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Effect of fluid flow on biofilm formation and microbiologically influenced corrosion of pipelines in oilfield produced water

机译:流体流动对油田管道管道腐蚀的生物膜形成和微生物学影响的影响

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摘要

Microbiologically influenced corrosion (MIC) is the primary mechanism causing failures of upstream oil pipelines. This work investigated the biofilm formation and MIC of an X70 pipeline steel in oilfield produced water containing sulfate reducing bacteria at various flow velocities. Results demonstrate that the fluid flow affects the biofilm formation, and thus MIC of the steel under biofilm. At low flow velocities such as 0.2 m/s, a layer of biofilm forms on the steel surface, and the steel suffers from MIC, especially pitting corrosion. With the increase of flow velocity to 1.0 m/s, the biofilm is not able to form. Thus, the steel MIC reduces with the increasing flow velocity of the fluid. Moreover, the corrosion products and biofilm are overlapped at the low flow velocity. At the high flow velocity, the surface layer formed on the steel is mainly corrosion products. Corrosion pits can be formed on the steel at the low flow velocity due to microbial attack.
机译:微生物学过腐蚀(MIC)是导致上游油管道失败的主要机制。 这项工作研究了油田油田X70管道钢的生物膜形成和MIC,产生了含有硫酸盐的硫酸盐在各种流速下的细菌。 结果表明,流体流动影响生物膜形成,从而影响生物膜下钢的MIC。 在低流速,例如0.2m / s,钢表面上的一层生物膜形式,钢遭受麦克风,尤其是蚀腐蚀。 随着流速的增加至1.0m / s,生物膜无法形成。 因此,钢MIC随着流体的不断增加的流速而减小。 此外,腐蚀产物和生物膜在低流速下重叠。 在高流速下,在钢上形成的表面层主要是腐蚀产品。 由于微生物攻击,在低流速下可以在钢上形成腐蚀凹坑。

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