Methane (CH4) emissions from Industrial Processes in Cuba
Cuba: Methane (CH4) emissions from Industrial Processes was 0 Mt CO2e in 2024. ◆ Volatile
Methane (CH4) emissions from Industrial Processes in Cuba, 1970–2024
Source: EDGAR (Emissions Database for Global Atmospheric Research) Community GHG Database, Joint Research Centre (JRC) - European Commission. Measured in Mt CO2e.
Analysis
In 2024, methane (ch4) emissions from industrial processes in Cuba stood at 0 Mt CO2e. That is the lowest value across all 55 years on record.
Over the whole period, methane (ch4) emissions from industrial processes in Cuba peaked at 0.0008 Mt CO2e in 1985 and was at its lowest, 0 Mt CO2e, in 1993.
Cuba ranks 78th of 94 countries on this measure, in the bottom quarter.
The series is highly variable year to year, so single readings are best treated with caution.
Methane (CH4) emissions from Industrial Processes in Cuba, year by year
| Year | Mt CO2e | Change |
|---|---|---|
| 1970 | 0.0003 Mt CO2e | — |
| 1971 | 0.0002 Mt CO2e | -33.3% |
| 1972 | 0.0004 Mt CO2e | +100.0% |
| 1973 | 0.0004 Mt CO2e | +0.0% |
| 1974 | 0.0005 Mt CO2e | +25.0% |
| 1975 | 0.0006 Mt CO2e | +20.0% |
| 1976 | 0.0005 Mt CO2e | -16.7% |
| 1977 | 0.0006 Mt CO2e | +20.0% |
| 1978 | 0.0006 Mt CO2e | +0.0% |
| 1979 | 0.0006 Mt CO2e | +0.0% |
| 1980 | 0.0006 Mt CO2e | +0.0% |
| 1981 | 0.0006 Mt CO2e | +0.0% |
| 1982 | 0.0006 Mt CO2e | +0.0% |
| 1983 | 0.0007 Mt CO2e | +16.7% |
| 1984 | 0.0006 Mt CO2e | -14.3% |
| 1985 | 0.0008 Mt CO2e | +33.3% |
| 1986 | 0.0008 Mt CO2e | +0.0% |
| 1987 | 0.0008 Mt CO2e | +0.0% |
| 1988 | 0.0006 Mt CO2e | -25.0% |
| 1989 | 0.0006 Mt CO2e | +0.0% |
| 1990 | 0.0005 Mt CO2e | -16.7% |
| 1991 | 0.0004 Mt CO2e | -20.0% |
| 1992 | 0.0002 Mt CO2e | -50.0% |
| 1993 | 0 Mt CO2e | -100.0% |
| 1994 | 0 Mt CO2e | — |
| 1995 | 0 Mt CO2e | — |
| 1996 | 0 Mt CO2e | — |
| 1997 | 0 Mt CO2e | — |
| 1998 | 0 Mt CO2e | — |
| 1999 | 0 Mt CO2e | — |
| 2000 | 0 Mt CO2e | — |
| 2001 | 0 Mt CO2e | — |
| 2002 | 0 Mt CO2e | — |
| 2003 | 0 Mt CO2e | — |
| 2004 | 0 Mt CO2e | — |
| 2005 | 0 Mt CO2e | — |
| 2006 | 0 Mt CO2e | — |
| 2007 | 0 Mt CO2e | — |
| 2008 | 0 Mt CO2e | — |
| 2009 | 0 Mt CO2e | — |
| 2010 | 0 Mt CO2e | — |
| 2011 | 0 Mt CO2e | — |
| 2012 | 0 Mt CO2e | — |
| 2013 | 0 Mt CO2e | — |
| 2014 | 0 Mt CO2e | — |
| 2015 | 0 Mt CO2e | — |
| 2016 | 0 Mt CO2e | — |
| 2017 | 0 Mt CO2e | — |
| 2018 | 0 Mt CO2e | — |
| 2019 | 0 Mt CO2e | — |
| 2020 | 0 Mt CO2e | — |
| 2021 | 0 Mt CO2e | — |
| 2022 | 0 Mt CO2e | — |
| 2023 | 0 Mt CO2e | — |
| 2024 | 0 Mt CO2e | — |
Cuba compared with similar countries
- Cuba's 0 Mt CO2e is below the median for upper middle income countries, which is 0.006 Mt CO2e. (33 countries reporting)
- Cuba's 0 Mt CO2e is below the median for Latin America & Caribbean, which is 0.0078 Mt CO2e. (13 countries reporting)
Averages by decade
| Decade | Average | Lowest | Highest | Years |
|---|---|---|---|---|
| 1970s | 0.0005 Mt CO2e | 0.0002 Mt CO2e | 0.0006 Mt CO2e | 10 |
| 1980s | 0.0007 Mt CO2e | 0.0006 Mt CO2e | 0.0008 Mt CO2e | 10 |
| 1990s | 0.0001 Mt CO2e | 0 Mt CO2e | 0.0005 Mt CO2e | 10 |
| 2000s | 0 Mt CO2e | 0 Mt CO2e | 0 Mt CO2e | 10 |
| 2010s | 0 Mt CO2e | 0 Mt CO2e | 0 Mt CO2e | 10 |
| 2020s | 0 Mt CO2e | 0 Mt CO2e | 0 Mt CO2e | 5 |
Countries ranked near Cuba
- 75 Armenia 0.0003 Mt CO2e compare
