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Integrated Multistage Supercritical Technology to Produce High Quality Vegetable Oils and Biofuels

机译:集成的多级超临界技术可生产高质量的植物油和生物燃料

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摘要

A multi-step integrated technology to produce vegetable oils and biodiesel (BD) is proposed, documented for technical and economic feasibility, and preliminarily designed. The 1st step consists of soybean oil extraction with supercritical (SC) fluids. The 2nd step is designated to transform the soybean oil into BD by transesterification (TE) with SC methanol/ethanol. The degradation of glycerol to light fuel products makes this method simple and cost effective by eliminating costly glycerol separation steps. Part of the BD is in-situ consumed by a diesel engine which, in turn, provides the mechanical power to pressurize the system as well as the heat of the exhaust gases for the extraction and TE steps. Different versions of this system can be implemented based on the main target: oil and BD production or diesel engine applications. The efficiency of the combustion and cleaner emissions render the proposed technology attractive for the transportation sector with only TE step needed to provide fuels to engines.
机译:提出了一种用于生产植物油和生物柴油(BD)的多步骤集成技术,并记录了技术和经济可行性,并进行了初步设计。第一步包括用超临界(SC)流体萃取大豆油。第二步指定通过与SC甲醇/乙醇的酯交换反应(TE)将大豆油转化为BD。通过消除昂贵的甘油分离步骤,将甘油降解为轻质燃料产品使该方法简单且具有成本效益。 BD的一部分被柴油机原地消耗,而柴油机又提供了机械能来给系统加压,并为萃取和TE步骤提供了废气热量。可以基于主要目标实现该系统的不同版本:石油和BD生产或柴油发动机应用。燃烧效率和更清洁的排放使所提议的技术对运输部门具有吸引力,仅需TE步骤即可为发动机提供燃料。

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