Emission Totals - Direct emissions (N2O) - Agricultural Soils, annual in Singapore

Singapore: Emission Totals - Direct emissions (N2O) - Agricultural Soils, annual was 1.43 % change on previous year in 2019. ◆ Volatile

Latest (2019)
1.43 % change on previous year
Change on year
down 1.4%
World rank
75th
of 195 countries
All-time high
128.15 % change on previous year
in 2003
All-time low
-51.45 % change on previous year
in 2014
Years of data
58
1962–2019

Emission Totals - Direct emissions (N2O) - Agricultural Soils, annual in Singapore, 1962–2019

-50050100150196219902019

Source: Statizoid (derived). Measured in % change on previous year.

Analysis

Singapore recorded 1.43 % change on previous year for emission totals - direct emissions (n2o) - agricultural soils, annual in 2019.

Compared with earlier readings it is down 1.4% on the previous year and up 103.3% over ten years.

Over the whole period, emission totals - direct emissions (n2o) - agricultural soils, annual in Singapore peaked at 128.15 % change on previous year in 2003 and was at its lowest, -51.45 % change on previous year, in 2014.

That places Singapore 75th 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 - Direct emissions (N2O) - Agricultural Soils, annual in Singapore, year by year

Annual values for Emission Totals - Direct emissions (N2O) - Agricultural Soils, annual growth rate in Singapore, 1962 to 2019.
Year % change on previous year Change
1962 5.35 % change on previous year
1963 -0.272 % change on previous year -105.1%
1964 -6.45 % change on previous year +2273.1%
1965 17.49 % change on previous year -371.0%
1966 4.88 % change on previous year -72.1%
1967 3.08 % change on previous year -37.0%
1968 1.76 % change on previous year -42.8%
1969 4.29 % change on previous year +143.5%
1970 4.04 % change on previous year -5.8%
1971 6.03 % change on previous year +49.3%
1972 -6.14 % change on previous year -201.9%
1973 12.12 % change on previous year -297.2%
1974 -2.42 % change on previous year -120.0%
1975 -2.55 % change on previous year +5.1%
1976 6.99 % change on previous year -374.5%
1977 8.49 % change on previous year +21.4%
1978 -1.52 % change on previous year -117.9%
1979 5.54 % change on previous year -464.8%
1980 -3.9 % change on previous year -170.3%
1981 -7.32 % change on previous year +87.9%
1982 -14.1 % change on previous year +92.6%
1983 3.26 % change on previous year -123.1%
1984 -3.29 % change on previous year -201.1%
1985 -6.95 % change on previous year +111.1%
1986 -4.95 % change on previous year -28.7%
1987 -4.81 % change on previous year -2.9%
1988 -17.85 % change on previous year +271.2%
1989 1.43 % change on previous year -108.0%
1990 -5.35 % change on previous year -473.2%
1991 -30.74 % change on previous year +474.1%
1992 -3.7 % change on previous year -88.0%
1993 -2.72 % change on previous year -26.4%
1994 14.8 % change on previous year -644.2%
1995 12.32 % change on previous year -16.8%
1996 -7.02 % change on previous year -156.9%
1997 -26.47 % change on previous year +277.4%
1998 16.23 % change on previous year -161.3%
1999 -2.89 % change on previous year -117.8%
2000 -19.01 % change on previous year +557.9%
2001 -5.51 % change on previous year -71.0%
2002 45.79 % change on previous year -931.0%
2003 128.15 % change on previous year +179.9%
2004 23.96 % change on previous year -81.3%
2005 -3.98 % change on previous year -116.6%
2006 14.89 % change on previous year -474.1%
2007 -21.32 % change on previous year -243.1%
2008 -8.75 % change on previous year -59.0%
2009 -43.45 % change on previous year +396.6%
2010 -47.25 % change on previous year +8.7%
2011 97.56 % change on previous year -306.5%
2012 -7.86 % change on previous year -108.1%
2013 -3.65 % change on previous year -53.5%
2014 -51.45 % change on previous year +1308.1%
2015 0.7812 % change on previous year -101.5%
2016 3.36 % change on previous year +330.0%
2017 3.5 % change on previous year +4.2%
2018 1.45 % change on previous year -58.6%
2019 1.43 % change on previous year -1.4%

