4.8 Review

Aging Effects on Biomass Burning Aerosol Mass and Composition: A Critical Review of Field and Laboratory Studies

Journal

ENVIRONMENTAL SCIENCE & TECHNOLOGY
Volume 53, Issue 17, Pages 10007-10022

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.est.9b02588

Keywords

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Funding

  1. U.S NOAA, an Office of Science, Office of Atmospheric Chemistry, Carbon Cycle, and Climate Program [NA17 OAR430001, NA170AR4310002, NA170AR4310003]
  2. U.S. NSF Atmospheric Chemistry program [AGS-15S9607, AGS-1558966, AGS-1830748, AGS-1559598]
  3. Joint Fire Science Program [14-1-03-26]
  4. Office of Naval Research [N00014-16-1-2040]
  5. NOAA [NA160AR4310104]
  6. NASA [8ONSSC18K0630]
  7. NSF [AGS-1822664]
  8. DOE (BER, ASP Program) [DE-SC0006035]
  9. EPA (STAR grant) [R833747]
  10. DOE SCGP Fellowship Program (ORAU, ORISE)

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Biomass burning is a major source of atmospheric particulate matter (PM) with impacts on health, climate, and air quality. The particles and vapors within biomass burning plumes undergo chemical and physical aging as they are transported downwind. Field measurements of the evolution of PM with plume age range from net decreases to net increases, with most showing little to no change. In contrast, laboratory studies tend to show significant mass increases on average. On the other hand, similar effects of aging on the average PM composition (e.g., oxygen-to-carbon ratio) are reported for lab and field studies. Currently, there is no consensus on the mechanisms that lead to these observed similarities and differences. This review summarizes available observations of aging-related biomass burning aerosol mass concentrations and composition markers, and discusses four broad hypotheses to explain variability within and between field and laboratory campaigns: (1) variability in emissions and chemistry, (2) differences in dilution/entrainment, (3) losses in chambers and lines, and (4) differences in the timing of the initial measurement, the baseline from which changes are estimated. We conclude with a concise set of research needs for advancing our understanding of the aging of biomass burning aerosol.

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