4.7 Article

Light absorption and emissions inventory of humic-like substances from simulated rainforest biomass burning in Southeast Asia

Journal

ENVIRONMENTAL POLLUTION
Volume 262, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.envpol.2020.114266

Keywords

Brown carbon; Mass absorption efficiency; Emission factors; Regional emissions

Funding

  1. Natural Science Foundation of China (NSFC) [41430645, 41773120]
  2. National Key R&D Program of China [2017YFC0212000]
  3. International Partnership Program of Chinese Academy of Sciences [132744KYSB20170002]
  4. Guangdong Foundation for Program of Science and Technology Research [2017B030314057]

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Humic-like substances (HULIS) are complex mixtures that are highly associated with brown carbon (BrC) and are important components of biomass burning (BB) emissions. In this study, we investigated the light absorption, emission factors (EFs), and amounts of HULIS emitted from the simulated burning of 27 types of regionally important rainforest biomass in Southeast Asia. We observed that HULIS had a high mass absorption efficiency at 365 nm (MAE(365)), with an average value of 2.6 +/- 0.83 m(2) g(-1) C. HULIS emitted from BB accounted for 65% +/- 13% of the amount of water-soluble organic carbon (WSOC) and 85% +/- 10% of the light absorption of WSOC at 365 nm. The EFs of HULIS from BB averaged 2.3 +/- 2.1 g kg(-1) fuel, and the burning of the four vegetation subtypes (herbaceous plants, shrubs, evergreen trees, and deciduous trees) exhibited different characteristics. The differences in EFs among the subtypes were likely due to differences in lignin content in the vegetation, the burning conditions, or other factors. The light absorption characteristics of HULIS were strongly associated with the EFs. The annual emissions (minimum-maximum) of HULIS from BB in this region in 2016 were 200-371 Gg. Furthermore, the emissions from January to April accounted for 99% of the total annual emissions of HULIS, which is likely the result of the burning activities during this season. The most significant emission regions were Cambodia, Burma, Thailand, and Laos. This study, which evaluated emissions of HULIS by simulating open BB, contributes to a better understanding of the light-absorbing properties and regional budgets of BrC in this region. (C) 2020 Elsevier Ltd. All rights reserved.

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