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P-ISSN: 2971-785X
E-ISSN: 3141-4095

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Volume 1, Issue 2

Research Article

Corrosion Control in Pipelines from Carbon-II-Oxide Enhanced Oil Recovery (Co2 – EOR)

Published: July 22, 2024 | Volume: 1 | Issue: 2

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View Count: 22 Page No: 68-76

Corrosion Control in Pipelines from Carbon-II-Oxide Enhanced Oil Recovery (Co2 – EOR)

Precious-Chibuzo Effiom1 corresponding author email *, Samuel O. Effiom2 , John E. Evareh3 , Patrick O. Odu4

Published: July 22, 2024 | Issue: Volume 1, Issue 2

Page No. 68–76

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Corresponding Author: Precious-Chibuzo Effiom

Email: preciouschibuzoc@unical.edu.ng

1 Department of Petroleum Engineering, University of Calabar, P. M. B. 1115, Calabar, Nigeria.

2 Applied Energy and Propulsion Engineering Research Group (AEPERG), Department of Mechanical Engineering, Cross River University of Technology, P. M. B. 1123, Calabar, Nigeria.

3 Department of Electrical/Electronic Engineering, University of Calabar, P. M. B. 1115, Calabar, Nigeria.

4 Applied Energy and Propulsion Engineering Research Group (AEPERG), Department of Mechanical Engineering, Cross River University of Technology, P. M. B. 1123, Calabar, Nigeria.

Received: June 17, 2024 Reviewed: July 14, 2024 Accepted: July 22, 2024

Abstract

CO2-enhanced oil recovery (EOR) from captured carbon, has been a research hotspot stemming to provide an economical and effective method for the reduction of carbon emissions in our atmosphere. However, corrosion is a challenging issue in the whole chain process of CO2-EOR production utilizing a mild steel pipeline with water running through it. In this research, the corrosion risk of pipeline at different stages of CO 2-EOR production is thoroughly assessed based on a detailed analysis of the activities going on in the pipeline as well as the characteristics of the fluid in motion. According to the fluid state of CO2, water and crude oil, current understandings on the corrosion behavior of steel materials in multiphase flow conditions are reviewed. Furthermore, the intermittent water wetting phenomena and the fluid behaviour of water droplets or clusters in an electrolyte/non-electrolyte emulsion are correlated with the steel corrosion performance, providing new insights into the corrosion phenomena. Besides application of corrosion resistant materials and corrosion inhibitors, tailoring of processing parameters, such as enhancing the water entrainment, shortening the water contact time, and reducing the solution corrosively, is highly recommended as an effective method for corrosion controlling high CO2-EOR production conditions.

Keywords: CO2-EOR, Corrosion, Captured carbon.

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APA
Precious-Chibuzo Effiom et al. (2024). Corrosion Control in Pipelines from Carbon-II-Oxide Enhanced Oil Recovery (Co2 – EOR). Nigerian Journal of Engineering Research, 1(2), 68-76. https://izlik.org/JA28WS58XL
AMA
Precious-Chibuzo Effiom et al. Corrosion Control in Pipelines from Carbon-II-Oxide Enhanced Oil Recovery (Co2 – EOR). Nigerian Journal of Engineering Research. 2024;1(2):68-76. https://izlik.org/JA28WS58XL
Chicago
Precious-Chibuzo Effiom et al. 2024. \"Corrosion Control in Pipelines from Carbon-II-Oxide Enhanced Oil Recovery (Co2 – EOR)\". Nigerian Journal of Engineering Research 1 (2): 68-76. https://izlik.org/JA28WS58XL.
IEEE
[1] Precious-Chibuzo Effiom et al., \"Corrosion Control in Pipelines from Carbon-II-Oxide Enhanced Oil Recovery (Co2 – EOR)\", Nigerian Journal of Engineering Research, vol. 1, no. 2, pp. 68-76, Jul 2024. [Online]. Available: https://izlik.org/JA28WS58XL
MLA
Precious-Chibuzo Effiom et al. \"Corrosion Control in Pipelines from Carbon-II-Oxide Enhanced Oil Recovery (Co2 – EOR)\". Nigerian Journal of Engineering Research, vol. 1, no. 2, Jul 2024, pp. 68-76, https://izlik.org/JA28WS58XL.
Vancouver
1. Precious-Chibuzo Effiom et al. Corrosion Control in Pipelines from Carbon-II-Oxide Enhanced Oil Recovery (Co2 – EOR). Nigerian Journal of Engineering Research [Internet]. 2024 Jul. 22;1(2):68-76. Available from: https://izlik.org/JA28WS58XL

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