Contribution to global mean surface temperature rise from agriculture and land use in Antigua and Barbuda

Antigua and Barbuda: Contribution to global mean surface temperature rise from agriculture and land use was -0 °C in 2024. ◆ Volatile

Latest (2024)
-0 °C
Change on year
down 4.4%
World rank
201st
of 201 countries
All-time high
0 °C
in 1858
All-time low
-0 °C
in 2024
Years of data
174
1851–2024

Contribution to global mean surface temperature rise from agriculture and land use in Antigua and Barbuda, 1851–2024

-0-0-0-0-0185119372024

Source: Jones et al. (2025) – with major processing by Our World in Data. Measured in °C.

Analysis

The most recent figure for contribution to global mean surface temperature rise from agriculture and land use in Antigua and Barbuda is -0 °C, measured in 2024. That is the lowest value across all 174 years on record.

That represents a change of down 4.4% on the previous year and down 52.6% over ten years.

Over the whole period, contribution to global mean surface temperature rise from agriculture and land use in Antigua and Barbuda peaked at 0 °C in 1858 and was at its lowest, -0 °C, in 2024.

That places Antigua and Barbuda 201st out of 201 countries with data for 2024, putting it in the bottom quarter.

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

Contribution to global mean surface temperature rise from agriculture and land use in Antigua and Barbuda, year by year

Annual values for Contribution to global mean surface temperature rise from agriculture and land use in Antigua and Barbuda, 1851 to 2024.
Year °C Change
1851 0 °C
1852 0 °C +72.5%
1853 0 °C +31.1%
1854 0 °C +17.4%
1855 0 °C +10.5%
1856 0 °C +6.3%
1857 0 °C +3.3%
1858 0 °C +1.0%
1859 0 °C -1.0%
1860 0 °C -2.4%
1861 0 °C -3.6%
1862 0 °C -4.9%
1863 0 °C -6.4%
1864 0 °C -7.9%
1865 0 °C -9.8%
1866 0 °C -12.0%
1867 0 °C -14.9%
1868 0 °C -18.9%
1869 0 °C -25.0%
1870 0 °C -30.9%
1871 0 °C -42.4%
1872 0 °C -71.2%
1873 -0 °C -241.5%
1874 -0 °C +166.6%
1875 -0 °C +61.0%
1876 -0 °C +37.1%
1877 -0 °C +26.4%
1878 -0 °C +20.4%
1879 -0 °C +16.5%
1880 -0 °C +8.8%
1881 -0 °C +5.7%
1882 -0 °C +4.0%
1883 -0 °C +2.8%
1884 -0 °C +1.9%
1885 -0 °C +1.2%
1886 -0 °C +0.5%
1887 -0 °C -0.2%
1888 -0 °C -0.8%
1889 -0 °C -1.4%
1890 -0 °C +1.8%
1891 -0 °C +3.5%
1892 -0 °C +4.3%
1893 -0 °C +4.7%
1894 -0 °C +4.9%
1895 -0 °C +5.0%
1896 -0 °C +5.0%
1897 -0 °C +5.0%
1898 -0 °C +5.0%
1899 -0 °C +5.0%
1900 -0 °C +2.9%
1901 -0 °C +3.6%
1902 -0 °C +4.9%
1903 -0 °C +6.4%
1904 -0 °C +7.7%
1905 -0 °C +8.7%
1906 -0 °C +9.3%
1907 -0 °C +9.9%
1908 -0 °C +10.1%
1909 -0 °C +10.0%
1910 -0 °C +12.7%
1911 -0 °C +12.5%
1912 -0 °C +11.6%
1913 -0 °C +10.6%
1914 -0 °C +9.8%
1915 -0 °C +9.0%
1916 -0 °C +8.3%
1917 -0 °C +7.7%
1918 -0 °C +7.2%
1919 -0 °C +6.7%
1920 -0 °C +5.2%
1921 -0 °C +4.5%
1922 -0 °C +4.0%
1923 -0 °C +3.6%
1924 -0 °C +3.3%
1925 -0 °C +3.1%
1926 -0 °C +2.9%
1927 -0 °C +2.7%
1928 -0 °C +2.5%
1929 -0 °C +2.4%
1930 -0 °C +1.8%
1931 -0 °C +1.4%
1932 -0 °C +1.1%
1933 -0 °C +0.8%
1934 -0 °C +0.6%
1935 -0 °C +0.3%
1936 -0 °C +0.1%
1937 -0 °C -0.1%
1938 -0 °C -0.3%
1939 -0 °C -0.5%
1940 -0 °C -0.8%
1941 -0 °C -1.1%
1942 -0 °C -1.3%
1943 -0 °C -1.5%
1944 -0 °C -1.8%
1945 -0 °C -2.0%
1946 -0 °C -2.2%
1947 -0 °C -2.5%
1948 -0 °C -2.7%
1949 -0 °C -3.0%
1950 -0 °C -4.4%
1951 -0 °C -4.7%
1952 -0 °C -4.7%
1953 -0 °C -4.4%
1954 -0 °C -4.1%
1955 -0 °C -3.9%
1956 -0 °C -3.7%
1957 -0 °C -2.4%
1958 -0 °C +2.9%
1959 -0 °C +22.7%
1960 -0 °C +17.4%
1961 -0 °C +18.8%
1962 -0 °C +15.5%
1963 -0 °C +13.4%
1964 -0 °C +13.4%
1965 -0 °C +9.7%
1966 -0 °C +8.4%
1967 -0 °C +7.4%
1968 -0 °C +6.4%
1969 -0 °C +5.2%
1970 -0 °C +1.0%
1971 -0 °C +3.2%
1972 -0 °C +3.8%
1973 -0 °C +4.0%
1974 -0 °C +3.8%
1975 -0 °C +3.5%
1976 -0 °C +3.2%
1977 -0 °C +2.8%
1978 -0 °C +1.6%
1979 -0 °C -0.0%
1980 -0 °C -1.0%
1981 -0 °C -1.1%
1982 -0 °C -1.6%
1983 -0 °C -0.8%
1984 -0 °C -1.2%
1985 -0 °C -2.3%
1986 -0 °C -2.7%
1987 -0 °C -2.9%
1988 -0 °C -2.9%
1989 -0 °C -2.0%
1990 -0 °C -2.0%
1991 -0 °C -2.3%
1992 -0 °C -2.5%
1993 -0 °C -2.9%
1994 -0 °C -3.4%
1995 -0 °C -3.8%
1996 -0 °C -3.6%
1997 -0 °C -3.7%
1998 -0 °C -2.6%
1999 -0 °C -0.8%
2000 -0 °C +0.5%
2001 -0 °C +0.0%
2002 -0 °C +0.2%
2003 -0 °C -0.1%
2004 -0 °C -0.4%
2005 -0 °C +0.7%
2006 -0 °C +0.5%
2007 -0 °C +0.3%
2008 -0 °C +0.0%
2009 -0 °C -0.7%
2010 -0 °C +6.0%
2011 -0 °C +5.9%
2012 -0 °C +5.4%
2013 -0 °C +4.7%
2014 -0 °C +4.9%
2015 -0 °C +4.9%
2016 -0 °C +4.3%
2017 -0 °C +3.5%
2018 -0 °C +3.9%
2019 -0 °C +4.5%
2020 -0 °C +4.4%
2021 -0 °C +4.5%
2022 -0 °C +4.4%
2023 -0 °C +4.4%
2024 -0 °C +4.4%

