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Clarifying winter clean heating importance: Insight chemical compositions and cytotoxicity exposure to primary and aged pollution emissions in China rural areas

  • Jian Sun
  • , Xinyi Niu
  • , Bin Zhang
  • , Leiming Zhang
  • , Jinjin Yu
  • , Kun He
  • , Tian Zhang
  • , Qiyuan Wang
  • , Hongmei Xu
  • , Junji Cao
  • , Zhenxing Shen
  • Xi'an Jiaotong University
  • Environment and Climate Change Canada
  • CAS - Institute of Earth Environment

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

Residential solid fuel combustion (RSFC) is an important source of PM2.5. Here we investigate the cytotoxicity of primarily emitted and photochemically aged PM2.5 to A549 cells. Owing to the formation of water-soluble ions and organics (e.g., oPAHs and nPAHs), emission factors of PM2.5 were increased by 44.4% on average after 7-day equivalent photochemical aging, which greatly altered chemical profiles of freshly emitted PM2.5. Consequently, the cytotoxicity varied with aging duration that 2-day and 7-day aged PM2.5 induced 22.5% and 35.1%, respectively, higher levels of reactive oxygen species than primary emissions. Similar increases were also observed for multi-cytotoxicity. Correlation analysis and western blot results collectively confirmed HO-1/Nrf-2 signaling pathway dominated the cytotoxicity of aged PM2.5 from RSFC, which was regulated by the enhanced o-PAHs and n-PAHs during photochemical aging. Thus, aged and secondary aerosol exposure needs to be paid more attention due to the enhanced cytotoxicity and the vast crowd involved.

Original languageEnglish
Article number115822
JournalJournal of Environmental Management
Volume320
DOIs
StatePublished - 15 Oct 2022

Keywords

  • Clean heating policy
  • Fine particle
  • Multi-cytotoxicity
  • Photochemical aging
  • Solid fuel combustion

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