Averages by decade

DecadeAverage LowestHighest Years
1960s 3.76 % change on previous year -6.45 % change on previous year 17.49 % change on previous year 8
1970s 3.06 % change on previous year -6.14 % change on previous year 12.12 % change on previous year 10
1980s -5.85 % change on previous year -17.85 % change on previous year 3.26 % change on previous year 10
1990s -3.55 % change on previous year -30.74 % change on previous year 16.23 % change on previous year 10
2000s 11.08 % change on previous year -43.45 % change on previous year 128.15 % change on previous year 10
2010s -0.2137 % change on previous year -51.45 % change on previous year 97.56 % change on previous year 10

Countries ranked near Singapore

  1. 72 Myanmar 1.46 % change on previous year compare
  2. 73 United Kingdom of Great Britain and Northern Ireland 1.44 % change on previous year compare
  3. 74 Austria 1.44 % change on previous year compare
  4. 76 Senegal 1.43 % change on previous year compare
  5. 77 Côte d'Ivoire 1.39 % change on previous year compare
  6. 78 Switzerland 1.38 % change on previous year compare

See the full ranking of 195 places →

More reference data data for Singapore

All data for Singapore →

Frequently asked questions

What is emission totals - direct emissions (n2o) - agricultural soils, annual in Singapore?
Emission totals - direct emissions (n2o) - agricultural soils, annual in Singapore was 1.43 % change on previous year in 2019, according to Statizoid (derived).
What is the highest emission totals - direct emissions (n2o) - agricultural soils, annual recorded in Singapore?
The highest recorded value was 128.15 % change on previous year in 2003.
What is the lowest emission totals - direct emissions (n2o) - agricultural soils, annual recorded in Singapore?
The lowest recorded value was -51.45 % change on previous year in 2014.
How does Singapore rank for emission totals - direct emissions (n2o) - agricultural soils, annual?
Singapore ranks 75th out of 195 countries with data for 2019.
Is emission totals - direct emissions (n2o) - agricultural soils, annual rising or falling in Singapore?
Over the last ten years it is up 103.3%. The long-run trend across the full record is volatile.
Where does this Singapore data come from?
The figures come from Statizoid (derived), published as part of Emission Totals - Direct emissions (N2O) - Agricultural Soils, annual growth rate. Statizoid updates them automatically from the source API.

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CSV · JSON — 58 observations, free to reuse under Derived by Statizoid from the sources named on the page.

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Emission Totals - Direct emissions (N2O) - Agricultural Soils, annual in Singapore. Statizoid, drawing on Statizoid (derived). Retrieved 05 September 2026, from https://reference.statizoid.com/stat/emission-totals-direct-emissions-n2o-agricultural-soils-annual-growth-rate/singapore/

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<a href="https://reference.statizoid.com/stat/emission-totals-direct-emissions-n2o-agricultural-soils-annual-growth-rate/singapore/">Emission Totals - Direct emissions (N2O) - Agricultural Soils, annual in Singapore</a> — Statizoid

How this figure is calculated

The year-on-year percentage change in Emission Totals - Direct emissions (N2O) - Agricultural Soils. Computed from consecutive annual observations; years either side of a gap are skipped rather than bridged.

Computed from

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

Indicator
Emission Totals - Direct emissions (N2O) - Agricultural Soils, annual growth rate
Unit
% change on previous year
Source
Statizoid (derived)
Licence
Derived by Statizoid from the sources named on the page
Coverage
195 places, 10,196 data points, 1962–2019
Last refreshed

The year-on-year percentage change in Emission Totals - Direct emissions (N2O) - Agricultural Soils. Computed from consecutive annual observations; years either side of a gap are skipped rather than bridged.