NICKEL/IRON SYSTEM FOR USE WITH THE MULTEQ MODEL

机译:MULTEQ模型使用的镍/铁系统的高温规格

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High temperature solubility predictions for the nickel-iron system to calculate the precipitation of hematite, magnetite, nickel ferrites, nickel metal and nickel oxide are critical to the understanding of PWR system corrosion, corrosion product transport, and radiation field behavior. This complex system is difficult to model because of the low solubilities and possible non-stoichiometric nickel ferrite precipitates. This work reviewed the available data in the literature and derived a model for iron and nickel hydrolysis products, nickel and nickel oxide precipitates, iron oxide precipitates, and nickel ferrite precipitates. This model forms the basis of the latest revision to the EPRI MULTEQ Database, used in programs such as the EPRI MULTEQ High Temperature Chemistry Calculator. The results show an updated magnetiteickel-ferriteickel system, the features of which include: 1. The iron hydrolysis/magnetite/hematite system was re-derived from the best available data. 2. Fe(OH)_3~- and Ni(OH)_3~- do not appear as significant species in high temperature conditions. Nickel ferrite is predicted to be the more stable product at PWR operating conditions, with iron concentrations determined by the solubility of this precipitate. Since corrosion of PWR surfaces leads to the release of excess nickel, nickel concentrations are determined by Ni/NiO solubility.
机译:镍铁系统用于计算赤铁矿,磁铁矿,镍铁氧体,镍金属和氧化镍的高温溶解性预测对于理解PWR系统腐蚀,腐蚀产物迁移和辐射场行为至关重要。由于溶解度低和可能存在非化学计量的铁酸镍沉淀,因此很难对这种复杂的系统进行建模。这项工作回顾了文献中的可用数据,并得出了铁和镍水解产物,镍和氧化镍沉淀物,氧化铁沉淀物和镍铁氧体沉淀物的模型。该模型构成了EPRI MULTEQ数据库最新修订版的基础,该数据库在诸如EPRI MULTEQ高温化学计算器之类的程序中使用。结果显示了更新的磁铁矿/镍铁氧体/镍系统,其特征包括:1.从现有的最佳数据中重新推导了铁水解/磁铁矿/赤铁矿系统。 2. Fe(OH)_3〜-和Ni(OH)_3〜-在高温条件下不显示为重要的物种。据预测,在PWR操作条件下,铁素体镍是更稳定的产品,铁浓度由该沉淀物的溶解度决定。由于PWR表面的腐蚀会导致过量镍的释放,因此镍的浓度取决于Ni / NiO的溶解度。

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