Energy Use (Pre- and Post-Production) — Emissions in Ascension, Saint Helena and Tristan da Cunha

Ascension, Saint Helena and Tristan da Cunha: Energy Use (Pre- and Post-Production) — Emissions was 0.0001 kt in 2023. ▼ Falling

Latest (2023)
0.0001 kt
Change on year
down 3.3%
World rank
214th
of 222 countries
All-time high
0.0001 kt
in 2019
All-time low
0.0001 kt
in 2021
Years of data
34
1990–2023

Energy Use (Pre- and Post-Production) — Emissions in Ascension, Saint Helena and Tristan da Cunha, 1990–2023

00001990200620231990: 0 kt1991: 0 kt1992: 0 kt1993: 0 kt1994: 0 kt1995: 0 kt1996: 0 kt1997: 0 kt1998: 0 kt1999: 0 kt2000: 0 kt2001: 0 kt2002: 0 kt2003: 0 kt2004: 0 kt2005: 0 kt2006: 0 kt2007: 0 kt2008: 0 kt2009: 0 kt2010: 0 kt2011: 0 kt2012: 0 kt2013: 0 kt2014: 0 kt2015: 0 kt2016: 0 kt2017: 0 kt2018: 0 kt2019: 0 kt2020: 0 kt2021: 0 kt2022: 0 kt2023: 0 kt

Source: Food and Agriculture Organization of the United Nations. Measured in kt.

Analysis

Ascension, Saint Helena and Tristan da Cunha recorded 0.0001 kt for energy use (pre- and post-production) — emissions in 2023.

That represents a change of down 3.3% on the previous year and unchanged over ten years.

Over the whole period, energy use (pre- and post-production) — emissions in Ascension, Saint Helena and Tristan da Cunha peaked at 0.0001 kt in 2019 and was at its lowest, 0.0001 kt, in 2021.

That places Ascension, Saint Helena and Tristan da Cunha 214th out of 222 countries with data for 2023, putting it in the bottom quarter.

The long-run direction has been consistently falling across the 34 years of available data.

Energy Use (Pre- and Post-Production) — Emissions in Ascension, Saint Helena and Tristan da Cunha, year by year

Annual values for Energy Use (Pre- and Post-Production) — Emissions (CH4) in Ascension, Saint Helena and Tristan da Cunha, 1990 to 2023.
Year kt Change
1990 0.0001 kt
1991 0.0001 kt +0.0%
1992 0.0001 kt +0.0%
1993 0.0001 kt +2.3%
1994 0.0001 kt +0.0%
1995 0.0001 kt -0.8%
1996 0.0001 kt -6.9%
1997 0.0001 kt +8.2%
1998 0.0001 kt -0.8%
1999 0.0001 kt -0.8%
2000 0.0001 kt -1.5%
2001 0.0001 kt -16.4%
2002 0.0001 kt +10.3%
2003 0.0001 kt -14.4%
2004 0.0001 kt -28.7%
2005 0.0001 kt +79.2%
2006 0.0001 kt -24.0%
2007 0.0001 kt +25.5%
2008 0.0001 kt -26.8%
2009 0.0001 kt -16.7%
2010 0.0001 kt +37.3%
2011 0.0001 kt -15.5%
2012 0.0001 kt +12.6%
2013 0.0001 kt -10.2%
2014 0.0001 kt +35.2%
2015 0.0001 kt -15.1%
2016 0.0001 kt +27.7%
2017 0.0001 kt -38.0%
2018 0.0001 kt +52.5%
2019 0.0001 kt +9.0%
2020 0.0001 kt -24.8%
2021 0.0001 kt -30.0%
2022 0.0001 kt +30.0%
2023 0.0001 kt -3.3%

Averages by decade

DecadeAverage LowestHighest Years
1990s 0.0001 kt 0.0001 kt 0.0001 kt 10
2000s 0.0001 kt 0.0001 kt 0.0001 kt 10
2010s 0.0001 kt 0.0001 kt 0.0001 kt 10
2020s 0.0001 kt 0.0001 kt 0.0001 kt 4

