Emission Totals - Indirect emissions (N2O) - Agricultural Soils in Saint Lucia
Saint Lucia: Emission Totals - Indirect emissions (N2O) - Agricultural Soils was 2.3 % change on previous year in 2019. ◆ Volatile
Emission Totals - Indirect emissions (N2O) - Agricultural Soils in Saint Lucia, 1962–2019
Source: Statizoid (derived). Measured in % change on previous year.
Analysis
In 2019, emission totals - indirect emissions (n2o) - agricultural soils in Saint Lucia stood at 2.3 % change on previous year.
That represents a change of up 302.3% on the previous year and down 54.0% over ten years.
Over the whole period, emission totals - indirect emissions (n2o) - agricultural soils in Saint Lucia peaked at 46.5 % change on previous year in 1989 and was at its lowest, -66.96 % change on previous year, in 1998.
That places Saint Lucia 53rd out of 195 countries with data for 2019, putting it in the middle of the range.
The series is highly variable year to year, so single readings are best treated with caution.
Emission Totals - Indirect emissions (N2O) - Agricultural Soils in Saint Lucia, year by year
| Year | % change on previous year | Change |
|---|---|---|
| 1962 | 3.03 % change on previous year | — |
| 1963 | 2.94 % change on previous year | -2.9% |
| 1964 | 4.29 % change on previous year | +45.7% |
| 1965 | 8.22 % change on previous year | +91.8% |
| 1966 | 7.59 % change on previous year | -7.6% |
| 1967 | 12.94 % change on previous year | +70.4% |
| 1968 | 9.38 % change on previous year | -27.6% |
| 1969 | 6.67 % change on previous year | -28.9% |
| 1970 | 5.36 % change on previous year | -19.6% |
| 1971 | -1.69 % change on previous year | -131.6% |
| 1972 | 4.31 % change on previous year | -354.3% |
| 1973 | 8.26 % change on previous year | +91.7% |
| 1974 | 0 % change on previous year | -100.0% |
| 1975 | 3.82 % change on previous year | — |
| 1976 | 1.47 % change on previous year | -61.5% |
| 1977 | 16.67 % change on previous year | +1033.3% |
| 1978 | -27.95 % change on previous year | -267.7% |
| 1979 | 15.52 % change on previous year | -155.5% |
| 1980 | -23.13 % change on previous year | -249.1% |
| 1981 | 14.56 % change on previous year | -163.0% |
| 1982 | 22.88 % change on previous year | +57.1% |
| 1983 | -4.83 % change on previous year | -121.1% |
| 1984 | 14.49 % change on previous year | -400.2% |
| 1985 | 5.7 % change on previous year | -60.7% |
| 1986 | -6.59 % change on previous year | -215.6% |
| 1987 | 0.641 % change on previous year | -109.7% |
| 1988 | 0 % change on previous year | -100.0% |
| 1989 | 46.5 % change on previous year | — |
| 1990 | -12.17 % change on previous year | -126.2% |
| 1991 | 15.35 % change on previous year | -226.1% |
| 1992 | 0 % change on previous year | -100.0% |
| 1993 | 0 % change on previous year | — |
| 1994 | 43.78 % change on previous year | — |
| 1995 | 30.45 % change on previous year | -30.4% |
| 1996 | 23.34 % change on previous year | -23.3% |
| 1997 | 6.12 % change on previous year | -73.8% |
| 1998 | -66.96 % change on previous year | -1193.6% |
| 1999 | -4.23 % change on previous year | -93.7% |
| 2000 | -3.87 % change on previous year | -8.6% |
| 2001 | 0 % change on previous year | -100.0% |
| 2002 | -58.05 % change on previous year | — |
| 2003 | 4.11 % change on previous year | -107.1% |
| 2004 | 3.95 % change on previous year | -3.9% |
| 2005 | 1.27 % change on previous year | -67.9% |
| 2006 | -5 % change on previous year | -495.0% |
| 2007 | 7.89 % change on previous year | -257.9% |
| 2008 | -2.44 % change on previous year | -130.9% |
| 2009 | 5 % change on previous year | -305.0% |
| 2010 | 8.33 % change on previous year | +66.7% |
| 2011 | -5.49 % change on previous year | -165.9% |
| 2012 | 9.3 % change on previous year | -269.3% |
| 2013 | -7.45 % change on previous year | -180.1% |
| 2014 | 17.24 % change on previous year | -331.5% |
| 2015 | 2.94 % change on previous year | -82.9% |
| 2016 | -8.57 % change on previous year | -391.4% |
| 2017 | -8.33 % change on previous year | -2.8% |
| 2018 | -1.14 % change on previous year | -86.4% |
