Transport sector accounts for almost 30% of all energy consumption globally. Energy Institute https://www.energyinst.org/exploring-energy/topic/transport (2022).
Transport: improving the sustainability of passenger and freight transport. International Energy Agency https://www.iea.org/topics/transport (2022).
UK greenhouse gas emissions, final figures. Department for Business Energy and Industrial Strategy https://assets.publishing.service.gov.uk/government/uploads/system/uploads/attachment_data/file/957887/2019_Final_greenhouse_gas_emissions_statistical_release.pdf (2019).
Creutzig, F. et al. Transport: a roadblock to climate change mitigation? Science 350, 911–912 (2015).
Google Scholar
Greenhouse Gas Emissions by Transport Mode: United Kingdom, 1990–2019, Table ENV0201. (Department for Transport, 2021).
Barrett, J. et al. Energy demand reduction options for meeting national zero-emission targets in the United Kingdom. Nat. Energy 7, 726–735 (2022).
Google Scholar
Creutzig, F. et al. Demand-side solutions to climate change mitigation consistent with high levels of well-being. Nat. Clim. Chang 12, 36–46 (2022).
Google Scholar
McLachlan, R. & Callister, P. Managing New Zealand’s greenhouse gas emissions from aviation. Institute for Governance and Policy Studies https://planetaryecology859820530.files.wordpress.com/2022/03/avreview.pdf (2022).
Aamaas, B., Borken-Kleefeld, J. & Peters, G. P. The climate impact of travel behavior: a German case study with illustrative mitigation options. Environ. Sci. Policy 33, 273–282 (2013).
Google Scholar
Van Goeverden, K., van Arem, B. & van Nes, R. Volume and GHG emissions of long-distance travelling by Western Europeans. Transp. Res. D 45, 28–47 (2016).
Google Scholar
Kuhnimhof, T., Collet, R., Armoogum, J. & Madre, J.-L. Generating internationally comparable figures on long-distance travel for Europe. Transp. Res. Rec. 2105, 18–27 (2009).
Google Scholar
Mattioli, G. & Adeel, M. in International Encyclopedia of Transportation (ed. Vickerman, R.) 272–277 (Elsevier, 2021).
Schäfer, A. W., Evans, A. D., Reynolds, T. G. & Dray, L. Costs of mitigating CO2 emissions from passenger aircraft. Nat. Clim. Chang. 6, 412–417 (2016).
Google Scholar
National Travel Survey, 2002–2017: Special Licence Access. [Data Collection]. 10th Edition. UK Data Service. SN: 7553, DOI: 10.5255/UKDA-SN-7553-10 (Department for Transport, 2021).
International Passenger Survey, 2017. [Data Collection]. 6th Edition. UK Data Service. SN: 8286, DOI: 10.5255/UKDA-SN-8286-6 (Office for National Statistics, 2022).
Kim, J., Kim, I., Shim, J., Yoo, H. & Park, S. Model calibration and forecasts of air travel demand with categorized household socioeconomic attributes. Transp. Res. Rec. 2674, 363–371 (2020).
Google Scholar
Reichert, A. & Holz-Rau, C. Mode use in long-distance travel. J. Transp. Land Use 8, 87–105 (2015).
Dargay, J. M. & Clark, S. The determinants of long distance travel in Great Britain. Transp. Res. Part A 46, 576–587 (2012).
Czepkiewicz, M., Heinonen, J. & Ottelin, J. Why do urbanites travel more than do others? A review of associations between urban form and long-distance leisure travel. Environ. Res. Lett. 13, 073001 (2018).
Google Scholar
Limtanakool, N., Dijst, M. & Schwanen, T. The influence of socioeconomic characteristics, land use and travel time considerations on mode choice for medium- and longer-distance trips. J. Transp. Geogr. 14, 327–341 (2006).
Google Scholar
Reichert, A., Holz-Rau, C. & Scheiner, J. GHG emissions in daily travel and long-distance travel in Germany—social and spatial correlates. Transp. Res. D 49, 25–43 (2016).
Google Scholar
Metz, D. Peak car and beyond: the fourth era of travel. Transp. Rev. 33, 255–270 (2013).
Google Scholar
Millard‐Ball, A., Schipper, L., Millard-Ball, A. & Schipper, L. Are we reaching peak travel? Trends in passenger transport in eight industrialized countries. Transp. Rev. 31, 357–378 (2011).
