Sorghum — Crop residues in Australia and New Zealand
Australia and New Zealand: Sorghum — Crop residues was 0.4913 kt in 2050. ▲ Rising
Sorghum — Crop residues in Australia and New Zealand, 1961–2050
Source: Food and Agriculture Organization of the United Nations. Measured in kt.
Analysis
The most recent figure for sorghum — crop residues in Australia and New Zealand is 0.4913 kt, measured in 2050.
Over the whole period, sorghum — crop residues in Australia and New Zealand peaked at 0.7007 kt in 2008 and was at its lowest, 0.0425 kt, in 1961.
That places Australia and New Zealand 12th out of 112 countries with data for 2050, putting it in the top 10%.
The long-run direction has been consistently rising across the 65 years of available data.
Sorghum — Crop residues in Australia and New Zealand, year by year
| Year | kt | Change |
|---|---|---|
| 1961 | 0.0425 kt | — |
| 1962 | 0.0635 kt | +49.4% |
| 1963 | 0.069 kt | +8.7% |
| 1964 | 0.0582 kt | -15.7% |
| 1965 | 0.054 kt | -7.2% |
| 1966 | 0.0609 kt | +12.8% |
| 1967 | 0.0833 kt | +36.8% |
| 1968 | 0.0759 kt | -8.9% |
| 1969 | 0.0812 kt | +7.0% |
| 1970 | 0.1449 kt | +78.4% |
| 1971 | 0.285 kt | +96.7% |
| 1972 | 0.2924 kt | +2.6% |
| 1973 | 0.2753 kt | -5.8% |
| 1974 | 0.2503 kt | -9.1% |
| 1975 | 0.2229 kt | -10.9% |
| 1976 | 0.2519 kt | +13.0% |
| 1977 | 0.2345 kt | -6.9% |
| 1978 | 0.1745 kt | -25.6% |
| 1979 | 0.2451 kt | +40.5% |
| 1980 | 0.2272 kt | -7.3% |
| 1981 | 0.2929 kt | +28.9% |
| 1982 | 0.3065 kt | +4.6% |
| 1983 | 0.2689 kt | -12.3% |
| 1984 | 0.3999 kt | +48.7% |
| 1985 | 0.3282 kt | -17.9% |
| 1986 | 0.3367 kt | +2.6% |
| 1987 | 0.3537 kt | +5.0% |
| 1988 | 0.3684 kt | +4.2% |
| 1989 | 0.2919 kt | -20.8% |
| 1990 | 0.2033 kt | -30.4% |
| 1991 | 0.1763 kt | -13.3% |
| 1992 | 0.3087 kt | +75.1% |
| 1993 | 0.1583 kt | -48.7% |
| 1994 | 0.2455 kt | +55.1% |
| 1995 | 0.3079 kt | +25.4% |
| 1996 | 0.3677 kt | +19.4% |
| 1997 | 0.3007 kt | -18.2% |
| 1998 | 0.2466 kt | -18.0% |
| 1999 | 0.3726 kt | +51.1% |
| 2000 | 0.4101 kt | +10.1% |
| 2001 | 0.4121 kt | +0.5% |
| 2002 | 0.4365 kt | +5.9% |
| 2003 | 0.3301 kt | -24.4% |
| 2004 | 0.4176 kt | +26.5% |
| 2005 | 0.4218 kt | +1.0% |
| 2006 | 0.4135 kt | -2.0% |
| 2007 | 0.295 kt | -28.7% |
| 2008 | 0.7007 kt | +137.5% |
| 2009 | 0.517 kt | -26.2% |
| 2010 | 0.3029 kt | -41.4% |
| 2011 | 0.3876 kt | +28.0% |
| 2012 | 0.4342 kt | +12.0% |
| 2013 | 0.4307 kt | -0.8% |
| 2014 | 0.2789 kt | -35.2% |
| 2015 | 0.4444 kt | +59.3% |
| 2016 | 0.3459 kt | -22.2% |
| 2017 | 0.2075 kt | -40.0% |
| 2018 | 0.2618 kt | +26.2% |
| 2019 | 0.2659 kt | +1.6% |
| 2020 | 0.0941 kt | -64.6% |
| 2021 | 0.3355 kt | +256.5% |
| 2022 | 0.4825 kt | +43.8% |
| 2023 | 0.4547 kt | -5.8% |
| 2030 | 0.4624 kt | +1.7% |
| 2050 | 0.4913 kt | +6.3% |
Biggest year-on-year movements
Years where Sorghum — Crop residues in Australia and New Zealand 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 |
|---|---|---|---|
| 2021 | +256.5% | 0.0941 kt | 0.3355 kt |
Averages by decade
| Decade | Average | Lowest | Highest | Years |
|---|---|---|---|---|
| 1960s | 0.0654 kt | 0.0425 kt | 0.0833 kt | 9 |
