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Technical feasibility of biodiesel production from virgin oil and waste cooking oil: Comparison between traditional and innovative process based on hydrodynamic cavitation

机译:初榨油和废物烹饪油生物柴油生产技术可行性:基于流体动力空化的传统创新过程比较

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Biodiesel production calls for innovative solutions to turn into a competitive process with a reduced environmental impact. One of the process bottlenecks stands in the immiscibility of oil and alcohol as raw materials, so mixing process largely impacts the overall process cost. This process step, if carried out by using hydrodynamic cavitation, has the possibility to become a benchmark for large scale applications. In this paper a process analysis of biodiesel production scheme is developed starting from two different feedstocks, virgin oil and waste cooking oil. At the first the traditional process scheme has been simulated, in a second simulation, the reactor for the biodiesel production is interchanged with a hydrodynamic cavitation reactor. In the paper, the comparison between the traditional and innovative process by using life cycle costing approach has been presented, thus providing indications for industrial technological implementation coming from a professional tool for process analysis. It is worth noting that the introduction of hydrodynamic cavitation reduces of about 40% the energy consumption with respect to the traditional process. As regards the total treatment costs, when using virgin oil as feedstock, they were in the range 820-830 €/t (innovative and traditional process, respectively); while starting from waste cooking oil the costs decreased of about 60%, down to 290-300 €/t (innovative and traditional process, respectively).
机译:生物柴油生产要求创新的解决方案转变为环境影响降低的竞争过程。其中一个过程瓶颈位于油和酒精的不混溶性,因为混合过程很大程度上影响了整体过程的成本。如果通过使用流体动力空化进行的这种过程步骤,可以成为大规模应用的基准。本文从两种不同的原料,初榨油和废油开始开发了生物柴油生产方案的过程分析。在第一次进行传统的过程方案,在第二模拟中,用于生物柴油生产的反应器与流体动力空化反应器互换。本文介绍了通过使用生命周期成本化方法的传统和创新过程之间的比较,从而为来自工艺分析的专业工具提供的工业技术实现提供指示。值得注意的是,在传统过程中引入流体动力空化降低了能量消耗的约40%。关于总处理成本,使用初榨油作为原料时,它们的范围为820-830欧元(分别创新和传统过程);从废物食用油开始时,成本约为60%,降至290-300欧元(分别创新和传统过程)。

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