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Experimental and theoretical study of corrosion inhibition performance of N-phenylthiourea for mild steel in hydrochloric acid and sodium chloride solution

机译:盐酸中低碳氢氧化氮腐蚀抑制性能的实验与理论研究及氯化钠溶液

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摘要

The corrosion inhibition performance of N-phenylthiourea for mild steel in solutions of 1.0M hydrochloric and 3.5% wt. sodium chloride was investigated using tandem potentiodynamic polarization curves, scanning electron microscope analysis and quantum chemical calculations. The inhibition efficiency values of N-phenylthiourea in acidic solution and in salt solution were 94.95% and 55.70%, respectively. The results show that the corrosion inhibitor ability of N-phenylthiourea was better than that of urotropine under the same conditions. The adsorption of N-phenylthiourea on the mild steel electrode surface obeys the Langmuir adsorption isotherm in acidic solution and modified Langmuir adsorption isotherm in salt solution. The results of quantum chemical calculations and molecular dynamics simulations were found to be in accord with experimental data.
机译:盐酸溶液中N-苯硫脲对温和钢的腐蚀抑制性能和3.5%wt。 使用串联电位偏振曲线,扫描电子显微镜分析和量子化学计算来研究氯化钠。 酸性溶液中N-苯基硫脲的抑制效率分别为94.95%和55.70%。 结果表明,在相同条件下,N-苯硫脲的腐蚀抑制剂能力优于尿红素的腐蚀能力。 N-苯硫脲对温和钢电极表面的吸附在酸性溶液中的Langmuir吸附等温线和改性Langmuir吸附等温线在盐溶液中。 发现量子化学计算和分子动力学模拟的结果符合实验数据。

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