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Stability of an Electrodeposited Nanocrystalline Ni-Based Alloy Coating in Oil and Gas Wells with the Coexistence of H2S and CO2

机译:H2S和CO2共存的油气井中电沉积纳米晶镍基合金涂层的稳定性

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摘要

The stability of an electrodeposited nanocrystalline Ni-based alloy coating in a H2S/CO2 environment was investigated by electrochemical measurements, weight loss method, and surface characterization. The results showed that both the cathodic and anodic processes of the Ni-based alloy coating were simultaneously suppressed, displaying a dramatic decrease of the corrosion current density. The corrosion of the Ni-based alloy coating was controlled by H2S corrosion and showed general corrosion morphology under the test temperatures. The corrosion products, mainly consisting of Ni3S2, NiS, or Ni3S4, had excellent stability in acid solution. The corrosion rate decreased with the rise of temperature, while the adhesive force of the corrosion scale increased. With the rise of temperature, the deposited morphology and composition of corrosion products changed, the NiS content in the corrosion scale increased, and the stability and adhesive strength of the corrosion scale improved. The corrosion scale of the Ni-based alloy coating was stable, compact, had strong adhesion, and caused low weight loss, so the corrosion rates calculated by the weight loss method cannot reveal the actual oxidation rate of the coating. As the corrosion time was prolonged, the Ni-based coating was thinned while the corrosion scale thickened. The corrosion scale was closely combined with the coating, but cannot fully prevent the corrosive reactants from reaching the substrate.
机译:通过电化学测量,失重法和表面表征研究了电沉积纳米晶Ni基合金涂层在H2S / CO2环境中的稳定性。结果表明,同时抑制了镍基合金涂层的阴极和阳极过程,显示出腐蚀电流密度的急剧下降。镍基合金涂层的腐蚀是通过硫化氢腐蚀来控制的,并且在测试温度下表现出一般的腐蚀形态。主要由Ni3S2,NiS或Ni3S4组成的腐蚀产物在酸溶液中具有极好的稳定性。腐蚀速率随温度的升高而降低,而腐蚀垢的附着力则增加。随着温度的升高,腐蚀产物的沉积形态和组成发生变化,腐蚀垢中的NiS含量增加,腐蚀垢的稳定性和粘附强度提高。 Ni基合金镀层的腐蚀尺度稳定,致密,附着力强,重量损失小,因此通过重量损失法计算出的腐蚀速率无法揭示涂层的实际氧化速率。随着腐蚀时间的延长,Ni基涂层变薄,而腐蚀垢变厚。腐蚀垢与涂层紧密结合,但不能完全防止腐蚀性反应物到达基材。

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