4.7 Article

Environmental and health impacts of household energy conversion on PAHs and their derivatives in PM2.5 in typical areas of northern China

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 888, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.scitotenv.2023.164187

关键词

Personal exposure; Solid fuel combustion; Polycyclic aromatic hydrocarbons; Pulmonary function; Biomarkers

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The heavy use of solid fuels in rural households of northern China emits significant indoor air pollution and poses severe inhalation health risks. In this study, the environmental and health benefits of clean energy substitution were evaluated by monitoring exposure to polycyclic aromatic hydrocarbons (PAHs) and their derivatives, as well as pulmonary function and biological parameters. By substituting traditional fuels with clean coal, indoor and personal exposure to PAHs significantly decreased, leading to reduced health risks. The findings provide scientific support for the adoption of clean energy and highlight the importance of solid fuel substitutions in improving air quality and public health.
Heavy use of solid fuels in rural households of northern China emits huge amounts of fine particulate matter (i.e., PM2.5) that pose notable indoor air pollution and severe inhalation health risks. In this study, the environmental and health benefits of clean energy substitution were accessed by monitoring indoor and personal exposure to polycyclic aromatic hydrocarbons (PAHs) and their derivatives, and pulmonary function and biological parameters. After substitutions of traditional lump coal and biomass fuels by clean coal, indoor concentrations of parent PAHs (pPAHs), alkylated PAHs (a-PAHs), oxygenated PAHs (o-PAHs), and nitro PAHs (n-PAHs) reduced by 71 %, 32 %, 70 %, and 76 %, while personal exposure concentrations decreased by 82 %, 87 %, 93 %, and 86 %, respectively. However, the proportion of low molecular weight PAHs increases, especially for 2-ring a-PAHs and 3-ring n-PAHs. Domestic solid fuel burning induces greater damage to the small airway than the large airway. Pulmonary function parameter reductions in the clean coal group are much less than those in the other two fuel groups. Salivary interleukin-6 (IL-6) and 8-hydroxy-2 '-deoxyguanosine (8-OHdG) significantly correlated with PAH species, among which p-PAHs and PAHs derivatives strongly with IL-6 and 8-OHdG, respectively. The correlation between PAHs and biomarkers in urine is insignificant. In addition, the use of clean coal can reduce the cancer risk for the four classes of PAHs by 60 %-97 %, mainly owing to the lower contributions from p-PAHs and o-PAHs. The result of the study provides scientific support for clean energy retrofit and an understanding of health benefits from solid fuel substitutions.

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