Corrosion Inhibition Properties of Corrosion Inhibitors to under-Deposit Corrosion of X65 Steel in CO2 Corrosion Conditions

Author:

Lin Hai12,Chen Xiaorong12,Luo Zhongming3,Xu Jun12,Lu Ping12,Xie Tianyi4,Tang Jiayi5ORCID,Wang Hu5

Affiliation:

1. CCDC Drilling Engineering Technology Research Institute, Xi’an 710018, China

2. National Engineering Laboratory for Exploration and Development of Low-Permeability Oil & Gas Fields, Xi’an 710018, China

3. CCDC Geological Exploration & Development Research Institute, Chengdu 610051, China

4. Gas Transmission Management Department, Southwest Oil & GasField Company, Petrochina, Chengdu 610215, China

5. School of Materials Science and Engineering, Southwest Petroleum University, Chengdu 610600, China

Abstract

Under-deposit corrosion is widely present in the pipelines of oil and gas production, causing significant corrosion damage. In this paper, a novel electrochemical cathodic-polarization method was carried out to accelerate the formation of CaCO3 scale on a X65 steel surface in a simulated solution containing scaling ions. Subsequently, pre-scaled X65 steel was placed in a high temperature and pressure autoclave to conduct corrosion weight-loss experiments and in situ electrochemical measurements. The study mainly compared the corrosion inhibition behavior of four quaternary ammonium salt corrosion inhibitors, pyridinium quaternary salt (BPC), quinolinium quaternary salt (BQC), 8-hydroxyquinolinium quaternary salt (BHQ) and pyridinium (1-chloromethyl naphthalene) quaternary salt (1-CPN), in a simulated oilfield scale under corrosive conditions. The results of the weight-loss experiments demonstrated that the inhibition efficiencies of the corrosion inhibitors from high to low were as follows: 1-CPN < BHQ < BQC < BPC. The in situ electrochemical measurements showed that the immersion time and type of corrosion inhibitor had a pronounced influence on the corrosion and corrosion inhibition behavior of X65 steel with CaCO3 coating. It was also proved using both EIS and PC that 1-CPN shows the best inhibition performance in all. Lastly, the inhibition mechanism of corrosion inhibitors at under-deposit conditions was analyzed via a surface morphology observation of SEM.

Publisher

MDPI AG

Reference50 articles.

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3. Kung, S., Miller, N., Eiyaakobi, F., and Moloney, J. (2023, January 19–23). Mitigation of Elemental Sulfur and Iron Sulfide Under-Deposit Corrosion. Proceedings of the AMPP Annual Conference + Expo, Denver, CO, USA.

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