Part 1 of Cycling to a Greener Future
The sun is just rising over the treetops. Bronzed light filters through the rustling leaves and dances across the surface of The Boating Lake in a dazzling, kaleidoscopic display. The sweet-honey smell of bluebells floats through the fresh morning air, stratifying itself with the sonata of birdsong and the humming whizz of a thousand bicycles. It’s summertime in London, and the Regent’s Park cycle loop is heaving. Like schools of Lycra-clad tropical fish, pelotons containing every colour, shape, and make of bicycle soar around the 5-kilomtre ring road that borders the park at breakneck speed, awash in pure exhilaration. This is London cycling at its finest.
In 2025, the Bicycle Association of Great Britain reported that the total value of the bicycle market in the country had risen to approximately £1.9 billion, representing a 5% increase year-on-year and marking the first instance of expansion since before the COVID-19 pandemic. Much of this growth seems to be driven by the revival of mainstream recreational cycling and the popularisation of adjacent endurance sports such as triathlon.
As sales have grown, myriad brands old and new have jockeyed for their piece of the cycling market. The bicycle market is generally segmented by frame material, most commonly steel, aluminium, and carbon; each material carries its own implications for weight, performance, durability, price tag, and the inevitable material tribalism of riders. Most cyclists would assume that cycling is one of the least environmentally impactful forms of sport and transport out there. But like any widely manufactured product, each type of bicycle frame carries its own profile of environmental impact.
To understand a product’s environmental impact, it helps to first understand how that impact is measured. The metric most frequently used by the UK government is mass of CO2e, or carbon dioxide equivalents.1 Applied to bicycle production, this varies sharply by frame material, as shown below.
| Frame material | kg CO2e per kg produced |
| Steel | 1.90 |
| Aluminium | 14.8 -15.1 |
| Carbon fibre | ~20+ |
Carbon fibre production is, by some distance, the most energy-intensive of the three. These per-kilogram figures don’t tell the whole story, though. Most bikes are shipped from Asia, and that journey adds its own emissions: shipping a typical bike box from Shanghai to the UK by sea adds roughly a further 7.9 kg CO2e.2
To make the comparison concrete, the manufacturing CO2e of twelve popular road bikes across seven brands was modelled, varying only frame weight and material.3 The results, shown in Figure 1, tell a slightly counterintuitive story: aluminium-framed bikes actually carry the highest average manufacturing footprint of the three materials, coming in above carbon fibre, and well above steel, the clear winner in terms of low emissions.

The explanation comes down to weight. Carbon fibre may be the most polluting material per kilogram, but its strength and low density mean far less of it is needed to build a frame. As a result, despite the dirtier production process, a carbon bike ends up lighter and, on balance,less carbon-intensive than an aluminium one. Steel sits at the other extreme: heavier by far, but with production emissions so much lower that it still comes out on top overall.
There is an important caveat with carbon frame bicycles – disposal. While the emissions footprint of carbon frame bikes is typically lower than that of their aluminium frame counterparts, unlike aluminium (and steel) there are no widespread, economically viable methods by which to recycle them (Tillett, 2024). This means that many end-of-life carbon fibre bikes wind up in landfills with the potential of remaining there for centuries (Composites Construction UK, 2023).
Understanding the carbon footprint of a bicycle is an important first step in understanding how cycling as a whole impacts the environment. It underlines that, like all industrial products, there are notable manufacturing and distribution emissions associated with each and every bicycle purchase. There are also clear environmental costs in opting for models made with high-performance materials over more standard models, however these costs are not necessarily as straightforward as they might at first seem. Bikes made with steel produce the lowest mass of CO2e, followed at some distance by bikes made with carbon fibre, neck in neck with bikes made with aluminium.
Back in London, the summer sun has fully risen over Regent’s Park. Apparitions of a thousand miniature sailing ships, the riders slice through eddying pockets of mist drifting up from the grass. Frames of steel, aluminium, and carbon hit unique resonant tones in the wind, an odyssey of their unique emissions footprints. As the riders disappear once again beneath the shade of the plane trees, the mist of another question remains: once the carbon footprint of a bicycle has been accounted for, what is the environmental effect of the ride itself?
