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Combined impedance and volumetric investigation of inhibition effect of an ecological inhibitor for carbon steel in HCI solution

机译:阻抗和体积研究结合生态抑制剂对HCI溶液中碳钢的抑制作用

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Acidic pickling of carbon steel has been one of the major technological processes aiming at steel surface preparation prior further treatment. For that purpose two basic acids: sulphuric and hydrochloric acids are commonly employed. In order to limit weight loss of the steel, various additives such as synthetic organic compounds are used. Benzylaminopurine, azoles, Schiff base, pyridine derivatives, pyrazole derivatives, benzimidazole derivatives all play an effective role as corrosion inhibitors in acidic environment. But they all have some level of toxicity. In recent years a new trend of replacing toxic inhibitors with natural, environment friendly compounds has been noticeable. This work involved impedance and volumetric methods in order to study an effect of natural extract on corrosion protection of carbon steel. Such an approach enables direct correlation of charge transfer resistance parameter with real corrosion rate. Moreover employing Dynamic Impedance Spectroscopy (DEIS) technique allows tracking changes while the samples are immersed in acidic solutions.
机译:碳钢的酸洗一直是旨在进行进一步处理之前对钢表面进行预处理的主要技术工艺之一。为此,通常使用两种碱性酸:硫酸和盐酸。为了限制钢的重量损失,使用了各种添加剂,例如合成有机化合物。苄基氨基嘌呤,唑类,席夫碱,吡啶衍生物,吡唑衍生物,苯并咪唑衍生物均在酸性环境中起缓蚀剂的作用。但是它们都有一定程度的毒性。近年来,以天然,环境友好的化合物替代有毒抑制剂的新趋势已引起关注。这项工作涉及阻抗和体积法,以研究天然提取物对碳钢腐蚀防护的作用。这种方法使得电荷转移阻力参数与实际腐蚀速率直接相关。此外,采用动态阻抗谱(DEIS)技术可在将样品浸入酸性溶液中时跟踪变化。

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