| 2019 | 2.3 % change on previous year | -302.3% |
Averages by decade
| Decade | Average | Lowest | Highest | Years |
|---|---|---|---|---|
| 1960s | 6.88 % change on previous year | 2.94 % change on previous year | 12.94 % change on previous year | 8 |
| 1970s | 2.58 % change on previous year | -27.95 % change on previous year | 16.67 % change on previous year | 10 |
| 1980s | 7.02 % change on previous year | -23.13 % change on previous year | 46.5 % change on previous year | 10 |
| 1990s | 3.57 % change on previous year | -66.96 % change on previous year | 43.78 % change on previous year | 10 |
| 2000s | -4.71 % change on previous year | -58.05 % change on previous year | 7.89 % change on previous year | 10 |
| 2010s | 0.9135 % change on previous year | -8.57 % change on previous year | 17.24 % change on previous year | 10 |
Countries ranked near Saint Lucia
- 50 Uganda 2.47 % change on previous year compare
- 51 Albania 2.43 % change on previous year compare
- 52 Central African Republic 2.31 % change on previous year compare
- 54 Poland 2.3 % change on previous year compare
- 55 Chile 2.29 % change on previous year compare
- 56 Colombia 2.29 % change on previous year compare
More reference data data for Saint Lucia
- Emission Totals - Indirect emissions (N2O) - Manure applied to Soils 0.0062 (2050)
- Emission Totals - Indirect emissions (N2O) - Manure left on Pasture 0.0081 (2050)
- Emission Totals - Indirect emissions (N2O) - IPCC Agriculture 0.0143 (2050)
- Emission Totals - Indirect emissions (N2O) - Crop Residues 0 (1979)
- Emission Totals - Indirect emissions (N2O) - Agricultural Soils 0.0143 (2050)
- Emission Totals - Emissions (N2O) - Manure applied to Soils 0.0208 (2050)
- Emission Totals - Emissions (N2O) - Manure Management 0.0131 (2050)
- Emission Totals - Emissions (N2O) - Manure left on Pasture 0.0405 (2050)
- Emission Totals - Emissions (N2O) - IPCC Agriculture 0.0745 (2050)
- Emission Totals - Emissions (N2O) - Crop Residues 0 (1979)
Frequently asked questions
- What is emission totals - indirect emissions (n2o) - agricultural soils in Saint Lucia?
- Emission totals - indirect emissions (n2o) - agricultural soils in Saint Lucia was 2.3 % change on previous year in 2019, according to Statizoid (derived).
- What is the highest emission totals - indirect emissions (n2o) - agricultural soils recorded in Saint Lucia?
- The highest recorded value was 46.5 % change on previous year in 1989.
- What is the lowest emission totals - indirect emissions (n2o) - agricultural soils recorded in Saint Lucia?
- The lowest recorded value was -66.96 % change on previous year in 1998.
- How does Saint Lucia rank for emission totals - indirect emissions (n2o) - agricultural soils?
- Saint Lucia ranks 53rd out of 195 countries with data for 2019.
- Is emission totals - indirect emissions (n2o) - agricultural soils rising or falling in Saint Lucia?
- Over the last ten years it is down 54.0%. The long-run trend across the full record is volatile.
- Where does this Saint Lucia data come from?
- The figures come from Statizoid (derived), published as part of Emission Totals - Indirect emissions (N2O) - Agricultural Soils, annual growth rate. Statizoid updates them automatically from the source API.
Download this data
CSV · JSON — 58 observations, free to reuse under Derived by Statizoid from the sources named on the page.
How this figure is calculated
The year-on-year percentage change in Emission Totals - Indirect emissions (N2O) - Agricultural Soils. Computed from consecutive annual observations; years either side of a gap are skipped rather than bridged.
Computed from
- Emission Totals - Indirect emissions (N2O) - Agricultural Soils FAO, FAOSTAT Climate Change, Emissions Totals, http://www.fao.org/faostat/en/#data/GT
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
The year-on-year percentage change in Emission Totals - Indirect emissions (N2O) - Agricultural Soils. Computed from consecutive annual observations; years either side of a gap are skipped rather than bridged.