Mongolia's Sources of N2O Emissions
Key Insights
2024 N2O Emissions Profile
Mongolia's anthropogenic N2O emissions totalled around 14.8 megatonnes CO2e in 2024. Agriculture dominated, at about 13.7 megatonnes CO2e or 92.6% of emissions, rising by around 0.19 megatonnes CO2e per year over the ten years to 2024. Energy contributed roughly 0.85 megatonnes CO2e (5.7%) and rose by about 0.03 annually. Other sources accounted for around 0.19 megatonnes CO2e (1.3%), while waste contributed about 0.05 megatonnes CO2e (0.4%); both increased modestly.
Historic Agriculture Emissions
Agricultural N2O emissions began at roughly 0.3 megatonnes CO2e in 1851 and rose gradually to around 2.5 by 1939. Growth then accelerated sharply, reaching about 7 megatonnes CO2e by 1959. Emissions changed little for several decades before rising strongly after the mid-2000s, peaking at around 13.7 megatonnes CO2e in 2024.
Historic Energy Emissions
Energy-related emissions were close to zero through the first half of the twentieth century. They remained very low through 2005, despite a modest rise and retreat during the late twentieth century. Emissions then increased rapidly, from around 0.08 megatonnes CO2e in 2005 to a peak of roughly 0.85 megatonnes CO2e in 2024.
Historic Waste Emissions
Waste emissions started at about 0.001 megatonnes CO2e in 1851 and increased slowly for more than a century, reaching around 0.04 by 2009. They rose further thereafter, peaking at roughly 0.054 megatonnes CO2e in 2019, before easing slightly. In 2024, waste emissions were around 0.053 megatonnes CO2e.
Historic Other Emissions
Other N2O emissions were around 0.002 megatonnes CO2e in 1851 and remained minimal until the late 1960s. They rose to a temporary high of roughly 0.14 megatonnes CO2e in 1985, then declined to about 0.08 in 1999. Emissions recovered thereafter, peaking near 0.20 in 2023 and ending at around 0.19 megatonnes CO2e in 2024.
Background
The chart shows a national breakdown by source of the yearly nitrous oxide (N2O) emissions from human activities and processes, expressed as weight in megatonnes (Mt). Human-induced emissions are the main driver of the increasing atmospheric nitrous oxide that is warming our planet. The sources of human nitrous oxide emissions are
- Agriculture
- Energy
- Industry
- Waste
- Other
Agriculture
Emissions related to agriculture are mainly from the use of synthetic fertilizers and manure management.
Synthetic fertilizer, used for agricultural processes, contains a lot of nitrogen. That nitrogen in the soil reacts and causes considerable N2O emissions. The use of excess fertilizer, meaning more fertilizer than the plants can use to grow, causes even higher relative emissions. Applying the right amount of fertilizer at the right time can reduce N2O emissions. There are many technical solutions to reduce emissions while keeping, or even increasing, agricultural yields.
When manure is left on the field or otherwise managed in dry processes, it emits considerable amounts of nitrous oxide. Manure can be managed by wet processes, which reduces nitrous oxide emissions but increases methane emissions. Some technical solutions focus on modifying the animal feed to reduce the nitrogen in the manure, thereby reducing nitrous oxide emissions.
Energy, Industry, Waste, and Other
All non-agricultural categories together have much lower emissions than agricultural emissions alone.
N2O emissions related to energy are almost all from the combustion of fossil fuels. For example, the combustion of fossil fuels in power plants, cars, and airplanes not only causes CO2 emissions but also emits nitrous oxide (N2O). Any advances to reducing fossil fuel dependency will thus also reduce nitrous oxide emissions.
Most industry-related emissions are from the chemical industry for producing fertilizer, nylon, and similar products. Technologies are available to reduce emissions in these processes.
Nitrous oxide emissions from waste come from, for example, wastewater treatment and landfills.
Wikipedia: Nitrous oxideIPCC: AR6, 5.16 Anthropogenic nitrous oxide (N2O) emissions
Units and Measures
N2O emissions are expressed in the total weight in megatonnes per year. 1 Megatonne is equal to 1 million tonnes.
Wikipedia: MegatonneWikipedia: Global warming potential
There are many outdated climate sources. This one is up-to-date, and it works!
10,000 people are using Climate Change Tracker for free every month. A tiny monthly donation keeps us going!
Cancel anytime. Payments processed by Stripe.com. You can manage, upgrade, cancel, and download receipts in our self service portal on Stripe. Using Stripe you agree to Stripe's Privacy Policy.
More ways to donateAbout the Data
National N2O emissions data through 2024 is from the PRIMAP-hist dataset, which combines several published sources into a historical emissions time series.
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
PRIMAP-hist The PRIMAP-hist national historical emissions time series (1750-2024)
Update cycle: Every few monthsDelay: Less than 1 yearCredits: Gütschow, J.; Busch, D.; Pflüger, M. (2025): The PRIMAP-hist national historical emissions time series v2.7 (1750-2024). zenodo. doi:10.5281/zenodo.17090760