CO2 emissions from oil — all countries

CO2 emissions from oil — Saint Lucia

CO2 emissions from oil in Saint Lucia in 2024 — 0.54 Mt. Ranked 32 in the world out of 213. Since 1950, the indicator has risen by 13,325%.

2024 0.54 Mt +3.87% vs 2023
World rank 32of 213
Period maximum 0.54 Mt2024
Period minimum 0 Mt1950

Trend over time

1950–2024 · million tonnes

CO2 emissions from oil — Saint Lucia, 1950–202400.20.40.619501958196619741982199019982006201420221950: 0 Mt1952: 0.01 Mt1954: 0.01 Mt1956: 0.01 Mt1958: 0.01 Mt1960: 0.02 Mt1962: 0.02 Mt1964: 0.02 Mt1966: 0.03 Mt1968: 0.04 Mt1970: 0.07 Mt1972: 0.08 Mt1974: 0.07 Mt1976: 0.08 Mt1978: 0.1 Mt1980: 0.11 Mt1982: 0.11 Mt1984: 0.11 Mt1986: 0.13 Mt1988: 0.17 Mt1990: 0.18 Mt1992: 0.21 Mt1994: 0.26 Mt1996: 0.29 Mt1998: 0.32 Mt2000: 0.34 Mt2002: 0.36 Mt2004: 0.4 Mt2006: 0.41 Mt2008: 0.43 Mt2010: 0.48 Mt2012: 0.49 Mt2014: 0.49 Mt2016: 0.47 Mt2018: 0.51 Mt2020: 0.49 Mt2022: 0.52 Mt2024: 0.54 Mt
Change over the period: +0.53 (+13,325%) Average annual rate: 6.85 %

Comparison, 2024

How the value compares with the world and the groups this territory belongs to: Saint Lucia

Saint Lucia 0.54 Mt
World computed 11,276.42 Mt
Latin America & Caribbean computed 1,011.4 Mt
Caribbean computed 66.3 Mt
Upper-middle-income countries computed 3,577.04 Mt
CO2 emissions from oil — Saint Lucia, by year Saint Lucia All countries CSV XLSX
Year Mt Change Change, %
2024 0.54 +0.02 +3.87%
2023 0.52 −0 −0.19%
2022 0.52 +0.01 +2.37%
2021 0.51 +0.02 +3.9%
2020 0.49 −0.02 −2.99%
2019 0.5 −0.01 −1.38%
2018 0.51 +0.01 +2.83%
2017 0.5 +0.02 +4.65%
2016 0.47 −0.01 −1.46%
2015 0.48 −0.01 −1.44%
2014 0.49 +0 +0%
2013 0.49 +0 +0%
2012 0.49 +0 +0.62%
2011 0.48 +0 +0%
2010 0.48 +0.06 +13.88%
2009 0.43 +0 +0%
2008 0.43 +0 +0.95%
2007 0.42 +0.01 +1.69%
2006 0.41 +0.02 +5.61%
2005 0.39 −0.01 −1.75%
2004 0.4 +0.02 +5.84%
2003 0.38 +0.02 +6.2%
2002 0.36 −0 −1.11%
2001 0.36 +0.02 +5.28%
2000 0.34 +0 +1.19%
1999 0.34 +0.02 +4.66%
1998 0.32 +0.03 +9.9%
1997 0.29 +0 +0%
1996 0.29 +0.02 +6.55%
1995 0.28 +0.02 +5.77%
1994 0.26 +0.03 +11.11%
1993 0.23 +0.02 +9.86%
1992 0.21 +0.03 +13.9%
1991 0.19 +0.01 +3.89%
1990 0.18 +0.02 +9.09%
1989 0.17 +0 +0%
1988 0.17 +0.02 +12.24%
1987 0.15 +0.02 +11.36%
1986 0.13 +0 +3.13%
1985 0.13 +0.01 +12.28%
1984 0.11 +0.01 +10.68%
1983 0.1 −0.01 −9.65%
1982 0.11 +0.02 +20%
1981 0.1 −0.02 −16.67%
1980 0.11 −0.04 −24%
1979 0.15 +0.05 +51.52%
1978 0.1 +0.03 +41.43%
1977 0.07 −0.01 −16.67%
1976 0.08 +0.01 +9.09%
1975 0.08 +0 +5.48%
1974 0.07 −0.01 −9.88%
1973 0.08 +0 +5.19%
1972 0.08 +0.01 +10%
1971 0.07 +0 +6.06%
1970 0.07 +0 +6.45%
1969 0.06 +0.03 +67.57%
1968 0.04 +0 +12.12%
1967 0.03 +0 +13.79%
1966 0.03 +0 +11.54%
1965 0.03 +0 +18.18%
1964 0.02 +0 +0%
1963 0.02 +0 +22.22%
1962 0.02 +0 +0%
1961 0.02 +0 +20%
1960 0.02 +0 +36.36%
1959 0.01 +0 +0%
1958 0.01 +0 +0%
1957 0.01 +0 +0%
1956 0.01 +0 +0%
1955 0.01 +0 +57.14%
1954 0.01 −0 −36.36%
1953 0.01 +0 +57.14%
1952 0.01 −0 −36.36%
1951 0.01 +0.01 +175%
1950 0

About the indicator

Carbon dioxide emissions from burning oil and petroleum products. Most of it comes from transport, and that makes this the most inert of the three fuel series: a power plant can be replaced within years, while a vehicle fleet turns over in a decade and a half. This is exactly why the shift to electric cars shows up in emissions with a long lag behind the share of electric cars in sales.

Important: Includes petrochemical feedstock burned as fuel, but not plastic: carbon that stays in products does not enter emissions until the products themselves are burned.

Source: CO₂ and GHG Emissions (Our World in Data), license CC BY 4.0.