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Environmental aspects of ethanol-based fuels from Brassica carinata: A case study of second generation ethanol

机译:甘蓝型油菜乙醇燃料的环境因素:以第二代乙醇为例

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摘要

One of the main challenges faced by mankind in the 21 st century is to meet the increasing demand for energy requirements by means of a more sustainable energy supply. In countries that are net fossil fuel importers, expectation about the benefit of using alternative fuels on reducing oil imports is the primary driving force behind efforts to promote its production and use. Spain is scarce in domestic energy sources and more than 50% of the energy used is fossil fuel based. The promotion of renewable energies use is one of the principal vectors in the Spanish energy policy. Selected herbaceous crops such as Brassica carinata are currently under study as potential energy sources. Its biomass can be considered as potential feedstock to ethanol conversion by a n enzymatic process due to the characteristics of its composition, rich in cellulose and hemicellulose.This paper aims to analyse the environmental performance of two ethanol-based fuel applications (El 0 and E85) in a passenger car (El 0 fuel: a mixture of 10% ethanol and 90% gasoline by volume; E85 fuel: a mixture of 85% ethanol and 15% gasoline by volume) as well as their comparison with conventional gasoline as transport fuel. Two types of functional units are applied in this study: ethanol production oriented and travelling distance oriented functional units in order to reflect the availability or not of ethanol supply. E85 seems to be the best alternative when ethanol production based functional unit is considered in terms of greenhouse gas (GHG) emissions and E10 in terms of non-renewable energy resources use. Nevertheless, E85 offers the best environmental performance when travellingdistance oriented functional unit is assumed in both impacts. In both functional unit perspectives, the use of ethanol-based fuels reduces the global warming and fossil fuels consumption. However, the contributions to other impact indicators (e.g. acidification, eutrophication and photochemical oxidants formation) were lower for conventional gasoline.rnLife Cycle Assessment (LCA) procedure helps to identify the key areas in the B. carinata ethanol production life cycle where the researchers and technicians need to work to improve the environmental performance. Technological development could help in lowering both the environmental impact and the prices of the ethanol fuels.
机译:21世纪人类面临的主要挑战之一是通过更可持续的能源供应来满足不断增长的能源需求。在矿物燃料净进口国中,对使用替代燃料对减少石油进口的好处的期望是促进其生产和使用的主要动力。西班牙的国内能源稀缺,使用的能源中有50%以上是化石燃料。促进可再生能源的使用是西班牙能源政策的主要载体之一。目前正在研究精选的草本作物如芸苔属植物作为潜在的能源。由于其成分丰富,富含纤维素和半纤维素的特性,其生物质可被认为是通过酶促工艺转化为乙醇的潜在原料。本文旨在分析两种乙醇基燃料应用(El 0和E85)的环境性能。乘用车(El 0燃料:按体积计10%乙醇和90%汽油的混合物; E85燃料:按体积计85%乙醇和15%汽油的混合物),以及它们与传统汽油作运输燃料的比较。在这项研究中应用了两种类型的功能单元:以乙醇生产为导向和以行进距离为导向的功能单元,以反映乙醇供应的可用性与否。当从温室气体(GHG)排放角度考虑以乙醇生产为基础的功能单元,而在不可再生能源的使用方面考虑以E10为基础时,E85似乎是最佳替代方案。尽管如此,当在两种影响中都假定以行驶距离为导向的功能单元时,E85可以提供最佳的环境性能。从两个功能单元的角度来看,使用基于乙醇的燃料可以减少全球变暖和化石燃料的消耗。然而,传统汽油对其他影响指标(例如酸化,富营养化和光化学氧化剂形成)的贡献较低。生命周期评估(LCA)程序有助于确定卡氏芽孢杆菌乙醇生产生命周期中的关键区域,研究人员和技术人员需要努力改善环境绩效。技术发展可以帮助降低环境影响和乙醇燃料的价格。

著录项

  • 来源
    《Renewable & Sustainable Energy Reviews》 |2009年第9期|2613-2620|共8页
  • 作者单位

    Department of Chemical Engineering, School of Engineering, University of Santiago de Compostela, 15782 Santiago de Compostela, Spain;

    SosteniPrA (UAB-IRTA), Institute of Environmental Science and Technology (ICTA), Autonomous University of Barcelona (UAB), 08193 Beltaterra, Barcelona, Spain;

    SosteniPrA (UAB-IRTA), Institute of Environmental Science and Technology (ICTA), Autonomous University of Barcelona (UAB), 08193 Beltaterra, Barcelona, Spain Chemical Engineering Department, Autonomous University of Barcelona (UAB), 08193 Bellaterra, Barcelona, Spain;

    SosteniPrA (UAB-IRTA), Institute of Environmental Science and Technology (ICTA), Autonomous University of Barcelona (UAB), 08193 Beltaterra, Barcelona, Spain Chemical Engineering Department, Autonomous University of Barcelona (UAB), 08193 Bellaterra, Barcelona, Spain;

    Department of Chemical Engineering, School of Engineering, University of Santiago de Compostela, 15782 Santiago de Compostela, Spain;

    Department of Chemical Engineering, School of Engineering, University of Santiago de Compostela, 15782 Santiago de Compostela, Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    brassica carinata; E10; E85; environmental performance; ethanol fuels; functional unit; life cycle assessment;

    机译:芸苔E10;E85;环保性能;乙醇燃料;功能单元;生命周期评估;
  • 入库时间 2022-08-18 01:25:08

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