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Mitigation of Secondary Organic Aerosol Formation from Log Wood Burning Emissions by Catalytic Removal of Aromatic Hydrocarbons. | LitMetric

AI Article Synopsis

  • Log wood burning releases harmful volatile organic compounds, particularly aromatic hydrocarbons (ArHC), which contribute to serious air pollution and health issues.
  • Two types of Pt-based catalytic converters were tested and showed significant success in reducing these harmful emissions, including ArHC and toxic gases like carbon monoxide and methane.
  • The use of these converters at realistic temperatures effectively lowers secondary organic aerosol (SOA) formation, thus decreasing the overall particulate matter pollution from log wood burning.

Article Abstract

Log wood burning is a significant source of volatile organic compounds including aromatic hydrocarbons (ArHC). ArHC are harmful, are reactive in the ambient atmosphere, and are important secondary organic aerosol (SOA) precursors. Consequently, SOA represents a major fraction of the sub-micron organic aerosol pollution from log wood burning. ArHC reduction is thus critical in the mitigation of adverse health and environmental effects of log wood burning. In this study, two Pt-based catalytic converters were prepared and tested for the mitigation of real-world log wood burning emissions, including ArHC and SOA formation, as well as toxic carbon monoxide and methane, a greenhouse gas. Substantial removal of mono- and polycyclic ArHC and phenolic compounds was achieved with both catalysts operated at realistic chimney temperatures (50% conversion was achieved at 200 and 300 °C for non-methane hydrocarbons in our experiments for Pt/AlO and Pt/CeO-AlO respectively). The catalytically cleaned emissions exhibited a substantially reduced SOA formation already at temperatures as low as 185-310 °C. This reduces the sub-micron PM burden of log wood burning significantly. Thus, catalytic converters can effectively reduce primary and secondary log wood burning pollutants and, thereby, their adverse health impacts and environmental effects.

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Source
http://dx.doi.org/10.1021/acs.est.8b04124DOI Listing

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