Methane (CH4) emissions from Industrial Combustion (Energy) (Mt) in Australia
Australia: Methane (CH4) emissions from Industrial Combustion (Energy) (Mt) was 0 Mt CO2e per square kilometre in 2023. ▲ Rising
Methane (CH4) emissions from Industrial Combustion (Energy) (Mt) in Australia, 1970–2023
Source: Statizoid (derived). Measured in Mt CO2e per square kilometre.
Analysis
Australia recorded 0 Mt CO2e per square kilometre for methane (ch4) emissions from industrial combustion (energy) (mt) in 2023.
The figure is up 3.3% on the previous year and down 5.5% over ten years.
Over the whole period, methane (ch4) emissions from industrial combustion (energy) (mt) in Australia peaked at 0 Mt CO2e per square kilometre in 2017 and was at its lowest, 0 Mt CO2e per square kilometre, in 1986.
Australia ranks 134th of 193 countries on this measure, in the middle of the range.
The long-run direction has been consistently rising across the 54 years of available data.
Methane (CH4) emissions from Industrial Combustion (Energy) (Mt) in Australia, year by year
| Year | Mt CO2e per square kilometre | Change |
|---|---|---|
| 1970 | 0 Mt CO2e per square kilometre | — |
| 1971 | 0 Mt CO2e per square kilometre | +2.1% |
| 1972 | 0 Mt CO2e per square kilometre | -3.5% |
| 1973 | 0 Mt CO2e per square kilometre | -1.1% |
| 1974 | 0 Mt CO2e per square kilometre | +11.1% |
| 1975 | 0 Mt CO2e per square kilometre | +3.0% |
| 1976 | 0 Mt CO2e per square kilometre | +1.6% |
| 1977 | 0 Mt CO2e per square kilometre | +4.3% |
| 1978 | 0 Mt CO2e per square kilometre | -3.7% |
| 1979 | 0 Mt CO2e per square kilometre | -3.7% |
| 1980 | 0 Mt CO2e per square kilometre | +3.6% |
| 1981 | 0 Mt CO2e per square kilometre | +0.3% |
| 1982 | 0 Mt CO2e per square kilometre | +3.8% |
| 1983 | 0 Mt CO2e per square kilometre | -4.3% |
| 1984 | 0 Mt CO2e per square kilometre | -1.3% |
| 1985 | 0 Mt CO2e per square kilometre | +7.9% |
| 1986 | 0 Mt CO2e per square kilometre | -28.3% |
| 1987 | 0 Mt CO2e per square kilometre | +3.2% |
| 1988 | 0 Mt CO2e per square kilometre | +1.9% |
| 1989 | 0 Mt CO2e per square kilometre | +6.3% |
| 1990 | 0 Mt CO2e per square kilometre | +3.6% |
| 1991 | 0 Mt CO2e per square kilometre | -2.7% |
| 1992 | 0 Mt CO2e per square kilometre | -9.5% |
| 1993 | 0 Mt CO2e per square kilometre | +14.7% |
| 1994 | 0 Mt CO2e per square kilometre | +6.5% |
| 1995 | 0 Mt CO2e per square kilometre | +4.6% |
| 1996 | 0 Mt CO2e per square kilometre | +17.7% |
| 1997 | 0 Mt CO2e per square kilometre | +6.8% |
| 1998 | 0 Mt CO2e per square kilometre | -4.9% |
| 1999 | 0 Mt CO2e per square kilometre | +0.9% |
| 2000 | 0 Mt CO2e per square kilometre | +0.1% |
| 2001 | 0 Mt CO2e per square kilometre | -2.5% |
| 2002 | 0 Mt CO2e per square kilometre | +0.3% |
| 2003 | 0 Mt CO2e per square kilometre | -22.8% |
| 2004 | 0 Mt CO2e per square kilometre | +2.7% |
| 2005 | 0 Mt CO2e per square kilometre | +0.0% |
| 2006 | 0 Mt CO2e per square kilometre | -2.8% |
| 2007 | 0 Mt CO2e per square kilometre | +2.1% |
| 2008 | 0 Mt CO2e per square kilometre | +3.3% |
| 2009 | 0 Mt CO2e per square kilometre | +8.5% |
| 2010 | 0 Mt CO2e per square kilometre | +16.5% |
| 2011 | 0 Mt CO2e per square kilometre | -0.3% |
| 2012 | 0 Mt CO2e per square kilometre | +1.3% |
| 2013 | 0 Mt CO2e per square kilometre | +6.7% |
| 2014 | 0 Mt CO2e per square kilometre | -4.0% |
| 2015 | 0 Mt CO2e per square kilometre | +3.2% |
| 2016 | 0 Mt CO2e per square kilometre | +0.8% |
| 2017 | 0 Mt CO2e per square kilometre | +1.8% |
| 2018 | 0 Mt CO2e per square kilometre | -3.4% |
| 2019 | 0 Mt CO2e per square kilometre | -4.7% |
| 2020 | 0 Mt CO2e per square kilometre | -5.4% |
| 2021 | 0 Mt CO2e per square kilometre | +4.4% |
| 2022 | 0 Mt CO2e per square kilometre | -1.2% |
| 2023 | 0 Mt CO2e per square kilometre | +3.3% |
Biggest year-on-year movements
Years where Methane (CH4) emissions from Industrial Combustion (Energy) (Mt) in Australia 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.
