Malaysia's Sources of CH4 Emissions
Key Insights
2024 CH4 Emissions Profile
Malaysia's methane emissions totalled around 27 megatonnes CO2e in 2024. Waste was largest, at about 12.9 megatonnes CO2e (47.9%), followed by Fugitive emissions at 8.4 (31.3%). Crop contributed 3.2 (11.8%), Livestock 1.7 (6.2%), Fuel 0.5 (2.0%), and Other 0.2 (0.7%). Over the ten years to 2024, waste and other emissions rose, while all other sources declined.
Historic Livestock Emissions
Livestock emissions rose from about 0.06 megatonnes CO2e in 1851 to a peak of roughly 2.1 in 1994. They then varied at just under 2 megatonnes CO2e before declining gradually after the early 2010s. In 2024, livestock emissions were around 1.7 megatonnes CO2e.
Historic Fugitive Emissions
Fugitive emissions were negligible in the nineteenth century, reaching around 0.5 megatonnes CO2e by 1949. They grew rapidly from the early 1970s, peaking at roughly 13.8 megatonnes CO2e in 2009, then declined steadily. In 2024, they stood at about 8.4 megatonnes CO2e.
Historic Waste Emissions
Waste emissions rose gradually from around 0.08 megatonnes CO2e in 1851 to roughly 1.3 by 1970. Growth accelerated thereafter, especially from the late 1980s, reaching their record high of about 12.9 megatonnes CO2e in 2024.
Historic Crop Emissions
Crop emissions increased from around 0.2 megatonnes CO2e in 1851 to nearly 3.7 by 1971, peaking at roughly 3.9 in 1972. They then remained broadly stable but slightly lower overall. In 2024, crop emissions were about 3.2 megatonnes CO2e.
Historic Fuel Emissions
Fuel emissions began at roughly 0.04 megatonnes CO2e in 1851 and rose slowly to around 0.3 by the mid-twentieth century. After remaining broadly stable, they climbed to a peak of about 0.7 in 2005 before declining. They ended at roughly 0.5 megatonnes CO2e in 2024.
Historic Other Emissions
Other emissions were near zero until the mid-1970s. They rose gradually thereafter and accelerated after the early 2000s, reaching their peak of around 0.2 megatonnes CO2e in 2024.
Background
The chart shows a national breakdown by source of the yearly methane (CH4) emissions from human activities expressed as weight in megatonnes (Mt). In the scientific literature, these are referred to as anthropogenic emissions. Human-induced methane emissions increase atmospheric methane, which is warming the Earth. The sources of human methane emissions are
- Livestock
- Fugitive emissions from the fossil fuel industry
- Crop production
- Fossil fuel combustion
- Waste management
- Other processes
Methane's Global Warming Potential
Methane has a much higher Global Warming Potential (GWP) than CO2. However, Methane emissions in the atmosphere decay with an average lifetime of about 12 years so its long term warming-effect is much less compared to CO2 which stays on average for hundreds of years in the atmosphere. Meaning: Methane's short term warming effect is much higher, but long term warming effect is much lower. A reduction in emissions can cause a rapid decline in its atmospheric levels.
Livestock
Livestock emits methane that is produced in the animals' digestive system. Most methane is emitted from the mouth during rumination. A much smaller amount of methane is emitted from the manure. Depending on how the manure is managed, i.e., wet or dry, more methane is emitted. Wet management leads to higher methane emissions than dry management. However, dry management also emits nitrous oxide (N2O), which is another potent greenhouse gas.
Fugitive emissions from fossil fuel industry
Fugitive methane emissions are from the intentional and accidental release of methane, which happens during the extraction, storage, and transportation processes in the fossil fuel industry. Examples are methane leaks during oil and gas handling, storage, transport, incomplete combustion, and many more. Also, methane is deliberately ventilated from mines during the extraction of coal.
Methane is a primary part of “gas”, also called “natural gas” or “fossil gas”. Natural gas is used, for example, for heating and electricity generation, whereby it emits CO2 during the combustion process. However, when natural gas leaks (unburned) it contains a lot of fugitive methane emissions.
Waste
Waste from landfills and wastewater produces a lot of methane when biodegradable material breaks down without oxygen.
Crop production
Crop production emissions are largely from rice cultivation, which generates large amounts of methane during plant growth. These emissions are from flooded paddies, which create the swamp-like environment of rice fields. There are agricultural techniques to reduce emissions significantly, like periodic drainage and aeration. Rice is the main staple for about half the world's population, and its emissions are a significant part of total human methane emissions.
Fuel combustion
Fuel combustion emissions are mostly from the incomplete combustion of fossil fuels. As mentioned before, natural gas consists largely of methane, and when the combustion does not happen completely, methane enters the atmosphere.
Other
Other human-induced methane emissions include industrial processes and product uses.
Wikipedia: Anthropogenic Sources of Atmospheric MethaneIPCC: AR6, 5.2.2.2 Anthropogenic CH4 emissions
Units and Measures
CH4 emissions are expressed in the total weight in megatonnes per year. 1 Megatonne is equal to 1 million tonnes.
Wikipedia: MegatonneWikipedia: Global warming potential
No funding, no reach
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 methane 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