Pierre Ronald Nguele Odou

Assistant Professor

  • 744 Motooka, Nishi-ku, Department of Earth Resources Engineering

    819-0395 Fukuoka

    Japan

  • 57 Citations
  • 6 h-Index
20142019
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Fingerprint Dive into the research topics where Pierre Ronald Nguele Odou is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 2 Similar Profiles
Crude oil Engineering & Materials Science
Recovery Engineering & Materials Science
Oils Chemical Compounds
enhanced oil recovery Earth & Environmental Sciences
Microemulsions Engineering & Materials Science
Petroleum Chemical Compounds
oil Earth & Environmental Sciences
Surface tension Engineering & Materials Science

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Research Output 2014 2019

  • 57 Citations
  • 6 h-Index
  • 15 Article
  • 3 Paper
  • 1 Conference contribution

Characterization of natural surface CO2 flux: Implication for leakage detection monitoring at CO2 geological sites

Salmawati, Sasaki, K., Sugai, Y. & Nguele, R., Apr 2019, 14th Greenhouse Gas Control Technologies Conference (GHGT-14). Elsevier, p. 1-6 6 p. 3366136

Research output: Chapter in Book/Report/Conference proceedingConference contribution

leakage
monitoring
atmosphere
carbon
respiration

Effects of reversibility on enhanced oil recovery using Sodium Dodecylbenzene Sulfonate (SDBS)

Ngo, I., Srisuriyachai, F., Sasaki, K., Sugai, Y. & Nguele, R., Jul 7 2019, In : Journal of the Japan Petroleum Institute. 62, 4, p. 188-198 11 p.

Research output: Contribution to journalArticle

Open Access
enhanced oil recovery
sulfonate
surfactant
Surface-Active Agents
Oils
Silica
Alcohols
Nanoparticles
Sandstone
Application programming interfaces (API)
2 Citations (Scopus)

Effect of surfactants and their blend with silica nanoparticles on wax deposition in a Malaysian crude oil

Hao Lim, Z., Said-Al Salim, H., Ridzuan, N., Nguele, R. & Sasaki, K., Jul 2018, In : Petroleum Science. 15, p. 1-14 14 p.

Research output: Contribution to journalArticle

1 Citation (Scopus)
enhanced oil recovery
Recovery
oil
simulation
viscosity