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Conducting Electrochemical Measurements in Fuel-Grade Ethanol Using Microelectrodes

机译:使用微电极在燃料级乙醇中进行电化学测量

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摘要

Corrosion and stress corrosion cracking of carbon steel in biofuels are a concern with the increase in the usage of ethanol as an alternate fuel. Electrochemical studies in highly resistive electrolytes (e.g., ethanol) traditionally have been conducted with the addition of a supporting electrolyte. The present work used microelectrodes to study the electrochemical behavior of carbon steel in fuel-grade ethanol (FGE). Owing to the small electrode size, a small magnitude of current was measured that reduces ohmic potential drops and makes it possible to perform electrochemical experiments in the absence of a supporting electrolyte. The present method was used to investigate the effect of water and chloride on the corrosion of carbon steel in FGE. The results were generally consistent with those obtained in alcoholic solutions when a supporting electrolyte was used. Additionally, the microelectrode method was used to evaluate the electrochemical response of steel in the presence of a stress corrosion cracking inhibitor. [PUBLICATION ABSTRACT]
机译:随着乙醇作为替代燃料的使用增加,生物燃料中碳钢的腐蚀和应力腐蚀开裂成为一个问题。传统上已经在高电阻电解质(例如乙醇)中添加支持电解质来进行电化学研究。本工作使用微电极来研究碳钢在燃料级乙醇(FGE)中的电化学行为。由于电极尺寸小,因此测量到的电流量较​​小,可减少欧姆电势降,并可以在不存在支持电解质的情况下进行电化学实验。本方法用于研究水和氯化物对FGE中碳钢腐蚀的影响。结果通常与使用支持电解质时在酒精溶液中获得的结果一致。另外,在应力腐蚀开裂抑制剂的存在下,微电极方法被用来评估钢的电化学响应。 [出版物摘要]

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  • 来源
    《Corrosion》 |2010年第4期|p.1-8|共8页
  • 作者

    F Gui N Sridhar;

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    F. Gui[dagger]* and N. Sridhar*Submitted for publication October 27. 2009: in revised form, December 21, 2009.[dagger] Corresponding author. E-mail: feng.gui@dnv.com.* Det Norske Veritas. 5777 Frantz Road. Dublin, OH 43017.;

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