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Development and evaluation of a green corrosion inhibitor based on rice bran oil obtained from agro-industrial waste

机译:基于农业工业废弃物米糠油的绿色腐蚀抑制剂的开发与评价

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摘要

In this study, agro-industrial waste was used to prepare a green corrosion inhibitor based on rice bran oil. Firstly, the rice-bran oil was recovered and filtered, and then a semi-refined process was applied to separate the waxes. The performance of the synthetized inhibitor was evaluated on a 1018 steel surface by means of different electrochemical techniques such as potentiodynamic polarization, open circuit, linear polarization resistance and electrochemical impedance spectroscopy (EIS). The present results have shown that the addition of 10 and 25 ppm of inhibitor improves the performance of the system, presenting efficiencies above 99%. Interestingly, the free-energy calculated for the rice bran oil (Delta G(ads)(O) = -53.80 kJ/mol) pointed out the good affinity of the inhibitor with respect to the steel surface. Moreover, the EIS spectra showed the formation of a protective layer caused by the adsorption of the inhibitor on the steel surface. This layer improved remarkably the charge-transfer resistance of the metallic material.
机译:在这项研究中,农业工业废物用于基于米糠油制备绿色腐蚀抑制剂。首先,回收和过滤水稻油,然后施加半精制方法以分离蜡。通过不同的电化学技术在1018钢表面上评估合成抑制剂的性能,例如电位显微偏振,开路,线性偏振电阻和电化学阻抗光谱(EIS)。本结果表明,添加10和25ppm的抑制剂提高了系统的性能,提高了99%以上的效率。有趣的是,为米糠油计算的自由能(Delta G(Ads)(O)= -53.80 kJ / mol)指出抑制剂相对于钢表面的良好亲和力。此外,EIS光谱显示由抑制剂对钢表面上的吸附引起的保护层的形成。该层显着提高了金属材料的电荷传递电阻。

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