Google Scholar
Goodwin, P. & van Dender, K. ‘Peak car’—themes and issues. Transp. Rev. 33, 243–254 (2013).
Google Scholar
Sumption, M. & Walsh, P. Net migration to the UK. The Migration Observatory https://migrationobservatory.ox.ac.uk/resources/briefings/long-term-international-migration-flows-to-and-from-the-uk/ (2022).
Mattioli, G. & Scheiner, J. The impact of migration background, ethnicity and social network dispersion on air and car travel in the UK. Travel Behav. Soc. 27, 65–78 (2022).
Google Scholar
Brand, C. et al. The climate change mitigation effects of daily active travel in cities. Transp. Res. D 93, 102764 (2021).
Google Scholar
Nakamura, K. & Hayashi, Y. Strategies and instruments for low-carbon urban transport: an international review on trends and effects. Transp. Policy 29, 264–274 (2013).
Google Scholar
Beevers, S. & Carslaw, D. The impact of congestion charging on vehicle emissions in London. Atmos. Environ. 39, 1–5 (2005).
Google Scholar
Larsson, J., Elofsson, A., Sterner, T. & Åkerman, J. International and national climate policies for aviation: a review. Clim. Policy 19, 787–799 (2019).
Google Scholar
States adopt net-zero 2050 global aspirational goal for international flight operations. International Civil Aviation Organization https://www.icao.int/Newsroom/Pages/States-adopts-netzero-2050-aspirational-goal-for-international-flight-operations.asp (2022).
Wadud, Z. & Chintakayala, P. K. Personal carbon trading: trade-off and complementarity between in-home and transport related emissions reduction. Ecol. Econ. 156, 397–408 (2019).
Google Scholar
Wadud, Z. Personal tradable carbon permits for road transport: why, why not and who wins? Transp. Res. Part A 45, 1052–1065 (2011).
Fuso Nerini, F., Fawcett, T., Parag, Y. & Ekins, P. Personal carbon allowances revisited. Nat. Sustain. 4, 1025–1031 (2021).
Google Scholar
Larsson, J., Kamb, A., Nässén, J. & Åkerman, J. Measuring greenhouse gas emissions from international air travel of a country’s residents methodological development and application for Sweden. Environ. Impact Assess. Rev. 72, 137–144 (2018).
Google Scholar
Letter: international aviation and shipping and net zero. Climate Change Committee https://www.theccc.org.uk/publication/letter-international-aviation-and-shipping/ (2022).
Cairns, S. The Non-CO2 Impacts of Planes Are a Key Reason to Reduce Aviation Demand. CREDS Policy Brief 030 (Centre for Research into Energy Demand Solutions, 2023).
Schulz, A., Magdolen, M., Chlond, B., Kuhnimhof, T. & Köhler, K. Identifying and understanding long-distance travel demand by combining official transport statistics and survey data. Transp. Res. Procedia 76, 458–469 (2024).
Google Scholar
Travel trends: 2022. Office for National Statistics https://www.ons.gov.uk/peoplepopulationandcommunity/leisureandtourism/articles/traveltrends/2022 (2023).
Gössling, S., Hanna, P., Higham, J., Cohen, S. & Hopkins, D. Can we fly less? Evaluating the ‘necessity’ of air travel. J. Air Transp. Manag. 81, 101722 (2019).
Google Scholar
Hopkinson, L. & Cairns, S. Elite Status: Global Inequalities in Flying. (Possible, 2021); https://www.wearepossible.org/latest-news/elite-status-how-a-small-minority-around-the-world-take-an-unfair-share-of-flights
Metz, D. Demographic determinants of daily travel demand. Transp. Policy 21, 20–25 (2012).
Google Scholar
Schafer, A. W. & Barrett, R. H. Pathways towards 90% decarbonization of aviation by 2050. Nat. Clim. Chang 12, 895–896 (2022).
Google Scholar
Needell, Z. A., McNerney, J., Chang, M. T. & Trancik, J. E. Potential for widespread electrification of personal vehicle travel in the United States. Nat. Energy 1, 16112 (2016).
Google Scholar
Parkhurst, G. & Clayton, W. Electrifying Mobility: Realising a Sustainable Future for the Car (Emerald Publishing Limited, 2022).
Melton, N., Axsen, J. & Sperling, D. Moving beyond alternative fuel hype to decarbonize transportation. Nat. Energy 1, 16013 (2016).
