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Role of aluminum and silicon species in the formation of hard sludge on the secondary side of PWR steam generators: Potential geopolymers contribution

机译:铝和硅物质在压水堆蒸汽发生器次级侧形成硬泥中的作用:潜在的地聚合物

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Despite the exhaustive chemical control, modern pressurized water reactors (PWRs) steam generators (SGs) have experienced damage associated with the formation of hard sludge on top of tubesheet. This phenomenon is detrimental because it is linked to tube degradation problems on the secondary side of SGs by corrosion processes, such as outer diameter stress corrosion cracking (ODSCC) enhanced by tube deformation or denting at the top of tubesheet. There is evidence of the contribution of aluminum and silicon species to the binding and adhesion of iron oxides particles in the formation and consolidation of hard sludge during normal operation. In fact, characterization of SG deposit samples mainly constituted by hard sludge determines high concentrations of these species (up to 6.0 +/- 0.1 wt% of Al and 2.7 +/- 0.1 wt% of Si), together with high microhardness values (above 800 HV) measured at particular locations within collars or hard sludge particles.Taking into account the physicochemical conditions (low temperature and high pH) in the gap between tube and tubesheet of SGs due to the thermal contraction of both materials during transient conditions (cooldown), this work proposes and discusses the possible formation of geopolymers (inorganic aluminosilicate polymers with cement-like mechanical properties formed at low temperatures and high alkaline conditions) during this period. In order to support this proposal, the role played by Si and Al compounds in the formation and consolidation of hard sludge is reviewed, considering information obtained from hard sludge characterization and from experimental studies reported in the literature.
机译:尽管进行了详尽的化学控制,但现代压水堆(PWR)蒸汽发生器(SGs)仍遭受了与在管板顶部形成硬污泥相关的损害。该现象是有害的,因为它与通过腐蚀过程在SGs二次侧的管子退化问题有关,例如因管子变形或在管板顶部凹陷而导致的外径应力腐蚀开裂(ODSCC)。有证据表明,在正常运行期间,铝和硅物质对硬质污泥形成和固结中铁氧化物颗粒的结合和粘附有贡献。实际上,主要由硬质污泥组成的SG沉积物样品的表征决定了这些物种的高浓度(高达6.0 +/- 0.1 wt%的Al和2.7 +/- 0.1 wt%的Si)以及高的显微硬度值(高于在领口或硬污泥颗粒内的特定位置测量800 HV。考虑到SGs管和管板之间间隙中的物理化学条件(低温和高pH),这是由于两种材料在瞬态条件下(冷却)的热收缩引起的,这项工作提出并讨论了在此期间可能形成的地聚合物(在低温和高碱性条件下形成的具有水泥样机械性能的无机铝硅酸盐聚合物)。为了支持该提议,考虑了从硬渣表征和文献报道的实验研究中获得的信息,对硅和铝化合物在硬渣形成和固结中的作用进行了综述。

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