Saint Pierre and Miquelon vs Singapore: CO₂ emissions per capita vs. fossil fuel consumption per capita

Saint Pierre and Miquelon
9.79 tonnes per person
in 2024
Singapore
9.24 tonnes per person
in 2024
Saint Pierre and Miquelon rank
26th
Singapore rank
28th

CO₂ emissions per capita vs. fossil fuel consumption per capita over time

  • Saint Pierre and Miquelon
  • Singapore
05101520195019872024

How they compare

Saint Pierre and Miquelon currently reports 9.79 tonnes per person against 9.24 tonnes per person in Singapore, a difference of 0.55 tonnes per person.

That makes Saint Pierre and Miquelon's figure about 1.1 times Singapore's.

The two have swapped places 8 times across 75 shared years of data; in 1950 it was Saint Pierre and Miquelon ahead.

Saint Pierre and Miquelon ranks 26th and Singapore ranks 28th of 213 countries.

Across the 8 decades both report, Saint Pierre and Miquelon averaged higher in 5 and Singapore in 3.

Head to head by decade

Decade Saint Pierre and Miquelon Singapore Difference Ahead
1950s 6.61 tonnes per person 2.34 tonnes per person 4.27 tonnes per person Saint Pierre and Miquelon
1960s 7.84 tonnes per person 1.63 tonnes per person 6.21 tonnes per person Saint Pierre and Miquelon
1970s 7.14 tonnes per person 10.89 tonnes per person 3.75 tonnes per person Singapore
1980s 7.74 tonnes per person 11.97 tonnes per person 4.23 tonnes per person Singapore
1990s 11.36 tonnes per person 13.98 tonnes per person 2.61 tonnes per person Singapore
2000s 9.74 tonnes per person 9.17 tonnes per person 0.5715 tonnes per person Saint Pierre and Miquelon
2010s 10.85 tonnes per person 8.82 tonnes per person 2.02 tonnes per person Saint Pierre and Miquelon
2020s 9.7 tonnes per person 8.81 tonnes per person 0.8876 tonnes per person Saint Pierre and Miquelon

Averages of every year both report within each decade.

Frequently asked questions

Which has higher co₂ emissions per capita vs. fossil fuel consumption per capita, Saint Pierre and Miquelon or Singapore?
Saint Pierre and Miquelon, at 9.79 tonnes per person against 9.24 tonnes per person in Singapore as of 2024.
What is the difference in co₂ emissions per capita vs. fossil fuel consumption per capita between Saint Pierre and Miquelon and Singapore?
0.55 tonnes per person, with Saint Pierre and Miquelon ahead.
How many years of comparable data are there for Saint Pierre and Miquelon and Singapore?
75 years are reported by both, from 1950 to 2024.
How do Saint Pierre and Miquelon and Singapore rank globally for co₂ emissions per capita vs. fossil fuel consumption per capita?
Saint Pierre and Miquelon ranks 26th and Singapore ranks 28th of 213 countries.
Where does this data come from?
Global Carbon Budget (2025); Population based on various sources (2024) – with major processing by Our World in Data, published as CO₂ emissions per capita vs. fossil fuel consumption per capita. Statizoid refreshes it automatically from the source and publishes the full history for both places.

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Saint Pierre and Miquelon vs Singapore: CO₂ emissions per capita vs. fossil fuel consumption per capita. Statizoid, drawing on Global Carbon Budget (2025); Population based on various sources (2024) – with major processing by Our World in Data. Retrieved 11 September 2026, from https://climate.statizoid.com/compare/co-emissions-per-capita-vs-fossil-fuel-consumption-per-capita/saint-pierre-and-miquelon/singapore/

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<a href="https://climate.statizoid.com/compare/co-emissions-per-capita-vs-fossil-fuel-consumption-per-capita/saint-pierre-and-miquelon/singapore/">Saint Pierre and Miquelon vs Singapore: CO₂ emissions per capita vs. fossil fuel consumption per capita</a> — Statizoid

About this data

Indicator
CO₂ emissions per capita vs. fossil fuel consumption per capita
Unit
tonnes per person
Source
Global Carbon Budget (2025); Population based on various sources (2024) – with major processing by Our World in Data
Licence
CC BY 4.0 (Our World in Data)
Coverage
213 places, 22,945 data points, 1750–2024
Last refreshed

Carbon dioxide (CO₂) emissions from burning fossil fuels and industrial processes. This includes emissions from transport, electricity generation, and heating, but not land-use change.