Structural Integrity of Materials in Fuel Ethanol Environments

O. Joseph
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引用次数: 2

Abstract

Nowadays, the use of liquid fuels is prevalent in the transport sector due to ease of storage. There are two different fuel types namely, fuels obtained from fossil resources and biofuels made from renewable resources. Typical biofuels in industry use include pure plant oil (PPO), biodiesel, ethyl tertiary butyl ether (ETBE), biobutanol and fuel ethanol. Studies carried out have shown that fuel ethanol can substitute petrol. In addition, ethanol can be blended with gasoline at any ratio depending on the circumstances and the desired fuel. Typical fuel ethanol blends in use are: E5, E10, E20, E25, E70, E85, E95 and E100. Remarkably, there have been evidences of stress corrosion cracking (SCC) of steel storage tanks and associated piping used in fuel ethanol service during the past decade. This chapter is therefore, centered on a description of structural integrity issues related to metallic and non-metallic materials in fuel ethanol environments. Prior research on the corrosion and stress corrosion cracking behavior of ethanol-gasoline blends are also reviewed.
燃料乙醇环境下材料的结构完整性
如今,由于易于储存,液体燃料的使用在运输部门很普遍。有两种不同的燃料类型,即从化石资源获得的燃料和从可再生资源制成的生物燃料。工业上使用的典型生物燃料包括纯植物油(PPO)、生物柴油、乙基叔丁基醚(ETBE)、生物丁醇和燃料乙醇。研究表明,燃料乙醇可以替代汽油。此外,根据具体情况和所需燃料,乙醇可以与汽油以任何比例混合。目前使用的典型燃料乙醇混合物有:E5、E10、E20、E25、E70、E85、E95和E100。值得注意的是,在过去的十年中,燃料乙醇服务中使用的钢制储罐及其相关管道出现了应力腐蚀开裂(SCC)的证据。因此,本章集中描述燃料乙醇环境中与金属和非金属材料相关的结构完整性问题。对乙醇-汽油共混物的腐蚀和应力腐蚀开裂行为进行了综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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