Countries ranked near Ascension, Saint Helena and Tristan da Cunha

  1. 211 Falkland Islands (Malvinas) 0.0002 kt compare
  2. 212 Cook Islands 0.0002 kt compare
  3. 213 Niue 0.0001 kt compare
  4. 215 Tuvalu 0.0001 kt compare
  5. 216 Naoero 0 kt compare
  6. 217 Mayotte 0 kt compare

See the full ranking of 276 places →

More climate change data for Ascension, Saint Helena and Tristan da Cunha

All data for Ascension, Saint Helena and Tristan da Cunha →

Frequently asked questions

What is energy use (pre- and post-production) — emissions in Ascension, Saint Helena and Tristan da Cunha?
Energy use (pre- and post-production) — emissions in Ascension, Saint Helena and Tristan da Cunha was 0.0001 kt in 2023, according to Food and Agriculture Organization of the United Nations.
What is the highest energy use (pre- and post-production) — emissions recorded in Ascension, Saint Helena and Tristan da Cunha?
The highest recorded value was 0.0001 kt in 2019.
What is the lowest energy use (pre- and post-production) — emissions recorded in Ascension, Saint Helena and Tristan da Cunha?
The lowest recorded value was 0.0001 kt in 2021.
How does Ascension, Saint Helena and Tristan da Cunha rank for energy use (pre- and post-production) — emissions?
Ascension, Saint Helena and Tristan da Cunha ranks 214th out of 222 countries with data for 2023.
Is energy use (pre- and post-production) — emissions rising or falling in Ascension, Saint Helena and Tristan da Cunha?
Over the last ten years it is unchanged. The long-run trend across the full record is falling.
Where does this Ascension, Saint Helena and Tristan da Cunha data come from?
The figures come from Food and Agriculture Organization of the United Nations, published as part of Energy Use (Pre- and Post-Production) — Emissions (CH4). Statizoid updates them automatically from the source API.

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Energy Use (Pre- and Post-Production) — Emissions in Ascension, Saint Helena and Tristan da Cunha. Statizoid, drawing on Food and Agriculture Organization of the United Nations. Retrieved 04 September 2026, from https://climate.statizoid.com/stat/energy-use-pre-and-post-production-emissions-ch4/ascension-saint-helena-and-tristan-da-cunha/

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About this data

Indicator
Energy Use (Pre- and Post-Production) — Emissions (CH4)
Unit
kt
Source
Food and Agriculture Organization of the United Nations
Licence
CC BY-NC-SA 3.0 IGO (FAO)
Coverage
276 places, 8,972 data points, 1990–2023
Last refreshed

The FAOSTAT domain on Emissions from Pre- and post- agricultural production includes the greenhouse gas (GHG) emissions, and related activity data, generated from pre- and post-agriculture production stages of the agri-food systems. Data are computed following the Tier 1 methods of the Intergovernmental Panel on Climate Change (IPCC) Guidelines for National greenhouse gas (GHG) Inventories (IPCC, 1996; 1997; 2000; 2002; 2006; 2014). The domain includes methane (CH4), nitrous oxide (N2O), carbon dioxide (CO2) and CO2 equivalent (CO2eq) emissions from the above activities as well as the aggregate fluorinated gases (F-gases) emissions. Estimates are available by country, with global coverage and are updated annually.The FAOSTAT domain disseminates information estimates of CH4, N2O, CO2 emissions, F-gases, their aggregates in CO2eq in units of kilotonnes (kt, or 10^6 kg), and the underlying activity data. CO2eq emissions are computed by using the IPCC Fifth Assessment report global warming potentials, AR5 (IPCC, 2014). Data are available for most countries and territories, for standard FAOSTAT regional aggregations, and for Annex I and non-Annex I country groups.