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Zeta Potentials of Magnetite Particles and Alloy 690 Surfaces in Alkaline Solutions

机译:氧化铝颗粒和合金690表面的Zeta电位碱性溶液中的表面

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摘要

Magnetite particles deposited on the secondary side of a steam generator (SG) can degrade the integrity and performance of pressurized water reactors. Therefore, it is necessary to produce the data of fundamental interfacial electrokinetic properties of magnetite particles and SG tube materials. This study investigated the zeta potentials of magnetite nanoparticles and Alloy 690 surfaces, which were dependent on the pH value, pH agent, and the presence of NaCl. The zeta potentials of the magnetite nanoparticles increased in the negative direction as the pH increased, regardless of the pH agent. At the same pH value, the absolute values of the zeta potentials with different pH agents were: ethanolamine < ammonia < morpholine. In the presence of NaCl, the zeta potentials of the particles further increased negatively. The meaning of the measured zeta potentials was discussed in terms of the dispersion stability and the agglomeration of the particles. Based on the relationship between the zeta potentials of the particles and Alloy 690 surfaces, the magnetite deposition on Alloy 690 was also discussed. Furthermore, the empirical formulas for the pH-dependent zeta potentials of magnetite particles in each alkaline solution were suggested.
机译:沉积在蒸汽发生器(SG)的次级侧的磁铁矿颗粒可以降低加压水反应器的完整性和性能。因此,有必要生产磁铁矿颗粒和SG管材料的基本界面电动性能的数据。本研究研究了磁铁矿纳米颗粒和合金690表面的Zeta电位,其取决于pH值,pH试剂和NaCl的存在。无论pH代理如何,磁铁矿纳米粒子的氧化物纳米粒子的ζ电位在负方向上增加。在相同的pH值下,用不同pH试剂的Zeta电位的绝对值是:乙醇胺<氨和吗啉。在NaCl存在下,颗粒的ζ电位进一步增加负面。就分散稳定性和颗粒的附聚而讨论了测量的Zeta电位的含义。基于颗粒和合金690表面的Zeta电位之间的关系,还讨论了合金690上的磁铁矿沉积。此外,提出了每种碱性溶液中磁铁矿颗粒的pH依赖性Zeta电位的经验公式。

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