2022
DOI: 10.3390/met12111848
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Effect of Temperature on Corrosion Behavior and Mechanism of S135 and G105 Steels in CO2/H2S Coexisting System

Abstract: The corrosive environment of oilfield condensate water was simulated at different temperatures with CO2/H2S. Weight-loss corrosion tests were conducted on S135 and G105 steels at different temperatures. The corrosion rates of the S135 and G105 were measured at room temperature, 100 °C and 180 °C. The phase structure of the corrosion products and the corrosion morphologies of the samples were characterized. The results show that the corrosion rates of the S135 and G105 increased at first and then decreased with… Show more

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Cited by 3 publications
(4 citation statements)
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“…However, with the increase of temperature, dense and uniform FeS products are formed on the surface of steel, which can inhibit corrosion. 74
Figure 7 Effect of temperature on corrosion (A) Corrosion rates of S135 and G105. (B) Localized corrosion rate of 20 G steel.
…”
Section: Influencing Factors On Carbon Dioxide Corrosionmentioning
confidence: 99%
See 1 more Smart Citation
“…However, with the increase of temperature, dense and uniform FeS products are formed on the surface of steel, which can inhibit corrosion. 74
Figure 7 Effect of temperature on corrosion (A) Corrosion rates of S135 and G105. (B) Localized corrosion rate of 20 G steel.
…”
Section: Influencing Factors On Carbon Dioxide Corrosionmentioning
confidence: 99%
“… Figures reproduced from: (A) (Gao et al. 74 ) Copyright 2022, MDPI; (B) (He et al. 75 ) Copyright 2022, Elsevier; (C and D) (Eškinja et al.…”
Section: Influencing Factors On Carbon Dioxide Corrosionmentioning
confidence: 99%
“…To address these issues, a dynamic cyclic multiphase flow high-temperature autoclave capable of reaching maximum pressures and temperatures up to 150 MPa and 350 °C, respectively is employed for simulating actual temperature and pressure conditions at 90 MPa/80 °C and 90 MPa/160 °C as depicted in Figure 3. The high-temperature and high-pressure reactor was developed by Southwest Petroleum University (Model: GF-150-350-6HC) [29].The equipment can simulate the corrosive environment of underground high-temperature and high-pressure fluid flow by heating equipment, blade stirring and gas injection. Compared with the conventional high-temperature and high-pressure reactor, it can simulate the working environment of underground tools more truly.…”
Section: Instruments For Corrosion Experimentsmentioning
confidence: 99%
“…Corrosion in carbon steel alloy is electro conductive media is influenced by the properties of the media in which they are immersed or exposed such as salt concentration [3], humidity [4], dissolved oxygen [5], and temperature [6].…”
Section: Introductionmentioning
confidence: 99%