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pH值對Q235鋼在模擬酸性土壤中腐蝕行為的影響

Effect of pH values on the corrosion behavior of Q235 steel in simulated acidic soils

  • 摘要: 通過腐蝕失重計算、掃描電鏡、X射線衍射方法、極化曲線分析等手段,研究了pH值對Q235鋼在模擬酸性土壤中腐蝕行為的影響.在模擬酸性土壤環境中,Q235鋼的腐蝕速率隨土壤pH值升高而降低,經360 h腐蝕后,在pH值為4.0、4.5和5.1的土壤中試樣的腐蝕速率分別為0.68、0.48和0.42 mm·a-1.隨土壤pH值升高,Q235鋼銹層更為致密,其表面蝕坑由窄深型發展變為寬淺型發展.腐蝕產物均為SiO2、α-FeOOH、γ-FeOOH、Fe2O3及Fe3O4,隨土壤pH值升高,腐蝕產物中α-FeOOH/γ-FeOOH質量比升高.極化曲線分析表明,隨土壤pH值升高,Q235鋼腐蝕電位升高,自腐蝕電流密度降低,試樣腐蝕速率減小.

     

    Abstract: The effect of pH values on the corrosion behavior of Q235 steel in simulated acidic soils was investigated by weight-loss measurement, scanning electron microscopy (SEM), X-ray diffraction (XRD) analysis and polarization curve analysis. When the pH values are 4.0, 4.5 and 5.1, the corrosion rate of Q235 steel are 0.68, 0.48 and 0.42 mm·a-1, respectively. With the increase of soil pH values, the rust becomes more compact and the etch pits change from narrow and deep to wide and shallow. All the corrosion products are mainly composed of SiO2, α-FeOOH, γ-FeOOH, Fe2O3 and Fe3O4, and the mass ratio of α-FeOOH/γ-FeOOH in the corrosion products is higher with increasing pH values. Additionally, polarization curve analysis shows that when the soil pH value rises, the corrosion potential of Q235 steel increases, the corrosion current density decreases, and the corrosion rate becomes lower.

     

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