首页> 外文期刊>Fuel >Life cycle assessment of a farmed wood butanol-gasoline blend as an alternative transport fuel for passenger cars
【24h】

Life cycle assessment of a farmed wood butanol-gasoline blend as an alternative transport fuel for passenger cars

机译:养殖木丁醇 - 汽油混合的生命周期评估作为乘用车的替代运输燃料

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The objective of this study is to investigate the environmental profile of farmed pine wood butanol blended with gasoline in a volumetric ratio of 30% and to compare the results with neat gasoline as a fossil reference fuel. To this end, the well-to-wheel approach has been chosen as it encompasses the entire fuel life cycle, i.e. the total fuel production chain including fuel use in the vehicle, while the vehicle manufacturing and infrastructure-related processes are excluded. The well-to-wheel analysis focuses on the biochemical production path in Germany for the years 2018 and 2040, considering different electricity generation mixes for the butanol production process and different fuel consumption and emission factors from passenger car operation in both years. The results, based on 16 midpoint impact categories of the ILCD2.0 life cycle impact assessment method, show that for the total fuel production and use stage, the butanol-gasoline blend has a higher environmental impact than the reference fuel. The main processes causing environmental impacts can be identified in the fuel production and related upstream stages. Regarding the use stage of the fuels, the butanol-gasoline blend reveals lower environmental impacts than the fossil gasoline reference fuel, as the biofuel blend reduces several tailpipe emission components like particulate matter. However, these reductions do not mitigate the total well-to-wheel impacts compared to fossil gasoline because fuel production and its upstream processes have a more significant impact. The analysis closes by highlighting several measures with a strong potential to improve the total environmental profile of the butanol-gasoline blend.
机译:本研究的目的是调查与汽油的体积比为30%的汽油与汽油混合的环境型材,并将含有整洁汽油的结果与化石参考燃料进行比较。为此,已经选择了粗车的方法,因为它包括整个燃料寿命周期,即总燃料生产链包括车辆中的燃料生产,而车辆制造和基础设施相关的过程被排除在外。井到车轮分析侧重于2018年和2040年德国的生化生产路径,考虑到丁醇生产过程的不同发电和乘用车运作的不同燃料消耗和排放因子两年来。结果,基于16个中点冲击类别的​​ILCD2.0生命周期影响评估方法,表明,对于总燃料生产和使用阶段,丁醇 - 汽油混合物具有比参考燃料更高的环境冲击。可以在燃料生产和相关上游阶段中识别导致环境影响的主要过程。关于燃料的使用阶段,丁醇 - 汽油混合物显示出比化石汽油参考燃料更低的环境撞击,因为生物燃料混合物减少了像颗粒物质一样的尾气排放组分。然而,与化石汽油相比,这些减少不会减轻总井冲击力,因为燃料生产及其上游工艺产生更大的影响。通过突出几种具有强大潜力的措施来缩短分析,以改善丁醇 - 汽油混合物的总环境概况。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号