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Road traffic emissions impact on air quality of the Greater Athens Area based on a 20 year emissions inventory

机译:根据20年的排放清单,道路交通排放对大雅典地区空气质量的影响

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During the last decades, the Greater Athens Area (CAA), among many other urban agglomerations, faces atmospheric pollution problems mainly associated with high levels of particulates, nitrogen dioxide and ozone. The major pollution source for the GAA is road transportation. In this sense, the aim of this work was to investigate the existence of a direct relationship linking air pollutant concentration levels and road traffic emissions. To this aim, air pollutant emissions from road traffic were calculated for the period 1990-2009 and then the relationship with the corresponding air pollutant concentrations was investigated. The calculated results have revealed that all pollutants examined show a strong decreasing trend whereas the age of the vehicles and the corresponding engine technology determine the amount of the pollutants emitted. In addition, the NO_2/NO_X emission ratio presents a constant increase in the course of the years, according to the respective NO_2/NO_X concentration ratio. Furthermore, the comparison between emission calculations and the corresponding measured concentrations shows a highly significant correlation providing therefore evidence to policy makers that all pollution abatement measures can be defined and assessed with regard to their anticipated effect on air pollutant emissions. Detailed analysis of the 2009 emissions shows that, in general, passenger cars are the major polluters for CO, NMVOCs and CH_4, whereas PM_(10) and NO_X are mostly associated with heavy duty vehicles (HDVs). Finally, it appears that vehicles aged more than IS years are responsible for the major part of the air pollutants emitted.
机译:在过去的几十年中,大雅典地区(CAA)以及许多其他城市群都面临着主要与大量微粒,二氧化氮和臭氧有关的大气污染问题。 GAA的主要污染源是公路运输。从这个意义上讲,这项工作的目的是研究将空气污染物浓度水平与道路交通排放联系起来的直接关系。为此,计算了1990年至2009年期间道路交通产生的空气污染物排放,然后研究了其与相应空气污染物浓度的关系。计算结果表明,所检查的所有污染物均呈现出强劲的下降趋势,而车辆的寿命和相应的发动机技术决定了所排放污染物的数量。此外,根据相应的NO_2 / NO_X浓度比,NO_2 / NO_X排放比在过去的几年中呈现出恒定的增长。此外,排放量计算与相应的测量浓度之间的比较显示出高度显着的相关性,因此为决策者提供了证据,可以根据其对空气污染物排放的预期影响来定义和评估所有污染减排措施。对2009年排放量的详细分析表明,一般而言,乘用车是CO,NMVOC和CH_4的主要污染源,而PM_(10)和NO_X主要与重型车辆(HDV)相关。最后,看来,超过IS年限的车辆是造成排放的大部分空气污染物的原因。

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