首页> 外文期刊>Science of the total environment >Traffic emission scenarios in Lombardy region in 1998-2015
【24h】

Traffic emission scenarios in Lombardy region in 1998-2015

机译:1998-2015年伦巴第大区的交通排放情景

获取原文
       

摘要

This study assesses and discusses the current and future contribution of road traffic to primary PM10 and PM10 main precursors (i.e. NO_x, SO_2, NH_3, VOC) in the Lombardy region (Italy). It defines a coherent and updated set of input parameters (emission factors, mileage and fleet composition) for traffic emission estimation between 1998 and 2015. 1998-2004 emissions are assessed basing on historical data, while 2005-2015 rely on different hypothesis about mobility development and vehicular turnover rate. The work shows that road traffic emissions of PM10 and PM10 precursors are expected to decrease in the period 2005-2015, with a reduction greater than 70% in scenarios with a fast vehicle turnover and a decrease in fuel usage. Increase in fuel consumption could substantially lower the emission reduction expected, off-setting a substantial part of the new technology benefits. The introduction of DPF (diesel particulate filter) vehicles will determine a reduction of PM10 exhaust, however this could potentially be stalled by the increase in diesel usage in the vehicle fleet and an increase in mileage driven, as the latter causes a rise in the contribution of PM10 from abrasion.rnConcerning the total atmospheric emissions in Lombardy, SO_2 (-6%) and NH_3 (< -2%) emission will remain constant, while PM10, VOC and NO_x emission will decrease, respectively by 2-30%, 6-15% and 2-32% in the period 2001-2015.
机译:这项研究评估并讨论了道路交通对伦巴第地区(意大利)的主要PM10和PM10主要前体(即NO_x,SO_2,NH_3,VOC)的贡献。它为1998年至2015年之间的交通排放估算定义了一组连贯且更新的输入参数(排放因子,里程和车队组成)。基于历史数据对1998-2004年的排放进行了评估,而2005-2015年则依赖于关于交通发展的不同假设和车辆周转率。这项工作表明,在2005-2015年期间,预计PM10和PM10前体的道路交通排放量将减少,在车辆周转速度快和燃料使用量减少的情况下,其排放量将减少70%以上。燃料消耗的增加可能会大大降低预期的减排量,从而抵消新技术收益的很大一部分。引入DPF(柴油颗粒过滤器)车辆将决定减少PM10排放,但是,这可能会因车队柴油使用量的增加和行驶里程的增加而停滞,因为后者导致贡献的增加关于伦巴第大区的总大气排放,SO_2(-6%)和NH_3(<-2%)排放将保持恒定,而PM10,VOC和NO_x排放将分别减少2-30%,6在2001-2015年期间分别为-15%和2-32%。

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