Emission Totals - Direct emissions (N2O) - Agricultural Soils in Lithuania

Lithuania: Emission Totals - Direct emissions (N2O) - Agricultural Soils was 3.59 in 2050. β–² Rising

Latest (2050)
3.59
World rank
119th
of 196 countries
All-time high
4.84
in 1992
All-time low
2.79
in 1995
Years of data
30
1992–2050

Emission Totals - Direct emissions (N2O) - Agricultural Soils in Lithuania, 1992–2050

0123451992202120501992: 4.81993: 3.61994: 3.11995: 2.81996: 3.41997: 3.51998: 3.41999: 3.42000: 3.42001: 3.22002: 3.52003: 3.62004: 3.62005: 3.72006: 3.62007: 3.82008: 3.72009: 42010: 3.92011: 42012: 4.32013: 4.32014: 4.52015: 4.72016: 4.52017: 4.62018: 4.22019: 4.42030: 3.72050: 3.6

Source: FAO, FAOSTAT Climate Change, Emissions Totals, http://www.fao.org/faostat/en/#data/GT.

Analysis

The most recent figure for emission totals - direct emissions (n2o) - agricultural soils in Lithuania is 3.59, measured in 2050.

Over the whole period, emission totals - direct emissions (n2o) - agricultural soils in Lithuania peaked at 4.84 in 1992 and was at its lowest, 2.79, in 1995.

That places Lithuania 119th out of 196 countries with data for 2050, putting it in the middle of the range.

The long-run direction has been consistently rising across the 30 years of available data.

Averages by decade

DecadeAverage LowestHighest Years
1990s 3.5 2.79 4.84 8
2000s 3.61 3.25 3.95 10
2010s 4.37 3.92 4.73 10
2030s 3.67 3.67 3.67 1
2050s 3.59 3.59 3.59 1

Countries ranked near Lithuania

  1. 116 Switzerland 3.76 compare
  2. 117 Kyrgyzstan 3.72 compare
  3. 118 Togo 3.71 compare
  4. 120 Tajikistan 2.99 compare
  5. 121 Armenia 2.73 compare
  6. 122 Albania 2.71 compare

See the full ranking of 197 places β†’

More reference data data for Lithuania

All data for Lithuania β†’

Frequently asked questions

What is emission totals - direct emissions (n2o) - agricultural soils in Lithuania?
Emission totals - direct emissions (n2o) - agricultural soils in Lithuania was 3.59 in 2050, according to FAO, FAOSTAT Climate Change, Emissions Totals, http://www.fao.org/faostat/en/#data/GT.
What is the highest emission totals - direct emissions (n2o) - agricultural soils recorded in Lithuania?
The highest recorded value was 4.84 in 1992.
What is the lowest emission totals - direct emissions (n2o) - agricultural soils recorded in Lithuania?
The lowest recorded value was 2.79 in 1995.
How does Lithuania rank for emission totals - direct emissions (n2o) - agricultural soils?
Lithuania ranks 119th out of 196 countries with data for 2050.
Where does this Lithuania data come from?
The figures come from FAO, FAOSTAT Climate Change, Emissions Totals, http://www.fao.org/faostat/en/#data/GT, published as part of Emission Totals - Direct emissions (N2O) - Agricultural Soils. Statizoid updates them automatically from the source API.

Download this data

CSV Β· JSON β€” 30 observations, free to reuse under CC BY 4.0 (World Bank Open Data).

About this data

Indicator
Emission Totals - Direct emissions (N2O) - Agricultural Soils
Source
FAO, FAOSTAT Climate Change, Emissions Totals, http://www.fao.org/faostat/en/#data/GT
Licence
CC BY 4.0 (World Bank Open Data)
Coverage
197 places, 10,908 data points, 1961–2050
Last refreshed

The FAOSTAT domain Emissions Totals summarizes the greenhouse gas (GHG) emissions generated from agriculture and forest land. They consist of methane (CH4), nitrous oxide (N2O) and carbon dioxide (CO2) emissions from crop and livestock activities, forest management and include land use and land use change processes. Data are computed at Tier 1 of the IPCC Guidelines for National greenhouse gas (GHG) Inventories (IPCC, 1996; 1997; 2000; 2002; 2006; 2014). Estimates are available by country, with global coverage for the period 1961–2019 with projections for 2030 and 2050 for some categories of emissions or 1990–2019 for others. The database is updated annually. The FAOSTAT domain Emissions Totals disseminates information estimates of CH4, N2O and CO2 emissions/removals and their aggregates in CO2eq in units of kilotonnes (kt, or 106 kg). The latter are computed by using the IPCC Fifth Assessment report global warming potentials, AR5 (IPCC, 2014).