More information on the carbon footprint of a bicycle:
- Payton, T. (2026, March 12). Bicycle Association report highlights green shoots and signs of stabilisation in UK cycling market. The Bicycle Association. https://bicycleassociation.org.uk/news/press-release/95/95-Bicycle-Association-report-highlights-green-shoots-and-signs-of-stabilisation-in-UK-cycling-market-
- Department for Energy Security and Net Zero & Department for Business, Energy & Industrial Strategy. (2022, June 22). Greenhouse gas reporting: conversion factors 2022. GOV.UK. https://www.gov.uk/government/publications/greenhouse-gas-reporting-conversion-factors-2022
- World Steel Association. (2024). #steelfacts. Retrieved June 19, 2026, from https://worldsteel.org/about-steel/facts/steelfacts/
- International Aluminium Institute. (2024, February 28). Aluminium industry reports decline in greenhouse gas emissions. https://international-aluminium.org/aluminium-industry-reports-decline-in-greenhouse-gas-emissions/
- Eurostat. (2024, June 3). Decrease in trade of bicycles in 2023. European Commission. https://ec.europa.eu/eurostat/web/products-eurostat-news/w/ddn-20240603-1
- Dolci, G., Caserini, S., Venturelli, V., & Grosso, M. (2024). Environmental impacts analysis of European and Chinese bicycle manufacturing. Environment, Development and Sustainability. Advance online publication. https://doi.org/10.1007/s10668-024-05550-0
- Caserini, S., & Grosso, M. (n.d.). Estimation of CO2 emissions from the production of bicycles in China and in Europe. European Bicycle Manufacturers’ Association. https://www.ebma-europe.eu/wp-content/uploads/2025/01/Study-Politecnico-Milano.-CO2-Emissions-Bicycles.pdf
- Bikeboard.cc. (2023, June 30). Trek Domane SLR 7 Gen 4 – Long-term review. https://bikeboard.cc/eng/trek-domane-slr-7-gen-4-long-term-review-th10465
- Bikeboard.cc. (2023, June 5). Canyon Ultimate CF SLX 8 Ultegra Di2 long-term review. https://bikeboard.cc/eng/canyon-ultimate-cf-slx-8-ultegra-di2-long-term-review-th10419
- Bikerumor. (2018, June 6). Review: Canyon Ultimate CF SLX Disc is a hard to beat as an all around road bike. https://bikerumor.com/review-canyon-ultimate-cf-slx-disc-is-a-hard-to-beat-as-an-all-around-road-bike/
- BikeRadar. (2019, April 8). Surly Pacer review. https://www.bikeradar.com/reviews/bikes/road-bikes/surly-pacer-review
- BikeRadar. (2019, June 7). Trek Emonda SL6 Pro review. https://www.bikeradar.com/reviews/bikes/road-bikes/trek-emonda-sl6-pro-review
- BikeRadar. (2019, December 17). Canyon Endurace AL 6.0 review. https://www.bikeradar.com/reviews/bikes/road-bikes/canyon-endurace-al-6-0-review
- BikeRadar. (2020, July 20). S-Works Tarmac SL7 review. https://www.bikeradar.com/reviews/bikes/road-bikes/specialized-s-works-tarmac-sl7-review
- BikeRadar. (2022, September 28). Trek Domane SLR 7 P1 review. https://www.bikeradar.com/reviews/bikes/road-bikes/trek-domane-slr-7-p1-review
- BikeRadar. (2023, November 2). Canyon Ultimate CF SLX 8 Di2 review. https://www.bikeradar.com/reviews/bikes/road-bikes/canyon-ultimate-cf-slx-8-di2-review
- BikeRadar. (2024, June 6). Specialized Allez E5 review. https://www.bikeradar.com/reviews/bikes/road-bikes/2024-specialized-allez-e5-review
- BikeRadar. (2024, May 9). Specialized Roubaix SL8 Expert review. https://www.bikeradar.com/specialized-roubaix-sl8-expert-review
- BikeRadar. (2024, June 7). Specialized Roubaix SL8 Comp review. https://www.bikeradar.com/reviews/bikes/road-bikes/specialized-roubaix-sl8-comp-review-endurance-bike-of-the-year-contender
- BikeRadar. (2025, June 25). New BMC Teammachine SLR 01 is 16 per cent lighter but just as stiff. https://www.bikeradar.com/news/bmc-teammachine-slr-01
- Cyclingweekly. (2021, April 16). Specialized Tarmac SL7 Expert review. https://www.cyclingweekly.com/reviews/road-bikes/specialized-tarmac-sl7-expert
- Cyclist. (2017, July 23) [republished via GranFondo]. BMC Teammachine SLR01 review. https://granfondo-cycling.com/bmc-teammachine-slr01-review/
- Cyclist. (2024, November 12). Trek Domane SLR review. https://www.cyclist.co.uk/reviews/trek-domane-slr-review
- Cyclist. (2024, November 12). Canyon Ultimate review. https://www.cyclist.co.uk/reviews/canyon-ultimate-review
- Cyclist. (2024, November 12). BMC Teammachine SLR01 review. https://www.cyclist.co.uk/reviews/bmc-teammachine-slr01-review
- Cyclist. (2024, July 25). Specialized Tarmac SL8 S-Works Di2 review. https://www.cyclist.co.uk/reviews/specialized-tarmac-sl8-review
- Daccordi Cycles. (2026, January 5). How much does a steel road bike weigh? https://www.daccordicycles.com/how-much-does-a-steel-road-bike-weigh/
