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Contribution of CO2 on hydrogen evolution and hydrogen permeation in low alloy steels exposed to H2S environment.

机译:在暴露于H2S环境的低合金钢中,CO2对氢释放和氢渗透的贡献。

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摘要

Hydrogen charging in low alloy steels is a major problem in oil and gas environments containing hydrogen sulfide (H2S). The risk of sulfide stress cracking (SSC) is usually determined from the values of water pH and H2S partial pressure (PH2S). The goal of the present study is to check if hydrogen charging is influenced by other parameters than the sole pH and PH2S, and especially by carbon dioxide (CO2). Experiments engaged the measurement of hydrogen permeation through thin mild steel membranes under potentiometric control. Charging solutions with different H2S concentrations with or without CO2 were used, in order to examine their individual contributions to the charging flux.
机译:在含硫化氢(H2S)的石油和天然气环境中,低合金钢中的氢充填是一个主要问题。硫化物应力开裂(SSC)的风险通常由水的pH值和H2S分压(PH2S)的值确定。本研究的目的是检查氢的充电是否受唯一的pH和PH2S以外的其他参数的影响,尤其是二氧化碳(CO2)的影响。实验进行了在电位控制下通过薄软钢膜的氢渗透的测量。为了检查它们各自对充电通量的贡献,使用了具有不同H2S浓度的有无CO2的充电溶液。

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