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Evaluation of Alternatives for the Passenger Road Transport Sector in Europe: A Life-Cycle Assessment Approach

机译:欧洲客运行业替代方案的评估:生命周期评估方法

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The road passenger transport is responsible for a large share of energy consumption and pollutants emission in Europe. Efforts have been made in the definition of new policies to reduce the environmental impacts of this sector. However, an integrated and consistent assessment of the most promising policies is required, using specific European indicators. For that matter, a life-cycle analysis was applied to the road passenger transport, for the European Union with 27 countries (EU27) in 2010, following a basket-of-products methodology and considering three main stages: production, use, and end-of-life of vehicles. Simapro 8 software was used, along with Ecoinvent 3 database and the impact assessment method International Reference Life Cycle Data System (ILCD) 2011 Midpoint+. Changes in vehicle production processes, vehicle constitution, and energy sources for vehicle propulsion were analyzed. The policies resulting in a decrease in all impact categories are the use of smaller or lightweight vehicles by positively influencing use, production, and end-of-life of vehicles. The use of more recent vehicles technology or diesel vehicles show substantial reductions in, respectively, five and eight impact categories (out of 15), justifying their adoption in the European fleet. Generally, the most notorious policies compared to the actual transport paradigm, like compressed natural gas (CNG), biofuels, or electric vehicles use, show the greatest reduction in climate change (up to 46%) but also a very significant rise of impacts in the categories that in the conventional basket-of-products already resulted in the worst indicators after normalization.
机译:公路客运在欧洲占很大一部分能源消耗和污染物排放。已经在定义新政策方面做出了努力,以减少该部门对环境的影响。但是,需要使用特定的欧洲指标对最有前途的政策进行综合一致的评估。为此,按照产品篮方法并考虑了三个主要阶段:生产,使用和最终三个阶段,对2010年有27个国家的欧盟(EU27)的公路客运进行了生命周期分析车辆寿命。使用Simapro 8软件以及Ecoinvent 3数据库和影响评估方法国际参考生命周期数据系统(ILCD)2011 Midpoint +。分析了车辆生产过程,车辆结构和车辆推进能源的变化。导致所有影响类别减少的政策是通过积极影响车辆的使用,生产和报废来使用较小或轻型的车辆。使用更新的车辆技术或柴油车辆分别减少了五个和八个影响类别(在15个类别中),这证明了它们在欧洲车队中的采用是合理的。通常,与实际运输范式相比,最臭名昭著的政策(例如压缩天然气(CNG),生物燃料或电动汽车的使用)显示出最大的气候变化减少量(最多46%),但其影响却显着上升常规产品篮子中归类后已经导致最差指标的类别。

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