- Daccordi Cycles. (n.d.). Daccordi SPX Red steel road bike frame ready-made. https://www.daccordicycles.com/ready-made-bikes/daccordi-spx-red-steel-road-bike-frame-ready-made/
- Escape Collective. (2025, March 6). The prince and the pauper: 2023 Canyon Ultimate CF SL 7 vs. Ultimate CFR review. https://escapecollective.com/the-prince-and-the-pauper-2023-canyon-ultimate-cf-sl-7-vs-ultimate-cfr-review/
- Escape Collective. (2025, November 3). Specialized Tarmac SL8 Pro review: All-day speed. https://escapecollective.com/specialized-tarmac-sl8-pro-review-all-day-speed/
- GRAN FONDO Cycling Magazine. (2020, April 28). Canyon Ultimate CF SLX Disc 9.0 review. https://granfondo-cycling.com/canyon-ultimate-cf-slx-disc-9-0-review/
- GRAN FONDO Cycling Magazine. (2020, July 28). BMC Teammachine SLR01 ONE 2021 first ride review. https://granfondo-cycling.com/bmc-teammachine-slr01-one-2021-review/
- GRAN FONDO Cycling Magazine. (2024, January 9). The Trek Domane SLR 7 AXS Gen 4 in review. https://granfondo-cycling.com/trek-domane-slr-7-axs-gen-4-2023-review/
- GRAN FONDO Cycling Magazine. (2025, October 11). Specialized S-Works Tarmac SL8 review. https://granfondo-cycling.com/specialized-s-works-tarmac-sl8-racebike-review/
- I Know a Guy Bicycles. (2023, September 20). SOMA Fabrications Smoothie 62cm. https://iknowaguybicycles.com/product/soma-fabrications-smoothie-62cm/
- Road.cc. (2023, October 13) [republished via magazinebike.com translation]. Trek Domane SLR 7 AXS Gen 4 review. https://magazinebike.com/2023/10/07/trek-domain-slr/
- Road.cc. (2020, June 25). New Tarmac SL7: Lightweight and super aero, says Specialized. https://road.cc/content/tech-news/specialized-launches-tarmac-sl7-68kg-and-super-aero-275971
- Road.cc. (2024, February 3). Specialized Allez Sport 2023 review. https://road.cc/content/review/specialized-allez-sport-302821
- Roadbikeaction. (2020, September 29). Bike test: Specialized Tarmac SL7. https://roadbikeaction.com/bike-test-specialized-tarmac-sl7/
- Surly Bikes. (n.d.). Pacer. https://surlybikes.com/products/pacer
- Velo. (2023, June 1). 2023 Trek Domane SLR review: A tauter ride, but some curious loose threads. https://velo.outsideonline.com/ebike/2023-trek-domane-review/
- Velo. (2023, August 10). Specialized Tarmac SL8 first ride review: Clinical improvement. https://velo.outsideonline.com/road/road-gear/specialized-tarmac-sl8-first-ride-review/
- Velo. (2023, October 25). Specialized Roubaix SL8 first ride review: Compliance above all else. https://velo.outsideonline.com/road/road-gear/specialized-roubaix-sl8-first-ride-review/
- Velo. (2024, October 9). Review: What we learned riding the Specialized Tarmac SL8 over 1500 miles. https://velo.outsideonline.com/road/road-gear/review-specialized-tarmac-sl8-long-term/
- Velo. (2025, June 25). Specialized Roubaix SL8 Pro review. https://velo.outsideonline.com/road/road-gear/specialized-roubaix-sl8-pro-review/
- Material Properties. (n.d.). Carbon fiber | Density, strength, melting point. https://material-properties.org/carbon-fiber-density-strength-melting-point/
- Material Properties. (n.d.). Aluminium – Mechanical properties – Strength – Hardness – Crystal structure. https://material-properties.org/aluminium-mechanical-properties-strength-hardness-crystal-structure/
- Tillett, E. (2024, February 14). How green is your carbon bike? And why your next one could be made from recycled carbon fibre. road.cc. https://road.cc/content/feature/will-your-next-bike-be-made-recycled-carbon-306481
- Composites Construction UK. (2023, August 15). From strength to sustainability: Unravelling carbon fibre’s environmental impact. https://www.fibrwrap-ccuk.com/blog/from-strength-to-sustainability-unravelling-carbon-fibres-environmental-impact/
- CO2e (carbon dioxide equivalent) measures all greenhouse gases emitted including CO2, methane, and nitrogen dioxide expressed as the mass of pure carbon that would produce the same warming effect over a 100-year period. Source: UK Department for Energy Security and Net Zero (DESNZ), 2022.
↩︎ - Based on Department for Environmental, Food & Rural Affairs shipping conversion factors (16g CO2e/tonne-km) and European Bike Manufacturing Association methodology, for a 25kg bike box travelling 19,500km from Shanghai to Felixstowe by sea. Most bicycle production takes place in Asia (Eurostat, 2024). ↩︎
- Twelve mid-to-high-spec road bikes across seven brands were modelled, holding non-frame components (wheels, drivetrain, tyres, and so on) constant and varying only frame weight and material, using manufacturer-published frame weights where available and factoring in shipping emissions resulting from the variation in weight alone. Category averages: aluminium 91.46kg CO2e, carbon fibre 87.88kg CO2e, steel 74.71kg CO2e. ↩︎
