Marshall Islands vs Saint Helena: Nitrous oxide emissions

Marshall Islands
0 tonnes of CO₂ equivalents
in 2024
Saint Helena
1,075 tonnes of CO₂ equivalents
in 2024
Marshall Islands rank
200th
Saint Helena rank
197th

Nitrous oxide emissions over time

  • Marshall Islands
  • Saint Helena
02505007501.0k1.2k185019372024

How they compare

Saint Helena currently reports 1,075 tonnes of CO₂ equivalents against 0 tonnes of CO₂ equivalents in Marshall Islands, a difference of 1,075 tonnes of CO₂ equivalents.

Across all 175 years both countries report, Saint Helena has been ahead every year.

Marshall Islands ranks 200th and Saint Helena ranks 197th of 201 countries.

Saint Helena has averaged higher in every one of the 18 decades both report.

Head to head by decade

Decade Marshall Islands Saint Helena Difference Ahead
1850s 0 tonnes of CO₂ equivalents 45.49 tonnes of CO₂ equivalents 45.49 tonnes of CO₂ equivalents Saint Helena
1860s 0 tonnes of CO₂ equivalents 48.67 tonnes of CO₂ equivalents 48.67 tonnes of CO₂ equivalents Saint Helena
1870s 0 tonnes of CO₂ equivalents 60.05 tonnes of CO₂ equivalents 60.05 tonnes of CO₂ equivalents Saint Helena
1880s 0 tonnes of CO₂ equivalents 77.37 tonnes of CO₂ equivalents 77.37 tonnes of CO₂ equivalents Saint Helena
1890s 0 tonnes of CO₂ equivalents 87.24 tonnes of CO₂ equivalents 87.24 tonnes of CO₂ equivalents Saint Helena
1900s 0 tonnes of CO₂ equivalents 97.81 tonnes of CO₂ equivalents 97.81 tonnes of CO₂ equivalents Saint Helena
1910s 0 tonnes of CO₂ equivalents 127.09 tonnes of CO₂ equivalents 127.09 tonnes of CO₂ equivalents Saint Helena
1920s 0 tonnes of CO₂ equivalents 187.78 tonnes of CO₂ equivalents 187.78 tonnes of CO₂ equivalents Saint Helena
1930s 0 tonnes of CO₂ equivalents 202.86 tonnes of CO₂ equivalents 202.86 tonnes of CO₂ equivalents Saint Helena
1940s 0 tonnes of CO₂ equivalents 462.81 tonnes of CO₂ equivalents 462.81 tonnes of CO₂ equivalents Saint Helena
1950s 0 tonnes of CO₂ equivalents 682.99 tonnes of CO₂ equivalents 682.99 tonnes of CO₂ equivalents Saint Helena
1960s 0 tonnes of CO₂ equivalents 693.32 tonnes of CO₂ equivalents 693.32 tonnes of CO₂ equivalents Saint Helena
1970s 0 tonnes of CO₂ equivalents 949.8 tonnes of CO₂ equivalents 949.8 tonnes of CO₂ equivalents Saint Helena
1980s 0 tonnes of CO₂ equivalents 1,081 tonnes of CO₂ equivalents 1,081 tonnes of CO₂ equivalents Saint Helena
1990s 0 tonnes of CO₂ equivalents 914.94 tonnes of CO₂ equivalents 914.94 tonnes of CO₂ equivalents Saint Helena
2000s 0 tonnes of CO₂ equivalents 890.22 tonnes of CO₂ equivalents 890.22 tonnes of CO₂ equivalents Saint Helena
2010s 0 tonnes of CO₂ equivalents 1,024 tonnes of CO₂ equivalents 1,024 tonnes of CO₂ equivalents Saint Helena
2020s 0 tonnes of CO₂ equivalents 1,061 tonnes of CO₂ equivalents 1,061 tonnes of CO₂ equivalents Saint Helena

Averages of every year both report within each decade.

Frequently asked questions

Which has higher nitrous oxide emissions, Marshall Islands or Saint Helena?
Saint Helena, at 1,075 tonnes of CO₂ equivalents against 0 tonnes of CO₂ equivalents in Marshall Islands as of 2024.
What is the difference in nitrous oxide emissions between Marshall Islands and Saint Helena?
1,075 tonnes of CO₂ equivalents, with Saint Helena ahead.
How many years of comparable data are there for Marshall Islands and Saint Helena?
175 years are reported by both, from 1850 to 2024.
How do Marshall Islands and Saint Helena rank globally for nitrous oxide emissions?
Marshall Islands ranks 200th and Saint Helena ranks 197th of 201 countries.
Where does this data come from?
Jones et al. (2025) – with major processing by Our World in Data, published as Nitrous oxide emissions. Statizoid refreshes it automatically from the source and publishes the full history for both places.

Individual pages

About this data

Indicator
Nitrous oxide emissions
Unit
tonnes of CO₂ equivalents
Source
Jones et al. (2025) – with major processing by Our World in Data
Licence
CC BY 4.0 (Our World in Data)
Coverage
201 places, 35,175 data points, 1850–2024
Last refreshed

Measured in tonnes of carbon dioxide-equivalents over a 100-year timescale.