Economical Way to Protect Mild Steel in Acidic Medium: Combined Experimental and Theoretical Studies

被引:0
作者
Al-Zaqri, Nabil [1 ]
Karami, Abdulnasser [1 ]
Ichou, Hamza [2 ,3 ]
Arrousse, Nadia [4 ]
Warad, Ismail [5 ]
机构
[1] King Saud Univ, Coll Sci, Dept Chem, POB 2455, Riyadh 11451, Saudi Arabia
[2] CNRS, Ctr Mat Elaborat & Struct Studies, French Natl Ctr Sci Res CEMES, Nanosci Grp, F-31055 Toulouse, France
[3] Paul Sabatier Univ Toulouse 3, F-31062 Toulouse, France
[4] Univ Sidi Mohamed Ben Abdellah, Fac Sci, Lab Engn Organomet Mol & Environm, Fes 1796, Morocco
[5] An Najah Natl Univ, Dept Chem, POB 7, Nablus, Palestine
关键词
ethanol; mild steel; polarization; electrochemical impedance spectroscopy; adsorption isotherm; density functional theory; Monte Carlo simulation; scanning electron microscopy with energy dispersive X-ray analysis; CORROSION INHIBITION PROPERTIES; QUANTUM-CHEMICAL CALCULATIONS; CARBON-STEEL; DERIVATIVES; DFT; ADSORPTION; COPPER; PERFORMANCE; SIMULATION; XANTHENE;
D O I
10.3103/S1068375523030146
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Organic molecules are often considered to be the best way to protect a material from corrosion, but the synthesis process is very expensive. In the present work, the ethanol solvent was investigated as efficient inhibitor of the mild steel corrosion in a molar hydrochloric acid solution via several methods including polarization and, electrochemical impedance spectroscopy to evaluate the concentration effect of the studied compound. The result shows that ethanol as inhibitor protects mild steel against corrosion in an acidic solution with the inhibition efficiency of 84% at 10(-3) M concentration obtained by EIS method. The polarization curves data show the studied inhibitor to be of the mixt type. Also, a good correlation between the impedance and the Tafel curves data were observed. Various adsorption isotherm models were tested to elucidate the adsorption mechanism of ethanol. In addition, the scanning electron microscopy with energy dispersive X-ray analysis was applied to confirm the adsorption of ethanol onto the surface of mild steel and its anti-corrosion effect by a formed protective layer. Also, this result was supported by theoretical studies such as the Monte Carlo simulations and the density functional theory.
引用
收藏
页码:368 / 377
页数:10
相关论文
共 48 条
[41]  
Saranya J., 2020, CHEM DATA COLLECT, V26
[42]   Corrosion inhibition efficiency of some phosphoramide derivatives: DFT computations and MD simulations [J].
Shariatinia, Zahra ;
Ahmadi-Ashtiani, Amir .
JOURNAL OF MOLECULAR LIQUIDS, 2019, 292
[43]   Amino acid based imidazolium zwitterions as novel and green corrosion inhibitors for mild steel: Experimental, DFT and MD studies [J].
Srivastava, V. ;
Haque, Jiyaul ;
Verma, C. ;
Singh, P. ;
Lgaz, H. ;
Salghi, R. ;
Quraishi, M. A. .
JOURNAL OF MOLECULAR LIQUIDS, 2017, 244 :340-352
[44]   The effects of ion adsorption on the potential of zero charge and the differential capacitance of charged aqueous interfaces [J].
Uematsu, Yuki ;
Netz, Roland R. ;
Bonthuis, Douwe Jan .
JOURNAL OF PHYSICS-CONDENSED MATTER, 2018, 30 (06)
[45]   5-Substituted 1H-tetrazoles as effective corrosion inhibitors for mild steel in 1 M hydrochloric acid [J].
Verma, Chandrabhan ;
Quraishi, M. A. ;
Singh, A. .
JOURNAL OF TAIBAH UNIVERSITY FOR SCIENCE, 2016, 10 (05) :718-733
[46]   Experimental and theoretical investigation on adsorption and corrosion inhibition properties of imidazopyridine derivatives on mild steel in hydrochloric acid solution [J].
Yadav, Mahendra ;
Behera, Debasis ;
Kumar, Sushil .
SURFACE AND INTERFACE ANALYSIS, 2014, 46 (09) :640-652
[47]   The inhibition performance of long-chain alkyl-substituted benzimidazole derivatives for corrosion of mild steel in HCl [J].
Zhang, Dongqin ;
Tang, Yongming ;
Qi, Sijun ;
Dong, Dawei ;
Cang, Hui ;
Lu, Gang .
CORROSION SCIENCE, 2016, 102 :517-522
[48]   Performance and theoretical study on corrosion inhibition of 2-(4-pyridyl)-benzimidazole for mild steel in hydrochloric acid [J].
Zhang, Fan ;
Tang, Yongming ;
Cao, Ziyi ;
Jing, Wenheng ;
Wu, Zhenglei ;
Chen, Yizhong .
CORROSION SCIENCE, 2012, 61 :1-9