Evolution of dissolution processes at the interface of carbon steel corroding in a CO2 environment studied by EIS F Farelas, M Galicia, B Brown, S Nesic, H Castaneda Corrosion Science 52 (2), 509-517, 2010 | 413 | 2010 |
Electrochemical Study and Modeling of H2S Corrosion of Mild Steel Y Zheng, B Brown, S Nešić Corrosion 70 (4), 351-365, 2014 | 190 | 2014 |
A thermodynamic study of hydrogen sulfide corrosion of mild steel J Ning, Y Zheng, D Young, B Brown, S Nesic NACE CORROSION, NACE-2013-2462, 2013 | 153 | 2013 |
A direct measurement of wall shear stress in multiphase flow—Is it an important parameter in CO2 corrosion of carbon steel pipelines? W Li, BFM Pots, B Brown, KE Kee, S Nesic Corrosion Science 110, 35-45, 2016 | 130 | 2016 |
Electrochemical Model of Mild Steel Corrosion in a Mixed H2S/CO2 Aqueous Environment in the Absence of Protective Corrosion Product Layers Y Zheng, J Ning, B Brown, S Nešić Corrosion 71 (3), 316-325, 2015 | 128 | 2015 |
Formation of iron oxide and iron sulfide at high temperature and their effects on corrosion S Gao, B Brown, D Young, M Singer Corrosion Science 135, 167-176, 2018 | 111 | 2018 |
Corrosion of Mild Steel in an Aqueous CO2 Environment – Basic Electrochemical Mechanisms Revisited T Tran, B Brown, S Nesic NACE CORROSION, NACE-2015-5671, 2015 | 111 | 2015 |
Spontaneous passivation observations during scale formation on mild steel in CO2 brines J Han, S Nešić, Y Yang, BN Brown Electrochimica Acta 56 (15), 5396-5404, 2011 | 111 | 2011 |
Investigation of Pseudo-Passivation of Mild Steel in CO2 Corrosion W Li, B Brown, D Young, S Nešić Corrosion 70 (3), 294-302, 2014 | 109 | 2014 |
Effect of pH on CO2 Corrosion of Mild Steel at Elevated Temperatures T Tanupabrungsun, B Brown, S Nesic NACE CORROSION, NACE-2013-2348, 2013 | 109 | 2013 |
Influence of calcium and magnesium ions on CO2 corrosion of carbon steel in oil and gas production systems-A review H Mansoori, D Young, B Brown, M Singer Journal of Natural Gas Science and Engineering 59, 287-296, 2018 | 107 | 2018 |
Roles of passivation and galvanic effects in localized CO2 corrosion of mild steel J Han, Y Yang, S Nesic, BN Brown NACE CORROSION, NACE-08332, 2008 | 107 | 2008 |
Acidic corrosion of mild steel in the presence of acetic acid: Mechanism and prediction A Kahyarian, A Schumaker, B Brown, S Nesic Electrochimica Acta 258, 639-652, 2017 | 106 | 2017 |
Investigation of the electrochemical mechanisms for acetic acid corrosion of mild steel T Tran, B Brown, S Nešić, B Tribollet Corrosion 70 (3), 223-229, 2014 | 106 | 2014 |
Mechanism of the hydrogen evolution reaction in mildly acidic environments on gold A Kahyarian, B Brown, S Nesic Journal of The Electrochemical Society 164 (6), H365, 2017 | 105 | 2017 |
Electrochemistry of CO2 corrosion of mild steel: Effect of CO2 on iron dissolution reaction A Kahyarian, B Brown, S Nesic Corrosion Science 129, 146-151, 2017 | 97 | 2017 |
CO2 corrosion in the presence of trace amounts of H2S B Brown, S Nesic, SR Parakala NACE CORROSION, NACE-04736, 2004 | 97 | 2004 |
Iron Carbide and its Influence on the Formation of Protective Iron Carbonate in CO2 Corrosion of Mild Steel F Farelas, B Brown, S Nesic NACE CORROSION, NACE-2013-2291, 2013 | 96 | 2013 |
Investigation of the galvanic mechanism for localized carbon dioxide corrosion propagation using the artificial pit technique J Han, BN Brown, S Nešic Corrosion 66 (9), 095003-095003-12, 2010 | 92 | 2010 |
Construction and verification of pourbaix diagrams for CO2 corrosion of mild steel valid up to 250 C T Tanupabrungsun, D Young, B Brown, S Nešic NACE CORROSION, NACE-2012-1418, 2012 | 90 | 2012 |