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The impact of biofuels for road traffic on air quality: a modelling approach

机译:道路交通中生物燃料对空气质量的影响:一种建模方法

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摘要

The selection of the energy source to power the transport sector is one of the main current concerns, not only relative with the energy paradigm but also due to the strong influence of road traffic in urban areas, which highly affects human exposure to air pollutants and human health and quality of life. Due to current important technical limitations of advanced energy sources for transportation purposes, biofuels are seen as an alternative way to power the world's motor vehicles in a near-future, helping to reduce GHG emissions while at the same time stimulating rural development. Motivated by European strategies, Portugal, has been betting on biofuels to meet the Directive 2009/28/CE goals for road transports using biofuels, especially biodiesel, even though, there is unawareness regarding its impacts on air quality. In this sense, this work intends to clarify this issue by trying to answer the following question: can biodiesel use contribute to a better air quality over Portugal, particularly over urban areas? The first step of this work consisted on the characterization of the national biodiesel supply chain, which allows verifying that the biodiesel chain has problems of sustainability as it depends on raw materials importation, therefore not contributing to reduce the external energy dependence. Next, atmospheric pollutant emissions and air quality impacts associated to the biodiesel use on road transports were assessed, over Portugal and in particular over the Porto urban area, making use of the WRF-EURAD mesoscale numerical modelling system. For that, two emission scenarios were defined: a reference situation without biodiesel use and a scenario reflecting the use of a B20 fuel. Through the comparison of both scenarios, it was verified that the use of B20 fuels helps in controlling air pollution, promoting reductions on PM10, PM2.5, CO and total NMVOC concentrations. It was also verified that NO2 concentrations decrease over the mainland Portugal, but increase in the Porto urban area, as well as formaldehyde, acetaldehyde and acrolein emissions in the both case studies. However, the use of pure diesel is more injurious for human health due to its dominant VOC which have higher chronic hazard quotients and hazard indices when compared to B20.
机译:为运输部门提供动力的能源选择是当前主要关注的问题之一,这不仅与能源范例有关,而且还由于城市地区道路交通的强大影响,这极大地影响了人类暴露于空气污染物和人类的能力。健康和生活质量。由于目前用于运输目的的先进能源的重要技术局限性,生物燃料被视为在不久的将来为世界上的机动车辆提供动力的替代方式,有助于减少温室气体排放,同时促进农村发展。受欧洲战略的推动,葡萄牙一直在押注生物燃料,以达到使用生物燃料(尤其是生物柴油)进行道路运输的指令2009/28 / CE的目标,尽管人们对此尚不了解其对空气质量的影响。从这个意义上讲,这项工作旨在通过回答以下问题来澄清这个问题:生物柴油的使用是否可以使葡萄牙,尤其是城市地区的空气质量更好?这项工作的第一步是确定国家生物柴油供应链的特征,这可以验证生物柴油链是否具有可持续性问题,因为它依赖于原材料的进口,因此无助于减少对外部能源的依赖。接下来,利用WRF-EURAD中尺度数值模拟系统,评估了在葡萄牙,特别是在波尔图市区与道路运输中使用生物柴油相关的大气污染物排放和空气质量影响。为此,定义了两种排放情景:不使用生物柴油的参考情景和反映使用B20燃料的情景。通过两种情况的比较,证实使用B20燃料有助于控制空气污染,促进降低PM10,PM2.5,CO和NMVOC的总浓度。还证实了在两个案例研究中,葡萄牙大陆上的NO2浓度降低,但在波尔图市区增加,并且甲醛,乙醛和丙烯醛的排放量也增加。但是,由于纯柴油的主要挥发性有机化合物(VOC)与B20相比具有更高的慢性危害商和危害指数,因此使用纯柴油对人体健康的危害更大。

著录项

  • 作者

    Ribeiro, Isabel Lavrador.;

  • 作者单位

    Universidade de Aveiro (Portugal).;

  • 授予单位 Universidade de Aveiro (Portugal).;
  • 学科 Environmental engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 173 p.
  • 总页数 173
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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