Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 56 checked references that resolve
resolves10.5006/1.3277576A Mechanistic Model for Carbon Dioxide Corrosion of Mild Steel in the Presence of Protective Iron Carbonate Films—Part 1: Theory and Verification
resolves10.1016/j.corsci.2007.12.007Hydrogen evolution in aqueous solutions containing dissolved CO2: Quantitative contribution of the buffering effect
resolves10.5006/2177Mechanism of Cathodic Reactions in Acetic Acid Corrosion of Iron and Mild Steel
resolves10.5006/0933Investigation of the Electrochemical Mechanisms for Acetic Acid Corrosion of Mild Steel
resolves10.5006/0937Electrochemical Study and Modeling of H2S Corrosion of Mild Steel
resolves10.1016/j.corsci.2012.09.036Corrosion mechanisms in aqueous solutions containing dissolved H2S. Part 1: Characterisation of H2S reduction on a 316L rotating disc electrode
resolves10.5006/1.3585212Predictive Model for CO2 Corrosion Engineering in Wet Natural Gas Pipelines
resolves10.5006/1.3293640An Electrochemical Model for Prediction of Corrosion of Mild Steel in Aqueous Carbon Dioxide Solutions
resolves10.5006/1.3277592A Mechanistic Model for Carbon Dioxide Corrosion of Mild Steel in the Presence of Protective Iron Carbonate Films—Part 3: Film Growth Model
resolves10.1002/maco.19770281203Untersuchungen zum Korrosionsmechanismus von unlegiertem Stahl in sauerstofffreien Kohlensäurelösungen. Teil I. Kinetik der Wasserstoffabscheidung
resolves10.1016/j.chemgeo.2007.07.023The speciation equilibrium coupling with phase equilibrium in the H2O–CO2–NaCl system from 0 to 250 °C, from 0 to 1000 bar, and from 0 to 5 molality of NaCl
resolves10.1016/j.marchem.2005.09.001An improved model for the calculation of CO2 solubility in aqueous solutions containing Na+, K+, Ca2+, Mg2+, Cl−, and SO42−
resolves10.1016/j.gca.2008.07.025Coupled phase and aqueous species equilibrium of the H2O–CO2–NaCl–CaCO3 system from 0 to 250°C, 1 to 1000bar with NaCl concentrations up to saturation of halite
resolves10.1063/1.555643Ion product of water substance, 0–1000 °C, 1–10,000 bars New International Formulation and its background
resolves10.1016/S0009-2541(02)00263-2An improved model calculating CO2 solubility in pure water and aqueous NaCl solutions from 273 to 533 K and from 0 to 2000 bar
resolves10.2118/10352-PASimplified Calculation of CACO3 Saturation at High Temperatures and Pressures in Brine Solutions
resolves10.1016/j.ijggc.2011.02.005A coupled electrochemical–geochemical model of corrosion for mild steel in high-pressure CO2–saline environments
resolves10.5006/1287Electrochemical Model of Mild Steel Corrosion in a Mixed H2S/CO2 Aqueous Environment in the Absence of Protective Corrosion Product Layers
resolves10.5006/2172Verification of an Electrochemical Model for Aqueous Corrosion of Mild Steel for H2S Partial Pressures up to 0.1 MPa
resolves10.1149/1.2781252Ionic Mass Transfer and Concentration Polarization at Rotating Electrodes
resolves10.1016/0013-4686(83)85227-XThe behaviour of iron electrode in CO2− saturated neutral electrolyte—II. Radiotracer study and corrosion considerations
resolves10.5006/1.3277579A Mechanistic Model for Carbon Dioxide Corrosion of Mild Steel in the Presence of Protective Iron Carbonate Films—Part 2: A Numerical Experiment
resolves10.1016/j.electacta.2013.08.133Corrosion mechanisms in aqueous solutions containing dissolved H2S. Part 2: Model of the cathodic reactions on a 316L stainless steel rotating disc electrode
resolves10.1149/1.2801349A Kinetic Model for CO[sub 2] Corrosion of Steel in Confined Aqueous Environments
resolves10.1002/anie.196400011Proton Transfer, Acid‐Base Catalysis, and Enzymatic Hydrolysis. Part I: ELEMENTARY PROCESSES
resolves10.1016/j.marchem.2005.11.001Determination of the rate constants for the carbon dioxide to bicarbonate inter-conversion in pH-buffered seawater systems
resolves10.1103/PhysRevE.94.012611Dependence of the dielectric constant of electrolyte solutions on ionic concentration: A microfield approach
resolves10.1149/1.2044145A Parallel‐Plate Electrochemical Reactor Model for the Destruction of Nitrate and Nitrite in Alkaline Waste Solutions
resolves10.1149/1.2085854Modification of Newman's BAND(J) Subroutine to Multi‐Region Systems Containing Interior Boundaries: MBAND
resolves10.1149/1.2085714A Mathematical Model of Electrochemical Reactions Coupled with Homogeneous Chemical Reactions
resolves10.5006/1.3278425Protective Iron Carbonate Films—Part 3: Simultaneous Chemo-Mechanical Removal in Single-Phase Aqueous Flow
resolves10.5006/1.3277596Carbon Dioxide Corrosion in Oil and Gas Production—A Compendium
resolves10.5006/1.3280674Protective Iron Carbonate Films—Part 2: Chemical Removal by Dissolution in Single-Phase Aqueous Flow
resolves10.5006/1.3278279Protective Iron Carbonate Films—Part 1: Mechanical Removal in Single-Phase Aqueous Flow
resolves10.5006/1.3278477Kinetics of Corrosion Layer Formation: Part 1—Iron Carbonate Layers in Carbon Dioxide Corrosion
The 58 references without a DOI — listed, not checked
no DOI — not checkedPrediction of carbonic acid corrosion in natural gas pipelines
