Carbon footprint calculator · United States → United States

Carbon footprint: Nashville (BNA) to Las Vegas (LAS)

Per-passenger CO₂ (economy, incl. radiative forcing) — compared with train and car alternatives.

143kg CO₂
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Return
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Distance
1,584 mi
2,549 km · long-haul international

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Quick answer: BNA → LAS carbon at a glance

~143 kg CO₂
Flight (economy)
~56 kg CO₂
Train per passenger
Train · 56 kg
Greenest option

Flying BNA to LAS (1,584 mi) emits about 143 kg CO₂ per passenger in economy (incl. radiative forcing). Train is ~56 kg, 4-person carpool ~160 kg, solo car ~640 kg. The greenest option here is train at 56 kg — about 61% less than flying.

Factors: 0.09 kg/mile flight, 0.0355 train, 0.404 solo car (DEFRA/EPA).

Flying from Nashville (BNA, United States) to Las Vegas (LAS, United States) — a long-haul international covering 1,584 miles (2,549 km) — emits approximately 143 kg of CO₂ per passenger in economy class. This estimate uses the factor 0.09 kg CO₂ per passenger-mile (kilometre equivalent: 0.056 kg/km), which incorporates radiative forcing — the warming effect of non-CO₂ emissions (water vapour, nitrogen oxides, soot) released at cruise altitude. Excluding radiative forcing, the pure CO₂ alone would be roughly half this number. For context: the average US resident emits about 16 tons (16,000 kg) of CO₂ per year from all activities, so this one flight equals about 1% of an American's annual carbon budget. The route's carbon intensity is low per mile (long-haul cruise is the most fuel-efficient phase of flight) — see the comparison table below for alternative-mode emissions on the same route.

On the same 1,584-mile route, the lowest-carbon alternative is Train at ~56 kg CO₂ per passenger — about 61% less than flying. By contrast, a solo driver in a typical 22-mpg car would emit 640 kg over the same distance (about 348% more than the flight — solo driving is usually worse than flying on long routes because the car's per-vehicle emissions aren't shared across passengers). A four-person carpool drops the per-passenger footprint to 160 kg. To neutralise the climate impact of this flight, you'd need to plant about 7 tree-years (i.e. one mature tree absorbing CO₂ for 7 years, since a mature tree sequesters ~21 kg CO₂ per year according to the US EPA). That's also equivalent to about 32,500 smartphone charges on the US grid, or about 354 miles of solo driving in a typical car. The route's overall difficulty score (a separate metric combining distance and time-zone change) is 5/10.

143 kg
Flight (economy)
56 kg
Train
160 kg
Carpool (4)
640 kg
Solo car
7 yr
Tree-years to offset
354 mi
Equivalent driving
1,584 mi
Distance
Train
Best mode
CO₂ per passenger by mode — BNA → LAS
Trainlowest56 kg CO₂
0.0355 kg/mile · -61% vs flight
Flight143 kg CO₂
0.09 kg/mile · baseline
Carpool (4)160 kg CO₂
0.101 kg/mile · +12% vs flight
Solo car640 kg CO₂
0.404 kg/mile · +348% vs flight

Bars are scaled relative to the flight's per-passenger emissions (143 kg). All factors assume one passenger per seat for flight, one passenger for the solo car, four passengers sharing the carpool vehicle, and one passenger on a long-distance train. Air-rail comparison only valid where direct rail service exists on this corridor; actual rail distance may be longer than the great-circle flight path.

methodology

How this carbon footprint is calculated

TripRoute multiplies the great-circle distance between BNA and LAS (1,584 miles) by 0.09 kg CO₂ per passenger-mile to estimate the per-passenger climate impact of an economy flight. This factor is based on the UK Department for Business, Energy & Industrial Strategy (BEIS/DEFRA) greenhouse-gas conversion factors for short-haul economy air travel, scaled up to include radiative forcing — the non-CO₂ warming effects (water-vapour contrails, nitrogen oxides, soot) that approximately double the climate impact of emissions released at cruise altitude. For the train comparison we use the European long-distance rail average of 0.0355 kg CO₂ per passenger-mile (≈ 0.022 kg per passenger-km), which is lower than flying because electric trains draw from grid power that is increasingly decarbonised. The car factors come from the US EPA's typical light-duty vehicle emissions of about 8.89 kg CO₂ per gallon of gasoline, divided by a real-world average of 22 miles per gallon → 0.404 kg CO₂ per mile per vehicle; a four-person carpool divides this by four. Tree-offset and equivalent-driving conversions use the US EPA estimate that one mature tree sequesters about 21 kg of CO₂ per year. All factors are publicly published industry-standard numbers — no fabricated data.

TRIs offsetting BNA → LAS worth it?

At 143 kg of CO₂ per passenger this is a moderate-impact flight; one high-quality offset corresponds to roughly 7 tree-years. Taking a direct flight matters more than offset brand — a connection can roughly double emissions.

Figures computed with UK DEFRA + US EPA emission factors for 1,584 mi great-circle.

faq

Nashville to Las Vegas — quick answers

What is the carbon footprint of flying from Nashville to Las Vegas?

Flying BNA (Nashville) to LAS (Las Vegas) — 1,584 miles (2,549 km) — emits about 143 kg of CO₂ per passenger in economy class. This includes radiative forcing from non-CO₂ emissions at altitude, which roughly doubles the climate impact compared to the CO₂ alone.

Is it greener to take the train or drive from Nashville to Las Vegas?

On this 1,584-mile route: train ≈ 56 kg CO₂ per passenger, 4-person carpool ≈ 160 kg, flight ≈ 143 kg, and solo car ≈ 640 kg per passenger. The lowest-CO₂ option is train at 56 kg, roughly 61% less than flying.

Methodology: UK DEFRA + US EPA published factors·Distance: 1,584 mi (great-circle)
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