| 1970s | 0.2377 kt | 0.1449 kt | 0.2924 kt | 10 |
| 1980s | 0.3174 kt | 0.2272 kt | 0.3999 kt | 10 |
| 1990s | 0.2688 kt | 0.1583 kt | 0.3726 kt | 10 |
| 2000s | 0.4354 kt | 0.295 kt | 0.7007 kt | 10 |
| 2010s | 0.336 kt | 0.2075 kt | 0.4444 kt | 10 |
| 2020s | 0.3417 kt | 0.0941 kt | 0.4825 kt | 4 |
| 2030s | 0.4624 kt | 0.4624 kt | 0.4624 kt | 1 |
| 2050s | 0.4913 kt | 0.4913 kt | 0.4913 kt | 1 |
Countries ranked near Australia and New Zealand
- 9 Democratic People's Republic of Korea 0.009 kt compare
- 9 Niger 0.9465 kt compare
- 10 Argentina 0.8851 kt compare
- 10 Syrian Arab Republic 0.003 kt compare
- 11 Mali 0.5014 kt compare
- 11 Melanesia 0.0011 kt compare
- 12 Australia 0.4913 kt compare
- 12 Republic of Moldova 0.0001 kt compare
- 12 Türkiye 0.0001 kt compare
- 14 China 0.3988 kt compare
- 14 Micronesia (Federated States of) 0 kt
- 14 Micronesia 0 kt
- 15 China, mainland 0.3978 kt compare
More climate change data for Australia and New Zealand
- Nutrient nitrogen N (total) — Synthetic fertilizers (Agricultural) 1.41 billion kg (2050)
- Emissions from livestock — Emissions (CO2eq) 164,901 kt (2050)
- Emissions from livestock — Emissions (CO2eq) from N2O 46,145 kt (2050)
- Emissions from livestock — Emissions (CO2eq) from CH4 118,756 kt (2050)
- Emissions from livestock — Emissions 174.13 kt (2050)
- Emissions from livestock — Emissions 4,241 kt (2050)
- Emissions from crops — Emissions (CO2eq) 13,168 kt (2050)
- Emissions from crops — Emissions (CO2eq) from N2O 11,657 kt (2050)
- Emissions from crops — Emissions (CO2eq) from CH4 1,510 kt (2050)
- Emissions from crops — Emissions 43.99 kt (2050)
Frequently asked questions
- What is sorghum — crop residues in Australia and New Zealand?
- Sorghum — crop residues in Australia and New Zealand was 0.4913 kt in 2050, according to Food and Agriculture Organization of the United Nations.
- What is the highest sorghum — crop residues recorded in Australia and New Zealand?
- The highest recorded value was 0.7007 kt in 2008.
- What is the lowest sorghum — crop residues recorded in Australia and New Zealand?
- The lowest recorded value was 0.0425 kt in 1961.
- How does Australia and New Zealand rank for sorghum — crop residues?
- Australia and New Zealand ranks 12th out of 112 countries with data for 2050.
- Where does this Australia and New Zealand data come from?
- The figures come from Food and Agriculture Organization of the United Nations, published as part of Sorghum — Crop residues (Emissions N2O). Statizoid updates them automatically from the source API.
Download this data
CSV · JSON — 65 observations, free to reuse under CC BY-NC-SA 3.0 IGO (FAO).
About this data
The FAOSTAT domain on Emissions from Crops provides estimates of emissions associated with crop processes, namely 1) crop residues, 2) burning of crop residues, and 3) rice cultivation and the application of nitrogen (N) fertilizers, including mineral and chemical fertilizers, to soils. Estimates are computed at Tier 1 following the 2006 IPCC Guidelines for National greenhouse gas (GHG) Inventories (IPCC, 2006).