Air pollution and public health: emerging hazards and improved understanding of risk

Загрязнение воздуха и общественное здоровье: новые угрозы и углубление понимания риска
Frank Kelly, Julia C. Fussell
2015-06-03

PM2.5air pollution monitoringconcentration-response functionhealth endpointsparticulate matter air pollution
Despite past improvements in air quality, very large parts of the population in urban areas breathe air that does not meet European standards let alone the health-based World Health Organisation Air Quality Guidelines. Over the last 10 years, there has been a substantial increase in findings that particulate matter (PM) air pollution is not only exerting a greater impact on established health endpoints, but is also associated with a broader number of disease outcomes. Data strongly suggest that effects have no threshold within the studied range of ambient concentrations, can occur at levels close to PM2.5 background concentrations and that they follow a mostly linear concentration-response function. Having firmly established this significant public health problem, there has been an enormous effort to identify what it is in ambient PM that affects health and to understand the underlying biological basis of toxicity by identifying mechanistic pathways-information that in turn will inform policy makers how best to legislate for cleaner air. Another intervention in moving towards a healthier environment depends upon the achieving the right public attitude and behaviour by the use of optimal air pollution monitoring, forecasting and reporting that exploits increasingly sophisticated information systems. Improving air quality is a considerable but not an intractable challenge. Translating the correct scientific evidence into bold, realistic and effective policies undisputedly has the potential to reduce air pollution so that it no longer poses a damaging and costly toll on public health.
1
Health effects appear to occur without a detectable threshold, including near background PM2.5 concentrations, and generally follow a linear concentration–response relationship.
2
Improved monitoring, forecasting, reporting, and evidence-based policies could substantially reduce air pollution and its public-health burden.
3
Large urban populations remain exposed to air pollution exceeding European standards and WHO health-based air-quality guidelines.
4
Recent evidence links particulate matter pollution to stronger effects on established health endpoints and to a broader range of diseases.
5
Research increasingly targets the harmful components of ambient particulate matter and the biological mechanisms underlying toxicity to inform more effective regulation.

ambient particulate matter (PM) air pollution in urban areas

the concentration–response relationships, health effects, toxic components, and biological mechanisms of PM exposure, including implications for air-quality policy

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2015-06-03
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Frank Kelly
Julia C. Fussell
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