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Optimizing Blendstock Composition and Ethanol Feedstock to Reduce Gasoline Well-to-Pump CO 2 Emission

机译:优化混合原料的成分和乙醇原料,以减少汽油井到泵的CO 2排放

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摘要

Lifecycle CO2 emission of ethanol blended gasoline was simulated to investigate how fuel properties and composition affect overall emission. Fuel research octane number (RON), octane sensitivity and ethanol content (derived from sugarcane and corn) were varied in the simulations to formulate blended fuels that economically achieve target specifications. The well-to-pump (WTP) simulation results were then analyzed to understand the effects of fuel composition on emission. Elevated ethanol content displaces aromatics and olefins required in gasoline blendstock to reach a target fuel specification. The addition of greater sugarcane-based ethanol percentage in constant aromatics and olefins fuel reduces its WTP CO2 emission. Corn-based ethanol blending does not offer CO2 emission offset due to its high production emissions. The mixing of sugarcane-based with corn-based ethanol is shown to be a potentially effective method for achieving a blended fuel with a lower lifecycle CO2 emission. Besides CO2 emission, the total greenhouse gas (GHG) emission from land-use conversions (LUC), CH4, and N2O are also significant in determining the optimal fuel blend. Herein, we present preliminary results showing that total GHG emissions significantly increase when either corn or sugarcane ethanol is blended at even small percentages; detailed results will be addressed in future communications.
机译:模拟了乙醇混合汽油的生命周期CO2排放量,以研究燃料特性和成分如何影响总排放量。在模拟中改变了燃料研究的辛烷值(RON),辛烷值敏感性和乙醇含量(源自甘蔗和玉米),以配制经济上可达到目标规格的混合燃料。然后分析了井到泵(WTP)模拟结果,以了解燃料成分对排放的影响。较高的乙醇含量会取代汽油调合原料中所需的芳烃和烯烃,以达到目标燃料规格。在恒定的芳烃和烯烃燃料中添加更大的基于甘蔗的乙醇百分比可降低其WTP CO2排放量。玉米基乙醇共混物因其高排放量而无法抵消二氧化碳排放量。甘蔗基和玉米基乙醇的混合被证明是实现具有较低生命周期CO2排放的混合燃料的潜在有效方法。除了二氧化碳排放之外,土地使用转化(LUC),CH4和N2O产生的总温室气体(GHG)排放在确定最佳燃料混合物方面也很重要。在本文中,我们提供的初步结果表明,即使将玉米或甘蔗乙醇以很小的比例掺混,总的温室气体排放量也会显着增加。详细的结果将在以后的通信中讨论。

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