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Aspects of storage and corrosion characteristics of biodiesel

机译:生物柴油的储存和腐蚀特性

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Process and corrosion engineers have critically addressed compatibility of biodiesel components in petroleum refinery infrastructure because of different processing, storage and dispatching histories of shipments. Concerns were related to aging and corrosion and to accumulation of a bottom layer in the dedicated storage tank. Corrosion tests were executed in a microcosm test environment modified to the recommended practice of ASTM G4-01 procedure. Colloid chemical properties and technology of biodiesel refining operations can plausibly explain different material responses at different temperatures. The sampled bottom layer consisted mainly of glycerides, resembling characteristics of extract byproducts that are separated in trans-esterification in biodiesel synthesis. This bottom layer exerts both beneficial and detrimental effects. The positive side is that it extracts polar components and by this improves quality. The negative side is that it reduces resistance of the oil against aging. There was no risk of detrimental effects in terms of corrosion of storage tank materials. Overall progress of corrosion is controlled by the slightly alkaline bottom layer via neutralizing the oxidation products and exerting protection to metallic surfaces. Microbial degradation can only pose risks if normal and prudent conditions are not observed. Upon extended incubation microorganisms that are present in the bottom layer below the level detection limit, can develop countable colonies, if nutrients are available and conditions are favorable. It can be concluded that there is no risk of significant corrosion in storage and downstream infrastructure if the stored biodiesel meets standard quality specifications and storage conditions are normal. (C) 2015 Elsevier B.V. All rights reserved.
机译:工艺和腐蚀工程师已经批判性地解决了生物柴油组分在炼油厂基础设施中的兼容性问题,这是因为装运的处理,存储和调度历史不同。担心与老化和腐蚀以及专用储罐中底层的堆积有关。腐蚀试验是在微观试验环境中进行的,该环境已按照ASTM G4-01程序的推荐操作进行了修改。胶体的化学性质和生物柴油提纯操作技术可以合理地解释不同温度下不同的材料响应。采样的底层主要由甘油酯组成,类似于在生物柴油合成过程中通过酯交换分离的提取副产物的特征。该底层发挥有益和有害的作用。积极的一面是,它提取了极性成分,从而提高了质量。不利的一面是它降低了油的抗老化能力。就储罐材料的腐蚀而言,没有有害影响的风险。通过中和氧化产物并对金属表面施加保护,腐蚀的总体进程由碱性较低的底层控制。如果未观察到正常和审慎的条件,微生物降解只会带来风险。长时间孵育后,如果营养物质充足且条件有利,则底层中存在的低于水平检测极限的微生物可形成可计数的菌落。可以得出结论,如果所储存的生物柴油符合标准质量规格且储存条件正常,则在储存和下游基础设施中不会存在严重腐蚀的风险。 (C)2015 Elsevier B.V.保留所有权利。

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