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ISO 14083 CO₂ Calculator

Calculate the well-to-wheel (WTW) greenhouse-gas emissions of a shipment the way ISO 14083 prescribes: per leg of the transport chain, from tonne-kilometres and GLEC default factors, or from the fuel and energy your vehicle actually used.

Calculation method

Weight × distance × the GLEC default intensity per vehicle type. Use this when you don't know the fuel consumption, e.g. for subcontracted legs.

Shipment

Gross weight of the goods, packaging included. Accepts decimals, e.g. 0.8 for 800 kg.

Transport chain

Planned route distance. The GLEC road factors already include the +5 % distance adjustment and average empty running.
Rail distance between the terminals.

Hubs and terminals (optional)

Transshipment, storage and terminal handling are part of the chain too. GLEC gives default medians per tonne handled, or per container for intermodal terminals.

Well-to-wheel emissions
382.8 kg CO₂e
15,400 tonne-km over the whole chain

Emissions breakdown

Well-to-tank (WTT, energy supply)195.6 kg
Tank-to-wheel (TTW, operation)187.2 kg
Well-to-wheel (WTW)382.8 kg
Intensity24.9 g/tkm

Per transport chain element

1. Tractor-trailer 34–40 t, diesel242.4 kg · 63%
2. Freight train, electric140.4 kg · 37%

ISO 14083 default emission factors (g CO₂e per tonne-km)

The default intensities this calculator uses, from the GLEC Framework v3.2 for Europe. WTT is the energy supply chain, TTW the vehicle's own emissions, WTW the sum that ISO 14083 reports.

Mode and vehicleWTTTTWWTW
Road
Van up to 3.5 t, diesel195647842
Rigid truck 3.5–7.5 t, diesel78.0258335
Rigid truck 7.5–12 t, diesel52.0172223
Rigid truck 12–20 t, diesel44.0147191
Rigid truck 20–26 t, diesel32.0107137
Rigid truck 26–32 t, diesel29.096.0125
Tractor-trailer 34–40 t, diesel23.078.0101
Tractor-trailer 40–44 t, diesel21.069.089.0
Long heavy vehicle (LHV) up to 60 t, diesel16.054.070.0
Tractor-trailer 34–40 t, LNG32.073.0105
Tractor-trailer 34–40 t, bio-LNG35.03.038.0
Van up to 3.5 t, electric *4010.0401
Rigid truck 3.5–7.5 t, electric *1470.0147
Rigid truck 12–20 t, electric *73.50.073.5
Truck 26–40 t, electric *53.40.053.4
Rail
Freight train, diesel7.123.630.7
Freight train, electric10.80.010.8
Freight train, traction unknown (EU average)——18.4
Inland waterway
Motor vessel under 50 m17.859.277.1
Motor vessel 50–80 m7.926.133.9
Motor vessel 85–110 m4.916.421.4
Motor vessel 135 m5.016.721.8
Coupled convoy 163–185 m4.615.119.7
Tanker vessel5.719.024.7
Container vessel 110 m6.822.529.3
Container vessel 135 m5.217.422.6
Sea (container)
Container ship, industry average †——7.2
Container ship, industry average, reefer †——14.2
Container ship, within North Europe (short sea) †——17.3
Container ship, within North Europe, reefer †——28.6
Container ship, within the Mediterranean †——16.0
Container ship, North Europe – Mediterranean †——10.8
Container ship, Asia – North Europe †——4.7
Container ship, Asia – North Europe, reefer †——11.1
Container ship, trans-Atlantic †——9.0
Air
Air cargo under 1,500 km, aircraft type unknown2341,1291,363
Air cargo 1,500 km or more, aircraft type unknown135653788
Freighter under 1,500 km2611,2551,516
Freighter 1,500 km or more105503608
Belly cargo (passenger aircraft) under 1,500 km2131,0261,239
Belly cargo (passenger aircraft) 1,500 km or more161775936

ISO 14083 and well-to-wheel CO₂: frequently asked questions

What is ISO 14083?

ISO 14083:2023 is the international standard for quantifying and reporting the greenhouse-gas emissions of freight transport chains. It covers every mode (road, rail, inland waterway, sea and air) plus hubs such as warehouses and terminals, and it always counts well-to-wheel emissions in CO₂ equivalents. The GLEC Framework of the Smart Freight Centre is the practical guide that implements it and publishes the default factors used on this page.

What is the difference between well-to-wheel, well-to-tank and tank-to-wheel?

Tank-to-wheel (TTW) is what the vehicle itself emits while driving. Well-to-tank (WTT) is everything before that: extracting, refining, transporting and distributing the fuel or generating the electricity. Well-to-wheel (WTW) is the sum. ISO 14083 requires WTW, so an electric truck is not zero: its emissions sit in the WTT part.

How do I calculate the CO₂ emissions of a shipment?

Split the shipment into legs, one per vehicle, and multiply each leg's tonne-kilometres by an emission intensity. Example: 20 tonnes over 500 km in a 40-tonne diesel tractor-trailer is 10,000 tonne-km × 101 g CO₂e = 1,010 kg CO₂e well-to-wheel. Add any hubs on the way and sum everything for the whole transport chain.

Should I use default factors or my own fuel data?

ISO 14083 prefers primary data: the fuel or energy your vehicles actually used, allocated to shipments by tonne-kilometres. Default factors such as GLEC's are the fallback when you don't have that data, for example for subcontracted legs. Always state which you used; many reports mix both.

How much CO₂ does a truck emit per tonne-kilometre?

By GLEC's European defaults, a 34–40 t diesel tractor-trailer at average load emits 101 g CO₂e per tonne-km well-to-wheel, a 12–20 t rigid truck 191 g and a diesel van 842 g. For comparison: an electric freight train 10.8 g, an 85–110 m inland vessel 21.4 g and long-haul air freight 788 g.

Are electric trucks zero-emission under ISO 14083?

At the tailpipe yes, but not well-to-wheel. The emissions of generating the electricity count in full. A 26–40 t electric truck uses about 0.16 kWh per tonne-km; on the EU average grid (334 g CO₂e/kWh) that is about 53 g per tonne-km, roughly half of a diesel truck, and lower still on low-carbon grids.

How much CO₂ does HVO100 save?

It depends on the feedstock. GLEC's European default for HVO100 is 1.01 kg CO₂e per litre well-to-wheel, against 3.31 kg for B7 pump diesel: a cut of about 70 %. HVO made only from waste such as used cooking oil scores lower still. ISO 14083 prefers the certified value on your supplier's proof of sustainability; enter it as a custom factor.

Can I use these figures for CSRD or Scope 3 reporting?

Yes, as an estimate. Freight is Scope 3 (GHG Protocol categories 4 and 9) for the shipper and Scope 1 for a carrier that owns the trucks. The default factors are accepted under ISO 14083, but auditors and customers increasingly want per-shipment figures from real fuel and trip data, which is what a TMS produces.

Method. Emissions are calculated per transport chain element (one vehicle or one hub) and summed, following ISO 14083:2023. Factors are in CO₂ equivalents (IPCC AR6 GWP100) and come from the GLEC Framework v3.2 for Europe; grid electricity per country from EcoTransIT World (consumption mix, 2021). Results are estimates: actual emissions depend on load, route, driving and the vehicle itself.
Sources: GLEC Framework v3.2 · EcoTransIT World 2025 · ISO 14083:2023. Factors checked on September 28, 2026.
CO₂e per shipment, automatically?

Transportial calculates well-to-wheel CO₂e for every trip from your own vehicles and routes, and reports it per customer under ISO 14083, GLEC or EN 16258.

See Transportial →