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Determination of Carbon Footprint using LCA Method for Straight Used Cooking Oil as a Fuel in HGVs

机译:使用LCA法测定碳足迹,用于直接用烹饪油作为HGV的燃料

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In order to improve energy supply diversity and reduce carbon dioxide emissions, sustainable bio-fuels are strongly supported by EU and other governments in the world. While the feedstock of biofuels has caused a debate on the issue of sustainability, the used cooking oil (UCO) has become a preferred feedstock for biodiesel manufacturers. However, intensive energy consumption in the trans-esterification process during the UCO biodiesel production has significantly compromised the carbon reduction potentials and increased the cost of the UCO biodiesel. Moreover, the yield of biodiesel is only ~90% and the remaining ~10% feedstock is wasted as by-product glycerol. Direct use of UCO in diesel engines is a way to maximize its carbon saving potentials. This paper, as part of the EPID (Environmental and Performance Impact of Direct use of used cooking oil in 44 tonne trucks under real world driving conditions) project, presents the life cycle analysis of Straight UCO (SUCO) in terms of CO_2 and energy consumption, compared with the UCO biodiesel and petroleum diesel. The UK carbon calculator developed by UK Department for Transport was used for the calculations. The results show that SUCO renewable fuel can reduce the WTW carbon footprint by 98% compared to diesel and by 52% compared to the UCO biodiesel.
机译:为了提高能源供应多样性,减少二氧化碳排放,欧盟和世界各国政府强烈支持可持续生物燃料。虽然生物燃料的原料导致了对可持续性问题的争论,但是使用的食用油(UCO)已成为生物柴油制造商的首选原料。然而,在UCO生物柴油生产过程中,在UCO生物柴油生产过程中的跨酯化过程中的强化能耗显着地影响了碳减少电位并增加了UCO生物柴油的成本。此外,生物柴油的产率仅为〜90%,并且剩余的〜10%原料被浪费为副产物甘油。直接使用UCO在柴油发动机中是一种最大化其碳源潜力的方法。本文作为EPID的一部分(在现实世界驾驶条件下的44吨卡车中直接使用使用的食用油的环境和性能影响)项目,在CO_2和能耗方面提出了直UCO(SUCO)的生命周期分析,与UCO生物柴油和石油柴油相比。英国交通部门开发的英国碳计算器用于计算。结果表明,与柴油相比,Suco可再生燃料可以将WTW碳足迹减少98%,与UCO生物柴油相比,52%。

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