no DOI — not checkedMechanisms of carbon steel corrosion in brines containing dissolved carbon dioxide at pH 4
no DOI — not checkedEffect of pH and temperature on the mechanism of carbon steel corrosion by aqueous carbon dioxide
no DOI — not checkedCorrosion of mild steel in an aqueous CO2 environment – basic electrochemical mechanisms revisited
no DOI — not checkedCO2 corrosion prediction by use of the Norsok M-506 model – guidelines and limitations
no DOI — not checkedCO2 corrosion prediction model – basic principles
no DOI — not checkedCO2 corrosion model for carbon steel including wall shear stress model for multiphase flow and limits for production rate to avoid mesa attack
no DOI — not checkedParametric study of CO2 corrosion of carbon steel
no DOI — not checkedPrediction of CO2 corrosion of carbon steel
no DOI — not checkedInfluence of liquid flow velocity on CO2 corrosion: a semi-empirical model
no DOI — not checkedInfluence of crude oils on well tubing corrosion rates
no DOI — not checkedAn open source mechanistic model for CO2/H2S corrosion of carbon steel
no DOI — not checkedA mechanistic model for CO2 corrosion with protective iron carbonate films
no DOI — not checkedA mechanistic model of iron carbonate film growth and the effect on CO2 corrosion of mild steel
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib27
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib32
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib35
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib36
no DOI — not checkedThe rates of hydration of carbon dioxide and dehydration of carbonic acid at 37°
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib43
no DOI — not checkedWater chemistry for corrosion prediction in high pressure CO2 environments
no DOI — not checkedOverview of CO2 corrosion models for models for wells and pipelines
no DOI — not checkedA computer model for prediction of corrosion of carbon steels
no DOI — not checkedImprovements on de Waard-Milliams corrosion prediction and applications to corrosion management
no DOI — not checkedImplementation of CO2 corrosion models in a three-phase fluid flow model
no DOI — not checkedThe application of corrosion prediction models to the design and operation of pipelines
no DOI — not checkedField data collection, evaluation and use for corrosivity prediction and validation of models
no DOI — not checkedModeling CO2 corrosion of carbon steels in pipe flow
no DOI — not checkedCO2 corrosion prediction in pipe flow under FeCO3 scale-forming conditions
no DOI — not checkedModeling the diffusion effects through the iron carbonate layer in the carbon dioxide corrosion of carbon steel
no DOI — not checkedDeterministic modeling of corrosion in downhole environments
no DOI — not checkedSimulation of FeCO3/FeS scale formation using thermodynamic and electrochemical models
no DOI — not checkedDevelopment of a mechanistic model for predicting corrosion rate in multiphase oil/water/gas flows
no DOI — not checkedElectrochemical investigation and modeling of carbon dioxide corrosion of carbon steel in the presence of acetic acid
no DOI — not checkedPractical corrosion prediction using electrochemical techniques
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib68
no DOI — not checkedA correlation for mass transfer coefficients in elbows
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib72
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib73
no DOI — not checkedReactions of pipeline steels in carbon dioxide solutions
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib75
no DOI — not checkedSuperposition of diffusion and chemical reaction controlled limiting current-application to CO2 corrosion
no DOI — not checkedMechanistic models for the prediction of CO2 corrosion rates under multi-phase flow conditions
no DOI — not checkedModeling of electrode processes and surface chemistry in carbon dioxide containing solutions
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib85
no DOI — not checkedThe flow due to a rotating disc
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib88
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib89
no DOI — not checkedProton transfer reactions and kinetics in water
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib94
no DOI — not checkedThe formation of protective FeCO3 corrosion product layers in CO2 corrosion
no DOI — not checkedAcetic acid and carbon dioxide corrosion of carbon steel covered with iron carbonate
no DOI — not checkedRole of free acetic acid on the CO2 corrosion of steels
no DOI — not checkedMechanism of protective film formation during CO2 corrosion of carbon steel
no DOI — not checkedFerrous carbonate precipitation kinetics and its impact on CO2 corrosion
no DOI — not checkedBasics revisited: kinetics of iron carbonate scale precipitation in CO2 corrosion
no DOI — not checkedCO2 corrosion under scaling conditions – the special case of top-of-line corrosion in wet gas pipelines
no DOI — not checked10.1016/B978-0-08-101105-8.00034-6_bib112
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