Niue vs Wallis and Futuna: Coal consumption and sulphur dioxide emissions
Niue
40.83 tonnes
in 2022
Wallis and Futuna
98.55 tonnes
in 2022
Niue rank
214th
Wallis and Futuna rank
211th
Coal consumption and sulphur dioxide emissions over time
- Niue
- Wallis and Futuna
How they compare
Wallis and Futuna currently reports 98.55 tonnes against 40.83 tonnes in Niue, a difference of 57.72 tonnes.
That makes Wallis and Futuna's figure about 2.4 times Niue's.
The two have swapped places 2 times across 273 shared years of data; in 1750 it was Wallis and Futuna ahead.
Niue ranks 214th and Wallis and Futuna ranks 211th of 220 countries.
Across the 28 decades both report, Niue averaged higher in 3 and Wallis and Futuna in 25.
Head to head by decade
| Decade | Niue | Wallis and Futuna | Difference | Ahead |
|---|---|---|---|---|
| 1750s | 0.0939 tonnes | 0.1479 tonnes | 0.054 tonnes | Wallis and Futuna |
| 1760s | 0.0987 tonnes | 0.1557 tonnes | 0.057 tonnes | Wallis and Futuna |
| 1770s | 0.1037 tonnes | 0.1639 tonnes | 0.0602 tonnes | Wallis and Futuna |
| 1780s | 0.1089 tonnes | 0.1725 tonnes | 0.0637 tonnes | Wallis and Futuna |
| 1790s | 0.1142 tonnes | 0.1816 tonnes | 0.0674 tonnes | Wallis and Futuna |
| 1800s | 0.1198 tonnes | 0.1912 tonnes | 0.0713 tonnes | Wallis and Futuna |
| 1810s | 0.1258 tonnes | 0.2015 tonnes | 0.0757 tonnes | Wallis and Futuna |
| 1820s | 0.1322 tonnes | 0.2127 tonnes | 0.0805 tonnes | Wallis and Futuna |
| 1830s | 0.1387 tonnes | 0.2245 tonnes | 0.0858 tonnes | Wallis and Futuna |
| 1840s | 0.1455 tonnes | 0.237 tonnes | 0.0915 tonnes | Wallis and Futuna |
| 1850s | 0.1524 tonnes | 0.2501 tonnes | 0.0977 tonnes | Wallis and Futuna |
| 1860s | 0.1594 tonnes | 0.2616 tonnes | 0.1021 tonnes | Wallis and Futuna |
| 1870s | 0.1665 tonnes | 0.2706 tonnes | 0.1041 tonnes | Wallis and Futuna |
| 1880s | 0.172 tonnes | 0.2799 tonnes | 0.108 tonnes | Wallis and Futuna |
| 1890s | 0.1753 tonnes | 0.2896 tonnes | 0.1143 tonnes | Wallis and Futuna |
| 1900s | 0.2366 tonnes | 0.4299 tonnes | 0.1934 tonnes | Wallis and Futuna |
| 1910s | 0.375 tonnes | 0.735 tonnes | 0.36 tonnes | Wallis and Futuna |
| 1920s | 0.5487 tonnes | 1.08 tonnes | 0.5337 tonnes | Wallis and Futuna |
| 1930s | 0.7657 tonnes | 1.52 tonnes | 0.7548 tonnes | Wallis and Futuna |
| 1940s | 1.02 tonnes | 2.09 tonnes | 1.07 tonnes | Wallis and Futuna |
| 1950s | 1.3 tonnes | 2.95 tonnes | 1.65 tonnes | Wallis and Futuna |
| 1960s | 1.56 tonnes | 3.83 tonnes | 2.27 tonnes | Wallis and Futuna |
| 1970s | 26.62 tonnes | 3.36 tonnes | 23.26 tonnes | Niue |
| 1980s | 22.16 tonnes | 3.56 tonnes | 18.6 tonnes | Niue |
| 1990s | 29.16 tonnes | 3.43 tonnes | 25.73 tonnes | Niue |
| 2000s | 55.53 tonnes | 131.48 tonnes | 75.95 tonnes | Wallis and Futuna |
| 2010s | 41.93 tonnes | 104.28 tonnes | 62.35 tonnes | Wallis and Futuna |
| 2020s | 40.05 tonnes | 96.52 tonnes | 56.48 tonnes | Wallis and Futuna |
Averages of every year both report within each decade.
Frequently asked questions
- Which has higher coal consumption and sulphur dioxide emissions, Niue or Wallis and Futuna?
- Wallis and Futuna, at 98.55 tonnes against 40.83 tonnes in Niue as of 2022.
- What is the difference in coal consumption and sulphur dioxide emissions between Niue and Wallis and Futuna?
- 57.72 tonnes, with Wallis and Futuna ahead.
- How many years of comparable data are there for Niue and Wallis and Futuna?
- 273 years are reported by both, from 1750 to 2022.
- How do Niue and Wallis and Futuna rank globally for coal consumption and sulphur dioxide emissions?
- Niue ranks 214th and Wallis and Futuna ranks 211th of 220 countries.
- Where does this data come from?
- Hoesly et al. (2024) - Community Emissions Data System (CEDS) – with major processing by Our World in Data, published as Coal consumption and sulphur dioxide emissions. Statizoid refreshes it automatically from the source and publishes the full history for both places.
Individual pages
About this data
Sulfur dioxide (SO₂) is an air pollutant formed from the burning of fuels that contain sulfur, such as coal. SO₂ is one of the main chemicals that forms acid rain.