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PM, NOx and CO2 emission reductions from speed management policies in Europe

Author

Listed:
  • Int Panis, L.
  • Beckx, C.
  • Broekx, S.
  • De Vlieger, I.
  • Schrooten, L.
  • Degraeuwe, B.
  • Pelkmans, L.

Abstract

Speed reduction measures rank among the most common schemes to improve traffic safety. Recently many urban streets or entire districts were converted into 30 kph zones and in many European countries the maximum permissible speed of trucks on motorways is under discussion. However, besides contributing to traffic safety, reducing the maximum speed is also seen as beneficial to the environment due to the associated reduced fuel consumption and lower emissions. These claims however are often unsubstantiated. To gain greater insight into the impact of speed management policies on emissions, this paper examines the impact on different traffic types (urban versus highway traffic) with different modelling approaches (microscopic versus macroscopic). Emissions were calculated for specific types of vehicles with the microscopic VeTESS-tool using real-world driving cycles and compared with the results obtained using generalized Copert-like macroscopic methodologies. We analyzed the relative change in pollutants emitted before and after the implementation of a speed reduction measure for passenger cars on local roads (50-30 kph) and trucks on motorways (90-80 kph). Results indicate that emissions of most classic pollutants for the research undertaken do not rise or fall dramatically. For the passenger cars both methods indicate only minor changes to the emissions of NOx and CO2. For PM, the macroscopic approach predicts a moderate increase in emissions whereas microscopic results indicate a significant decrease. The effects of specific speed reduction schemes on PM emissions from trucks are ambiguous but lower maximums speed for trucks consistently result in lower emissions of CO2 and lower fuel consumption. These results illustrate the scientific uncertainties that policy makers face when considering the implementation of speed management policies.

Suggested Citation

  • Int Panis, L. & Beckx, C. & Broekx, S. & De Vlieger, I. & Schrooten, L. & Degraeuwe, B. & Pelkmans, L., 2011. "PM, NOx and CO2 emission reductions from speed management policies in Europe," Transport Policy, Elsevier, vol. 18(1), pages 32-37, January.
  • Handle: RePEc:eee:trapol:v:18:y:2011:i:1:p:32-37
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    References listed on IDEAS

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    1. INT PANIS, Luc & DE GEUX, Bas & VANDENBULCKE, Grégory & WILLEMS, Henry, 2010. "Exposure to particulate matter in traffic: A comparison of cyclists and car passengers," LIDAM Reprints CORE 2211, Université catholique de Louvain, Center for Operations Research and Econometrics (CORE).
    2. Carolien Beckx & Luc Int Panis & Jean Vankerkom & Davy Janssens & Geert Wets & Theo Arentze, 2009. "An Integrated Activity-Based Modelling Framework to Assess Vehicle Emissions: Approach and Application," Environment and Planning B, , vol. 36(6), pages 1086-1102, December.
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    5. Fang Wang & Yaoyao Peng & Chunyan Jiang, 2017. "Influence of Road Patterns on PM 2.5 Concentrations and the Available Solutions: The Case of Beijing City, China," Sustainability, MDPI, vol. 9(2), pages 1-17, February.
    6. Wei Pan & Xiaolu Chen & Xiaojun Duan, 2022. "Energy dissipation and particulate emission at traffic bottleneck based on NaSch model," The European Physical Journal B: Condensed Matter and Complex Systems, Springer;EDP Sciences, vol. 95(7), pages 1-13, July.
    7. Mogno, Caterina & Fontaras, Georgios & Arcidiacono, Vincenzo & Komnos, Dimitrios & Pavlovic, Jelica & Ciuffo, Biagio & Makridis, Michail & Valverde, Victor, 2022. "The application of the CO2MPAS model for vehicle CO2 emissions estimation over real traffic conditions," Transport Policy, Elsevier, vol. 124(C), pages 152-159.
    8. Tommi Inkinen & Esa Hämäläinen, 2020. "Reviewing Truck Logistics: Solutions for Achieving Low Emission Road Freight Transport," Sustainability, MDPI, vol. 12(17), pages 1-11, August.
    9. Stephen Kome Fondzenyuy & Blair Matthew Turner & Alina Florentina Burlacu & Chris Jurewicz & Davide Shingo Usami & Steffel Ludivin Tezong Feudjio & Luca Persia, 2024. "The Impact of Speed Limit Change on Emissions: A Systematic Review of Literature," Sustainability, MDPI, vol. 16(17), pages 1-17, September.
    10. Nitzsche, Eric & Tscharaktschiew, Stefan, 2013. "Efficiency of speed limits in cities: A spatial computable general equilibrium assessment," Transportation Research Part A: Policy and Practice, Elsevier, vol. 56(C), pages 23-48.
    11. Fiamma Perez-Prada & Andres Monzon & Cristina Valdes, 2017. "Managing Traffic Flows for Cleaner Cities: The Role of Green Navigation Systems," Energies, MDPI, vol. 10(6), pages 1-18, June.
    12. Valentin Carlan & Christa Sys & Thierry Vanelslander, 2019. "Innovation in Road Freight Transport: Quantifying the Environmental Performance of Operational Cost-Reducing Practices," Sustainability, MDPI, vol. 11(8), pages 1-26, April.
    13. Jan Kunkler & Maximilian Braun & Florian Kellner, 2021. "Speed Limit Induced CO 2 Reduction on Motorways: Enhancing Discussion Transparency through Data Enrichment of Road Networks," Sustainability, MDPI, vol. 13(1), pages 1-22, January.
    14. Xin Lin & Chris M. J. Tampère & Stef Proost, 2020. "Optimizing Traffic System Performance with Environmental Constraints: Tolls and/or Additional Delays," Networks and Spatial Economics, Springer, vol. 20(1), pages 137-177, March.
    15. Sider, Timothy & Alam, Ahsan & Zukari, Mohamad & Dugum, Hussam & Goldstein, Nathan & Eluru, Naveen & Hatzopoulou, Marianne, 2013. "Land-use and socio-economics as determinants of traffic emissions and individual exposure to air pollution," Journal of Transport Geography, Elsevier, vol. 33(C), pages 230-239.
    16. Timothy Sider & Marianne Hatzopoulou & Naveen Eluru & Gabriel Goulet-Langlois & Kevin Manaugh, 2015. "Smog and socioeconomics: an evaluation of equity in traffic-related air pollution generation and exposure," Environment and Planning B, , vol. 42(5), pages 870-887, September.

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