Google Scholar
Vehicles at the end of the quarter by license status and body type. Department for Transport https://www.gov.uk/government/statistical-data-sets/vehicle-licensing-statistics-data-tables (2022).
Three Quarters of a Million EVs Now on UK Roads, but Car Ownership Falls for Second Year https://www.smmt.co.uk/2022/05/three-quarters-of-a-million-evs-now-on-uk-roads-but-car-ownership-falls-for-second-year/ (SMMT, 2022).
Jet zero strategy—delivering net zero aviation by 2050. Department for Transport https://www.gov.uk/government/publications/jet-zero-strategy-delivering-net-zero-aviation-by-2050 (2022).
Wadud, Z., MacKenzie, D. & Leiby, P. Help or hindrance? The travel, energy and carbon impacts of highly automated vehicles. Transp. Res. Part A 86, 1–18 (2016).
Gurumurthy, K. M. & Kockelman, K. M. Modeling Americans’ autonomous vehicle preferences: a focus on dynamic ride-sharing, privacy & long-distance mode choices. Technol. Forecast. Soc. Change 150, 119792 (2020).
Google Scholar
Wadud, Z., Adeel, M., Anable, J. & Lucas, K. A disaggregate analysis of ‘excess’ car travel and its role in decarbonisation. Transp. Res. D 109, 103377 (2022).
Google Scholar
Büchs, M. & Mattioli, G. Trends in air travel inequality in the UK: from the few to the many? Travel Behav. Soc. 25, 92–101 (2021).
Google Scholar
Janzen, M., Vanhoof, M., Smoreda, Z. & Axhausen, K. W. Closer to the total? Long-distance travel of French mobile phone users. Travel Behav. Soc. 11, 31–42 (2018).
Google Scholar
Aultman-Hall, L., Harvey, C., Sullivan, J. & LaMondia, J. J. The implications of long-distance tour attributes for national travel data collection in the United States. Transportation 45, 875–903 (2018).
Google Scholar
Malichová, E., Cornet, Y. & Hudák, M. Travellers’ use and perception of travel time in long-distance trips in Europe. Travel Behav. Soc. 27, 95–106 (2022).
Google Scholar
National Travel Survey 2021: Notes and Definitions. https://www.gov.uk/government/statistics/national-travel-survey-2021/national-travel-survey-2021-notes-and-definitions#appendix-nts-definitions (Department for Transport, 2022).
National Travel Survey 2017 Technical Report (Department for Transport, 2018).
International Passenger Survey QMI. Office for National Statistics https://www.ons.gov.uk/peoplepopulationandcommunity/leisureandtourism/methodologies/internationalpassengersurveyqmi (2015).
International Passenger Survey, 1995. [Data Collection]. 2nd Edition. UK Data Service. SN: 3652, DOI: 10.5255/UKDA-SN-3652-1 (UK Data Service, 2002).
CLIA UK and Ireland Cruise Census 2016—20th February 2017 Breakdown by Destination (Passengers 000s), 2007–2016 (CLIA, 2017).
Schipper, L. & Marie-Lilliu, C. Transportation and CO2 emissions: flexing the Link-A path for the World Bank. World Bank https://documents1.worldbank.org/curated/en/826921468766156728/pdf/Transportation-and-CO2-emissions-flexing-the-link-a-path-for-the-World-Bank.pdf (1999).
2017 Government GHG Conversion Factors for Company Reporting. Final report. https://assets.publishing.service.gov.uk/government/uploads/system/uploads/attachment_data/file/650244/2017_methodology_paper_FINAL_MASTER.pdf (Department for Business Energy and Industrial Strategy, 2018).
2012 Guidelines to DEFRA/DECC’s GHG Conversion Factors for Company Reporting: Methodology Paper for Emission Factors. https://assets.publishing.service.gov.uk/government/uploads/system/uploads/attachment_data/file/69568/pb13792-emission-factor-methodology-paper-120706.pdf (Department for Business Energy and Industrial Strategy, 2012).
2007 Guidelines to Defra’s GHG Conversion Factors for Company Reporting—Annex Updated June 2007. Notes (BEIS, 2007).
2019 Government Greenhouse Gas Conversion Factors for Company Reporting: Methodology Paper (BEIS, 2019).
Specific CO2 emissions per passenger-km and per mode of transport in Europe, 1995–2011 [Dataset]. European Environment Agency https://www.eea.europa.eu/ds_resolveuid/643f98fe-ca68-4639-9899-bb2d68639b34 (2015).