Brown Carbon From Biomass Burning Reinforces the Himalayas and Tibetan Plateau Warming

Author:

Zhu Chong‐Shu12ORCID,Qu Yao13,Huang Hong4,Shi Ju‐Lian15,Dai Wen‐Ting12,Zhang Ning‐Ning12ORCID,Wang Nan15,Wang Lu‐Yao15,Ji Sha‐Sha15,Cao Jun‐Ji16ORCID

Affiliation:

1. CAS Center for Excellence in Quaternary Science and Global Change SKLLQG, and KLACP Institute of Earth Environment Chinese Academy of Sciences Xi'an China

2. National Observation and Research Station of Regional Ecological Environment Change and Comprehensive Management in the Guanzhong Plain Xi'an China

3. University of Chinese Academy of Sciences Beijing China

4. School of Resources and Environment Nanchang University Nanchang China

5. Xi'an Institute for Innovative Earth Environment Research Xi'an China

6. Institute of Atmospheric Physics Chinese Academy of Sciences Beijing China

Abstract

AbstractThe Himalayas and Tibetan Plateau (the HTP), referred to as “the third pole” with an excessive warming rate, exerts strong impacts on the global environment. As one of warming contributors, atmospheric brown carbon (BrC) remains limited scientific understanding in the HTP due to a scarcity of observations. In this study, we present a study of the light‐absorbing properties of methanol‐soluble brown carbon (MeS‐BrC) and water‐soluble brown carbon (WS‐BrC) during 2018–2021. Highly spatiotemporal variations of BrC light absorptions were observed. In the HTP marginal area, elevated BrC absorption coefficients at 365 nm (babs,365) and levoglucosan concentrations were obtained, and MeS‐BrC exhibits approximately 1.3–1.8 times higher absorption compared to WS‐BrC. We determined that BrC light absorptions was largely attributed to biomass burning (29%–35%). BrC can act as a potent warming agent in the HTP marginal area, with high direct solar absorption (25%–47% relative to black carbon).

Funder

National Natural Science Foundation of China

Publisher

American Geophysical Union (AGU)

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