Greenhouse gas emissions - Cities and FUAs — GHG emissions from in Seoul

Seoul: Greenhouse gas emissions - Cities and FUAs — GHG emissions from was 19.14 Tonnes of CO2-equivalent in 2024. ▼ Falling

Latest (2024)
19.14 Tonnes of CO2-equivalent
Change on year
up 4.6%
Rank
4th
of 1316 regions
All-time high
30.84 Tonnes of CO2-equivalent
in 1997
All-time low
18.3 Tonnes of CO2-equivalent
in 2023
Years of data
35
1990–2024

Greenhouse gas emissions - Cities and FUAs — GHG emissions from in Seoul, 1990–2024

01020301990200720241990: 26.1 Tonnes of CO2-equivalent1991: 25.3 Tonnes of CO2-equivalent1992: 25.5 Tonnes of CO2-equivalent1993: 26.7 Tonnes of CO2-equivalent1994: 27.3 Tonnes of CO2-equivalent1995: 29.9 Tonnes of CO2-equivalent1996: 30.8 Tonnes of CO2-equivalent1997: 30.8 Tonnes of CO2-equivalent1998: 23.4 Tonnes of CO2-equivalent1999: 27.8 Tonnes of CO2-equivalent2000: 26.1 Tonnes of CO2-equivalent2001: 24.6 Tonnes of CO2-equivalent2002: 24.6 Tonnes of CO2-equivalent2003: 24.9 Tonnes of CO2-equivalent2004: 23.7 Tonnes of CO2-equivalent2005: 24.9 Tonnes of CO2-equivalent2006: 22.5 Tonnes of CO2-equivalent2007: 21.9 Tonnes of CO2-equivalent2008: 21.8 Tonnes of CO2-equivalent2009: 21.7 Tonnes of CO2-equivalent2010: 23.1 Tonnes of CO2-equivalent2011: 23 Tonnes of CO2-equivalent2012: 22.4 Tonnes of CO2-equivalent2013: 21.5 Tonnes of CO2-equivalent2014: 19.4 Tonnes of CO2-equivalent2015: 20.6 Tonnes of CO2-equivalent2016: 21.4 Tonnes of CO2-equivalent2017: 22 Tonnes of CO2-equivalent2018: 22.4 Tonnes of CO2-equivalent2019: 21 Tonnes of CO2-equivalent2020: 20.9 Tonnes of CO2-equivalent2021: 20.2 Tonnes of CO2-equivalent2022: 19.8 Tonnes of CO2-equivalent2023: 18.3 Tonnes of CO2-equivalent2024: 19.1 Tonnes of CO2-equivalent

Source: Organisation for Economic Co-operation and Development. Measured in Tonnes of CO2-equivalent.

Analysis

The most recent figure for greenhouse gas emissions - cities and fuas — ghg emissions from in Seoul is 19.14 Tonnes of CO2-equivalent, measured in 2024.

That represents a change of up 4.6% on the previous year and down 1.4% over ten years.

Over the whole period, greenhouse gas emissions - cities and fuas — ghg emissions from in Seoul peaked at 30.84 Tonnes of CO2-equivalent in 1997 and was at its lowest, 18.3 Tonnes of CO2-equivalent, in 2023.

Seoul ranks 4th of 1316 regions on this measure, in the top 10%.

The long-run direction has been consistently falling across the 35 years of available data.

Greenhouse gas emissions - Cities and FUAs — GHG emissions from in Seoul, year by year

Annual values for Greenhouse gas emissions - Cities and FUAs — GHG emissions from buildings in Seoul, 1990 to 2024.
Year Tonnes of CO2-equivalent Change
1990 26.05 Tonnes of CO2-equivalent
1991 25.26 Tonnes of CO2-equivalent -3.0%
1992 25.49 Tonnes of CO2-equivalent +0.9%
1993 26.72 Tonnes of CO2-equivalent +4.8%
1994 27.3 Tonnes of CO2-equivalent +2.2%
1995 29.87 Tonnes of CO2-equivalent +9.4%
1996 30.76 Tonnes of CO2-equivalent +3.0%
1997 30.84 Tonnes of CO2-equivalent +0.3%
1998 23.36 Tonnes of CO2-equivalent -24.3%
1999 27.77 Tonnes of CO2-equivalent +18.9%
2000 26.15 Tonnes of CO2-equivalent -5.8%
2001 24.62 Tonnes of CO2-equivalent -5.9%
2002 24.56 Tonnes of CO2-equivalent -0.2%
2003 24.85 Tonnes of CO2-equivalent +1.2%
2004 23.68 Tonnes of CO2-equivalent -4.7%
2005 24.87 Tonnes of CO2-equivalent +5.0%
2006 22.5 Tonnes of CO2-equivalent -9.5%
2007 21.93 Tonnes of CO2-equivalent -2.5%
2008 21.78 Tonnes of CO2-equivalent -0.7%
2009 21.71 Tonnes of CO2-equivalent -0.3%
2010 23.15 Tonnes of CO2-equivalent +6.6%
2011 23.02 Tonnes of CO2-equivalent -0.6%
2012 22.43 Tonnes of CO2-equivalent -2.6%
2013 21.49 Tonnes of CO2-equivalent -4.2%
2014 19.41 Tonnes of CO2-equivalent -9.7%
2015 20.61 Tonnes of CO2-equivalent +6.2%
2016 21.38 Tonnes of CO2-equivalent +3.7%
2017 21.96 Tonnes of CO2-equivalent +2.7%
2018 22.4 Tonnes of CO2-equivalent +2.0%
2019 20.97 Tonnes of CO2-equivalent -6.4%
2020 20.86 Tonnes of CO2-equivalent -0.5%
2021 20.24 Tonnes of CO2-equivalent -3.0%
2022 19.84 Tonnes of CO2-equivalent -2.0%
2023 18.3 Tonnes of CO2-equivalent -7.8%
2024 19.14 Tonnes of CO2-equivalent +4.6%

