Environment, Climate Change, One Health and Migration
We work to prevent disease and promote health by addressing key areas of environmental health including climate change, clean energy; air quality; water, sanitation and hygiene (WASH); and chemicals and radiation. Health threats are addressed through a One Health approach that crosses the human, animal, and environmental sectors. It also promotes inclusive health policies and resilient health systems to meet the needs of migrants, refugees and displaced populations.

Air quality, energy and health

Climate impacts of air pollution

Pollutants not only severely impact public health, but also the earth’s climate and ecosystems globally.

Pollutants not only severely impact public health, but also the earth’s climate and ecosystems globally.

UN Photo/Mark Garten
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How are air pollution and climate change linked in terms of health risks? 

Pollutants not only severely impact public health, but also the earth’s climate and ecosystems globally. Most policies to reduce air pollution offer a “win-win” strategy for both health and climate. Lower levels of air pollution result in better cardiovascular and respiratory health of populations in both the long- and short-term. Reducing ambient and household air pollution can also reduce emissions of carbon dioxide (CO2) and short-lived climate pollutants, such as black carbon particles and methane, therefore contributing to the near- and long-term mitigation of climate change. 

Are there common sources of air pollution and climate-changing pollutants?  

Many of the sources of outdoor air pollution are also sources of high CO2 emissions. For example, the use of fossil fuels for power generation, industry and polluting transport are all major sources of both particulate matter and CO2.  

What are short-lived climate pollutants and how do they impact climate and health?  

Air pollutants, such as methane and black carbon, are powerful short-lived climate pollutants (SLCPs) that contribute to climate change and ill health . Although SLCPs persist in the atmosphere for short lifetimes, their global warming potential is often much greater than carbon dioxide (CO2).  

Black carbon, a component of fine particulate matter, is one of the largest contributors to global warming after CO2. Black carbon warms the earth’s atmosphere by absorbing sunlight, thereby accelerating the melting of snow and ice.  

Methane, another SLCP, is a potent greenhouse gas that is 84 times more powerful than CO2, and is a precursor to the air pollutant ozone. Ozone and black carbon affect weather processes and decrease agricultural yields, thus threatening food security.