Influence of hydrogen sulphide on the corrosion and hydrogenation of 07Cr16Ni6 steel

M. Khoma, VA Vynar, Marian Chuchman, ChB Vasyliv, V. Ivashkiv, SA Halaichak
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Abstract

The effect of hydrogen sulphide concentration on the corrosion behaviour of 07Cr16Ni6 austenitic-martensitic stainless steel in a 5% NaCl  +  0.5% CH3COOH solution was studied to determine the role of H2S in the corrosion product formation and corrosion mechanism. Unstable passivation of steel is detected in a solution containing <100 mg/dm3 H2S. Steel corrodes in an electrochemically active state at >100 mg/dm3 H2S. When the pitting potential is reached, pitting damage occurs at the grain boundaries. The corrosion rate decreases by ∼five times after exposition for 720 h due to the formation of nickel and iron sulphides on the surface. Corrosion is accompanied by the absorption of 4.2–17.5 ppm hydrogen, 62…70% of which is diffusible and can cause hydrogen embrittlement. The scheme of steel corrosion under the influence of different concentrations of hydrogen sulphide is proposed.
硫化氢对 07Cr16Ni6 钢腐蚀和氢化的影响
研究了硫化氢浓度对 07Cr16Ni6 奥氏体-马氏体不锈钢在 5% NaCl + 0.5% CH3COOH 溶液中腐蚀行为的影响,以确定 H2S 在腐蚀产物形成和腐蚀机理中的作用。在含有 100 mg/dm3 H2S 的溶液中检测到了钢的不稳定钝化。当达到点蚀电位时,晶界处会发生点蚀破坏。由于表面形成了镍和铁硫化物,在暴露 720 小时后,腐蚀速率降低了 ∼ 5 倍。腐蚀过程中会吸收 4.2-17.5 ppm 的氢气,其中 62...70% 为扩散氢,可导致氢脆。本文提出了不同浓度硫化氢影响下的钢腐蚀方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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