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Forecasting greenhouse gas emissions performance of the future Australian light vehicle traffic fleet

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  • Iankov, Ivan
  • Taylor, Michael A.P.
  • Scrafton, Derek

Abstract

Knowledge of real-world greenhouse gas emission rates for traffic is necessary for forecasting transport greenhouse gas emissions. This paper presents greenhouse gas emission rates that assist forecasting and modelling greenhouse gas emissions from light vehicles, i.e. private passenger vehicles and light commercial vehicles under realistic traffic conditions. It develops confidence intervals for market shares by categories for fuel or energy efficiency on the Australian market for new light vehicles for the period 2016–2030. The model estimates realistic market scenarios by simulating likely variations of capital and running costs of alternatives for car buyers and by considering buyers’ willingness-to-pay for fuel/energy efficiency. The results suggest that market forces will be insufficient to promote battery electric vehicles and plug-in hybrid electric vehicles in Australia. On average the widths of the 95% confidence intervals for greenhouse emission rates are about 10–15% of the magnitudes of the emission rates, so that analysts can forecast transport greenhouse gas emissions with a reasonable level of certainty. The study suggests that policy interventions to accelerate the uptake of low or zero emitting vehicles may be required.

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  • Iankov, Ivan & Taylor, Michael A.P. & Scrafton, Derek, 2017. "Forecasting greenhouse gas emissions performance of the future Australian light vehicle traffic fleet," Transportation Research Part A: Policy and Practice, Elsevier, vol. 99(C), pages 125-146.
  • Handle: RePEc:eee:transa:v:99:y:2017:i:c:p:125-146
    DOI: 10.1016/j.tra.2017.03.011
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    as
    1. Hammond, Geoffrey P. & Hazeldine, Tom, 2015. "Indicative energy technology assessment of advanced rechargeable batteries," Applied Energy, Elsevier, vol. 138(C), pages 559-571.
    2. Turrentine, Thomas S. & Kurani, Kenneth S., 2007. "Car buyers and fuel economy?," Energy Policy, Elsevier, vol. 35(2), pages 1213-1223, February.
    3. Hoen, Anco & Koetse, Mark J., 2014. "A choice experiment on alternative fuel vehicle preferences of private car owners in the Netherlands," Transportation Research Part A: Policy and Practice, Elsevier, vol. 61(C), pages 199-215.
    4. Beck, Matthew J. & Rose, John M. & Hensher, David A., 2013. "Environmental attitudes and emissions charging: An example of policy implications for vehicle choice," Transportation Research Part A: Policy and Practice, Elsevier, vol. 50(C), pages 171-182.
    5. Greene, David L. & Evans, David H. & Hiestand, John, 2013. "Survey evidence on the willingness of U.S. consumers to pay for automotive fuel economy," Energy Policy, Elsevier, vol. 61(C), pages 1539-1550.
    6. Piecyk, Maja I. & McKinnon, Alan C., 2010. "Forecasting the carbon footprint of road freight transport in 2020," International Journal of Production Economics, Elsevier, vol. 128(1), pages 31-42, November.
    7. Joyce Dargay & Dermot Gately & Martin Sommer, 2007. "Vehicle Ownership and Income Growth, Worldwide: 1960-2030," The Energy Journal, International Association for Energy Economics, vol. 0(Number 4), pages 143-170.
    8. Hidrue, Michael K. & Parsons, George R. & Kempton, Willett & Gardner, Meryl P., 2011. "Willingness to pay for electric vehicles and their attributes," Resource and Energy Economics, Elsevier, vol. 33(3), pages 686-705, September.
    9. Zhang, Shaojun & Wu, Ye & Liu, Huan & Huang, Ruikun & Un, Puikei & Zhou, Yu & Fu, Lixin & Hao, Jiming, 2014. "Real-world fuel consumption and CO2 (carbon dioxide) emissions by driving conditions for light-duty passenger vehicles in China," Energy, Elsevier, vol. 69(C), pages 247-257.
    10. Meghan R. Busse & Christopher R. Knittel & Florian Zettelmeyer, 2013. "Are Consumers Myopic? Evidence from New and Used Car Purchases," American Economic Review, American Economic Association, vol. 103(1), pages 220-256, February.
    11. Liu, Yizao, 2014. "Household demand and willingness to pay for hybrid vehicles," Energy Economics, Elsevier, vol. 44(C), pages 191-197.
    12. Seo, Youngguk & Kim, Seong-Min, 2013. "Estimation of greenhouse gas emissions from road traffic: A case study in Korea," Renewable and Sustainable Energy Reviews, Elsevier, vol. 28(C), pages 777-787.
    13. Nayum, Alim & Klöckner, Christian A. & Prugsamatz, Sunita, 2013. "Influences of car type class and carbon dioxide emission levels on purchases of new cars: A retrospective analysis of car purchases in Norway," Transportation Research Part A: Policy and Practice, Elsevier, vol. 48(C), pages 96-108.
    14. Greene, David L., 2011. "Uncertainty, loss aversion, and markets for energy efficiency," Energy Economics, Elsevier, vol. 33(4), pages 608-616, July.
    15. Turrentine, Tom & Kurani, Kenneth S, 2007. "Car buyers and fuel economy?," Institute of Transportation Studies, Working Paper Series qt56x845v4, Institute of Transportation Studies, UC Davis.
    16. Eom, Jiyong & Schipper, Lee, 2010. "Trends in passenger transport energy use in South Korea," Energy Policy, Elsevier, vol. 38(7), pages 3598-3607, July.
    17. Andress, David & Das, Sujit & Joseck, Fred & Dean Nguyen, T., 2012. "Status of advanced light-duty transportation technologies in the US," Energy Policy, Elsevier, vol. 41(C), pages 348-364.
    18. Zhang, Shaojun & Wu, Ye & Un, Puikei & Fu, Lixin & Hao, Jiming, 2016. "Modeling real-world fuel consumption and carbon dioxide emissions with high resolution for light-duty passenger vehicles in a traffic populated city," Energy, Elsevier, vol. 113(C), pages 461-471.
    19. Baltas, George & Saridakis, Charalampos, 2013. "An empirical investigation of the impact of behavioural and psychographic consumer characteristics on car preferences: An integrated model of car type choice," Transportation Research Part A: Policy and Practice, Elsevier, vol. 54(C), pages 92-110.
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