Cumulative CO₂ emissions including land-use change, gaps filled in Singapore

Singapore: Cumulative CO₂ emissions including land-use change, gaps filled was 2.25 billion tonnes in 2024. ◆ Volatile

Latest (2024)
2.25 billion tonnes
Change on year
up 2.5%
World rank
98th
of 194 countries
All-time high
2.25 billion tonnes
in 2024
All-time low
1.91 million tonnes
in 1950
Years of data
75
1950–2024

Cumulative CO₂ emissions including land-use change, gaps filled in Singapore, 1950–2024

0500.0M1.0B1.5B2.0B2.5B195019872024

Source: Statizoid (derived). Measured in tonnes.

Analysis

Singapore recorded 2.25 billion tonnes for cumulative co₂ emissions including land-use change, gaps filled in 2024. That is the highest value across all 75 years on record.

The figure is up 2.5% on the previous year and up 28.5% over ten years.

Over the whole period, cumulative co₂ emissions including land-use change, gaps filled in Singapore peaked at 2.25 billion tonnes in 2024 and was at its lowest, 1.91 million tonnes, in 1950.

Singapore ranks 98th of 194 countries on this measure, in the middle of the range.

The series is highly variable year to year, so single readings are best treated with caution.

Cumulative CO₂ emissions including land-use change, gaps filled in Singapore, year by year

Annual values for Cumulative CO₂ emissions including land-use change, gaps filled in Singapore, 1950 to 2024.
Year tonnes Change
1950 1.91 million tonnes
1951 4.73 million tonnes +147.1%
1952 8.16 million tonnes +72.4%
1953 11.61 million tonnes +42.3%
1954 15.35 million tonnes +32.2%
1955 19.44 million tonnes +26.6%
1956 23.47 million tonnes +20.7%
1957 25.14 million tonnes +7.1%
1958 27.38 million tonnes +8.9%
1959 28.88 million tonnes +5.5%
1960 30.00 million tonnes +3.9%
1961 31.87 million tonnes +6.2%
1962 34.18 million tonnes +7.3%
1963 37.30 million tonnes +9.1%
1964 40.79 million tonnes +9.4%
1965 43.07 million tonnes +5.6%
1966 43.44 million tonnes +0.9%
1967 46.13 million tonnes +6.2%
1968 51.14 million tonnes +10.8%
1969 57.91 million tonnes +13.2%
1970 75.66 million tonnes +30.6%
1971 91.97 million tonnes +21.6%
1972 113.69 million tonnes +23.6%
1973 134.26 million tonnes +18.1%
1974 155.57 million tonnes +15.9%
1975 179.36 million tonnes +15.3%
1976 208.71 million tonnes +16.4%
1977 236.40 million tonnes +13.3%
1978 268.90 million tonnes +13.7%
1979 304.36 million tonnes +13.2%
1980 334.82 million tonnes +10.0%
1981 360.52 million tonnes +7.7%
1982 388.95 million tonnes +7.9%
1983 422.39 million tonnes +8.6%
1984 454.51 million tonnes +7.6%
1985 487.12 million tonnes +7.2%
1986 521.49 million tonnes +7.1%
1987 553.61 million tonnes +6.2%
1988 589.17 million tonnes +6.4%
1989 630.42 million tonnes +7.0%
1990 674.14 million tonnes +6.9%
1991 718.54 million tonnes +6.6%
1992 766.21 million tonnes +6.6%
1993 816.10 million tonnes +6.5%
1994 876.67 million tonnes +7.4%
1995 917.56 million tonnes +4.7%
1996 965.86 million tonnes +5.3%
1997 1.02 billion tonnes +5.9%
1998 1.07 billion tonnes +4.7%
1999 1.12 billion tonnes +4.6%
2000 1.16 billion tonnes +3.4%
2001 1.20 billion tonnes +3.3%
2002 1.24 billion tonnes +3.4%
2003 1.28 billion tonnes +3.2%
2004 1.32 billion tonnes +3.2%
2005 1.36 billion tonnes +3.0%
2006 1.40 billion tonnes +3.0%
2007 1.44 billion tonnes +2.9%
2008 1.48 billion tonnes +2.8%
2009 1.52 billion tonnes +2.8%
2010 1.57 billion tonnes +2.9%
2011 1.61 billion tonnes +3.0%
2012 1.66 billion tonnes +2.9%
2013 1.71 billion tonnes +2.8%
2014 1.75 billion tonnes +2.8%
2015 1.80 billion tonnes +2.8%
2016 1.85 billion tonnes +2.7%
2017 1.90 billion tonnes +2.7%
2018 1.95 billion tonnes +2.6%
2019 2.00 billion tonnes +2.5%
2020 2.05 billion tonnes +2.3%
2021 2.10 billion tonnes +2.4%
2022 2.15 billion tonnes +2.3%
2023 2.20 billion tonnes +2.4%
2024 2.25 billion tonnes +2.5%

