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March 30, 2026Communications Earth & Environment2 citationsOpen Access

Biomass burning increase in Southeast Asia is dominated by char black carbon

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WSWenhuai SongYZYing ZhangNanjing University of Information Science and TechnologyMGMeng GaoHong Kong Baptist University

Key Points

  • To assess the contributions of char and soot to black carbon emissions from biomass burning in Southeast Asia.
  • Used thermal-optical analysis to separate black carbon into char and soot
  • Applied radiocarbon source attribution for accurate measurement
  • Analyzed regional direct radiative forcing based on corrected mass and optical properties
  • Over 90% of black carbon from biomass burning is char
  • Modeling corrections raise regional direct radiative forcing estimates significantly
  • Findings suggest that char's lower mass absorption efficiency alters typical model predictions

Abstract

Biomass burning emits black carbon, a climate-active aerosol, with poorly constrained climate effects—models capture only 30% of observed black carbon in Southeast Asia. Here we use thermal-optical analysis and radiocarbon source attribution to separate black carbon into char and soot. We find model underestimation arises from missing char-rich emissions, which drive over 90% of regional biomass burning-related black carbon increases. Char has lower mass absorption efficiency than soot, yet most models assign soot-like optical properties to all black carbon. Constraining simulations revises regional direct radiative forcing from 1.95 W m−2 (baseline) to 4.51 W m−2 (mass correction) and 3.71 W m−2 (mass and optical correction). Global analysis reveals nonlinearity: rising biomass burning boosts black carbon loading but reduces its absorption efficiency via char dominance, partially offsetting radiative forcing. This underscores the need to represent black carbon subtypes and their optical properties for accurate climate impact assessments. Over 90% of the biomass burning-related black carbon in Southeast Asia is char, leading to models overestimating absorption, according to thermal-optical analysis and radiocarbon source attribution of black carbon particles in Southeast Asia.

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Cite This Study

Song et al. (2026) studied this question.

synapsesocial.com/papers/69c9c5e2f8fdd13afe0bde51https://doi.org/10.1038/s43247-026-03431-0
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