| Year | Change | From | To |
|---|---|---|---|
| 1986 | -28.3% | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre |
Averages by decade
| Decade | Average | Lowest | Highest | Years |
|---|---|---|---|---|
| 1970s | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre | 10 |
| 1980s | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre | 10 |
| 1990s | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre | 10 |
| 2000s | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre | 10 |
| 2010s | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre | 10 |
| 2020s | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre | 0 Mt CO2e per square kilometre | 4 |
Countries ranked near Australia
- 131 Equatorial Guinea 0 Mt CO2e per square kilometre compare
- 132 Myanmar 0 Mt CO2e per square kilometre compare
- 133 Tajikistan 0 Mt CO2e per square kilometre compare
- 135 Uzbekistan 0 Mt CO2e per square kilometre compare
- 136 Kazakhstan 0 Mt CO2e per square kilometre compare
- 137 Benin 0 Mt CO2e per square kilometre compare
More environment data for Australia
- Historical exposure to drought — Land soil moisture anomaly -4.75 Percentage change (2025)
- Historical exposure to drought — Cropland soil moisture anomaly -5.98 Percentage change (2025)
- Standard Deviation, annual growth rate 0 % change on previous year (2025)
- Standard Deviation 0.345 °C (2025)
- Temperature change 1.4 °C (2025)
- Total greenhouse gas emissions excluding LULUCF (Mt CO2e), annual 0.6708 % change on previous year (2024)
- Total greenhouse gas emissions excluding LULUCF (Mt CO2e), per unit 0 Mt CO2e per US$ of GDP (2024)
- 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 0.0861 % change on previous year (2024)
- Methane (CH4) emissions from Agriculture (Mt CO2e), per unit of GDP 0 Mt CO2e per US$ of GDP (2024)
Frequently asked questions
- What is methane (ch4) emissions from industrial combustion (energy) (mt) in Australia?
- Methane (ch4) emissions from industrial combustion (energy) (mt) in Australia was 0 Mt CO2e per square kilometre in 2023, according to Statizoid (derived).
- What is the highest methane (ch4) emissions from industrial combustion (energy) (mt) recorded in Australia?
- The highest recorded value was 0 Mt CO2e per square kilometre in 2017.
- What is the lowest methane (ch4) emissions from industrial combustion (energy) (mt) recorded in Australia?
- The lowest recorded value was 0 Mt CO2e per square kilometre in 1986.
- How does Australia rank for methane (ch4) emissions from industrial combustion (energy) (mt)?
- Australia ranks 134th out of 193 countries with data for 2023.
- Is methane (ch4) emissions from industrial combustion (energy) (mt) rising or falling in Australia?
- Over the last ten years it is down 5.5%. The long-run trend across the full record is rising.
- Where does this Australia data come from?
- The figures come from Statizoid (derived), published as part of Methane (CH4) emissions from Industrial Combustion (Energy) (Mt CO2e), per square kilometre. Statizoid updates them automatically from the source API.
Download this data
CSV · JSON — 54 observations, free to reuse under Derived by Statizoid from the sources named on the page.
How this figure is calculated
Methane (CH4) emissions from Industrial Combustion (Energy) (Mt CO2e) divided by Land area (sq. km), matched on country and year. Neither publisher issues this ratio as a series; it is computed here from both.
Methane (CH4) emissions from Industrial Combustion (Energy) (Mt CO2e) ÷ Land area (sq. km)
Computed from
- Methane (CH4) emissions from Industrial Combustion (Energy) EDGAR (Emissions Database for Global Atmospheric Research) Community GHG Database, Joint Research Centre (JRC) - European Commission
- Land area FAOSTAT, Food and Agriculture Organization of the United Nations (FAO)
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
Methane (CH4) emissions from Industrial Combustion (Energy) (Mt CO2e) divided by Land area (sq. km), matched on country and year. Neither publisher issues this ratio as a series; it is computed here from both.