Singapore compared with similar countries

  • Singapore's 2.25 billion tonnes is below the median for high income countries, which is 3.31 billion tonnes, 68% of the median. (62 countries reporting)
  • Singapore's 2.25 billion tonnes is above the median for East Asia & Pacific, which is 2.16 billion tonnes, 1.0× the median. (30 countries reporting)

Biggest year-on-year movements

Years where Cumulative CO₂ emissions including land-use change, gaps filled in Singapore changed far more than this series normally does. A large move can be a real event or a change in how the figure was measured — the source note below says who published it.

YearChange FromTo
1951 +147.1% 1.91 million tonnes 4.73 million tonnes
1952 +72.4% 4.73 million tonnes 8.16 million tonnes
1953 +42.3% 8.16 million tonnes 11.61 million tonnes

Averages by decade

DecadeAverage LowestHighest Years
1950s 16.61 million tonnes 1.91 million tonnes 28.88 million tonnes 10
1960s 41.58 million tonnes 30.00 million tonnes 57.91 million tonnes 10
1970s 176.89 million tonnes 75.66 million tonnes 304.36 million tonnes 10
1980s 474.30 million tonnes 334.82 million tonnes 630.42 million tonnes 10
1990s 894.85 million tonnes 674.14 million tonnes 1.12 billion tonnes 10
2000s 1.34 billion tonnes 1.16 billion tonnes 1.52 billion tonnes 10
2010s 1.78 billion tonnes 1.57 billion tonnes 2.00 billion tonnes 10
2020s 2.15 billion tonnes 2.05 billion tonnes 2.25 billion tonnes 5

Countries ranked near Singapore

  1. 95 Panama 2.48 billion tonnes compare
  2. 96 Dominican Republic 2.47 billion tonnes compare
  3. 97 Uganda 2.34 billion tonnes compare
  4. 99 Sri Lanka 2.25 billion tonnes compare
  5. 100 Mongolia 2.08 billion tonnes compare
  6. 101 Congo 1.88 billion tonnes compare

See the full ranking of 194 places →

More climate change data for Singapore

All data for Singapore →

Frequently asked questions

What is cumulative co₂ emissions including land-use change, gaps filled in Singapore?
Cumulative co₂ emissions including land-use change, gaps filled in Singapore was 2.25 billion tonnes in 2024, according to Statizoid (derived).
What is the highest cumulative co₂ emissions including land-use change, gaps filled recorded in Singapore?
The highest recorded value was 2.25 billion tonnes in 2024.
What is the lowest cumulative co₂ emissions including land-use change, gaps filled recorded in Singapore?
The lowest recorded value was 1.91 million tonnes in 1950.
How does Singapore rank for cumulative co₂ emissions including land-use change, gaps filled?
Singapore ranks 98th out of 194 countries with data for 2024.
Is cumulative co₂ emissions including land-use change, gaps filled rising or falling in Singapore?
Over the last ten years it is up 28.5%. The long-run trend across the full record is volatile.
Where does this Singapore data come from?
The figures come from Statizoid (derived), published as part of Cumulative CO₂ emissions including land-use change, gaps filled. Statizoid updates them automatically from the source API.

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Cumulative CO₂ emissions including land-use change, gaps filled in Singapore. Statizoid, drawing on Statizoid (derived). Retrieved 22 September 2026, from https://climate.statizoid.com/stat/cumulative-co2-emissions-including-land-use-change-gaps-filled/singapore/

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<a href="https://climate.statizoid.com/stat/cumulative-co2-emissions-including-land-use-change-gaps-filled/singapore/">Cumulative CO₂ emissions including land-use change, gaps filled in Singapore</a> — Statizoid

How this figure is calculated

Cumulative CO₂ emissions including land-use change with 79 missing years estimated by linear interpolation between the nearest real observations. Only gaps of 4 years or fewer are filled, and never beyond the first or last actual measurement — these are filled holes, not forecasts.

Computed from

Statizoid computes this series; the underlying measurements belong to the publishers named above. The arithmetic is applied to every country and year where both inputs report, and nothing is estimated unless the page says so.

About this data

Indicator
Cumulative CO₂ emissions including land-use change, gaps filled
Unit
tonnes
Source
Statizoid (derived)
Licence
Derived by Statizoid from the sources named on the page
Coverage
194 places, 21,015 data points, 1850–2024
Last refreshed

Cumulative CO₂ emissions including land-use change with 79 missing years estimated by linear interpolation between the nearest real observations. Only gaps of 4 years or fewer are filled, and never beyond the first or last actual measurement — these are filled holes, not forecasts.