Antigua and Barbuda compared with similar countries

  • Antigua and Barbuda's -0 °C is below the median for high income countries, which is 0.0004 °C. (67 countries reporting)
  • Antigua and Barbuda's -0 °C is below the median for Latin America & Caribbean, which is 0.0007 °C. (36 countries reporting)

Biggest year-on-year movements

Years where Contribution to global mean surface temperature rise from agriculture and land use in Antigua and Barbuda 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
1873 -241.5% 0 °C -0 °C
1874 -166.6% -0 °C -0 °C
1852 +72.5% 0 °C 0 °C
1872 -71.2% 0 °C 0 °C
1875 -61.0% -0 °C -0 °C
1871 -42.4% 0 °C 0 °C

Averages by decade

DecadeAverage LowestHighest Years
1850s 0 °C 0 °C 0 °C 9
1860s 0 °C 0 °C 0 °C 10
1870s -0 °C -0 °C 0 °C 10
1880s -0 °C -0 °C -0 °C 10
1890s -0 °C -0 °C -0 °C 10
1900s -0 °C -0 °C -0 °C 10
1910s -0 °C -0 °C -0 °C 10
1920s -0 °C -0 °C -0 °C 10
1930s -0 °C -0 °C -0 °C 10
1940s -0 °C -0 °C -0 °C 10
1950s -0 °C -0 °C -0 °C 10
1960s -0 °C -0 °C -0 °C 10
1970s -0 °C -0 °C -0 °C 10
1980s -0 °C -0 °C -0 °C 10
1990s -0 °C -0 °C -0 °C 10
2000s -0 °C -0 °C -0 °C 10
2010s -0 °C -0 °C -0 °C 10
2020s -0 °C -0 °C -0 °C 5

Countries ranked near Antigua and Barbuda

  1. 198 Maldives 0 °C compare
  2. 199 Turks and Caicos Islands 0 °C compare
  3. 200 Marshall Islands 0 °C

See the full ranking of 201 places →

More climate change data for Antigua and Barbuda

All data for Antigua and Barbuda →

Frequently asked questions

What is contribution to global mean surface temperature rise from agriculture and land use in Antigua and Barbuda?
Contribution to global mean surface temperature rise from agriculture and land use in Antigua and Barbuda was -0 °C in 2024, according to Jones et al. (2025) – with major processing by Our World in Data.
What is the highest contribution to global mean surface temperature rise from agriculture and land use recorded in Antigua and Barbuda?
The highest recorded value was 0 °C in 1858.
What is the lowest contribution to global mean surface temperature rise from agriculture and land use recorded in Antigua and Barbuda?
The lowest recorded value was -0 °C in 2024.
How does Antigua and Barbuda rank for contribution to global mean surface temperature rise from agriculture and land use?
Antigua and Barbuda ranks 201st out of 201 countries with data for 2024.
Is contribution to global mean surface temperature rise from agriculture and land use rising or falling in Antigua and Barbuda?
Over the last ten years it is down 52.6%. The long-run trend across the full record is volatile.
Where does this Antigua and Barbuda data come from?
The figures come from Jones et al. (2025) – with major processing by Our World in Data, published as part of Contribution to global mean surface temperature rise from agriculture and land use. Statizoid updates them automatically from the source API.

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Contribution to global mean surface temperature rise from agriculture and land use in Antigua and Barbuda. Statizoid, drawing on Jones et al. (2025) – with major processing by Our World in Data. Retrieved 24 September 2026, from https://climate.statizoid.com/stat/global-warming-land/antigua-and-barbuda/

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<a href="https://climate.statizoid.com/stat/global-warming-land/antigua-and-barbuda/">Contribution to global mean surface temperature rise from agriculture and land use in Antigua and Barbuda</a> — Statizoid

About this data

Indicator
Contribution to global mean surface temperature rise from agriculture and land use
Unit
°C
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, 34,974 data points, 1851–2024
Last refreshed

Measured in °C.