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1.
Crit Rev Anal Chem ; 52(8): 1772-1794, 2022.
Article in English | MEDLINE | ID: mdl-34092145

ABSTRACT

Atmospheric pollution has been considered one of the most important topics in environmental science once it can be related to the incidence of respiratory diseases, climate change, and others. Knowing the composition of this complex and variable mixture of gases and particulate matter is crucial to understand the damages it causes, help establish limit levels, reduce emissions, and mitigate risks. In this work, the current scenario of the legislation and guideline values for indoor and outdoor atmospheric parameters will be reviewed, focusing on the inorganic and organic compositions of particulate matter and on biomonitoring. Considering the concentration level of the contaminants in air and the physical aspects (meteorological conditions) involved in the dispersion of these contaminants, different approaches for air sampling and analysis have been developed in recent years. Finally, this review presents the importance of data analysis, whose main objective is to transform analytical results into reliable information about the significance of anthropic activities in air pollution and its possible sources. This information is a useful tool to help the government implement actions against atmospheric air pollution.


Subject(s)
Air Pollutants , Air Pollution , Air Pollutants/analysis , Environmental Monitoring/methods , Particulate Matter/analysis , Air Pollution/analysis , Environmental Health
2.
An Acad Bras Cienc ; 91(1): e20170984, 2019 Mar 21.
Article in English | MEDLINE | ID: mdl-30916152

ABSTRACT

For the accomplishment of Olympic and Paralympic Games in Rio de Janeiro city (Rio 2016), the government of the Rio de Janeiro state has undertaken to monitor air quality before and during the events. In Beijing, China, and Athens, Greece, the air quality was monitored in Olympic venues in order to evaluate the athletes' performance in relation to the environment in which they were exposed. This study has the same proposal to Rio de Janeiro, Brazil. The air quality scenario of the three previous years (2013, 2014, 2015) of Rio 2016 was considered. Coarse (PM10) and fine (PM2.5) particles and O3 were monitored continuously on the stations located near to competition venues, as required by International Olympic Committee (IOC). The levels registered ranged from 6 to 96 µg m-3 for PM10, 1 to 44 µg m-3 for PM2.5 and 121 to 269 µg m-3 for O3. These concentrations exceeded the national and international air quality standards. These high concentrations are associated with uncountable civil works to build Olympic arenas and the urban mobility´s improvement. However, the concentrations for all the pollutants monitored in Rio de Janeiro city were in lower concentrations than in Beijing Olympic Games 2008.


Subject(s)
Air Pollutants/analysis , Air Pollution/analysis , Athletes , Environmental Monitoring , Sports , Air Pollutants/adverse effects , Brazil , Environmental Pollutants , Humans , Ozone/chemistry , Particulate Matter/analysis
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