🇶🇦 Qatar's Sources of CO₂ Emissions

Qatar's Sources of CO2 Emissions

Key Insights

2024 CO2 Emissions Profile

Qatar's CO2 emissions totalled around 125.8 megatonnes CO2e in 2024. Gas dominated, producing roughly 102.8 megatonnes CO2, or 81.7% of national emissions, and rose by about 1.8 megatonnes CO2 per year over the ten years to 2024. Oil contributed around 19.4 megatonnes CO2 (15.4%) and increased by about 1.4 megatonnes CO2 per year. Other Fossil emissions were about 3.7 megatonnes CO2 (2.9%) and declined slightly, while Land-use emissions were around 0.02 megatonnes CO2, or 0% when rounded, and also fell marginally.

Historic Oil Emissions

Oil emissions began at around 0.3 megatonnes CO2 in 1949 and rose unevenly to roughly 4.5 megatonnes CO2 by 1992, after falling as low as about 0.15 megatonnes in 1966. They later fluctuated sharply, peaking at around 18.7 megatonnes CO2 in 2006 before falling. Oil emissions then climbed strongly to their record high of about 19.4 megatonnes CO2 in 2024.

Historic Gas Emissions

Gas emissions were negligible in 1949 and remained comparatively low through the 1970s, reaching around 3.1 megatonnes CO2 in 1977. They then rose steadily and accelerated after the early 2000s, increasing from roughly 26.8 megatonnes CO2 in 2003 to about 81.7 megatonnes in 2012. After several years of slower, fluctuating growth, emissions reached a peak of around 102.8 megatonnes CO2 in 2024.

Historic Land-use Emissions

Land-use emissions have remained very small throughout Qatar's history, moving around zero in the earlier record and peaking at roughly 0.04 megatonnes CO2 in 1991. They subsequently varied at low levels, including a dip around 2004, before ending at about 0.02 megatonnes CO2 in 2024.

Historic Other Fossil Emissions

Other Fossil emissions were near zero until the late 1950s, then rose rapidly to a peak of about 9.0 megatonnes CO2 in 1973. They declined to around 0.15 megatonnes CO2 by 1988, before recovering to roughly 6.9 megatonnes in 2000. Emissions then generally declined, ending at about 3.7 megatonnes CO2 in 2024.

Background

The chart shows a national breakdown by source of the yearly CO2 emissions from human activities and processes expressed in megatonnes. It is critical to know and track the sources of national CO2 emissions in order to understand their individual impacts on climate change.

The sources of human CO2 emissions are

  • CO2 From Fossil Fuels and Industry: coal, oil, gas combustion, other fossil processes
  • CO2 From Land-Use, Land-Use Change, and Forestry

Coal, oil and gas combustion

Fossil fuel CO2 emissions from the combustion of coal, oil and gas are emitted by processes in electricity generation, transport, industry, and the building sector. All processes can be linked to human activities. Examples include driving cars with combustion engines burning diesel or gas, or electric cars charged by electricity from a power plant that burns coal.

Other fossil processes

Fossil CO2 emissions from other processes include sources like cement manufacturing and production of chemicals and fertilizers. Cement also has an absorption factor highlighted in the absorption breakdown chart.

Land-use change

Human civilization emits CO2 by changing and managing its land. Those emissions come, for example, from deforestation, logging, forest degradation, harvest activities and shifting agriculture cultivation. Land-use change also absorbs considerable amounts of CO2, which is shown in the absorption breakdown chart. Land-use change emits more than it absorbs, so the net effect is still emissions, but less than for coal, oil and gas.

Wikipedia: Greenhouse Gas Emissions
Earth System Science Data: GCP 2020 paper: Section 2.2 Land-use change; Section 2.1 Fossil fuel emissions
IPCC: Annual Report 6, 5.2.1.1 Anthropogenic CO2 emissions

Units and Measures

CO2 emissions are expressed in the total weight in megatonnes per year. 1 Megatonne is equal to 1 million tonnes.

Wikipedia: Megatonne
Wikipedia: Global warming potential

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About the Data

National CO2 emissions data through 2024 is from the Global Carbon Project and covers fossil sources and land-use change.

The Key Insights paragraph was created using a large language model (LLM) in combination with our data, historic events, and a structured approach for best accuracy by separating the context generation from the interpretation and narrative.

Data Sources

Global Carbon Budget 2025 Global Carbon Budget
Update cycle: yearlyDelay: ~ 10 months after the end of the year. Current year values are estimated and published in November.Credits: Friedlingstein, P., O'Sullivan, M., Jones, M. W., Andrew, R. M., Bakker, D. C. E., Hauck, J., Landschützer, P., Le Quéré, C., Li, H., Luijkx, I. T., Peters, G. P., Peters, W., Pongratz, J., Schwingshackl, C., Sitch, S., Canadell, J. G., Ciais, P., Aas, K., Alin, S. R., Anthoni, P., Barbero, L., Bates, N. R., Bellouin, N., Benoit-Cattin, A., Berghoff, C. F., Bernardello, R., Bopp, L., Brasika, I. B. M., Chamberlain, M. A., Chandra, N., Chevallier, F., Chini, L. P., Collier, N. O., Colligan, T. H., Cronin, M., Djeutchouang, L., Dou, X., Enright, M. P., Enyo, K., Erb, M., Evans, W., Feely, R. A., Feng, L., Ford, D. J., Foster, A., Fransner, F., Gasser, T., Gehlen, M., Gkritzalis, T., Goncalves De Souza, J., Grassi, G., Gregor, L., Gruber, N., Guenet, B., Gürses, Ö., Harrington, K., Harris, I., Heinke, J., Hurtt, G. C., Iida, Y., Ilyina, T., Ito, A., Jacobson, A. R., Jain, A. K., Jarníková, T., Jersild, A., Jiang, F., Jones, S. D., Kato, E., Keeling, R. F., Klein Goldewijk, K., Knauer, J., Kong, Y., Korsbakken, J. I., Koven, C., Kunimitsu, T., Lan, X., Liu, J., Liu, Z., Liu, Z., Lo Monaco, C., Ma, L., Marland, G., McGuire, P. C., McKinley, G. A., Melton, J., Monacci, N., Monier, E., Morgan, E. J., Munro, D. R., Müller, J. D., Nakaoka, S.-I., Nayagam, L. R., Niwa, Y., Nutzel, T., Olsen, A., Omar, A. M., Pan, N., Pandey, S., Pierrot, D., Qin, Z., Regnier, P. A. G., Rehder, G., Resplandy, L., Roobaert, A., Rosan, T. M., Rödenbeck, C., Schwinger, J., Skjelvan, I., Smallman, T. L., Spada, V., Sreeush, M. G., Sun, Q., Sutton, A. J., Sweeney, C., Swingedouw, D., Séférian, R., Takao, S., Tatebe, H., Tian, H., Tian, X., Tilbrook, B., Tsujino, H., Tubiello, F., van Ooijen, E., van der Werf, G., van de Velde, S. J., Walker, A., Wanninkhof, R., Yang, X., Yuan, W., Yue, X., and Zeng, J.: Global Carbon Budget 2025, Earth Syst. Sci. Data Discuss. [preprint], https://doi.org/10.5194/essd-2025-659, in review, 2025.

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