H2S-CO2 mixture corrosion-resistant Fe2O3-amended wellbore cement for sour gas storage and production wells

The cement sheath used in H2S-CO2 mixture gas storage and high-temperature and high-pressure (HTHP) production wells is easily corroded; thus the cement has strict requirements for corrosion-resistant properties. In this work, a new additive, HTHP-CRA, was used to improve corrosion-resistant propert...

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Published inConstruction & building materials Vol. 188; pp. 161 - 169
Main Authors Xu, Bihua, Yuan, Bin, Wang, Yongqing, Zhu, Liang
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 10.11.2018
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Abstract The cement sheath used in H2S-CO2 mixture gas storage and high-temperature and high-pressure (HTHP) production wells is easily corroded; thus the cement has strict requirements for corrosion-resistant properties. In this work, a new additive, HTHP-CRA, was used to improve corrosion-resistant properties of Fe2O3-amended cement by reducing the original permeability and the generation low-Ca/Si hydration products. The experimental results indicate that the addition of HTHP-CRA to cement can slightly increase the original compressive strength, significantly reduce the original permeability and CH. The additive can also react with high-Ca/Si hydration products to generate low-Ca/Si hydration products such as xonotlite and tobermorite. Moreover, the addition of HTHP-CRA remarkably weakens leaching and corrosion effects by reduce CH during the corrosion process.
AbstractList The cement sheath used in H2S-CO2 mixture gas storage and high-temperature and high-pressure (HTHP) production wells is easily corroded; thus the cement has strict requirements for corrosion-resistant properties. In this work, a new additive, HTHP-CRA, was used to improve corrosion-resistant properties of Fe2O3-amended cement by reducing the original permeability and the generation low-Ca/Si hydration products. The experimental results indicate that the addition of HTHP-CRA to cement can slightly increase the original compressive strength, significantly reduce the original permeability and CH. The additive can also react with high-Ca/Si hydration products to generate low-Ca/Si hydration products such as xonotlite and tobermorite. Moreover, the addition of HTHP-CRA remarkably weakens leaching and corrosion effects by reduce CH during the corrosion process.
Author Wang, Yongqing
Yuan, Bin
Xu, Bihua
Zhu, Liang
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Keywords H2S
Mixtures corrosion
Gibbs free energy
Oil well cement
CO2
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Snippet The cement sheath used in H2S-CO2 mixture gas storage and high-temperature and high-pressure (HTHP) production wells is easily corroded; thus the cement has...
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elsevier
SourceType Enrichment Source
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StartPage 161
SubjectTerms CO2
Gibbs free energy
H2S
Mixtures corrosion
Oil well cement
Title H2S-CO2 mixture corrosion-resistant Fe2O3-amended wellbore cement for sour gas storage and production wells
URI https://dx.doi.org/10.1016/j.conbuildmat.2018.08.120
Volume 188
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