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Optimization of Operating Conditions Affecting Microbiologically Influenced Corrosion of Mild Steel Exposed to Crude Oil Environments Using Response Surface Methodology

机译:使用响应表面方法优化影响暴露于原油环境的低碳钢的微生物影响腐蚀的操作条件

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摘要

In this study, the influence of four operating parameters (pH, salinity, nitrate concentration and immersion time) and their interactions on the microbiologically influenced corrosion (MIC) rate of mild steel in simulated crude oil environments were investigated by response surface methodology (RSM). 4-level historical data design: pH (A) at 4, 6, 8, 10, salinity (B) at 25, 50, 75 and 100 g/l, nitrate (C) at 25, 50, 75 and 100 g/l and immersion time (D) at 168, 336, 504 and 672 h, was employed to correlate the factors with the corrosion rate as response. A polynomial regression model was developed and validated prior to optimization studies. The result showed that pH has the most influential effect on the response and that the predicted data had a reasonable agreement with the experimental data with the values of R2 = 0.9660 and Adj-R2 = 0.9516. The optimum conditions of the crude oil environments were observed at: pH (9.37), salinity (94.73 g/l), nitrate concentration (37.97 g/l) and immersion time of mild steel (168 h) in order to achieve minimum corrosion rate of 0.155196 mpy. The study has revealed that the historical data RSM design is an efficient statistical technique for predicting the optimum operating conditions of crude oil environments required to minimize mild steel corrosion in oil pipelines by incorporating all factors under consideration.
机译:本研究采用响应面法(RSM)研究了4个操作参数(pH、盐度、硝酸盐浓度和浸泡时间)及其相互作用对模拟原油环境下低碳钢微生物影响腐蚀(MIC)速率的影响。4 级历史数据设计:pH (A) 在 4、6、8、10 时,盐度 (B) 在 25、50、75 和 100 g/l,硝酸盐 (C) 在 25、50、75 和 100 g/l 时,浸泡时间 (D) 在 168、336、504 和 672 h,用于将因素与腐蚀速率相关联作为响应。在优化研究之前,开发并验证了多项式回归模型。结果表明,pH值对响应的影响最大,预测数据与实验数据吻合合理,R2 = 0.9660,Adj-R2 = 0.9516。在pH值(9.37)、盐度(94.73 g/l)、硝酸盐浓度(37.97 g/l)和低碳钢浸泡时间(168 h)下观察到原油环境的最佳条件,以达到0.155196 mpy的最小腐蚀速率。研究表明,历史数据RSM设计是一种有效的统计技术,用于预测原油环境的最佳运行条件,通过结合所有考虑因素,最大限度地减少石油管道中的低碳钢腐蚀。

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