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Sodium sulfite as an oxygen scavenger for the corrosion control of mild steel in petroleum refinery wastewater: optimization, mathematical modeling, surface morphology and reaction kinetics studies

机译:亚硫酸钠作为石油炼油废水中温和钢腐蚀控制的氧气清除剂:优化,数学建模,表面形态和反应动力学研究

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摘要

Corrosion protection of mild steel in simulated refinery wastewater solution (2 wt% MgCl2) by sodium sulfite, as oxygen scavenger inhibitor type, was studied at different temperatures, inhibitor concentrations, rotational velocities and exposure times using weight loss and electrochemical techniques. Oxygen concentrations were also monitored at initial and final conditions. The corrosion inhibition process was optimized by 2(4) full factorial experimental designs. Optimum conditions of minimum corrosion rate were 40 degrees C, 40 ppm, 1250 rpm, and 6 h for temperature, inhibitor concentration, rotational velocity, and exposure time. Oxygen levels were reduced by the addition of the scavenger. The amount of oxygen reacted and removed during the corrosion process was evaluated and mathematical relationships were obtained. Electrochemical measurements showed that the corrosion potential shifted to the more active direction and corrosion current decreased with the addition of scavenger. Surface morphology investigations proved that the addition of SS prevents the steel surface damages.
机译:用重量损失和电化学技术在不同温度,抑制剂浓度,旋转速度和暴露时间中研究了模拟炼油厂废水溶液(2wt%MgCl2)的模拟炼油厂废水溶液(2wt%MgCl2)的腐蚀保护。在初始和最终条件下也监测氧气浓度。通过2(4)个全因子实验设计进行了优化腐蚀抑制作用。最小腐蚀速率的最佳条件为40℃,40ppm,1250rpm,温度,抑制剂浓度,旋转速度和暴露时间为6小时。通过添加清除剂来减少氧水平。评价和除腐蚀过程中反应和除去的氧气量,得到数学关系。电化学测量表明,随着清除剂的增加,腐蚀电位移位到更有效的方向和腐蚀电流。表面形态调查证明,SS的添加防止了钢表面损坏。

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