- 75 Paraguay 0.0003 Mt CO2e compare
- 77 Philippines 0.0001 Mt CO2e compare
- 78 Bangladesh 0 Mt CO2e compare
- 78 Denmark 0 Mt CO2e compare
- 78 Ecuador 0 Mt CO2e
- 78 Estonia 0 Mt CO2e
- 78 Iraq 0 Mt CO2e compare
- 78 Ireland 0 Mt CO2e
- 78 Latvia 0 Mt CO2e compare
- 78 Luxembourg 0 Mt CO2e compare
- 78 Mauritania 0 Mt CO2e
- 78 Morocco 0 Mt CO2e
- 78 Pakistan 0 Mt CO2e compare
- 78 Peru 0 Mt CO2e compare
- 78 Tunisia 0 Mt CO2e compare
- 78 Turkmenistan 0 Mt CO2e
- 78 Uruguay 0 Mt CO2e
- 78 Vietnam 0 Mt CO2e compare
More environment data for Cuba
- Historical exposure to drought — Land soil moisture anomaly -5.3 Percentage change (2025)
- Historical exposure to drought — Cropland soil moisture anomaly -5.17 Percentage change (2025)
- Standard Deviation, annual growth rate 0 % change on previous year (2025)
- Standard Deviation 0.278 °C (2025)
- Temperature change 1.4 °C (2025)
- Total greenhouse gas emissions excluding LULUCF (Mt CO2e), annual 2.52 % change on previous year (2024)
- Total greenhouse gas emissions excluding LULUCF (Mt CO2e), per unit 0 Mt CO2e per US$ of GDP (2020)
- Total greenhouse gas emissions excluding LULUCF (Mt CO2e), per capita 0 Mt CO2e per person (2024)
- Methane (CH4) emissions from Agriculture (Mt CO2e), annual growth rate -1.97 % change on previous year (2024)
- Methane (CH4) emissions from Agriculture (Mt CO2e), per unit of GDP 0 Mt CO2e per US$ of GDP (2020)
Frequently asked questions
- What is methane (ch4) emissions from industrial processes in Cuba?
- Methane (ch4) emissions from industrial processes in Cuba was 0 Mt CO2e in 2024, according to EDGAR (Emissions Database for Global Atmospheric Research) Community GHG Database, Joint Research Centre (JRC) - European Commission.
- What is the highest methane (ch4) emissions from industrial processes recorded in Cuba?
- The highest recorded value was 0.0008 Mt CO2e in 1985.
- What is the lowest methane (ch4) emissions from industrial processes recorded in Cuba?
- The lowest recorded value was 0 Mt CO2e in 1993.
- How does Cuba rank for methane (ch4) emissions from industrial processes?
- Cuba ranks 78th out of 94 countries with data for 2024.
- Where does this Cuba data come from?
- The figures come from EDGAR (Emissions Database for Global Atmospheric Research) Community GHG Database, Joint Research Centre (JRC) - European Commission, published as part of Methane (CH4) emissions from Industrial Processes (Mt CO2e). Statizoid updates them automatically from the source API.
Download this data
CSV · JSON — 55 observations, free to reuse under CC BY 4.0 (World Bank Open Data).
About this data
A measure of annual emissions of methane (CH4), one of the six Kyoto greenhouse gases (GHG), from industrial processes including IPCC 2006 codes 2.A.1 Cement production, 2.A.2 Lime production, 2.A.3 Glass Production, 2.A.4 Other Process Uses of Carbonates, 2.B Chemical Industry, 2.C Metal Industry, 2.D Non-Energy Products from Fuels and Solvent Use, 2.E Electronics Industry, 2.F Product Uses as Substitutes for Ozone Depleting Substances, 2.G Other Product Manufacture and Use and 5.A Indirect N2O emissions from the atmospheric deposition of nitrogen in NOx and NH3. The measure is standardized to carbon dioxide equivalent values using the Global Warming Potential (GWP) factors of IPCC's 5th Assessment Report (AR5).