The inhibition performance of a mixture of an imidazoline quaternary ammonium salt (IM) and octylphenol polyoxyethene ether (OP) (IMO) toward carbon dioxide (CO2) corrosion of L245 steel in 3 wt% sodium chloride (NaCl) solution at 25°C was studied using electrochemical measurements. Notably, the inhibition efficiency of the IMO inhibitor stayed steadily in the long-term immersion test, and the inhibition efficiency increased with time. This was attributed to the improved electron-transfer performance between the inhibitor molecules and the metal surface. OP molecules promoted electrons to the metal, while IM molecules accepted electrons from the metal. The interactions between the inhibitor molecules and metal surface were enhanced, and the relative bonding intensities were improved. Moreover, the adsorption configurations of the mixture of IM and OP facilitated the improvement of the thickness and the compactness of the inhibitor layer. OP and IM showed a good synergistic inhibition effect.
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1 October 2021
Research Article|
February 23 2021
Synergistic effect of inhibitor mixture based on enhanced electron transfer
Peng Han;
Department of Materials Science and Engineering, China University of Mining and Technology (Beijing), Beijing, People’s Republic of China
(corresponding author: hanpeng972@163.com)
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Xiuzhi Wang;
Xiuzhi Wang
Department of Materials Science and Engineering, China University of Mining and Technology (Beijing), Beijing, People’s Republic of China
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Xing Yang;
Xing Yang
Department of Materials Science and Engineering, China University of Mining and Technology (Beijing), Beijing, People’s Republic of China
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Chenyang Xu;
Chenyang Xu
Department of Materials Science and Engineering, China University of Mining and Technology (Beijing), Beijing, People’s Republic of China
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Fei Du;
Fei Du
Department of Materials Science and Engineering, China University of Mining and Technology (Beijing), Beijing, People’s Republic of China
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Liqing Shi;
Liqing Shi
Department of Materials Science and Engineering, China University of Mining and Technology (Beijing), Beijing, People’s Republic of China
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Ruiping Liu;
Ruiping Liu
Department of Materials Science and Engineering, China University of Mining and Technology (Beijing), Beijing, People’s Republic of China
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Liying Song;
Liying Song
College of Safety and Environmental Engineering, Shandong University of Science and Technology, Qingdao, People’s Republic of China
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Junqing Zhang;
Junqing Zhang
Department of Mechanical Engineering, University of Alaska Fairbanks, Fairbanks, AK, USA
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Lei Zhang
Lei Zhang
Department of Mechanical Engineering, University of Alaska Fairbanks, Fairbanks, AK, USA
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(corresponding author: hanpeng972@163.com)
Publisher: Emerald Publishing
Received:
December 17 2020
Accepted:
February 08 2021
Online ISSN: 2050-6260
Print ISSN: 2050-6252
ICE Publishing: All rights reserved
2021
Surface Innovations (2021) 9 (5): 308–316.
Article history
Received:
December 17 2020
Accepted:
February 08 2021
Citation
Han P, Wang X, Yang X, Xu C, Du F, Shi L, Liu R, Song L, Zhang J, Zhang L (2021), "Synergistic effect of inhibitor mixture based on enhanced electron transfer". Surface Innovations, Vol. 9 No. 5 pp. 308–316, doi: https://doi.org/10.1680/jsuin.20.00095
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