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  • 張國安, 路民旭, 吳蔭順. 碳鋼高溫高壓CO2腐蝕產物膜的形成機制[J]. 工程科學學報, 2007, 29(12): 1216-1221. DOI: 10.13374/j.issn1001-053x.2007.12.027
    引用本文: 張國安, 路民旭, 吳蔭順. 碳鋼高溫高壓CO2腐蝕產物膜的形成機制[J]. 工程科學學報, 2007, 29(12): 1216-1221. DOI: 10.13374/j.issn1001-053x.2007.12.027
    ZHANG Guoan, LU Minxu, WU Yinshun. Formation mechanism of corrosion scales of carbon steel by CO2 corrosion under high temperature and high pressure[J]. Chinese Journal of Engineering, 2007, 29(12): 1216-1221. DOI: 10.13374/j.issn1001-053x.2007.12.027
    Citation: ZHANG Guoan, LU Minxu, WU Yinshun. Formation mechanism of corrosion scales of carbon steel by CO2 corrosion under high temperature and high pressure[J]. Chinese Journal of Engineering, 2007, 29(12): 1216-1221. DOI: 10.13374/j.issn1001-053x.2007.12.027

    碳鋼高溫高壓CO2腐蝕產物膜的形成機制

    Formation mechanism of corrosion scales of carbon steel by CO2 corrosion under high temperature and high pressure

    • 摘要: 利用高溫高壓反應釜模擬了N80鋼在CO2分壓1MPa、溫度90℃、流速1m·s-1條件下地層水中不同時間的腐蝕行為,并應用SEM、EDS和XRD等微觀分析手段研究了腐蝕產物膜的微觀形貌、成分和結構特征,探討了腐蝕產物膜的形成機制.結果表明:在腐蝕開始階段(8h),腐蝕產物主要為Fe3C,并有少量的FeCO3形成.隨著腐蝕的進行(72h后),腐蝕產物膜基本上為FeCO3.腐蝕產物膜由內外兩層構成:內層膜是溶液中HCO3-不斷透過膜進入膜/基界面與基體反應形成,并使膜/基界面不斷向內推進;外層膜是由于溶液中Fe2+和CO32-的濃度超過FeCO3的容度積,FeCO3晶體在內層膜表面形核并長大而形成.外層膜的晶粒比較細小、致密.內層膜與外層膜的界面結合比較弱,而內層膜與基體的結合比較強.

       

      Abstract: The corrosion behaviors of carbon steel exposed to CO2-containing water under high temperature and high pressure for different intervals of time were measured by using an autoclave. The morphology and microstructure of the CO2 corrosion scale were investigated by SEM, EDS and XRD, and its formation mechanism was discussed. The results indicate that the corrosion scale is mainly composed of Fe3C and a little FeCO3 in the beginning period (8 h), and with the process of corrosion (after 72 h) it changes to FeCO3. The corrosion scale consists of inner and outer scales. HCO3- penetrates the scale, reaches the scale/substrate interface and reacts with substrate to form the inner scale, while the formation of the outer scale is attributed to the concentration of Fe2+ and CO32- in the solution exceeding the solubility of FeCO3. The grain size of the outer scale is smaller and denser than that of the inner scale. The adhesion intensity between the inner and outer scales is weak but that between the inner scale and substrate is strong.

       

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