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Experimental studies of crevice corrosion for buried pipeline with disbonded coatings under cathodic protection

机译:阴极保护下脱层地下管道缝隙腐蚀的实验研究

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Numerous fire and explosion accidents have occurred because of pipeline ruptures through the corrosion area. Coatings under cathodic protection (CP) have been recognized to prevent/mitigate potential pipeline corrosion. In this work, a wedge-shaped crevice assembly was developed to study the effect of cathodic protection on corrosion of 20# steel pipeline with disbanded coatings. Polarization potential, current density, solution pH value, and dissolved oxygen concentration were measured by using the simulation of crevice area with disbonded coatings. Results have demonstrated that CP cannot reach the crevice bottom which reduces the effectiveness of corrosion protection. This effectiveness depends on the crevice geometry and could be improved with the increase of crevice length and decrease of its mouth size. A potential difference always exists between the mouth area and inside crevice. The oxygen concentrations drop significantly inside crevice whether CP is applied or not. The solution pH values inside crevice increase with the time. The solution pH values are higher when the applied CP potentials are more negative. According to the experiments, the effectiveness of cathodic protection could also be improved through enhancement of the local solution alkalinity. The research provides necessary information to prevent potential pipeline ruptures due to crevice corrosion and therefore mitigate potential losses for oil and gas transportation in the process industries.
机译:由于穿过腐蚀区域的管道破裂,发生了许多火灾和爆炸事故。阴极保护(CP)涂层已被公认可以防止/减轻潜在的管道腐蚀。在这项工作中,开发了一个楔形缝隙组件,以研究阴极保护对20#涂层剥落的钢管腐蚀的影响。极化电位,电流密度,溶液pH值和溶解氧浓度通过模拟剥离涂层的缝隙面积进行测量。结果表明,CP不能到达缝隙底部,这降低了防腐的有效性。这种效果取决于缝隙的几何形状,并且可以随着缝隙长度的增加和嘴巴尺寸的减小而提高。口腔区域和内部缝隙之间始终存在电位差。无论是否使用CP,缝隙内的氧气浓度都会显着下降。缝隙内的溶液pH值随时间增加。当施加的CP电位更负时,溶液的pH值会更高。根据实验,通过提高局部溶液的碱度也可以提高阴极保护的有效性。该研究提供了必要的信息,以防止由于缝隙腐蚀而引起的潜在管道破裂,从而减轻加工行业中油气运输的潜在损失。

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