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Study of the effect of magnesium concentration on the deposit of allotropic forms of calcium carbonate and related carbon steel interface behavior

机译:镁浓度对同素异形形式碳酸钙沉积及相关碳钢界面行为的影响研究

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Different allotropic forms of calcium carbonate scales were electrochemically deposited on a carbon steel surface in artificial underground Tunisian water at -0.95 V_(SCE) and various Mg~(2+) concentrations. Because of the importance of the diffusion process, the rotating disk electrode was used. The deposition kinetics were analyzed by chronoamperometry measurements and the calcareous layers were characterized by electrochemical impedance spectroscopy (EIS) and scanning electron microscopy (SEM). The physical model proposed by Gabrielli was used to analyze the EIS measurements. Independent of the deposited allotropic form of calcium carbonate, the measurements showed that the oxygen reduction occurs in the pores formed between the CaCO_3 crystals and the metallic surface.
机译:在-0.95 V_(SCE)和各种Mg〜(2+)浓度下,不同的同素异形形式的碳酸钙鳞片被电化学沉积在人工地下突尼斯水中的碳钢表面上。由于扩散过程的重要性,所以使用了旋转盘电极。通过计时电流分析法分析沉积动力学,并通过电化学阻抗谱(EIS)和扫描电子显微镜(SEM)表征钙质层。 Gabrielli提出的物理模型用于分析EIS测量。与碳酸钙的沉积的同素异形形式无关,测量结果表明,氧还原发生在CaCO_3晶体与金属表面之间形成的孔中。

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