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1.
J Environ Sci (China) ; 142: 69-82, 2024 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-38527897

RESUMO

A comprehensive health risk assessment of PM2.5 is meaningful to understand the current status and directions regarding further improving air quality from the perspective of human health. In this study, we evaluated the health risks of PM2.5 as well as highly toxic inorganic components, including heavy metals (HMs) and black carbon (BC) based on long-term observations in Beijing from 2019 to 2021. Our results showed that the relative risks of chronic obstructive pulmonary disease, lung cancer, acute lower respiratory tract infection, ischemic heart disease, and stroke decreased by 4.07%-9.30% in 2020 and 2.12%-6.70% in 2021 compared with 2019. However, they were still at high levels ranging from 1.26 to 1.77, in particular, stroke showed the highest value in 2021. Mn had the highest hazard quotient (HQ, from 2.18 to 2.56) for adults from 2019 to 2021, while Ni, Cr, Pb, As, and BC showed high carcinogenic risks (CR > 1.0×10-6) for adults. The HQ values of Mn and As and the CR values of Pb and As showed constant or slight upwards trends during our observations, which is in contrast to the downward trends of other HMs and PM2.5. Mn, Cr, and BC are crucial toxicants in PM2.5. A significant shrink of southern region sourcesof HMs and BCshrank suggests the increased importance of local sources. Industry, dust, and biomass burning are the major contributors to the non-carcinogenic risks, while traffic emissions and industry are the dominant contributors to the carcinogenic risks in Beijing.


Assuntos
Poluentes Atmosféricos , Metais Pesados , Acidente Vascular Cerebral , Oligoelementos , Adulto , Humanos , Pequim , Poluentes Atmosféricos/análise , Monitoramento Ambiental/métodos , Chumbo , Poeira/análise , Metais Pesados/análise , Medição de Risco , Carbono , Material Particulado/análise
2.
Nat Commun ; 13(1): 6887, 2022 11 12.
Artigo em Inglês | MEDLINE | ID: mdl-36371439

RESUMO

Ammonium salt is an important component of particulate matter with aerodynamic diameter less than 2.5 µm (PM2.5) and has significant impacts on air quality, climate, and natural ecosystems. However, a fundamental understanding of the conversion kinetics from ammonia to ammonium in unique environments of high aerosol loading is lacking. Here, we report the uptake coefficient of ammonia (γNH3) on ambient PM2.5 varying from 2.2 × 10-4 to 6.0 × 10-4 in the North China Plain. It is significantly lower than those on the model particles under simple conditions reported in the literature. The probability-weighted γNH3 increases obviously, which is well explained by the annual decrease in aerosol pH due to the significant decline in alkali and alkali earth metal contents from the emission source of dust. Our results elaborate on the complex interactions between primary emissions and the secondary formation of aerosols and the important role of dust in atmospheric chemistry.


Assuntos
Poluentes Atmosféricos , Compostos de Amônio , Poeira/análise , Poluentes Atmosféricos/análise , Amônia , Ecossistema , Monitoramento Ambiental/métodos , Material Particulado/análise , Aerossóis/análise , China , Álcalis , Estações do Ano
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