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首页> 外文期刊>Journal of Cleaner Production >Agave: A promising feedstock for biofuels in the water-energy-food-environment (WEFE) nexus
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Agave: A promising feedstock for biofuels in the water-energy-food-environment (WEFE) nexus

机译:龙舌兰:在水能 - 食物环境(WEFE)Nexus中的生物燃料有前景的原料

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The aim of this study was to conduct the first comprehensive life cycle assessment and economic analysis on ethanol produced from agave. Compositional and field data from a field experiment in Queensland, Australia was used. Our study shows that ethanol yields from agave (7414 L/ha/year) are comparable to Brazilian sugarcane (9900/L/ha/year) and higher than US corn ethanol (3800/L/ha/year). Furthermore, agave outperforms current first generation biofuel crops in water-related impacts, including Freshwater Eutrophication (96% lower than corn and 88% lower than sugarcane), Marine Ecotoxicity (59% lower than corn and 53% lower than sugarcane) and Water Consumption (46% lower than corn and 69% lower than sugarcane). The life cycle fossil energy use (Fossil Resource Scarcity) for agave is 58% lower than corn and 6% higher than sugarcane. The Global Warming impact for agave is also 62% and 30% lower than that of corn and sugarcane, respectively. Although its Land Use impact, measured by land occupied per unit ethanol output, is 98% higher than corn and 2% higher than sugarcane, agave can be grown on arid land that is not suitable for food crops. The economic analysis suggests that first generation ethanol production from agave is not commercially viable without government support. Overall, the results show that agave is promising for biofuel production in the water-energy-food-environment context. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究的目的是对龙舌兰生产的乙醇进行第一个综合生命周期评估和经济分析。使用了澳大利亚昆士兰州田地实验的组成和现场数据。我们的研究表明,来自龙舌兰(7414L / ha /年)的乙醇产量与巴西甘蔗(9900 / L / ha /年)相当,高于美国玉米乙醇(3800 / L / ha /年)。此外,龙舌兰优于当前的第一代生物燃料作物,包括淡水富营养化(比玉米低96%,比甘蔗低88%),海洋生态毒性(比玉米低59%,低于甘蔗53%)和水消耗(比玉米低46%,比甘蔗低69%)。龙舌兰的生命周期化石能量使用(化石资源稀缺性)比玉米低58%,比甘蔗高6%。龙舌兰的全球变暖冲击也分别比玉米和甘蔗低62%和30%。虽然其土地利用影响由每单位单位乙醇产量占用的土地测量,但比玉米高98%,比甘蔗高2%,龙舌兰可以在干旱的土地上生长,不适合粮食作物。经济分析表明,无政府支持,第一代龙舌兰生产的龙舌兰产量在商业上不可行。总体而言,结果表明,龙舌兰在水能 - 食物环境背景下具有生物燃料生产的希望。 (c)2020 elestvier有限公司保留所有权利。

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