Srdjan Nesic
Affiliations: | Department of Chemical and Biomolecular Engineering | Ohio University, Athens, OH, United States |
Area:
Petroleum Engineering, Chemical EngineeringWebsite:
https://www.ohio.edu/engineering/about/people/nesicGoogle:
"Srdjan Nesic"Bio:
Parents
Sign in to add mentorJohn JackPostlethwaite |
grad student | 1991 | University of Saskatchewan | |
(Computation of Localized Erosion-Corrosion in Disturbed Two-Phase Flow) |
Children
Sign in to add traineeFrederic Vitse | grad student | 2002 | Ohio University |
Yuhua Sun | grad student | 2003 | Ohio University |
Kun-Lin J. Lee | grad student | 2004 | Ohio University |
Jiabin Han | grad student | 2009 | Ohio University |
Chong Li | grad student | 2009 | Ohio University |
Francois Ayello | grad student | 2010 | Ohio University |
Gheorghe M. Bota | grad student | 2010 | Ohio University |
Xuanping Tang | grad student | 2011 | Ohio University |
Haitao Fang | grad student | 2012 | Ohio University |
Nicolas Jauseau | grad student | 2012 | Ohio University |
Thunyaluk Pojtanabuntoeng | grad student | 2012 | Ohio University |
Tanaporn Tanupabrungsun | grad student | 2013 | Ohio University |
Emad S. Akeer | grad student | 2014 | Ohio University |
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Publications
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Madani Sani F, Brown B, Nesic S. (2021) An Electrochemical Study of the Effect of High Salt Concentration on Uniform Corrosion of Carbon Steel in Aqueous CO2 Solutions Journal of the Electrochemical Society. 168: 051501 |
Abdar PS, Hariri MB, Kahyarian A, et al. (2021) A revision of mechanistic modeling of mild steel corrosion in H2S environments Electrochimica Acta. 382: 138231 |
Zhang W, Brown B, Young D, et al. (2021) Pitting mechanism of mild steel in marginally sour environments—Part I: A parametric study based on formation of protective layers Corrosion Science. 183: 109305 |
Fajardo V, Eslami M, Choi Y, et al. (2020) Influence of Acetic Acid on the Integrity and Protectiveness by an Iron Carbonate (FeCO3) Corrosion Product Layer Corrosion. 77: 97-111 |
Ko X, Olivo JD, Brown B, et al. (2020) Experiments and Molecular Simulations to Study the Role of Co-adsorption of Oil in Corrosion Inhibitor Films in Improving Corrosion Mitigation Corrosion |
Kahyarian A, Brown B, Nešić S. (2020) The Unified Mechanism of Corrosion in Aqueous Weak Acids Solutions: A Review of the Recent Developments in Mechanistic Understandings of Mild Steel Corrosion in the Presence of Carboxylic Acids, Carbon Dioxide, and Hydrogen Sulfide Corrosion. 76: 268-278 |
Kahyarian A, Nesic S. (2020) On the mechanism of carbon dioxide corrosion of mild steel: Experimental investigation and mathematical modeling at elevated pressures and non-ideal solutions Corrosion Science. 173: 108719 |
Mansoori H, Young D, Brown B, et al. (2019) CO2 Corrosion of Mild Steel Exposed to CaCO3-Saturated Aqueous Solutions Corrosion. 75: 1281-1284 |
Mansoori H, Brown B, Young D, et al. (2019) Effect of FexCayCO3 and CaCO3 Scales on the CO2 Corrosion of Mild Steel Corrosion. 75: 1434-1449 |
Belarbi Z, Olivo JMD, Farelas F, et al. (2019) Decanethiol as a Corrosion Inhibitor for Carbon Steels Exposed to Aqueous CO2 Corrosion. 75: 1246-1254 |