Probe into Water Chemistry Effects on Internal Corrosion Risk for Sour Gas Pipelines

Author:

Albrahim Ibrahim1,Al-Abbas Faisal2,Costa Ricardo Sanches2,Debruyn Hendrik2,Al-Saif Omar2

Affiliation:

1. Saudi Aramco, Saudi Arabian Oil Company, Dhahran 31311, Saudi Arabia (corresponding author).

2. Saudi Aramco, Saudi Arabian Oil Company, Dhahran 31311, Saudi Arabia.

Publisher

American Society of Civil Engineers (ASCE)

Reference30 articles.

1. Al-Abbas, F. M., Q. Salem, and A. Harb. 2019. Top of line corrosion probabilistic risk analysis for wet sour subsea pipeline. Houston: NACE International.

2. Chen, L., N. Obeyesekere, J. Wylde, and M. Sim. 2022. Dual functional corrosion inhibitor design and testing for top-of-line and bottom-of-line corrosions. Houston: Association for Materials Protection and Performance.

3. Dayalan, E., F. D. de Moraes, J. R. Shadley, S. A. Shirazi, and E. F. Rybicki. 1998. CO2 corrosion prediction in pipe flow under FeCO3, scale-forming conditions. Houston: NACE International.

4. The early stages of FeCO3 scale formation kinetics in CO2 corrosion

5. Durnie W. and D. Harrop. 2006. “Our water chemistry contains organic acids-so what does it mean?” In Proc. SPE Int. Oilfield Corrosion Conf. and Exhibition. Richardson TX: Society of Petroleum Engineers.

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