Averages by decade

DecadeAverage LowestHighest Years
1990s 27.34 Tonnes of CO2-equivalent 23.36 Tonnes of CO2-equivalent 30.84 Tonnes of CO2-equivalent 10
2000s 23.66 Tonnes of CO2-equivalent 21.71 Tonnes of CO2-equivalent 26.15 Tonnes of CO2-equivalent 10
2010s 21.68 Tonnes of CO2-equivalent 19.41 Tonnes of CO2-equivalent 23.15 Tonnes of CO2-equivalent 10
2020s 19.68 Tonnes of CO2-equivalent 18.3 Tonnes of CO2-equivalent 20.86 Tonnes of CO2-equivalent 5

Countries ranked near Seoul

  1. 1 Luxembourg 0.23 Tonnes of CO2-equivalent compare
  2. 2 Armenia 0.05 Tonnes of CO2-equivalent compare

See the full ranking of 1326 places →

More climate change data for Seoul

All data for Seoul →

Frequently asked questions

What is greenhouse gas emissions - cities and fuas — ghg emissions from in Seoul?
Greenhouse gas emissions - cities and fuas — ghg emissions from in Seoul was 19.14 Tonnes of CO2-equivalent in 2024, according to Organisation for Economic Co-operation and Development.
What is the highest greenhouse gas emissions - cities and fuas — ghg emissions from recorded in Seoul?
The highest recorded value was 30.84 Tonnes of CO2-equivalent in 1997.
What is the lowest greenhouse gas emissions - cities and fuas — ghg emissions from recorded in Seoul?
The lowest recorded value was 18.3 Tonnes of CO2-equivalent in 2023.
How does Seoul rank for greenhouse gas emissions - cities and fuas — ghg emissions from?
Seoul ranks 4th out of 1316 regions with data for 2024.
Is greenhouse gas emissions - cities and fuas — ghg emissions from rising or falling in Seoul?
Over the last ten years it is down 1.4%. The long-run trend across the full record is falling.
Where does this Seoul data come from?
The figures come from Organisation for Economic Co-operation and Development, published as part of Greenhouse gas emissions - Cities and FUAs — GHG emissions from buildings. Statizoid updates them automatically from the source API.

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Greenhouse gas emissions - Cities and FUAs — GHG emissions from in Seoul. Statizoid, drawing on Organisation for Economic Co-operation and Development. Retrieved 06 September 2026, from https://climate.statizoid.com/stat/greenhouse-gas-emissions-cities-and-fuas-ghg-emissions-from-buildings/seoul/

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About this data

Indicator
Greenhouse gas emissions - Cities and FUAs — GHG emissions from buildings
Unit
Tonnes of CO2-equivalent
Source
Organisation for Economic Co-operation and Development
Licence
OECD Terms and Conditions (attribution required)
Coverage
1,326 places, 46,410 data points, 1990–2024
Last refreshed

This dataset provides statistics on greenhouse gas emissions (GHG) in Functional Urban Areas (FUAs) and Cities. Data sources and methodology GHG emissions at the subnational level are estimated using the Emissions Database for Global Atmospheric Research (EDGAR) version 8.0 developed by the European Commission Joint Research Centre and the Internation Energy Agency (EC JRC/IEA, 2023). EDGAR provides annual sector-specific grid maps for four GHGs (carbon dioxide or CO2, methane or CH4, nitrous oxide or N2O and fluorinated gases or F-gases) at a 0.1° spatial resolution (approximately 11 km). The different sectors covered are: Energy, Industry, Transport, Building, Agriculture, Waste. Emissions from land use and land cover change are not included. In EDGAR, national GHG emissions are disaggregated at subnational level by using subsector-specific geospatial proxies. GHG emissions are expressed in CO2 equivalents using 100-year global warming potential from the IPCC 5th Assessment Report (AR5), i.e. 28 for CH4 and 265 for N2O. EDGAR is used to ensure global comparability, harmonised methods across countries, and complete subnational coverage, which is not always provided in national reporting. These subnational estimates may differ from official subnational statistics. Differences may arise from variations in methodologies, particularly the use of top down spatial downscaling in EDGAR versus bottom up activity based approaches in official inventories, as well as the choice and availability of spatial proxies used to allocate emissions geographically. Defining FUAs and cities The OECD, in cooperation with the EU, has developed a harmonised definition of functional urban areas (FUAs) to capture the economic and functional reach of cities based on daily commuting patterns (OECD, 2012). FUAs consist of: A city – defined by urban centres in the degree of urbanisation, adapted to the closest local administrative units to define a city. A commuting zone – including all local areas where at least 15% of employed residents work in the city. The delineation process includes: Assigning municipalities surrounded by a single FUA to that FUA. Excluding non-contiguous municipalities. The definition identifies 1 285 FUAs and 1 402 cities in all OECD member countries except Costa Rica and three accession countries. Cite this dataset OECD Regions, cities and local areas database (Greenhouse gas emissions - Cities and FUAs), http://oe.cd/geostats Further information OECD Local Data Portal OECD Regions and Cities at a Glance For questions and/or comments, please email CitiesStat@oecd.org