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Corrosion Rate of API 5L-X52 Steel for the Biofuels Transportation

机译:用于生物燃料运输的API 5L-X52钢的腐蚀速率

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The alternative use of ethanol as a biofuel, or total or partial substitute for fossil fuels, has a significant effect when blend with ethanol-gasoline, this addition of gasoline increases the octane number and reduces CO_2 emissions from cars. In this study, water concentrations (0.5 and 5%) were used in 10, 85 and 95% (% V) ethanol blends, using the electrochemical linear polarization resistance (LPR) technique in steel pipe API-5L X52. As complementary techniques, pH and conductivity were monitored before and after each test. The objective of this research is to measure the effect of water on the corrosion rate of the ethanol blends. As a result, it was obtained that the solutions with higher water concentration had the highest value of corrosion rate, as well as localized corrosion damage in both cases, which was corroborated by scanning electron microscopy (SEM).
机译:乙醇作为生物燃料的替代使用乙醇或化石燃料的总替代品,当与乙醇 - 汽油混合时,这种添加汽油增加了辛烷值并减少了汽车的CO_2排放量。在该研究中,使用钢管API-5L X52中的电化学线性偏振电阻(LPR)技术在10,85和95%(%V)乙醇共混物中使用水浓度(0.5和5%)。作为互补技术,在每次测试之前和之后监测pH和电导率。本研究的目的是测量水对乙醇混合物腐蚀速率的影响。结果,获得了水浓度较高的溶液的腐蚀速率的最高值,以及两种情况下的局部腐蚀损伤,通过扫描电子显微镜(SEM)来证实。

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