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Anti-Corrosion Behavior of Olmesartan for Soft-Cast Steel in 1 mol dm?3 HCl

机译:在1mol DM中的软铸钢中奥米沙坦的防腐行为3 HCl

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This study discusses the effects of temperature on corrosion inhibition for soft-cast steel by the pharmaceutically active drug olmesartan in 1 mol dm?3 HCl. The sufficient number of electron-rich elements and non-bonding π electrons in its structure favored a good capability for coating onto the electron-deficient steel surfaces. Theoretical and electrochemical measurements were carried out at the temperature region of 303 K to 333 K. Therefore, the experiment suggests that the inhibition efficiency of olmesartan increases with its increasing concentrations due to the adsorption. Additionally, even at a higher temperature of 333 K, the inhibitor molecules attain their stability towards corrosion resistance of steel surfaces. The adsorption of inhibitors on steel surfaces is spontaneously found to include the mixture of physisorption and chemisorption, and it obeys Temkin’s adsorption isotherm model. Theoretical and computational considerations were made using quantum chemical parameters and molecular dynamics simulations, which confirmed that the olmesartan has a suitable corrosion inhibitive capability intended for soft-cast steel in 1 mol dm?3 HCl. Additionally, scanning electron microscopic measurement was used to obtain a visual idea of the inhibitive action of the inhibitor attained by forming an adsorbed protective layer onto the steel surfaces. The minute concentration of olmesartan of about 10–50 ppm shows high inhibition efficiency of ~80%, even at elevated temperatures.
机译:本研究讨论了温度对软铸钢的腐蚀抑制在1molDMβ3HCl中的腐蚀抑制对软铸钢的影响。其结构中的富含电子的富含元件和非粘合π电子有利于涂覆到电子缺陷钢表面上的良好能力。在303k至333k的温度区域下进行理论和电化学测量。因此,实验表明Olmesartan的抑制效率随着吸附而增加的浓度增加。另外,即使在333 k的较高温度下,抑制剂分子也可以达到钢表面耐腐蚀性的稳定性。自发地发现钢表面上的抑制剂的吸附,包括物理吸附和化学吸附的混合物,IT obeys Temkin的吸附等温线模型。使用量子化学参数和分子动力学模拟进行了理论和计算考虑,证实奥尔莫沙坦具有适当的腐蚀抑制能力,用于1molDMβ3HCl中的软铸钢。另外,使用扫描电子显微镜测量来获得通过将吸附的保护层形成到钢表面上而获得的抑制剂的抑制作用的视觉思想。即使在升高的温度下,约10-50ppm的Olmesartan的微小浓度为约10-50ppm显示出高〜80%的高抑制效率。

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