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Quantification of the effect of both technical and non-technical measures from road transport on Spain’s emissions projections

机译:量化技术和非技术措施从西班牙排放预测的公路运输效果

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摘要

Atmospheric emissions from road transport have increased all around the world since 1990 more rapidly than from other pollution sources. Moreover, they contribute to more than 25% of total emissions in the majority of the European Countries. This situation confirms the importance of road transport when complying with emission ceilings (e.g. Kyoto Protocol and National Emissions Ceilings Directive). A methodology has been developed to evaluate the effect of transport measures on atmospheric emissions (EmiTRANS). Its application to Spain in the horizon of 2020 allows the quantification of the effect of several measures on emission reductions. This quantification was done through scenario development. Several scenarios were calculated considering technical measures (e.g. vehicle scrapping systems, higher penetration of hybrid and electric vehicles, fuel substitution, etc.) and non-technical measures (mileage reduction, implementation of Low Emission Zones and/or Congestion Charges in main cities, reduction of average speeds, logistical improvements that affects heavy duty vehicle load factors, etc.). The scenarios show the effect of each measure on NOx, SO2, CO, PM10, PM2.5, VOC, CO2 and CH4 emissions. The main conclusion is the necessity to combine both technical and non-technical measures to increase global effectiveness. In the analysis of specific pollutants, there is a great dispersion on reductions effect: technical measures are more effective to reduce air pollutants while non-technical measures are better options to reduce greenhouse effect gases (even though they also reduce air pollutants in a less efficient way).
机译:自1990年以来,全世界道路交通产生的大气排放量比其他污染源的增长速度更快。此外,在大多数欧洲国家中,它们占总排放量的25%以上。这种情况证实了遵守排放上限(例如《京都议定书》和《国家排放上限指令》)时道路运输的重要性。已经开发出一种方法来评估运输措施对大气排放的影响(EmiTRANS)。它在2020年即将应用到西班牙的情况下,可以量化几种措施对减排的影响。该量化是通过方案开发完成的。考虑到技术措施(例如,车辆报废系统,混合动力和电动汽车的较高普及率,燃料替代等)和非技术性措施(减少里程,在主要城市实施低排放区和/或拥堵费),计算了几种情况。降低平均速度,影响重型车辆负载系数的后勤改进等)。方案显示了每种措施对NOx,SO2,CO,PM10,PM2.5,VOC,CO2和CH4排放的影响。主要结论是必须将技术和非技术措施结合起来以提高全球有效性。在特定污染物的分析中,减排效果存在很大的差异:技术措施更有效地减少了空气污染物,而非技术措施则是减少温室效应气体的更好选择(即使它们也以较低的效率减少了空气污染物)道路)。

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