B. Basori, W. Mohamad, M. R. Mansor, N. Tamaldin, Agung Iswandi, M. K. Ajiriyanto, F. B. Susetyo
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引用次数: 0
摘要
提高氢氧化钾(KOH)浓度可以促进产氢,但KOH浓度越高,腐蚀速率越快。因此,有必要对不锈钢(SS 316L)在KOH溶液中的电化学行为进行深入研究。本文研究了KOH浓度对SS 316L的电化学行为、表面形貌、结构和样品相的影响。采用电化学、紫外-可见、扫描电镜-能谱(SEM-EDS)、x射线衍射(XRD)等技术对其进行了研究。随着KOH浓度的增加,腐蚀速率增加,耐溶性降低。在5、30和50 g l-1 KOH中测试的样品显示,腐蚀速率分别为0.457、2.362和5.613µm。当KOH浓度为5 g l-1时,钝化区宽,点蚀电位高。此外,Mott-Schottky图和UV-Vis特征波长表明样品钝化形成了铁和铬的氧化物。扫描电镜分析表明,在晶界区域出现晶间腐蚀,表面形貌从最低浓度到最高浓度呈动态变化。总之,可以推荐浓度< 50 g L -1 KOH,因为它们可以支持HHO发生器中SS 316l板的最佳剩余寿命。
Effect of KOH concentration on corrosion behavior and surface morphology of stainless steel 316L for HHO generator application
Hydrogen production could be enhanced by increasing the potassium hydroxide (KOH) concentration, but higher KOH concentrations result in higher corrosion rates. Therefore, a deep investigation of the electrochemical behavior of stainless steel (SS 316L) in the KOH solution is needed. This study investigates the influence of KOH concentrations on the electrochemical behavior, surface morphology, structure, and sample phases of SS 316L. The investigations were conducted by some electrochemical techniques, UV-vis, scanning electron microscopy-energy dispersive spectroscopy (SEM-EDS), and X-ray diffraction (XRD). The corrosion rate was found to increase, and solution resistance to decrease with increasing KOH concentration. Samples tested in 5, 30, and 50 g l-1 of KOH showed corrosion rates of 0.457, 2.362, and 5.613 µm year-1, respectively. A wide passive region and the noblest pitting potential were noticed for the sample with 5 g l-1 of KOH. Moreover, Mott-Schottky plots and characteristic wavelengths of UV-Vis suggest the formation of iron and chromium oxides by the passivation of samples. The SEM analysis showed a dynamic change of surface morphology from the lowest to the highest concentration with the intergranular corrosion found at the grain boundaries area. In conclusion, concentrations < 50 g l-1 KOH could be recommended since they would support the optimum remaining life of SS 316 L plates in HHO generators.