Global brown carbon emissions from combustion sources

燃烧 环境科学 碳纤维 温室气体 环境化学 天体生物学 自然资源经济学 化学 材料科学 经济 地质学 海洋学 物理 复合数 复合材料 有机化学
作者
Rui Xiong,Jin Li,Yuanzheng Zhang,Lu Zhang,Ke Jiang,Huang Zheng,Shaofei Kong,Huizhong Shen,Hefa Cheng,Guofeng Shen,Shu Tao
出处
期刊:Environmental science & ecotechnology [Elsevier BV]
卷期号:12: 100201-100201 被引量:48
标识
DOI:10.1016/j.ese.2022.100201
摘要

Light-absorbing organic carbon (OC), sometimes known as Brown Carbon (BrC), has been recognized as an important fraction of carbonaceous aerosols substantially affecting radiative forcing. This study firstly developed a bottom-up estimate of global primary BrC, and discussed its spatiotemporal distribution and source contributions from 1960 to 2010. The global total primary BrC emission from both natural and anthropogenic sources in 2010 was 7.26 (5.98-8.93 as an interquartile range) Tg, with 43.5% from anthropogenic sources. High primary BrC emissions were in regions such as Africa, South America, South and East Asia with natural sources (wild fires and deforestation) contributing over 70% in the former two regions, while in East Asia, anthropogenic sources, especially residential solid fuel combustion, accounted for over 80% of the regional total BrC emissions. Globally, the historical trend was mainly driven by anthropogenic sources, which increased from 1960 to 1990 and then started to decline. Residential emissions significantly impacted on emissions and temporal trends that varied by region. In South and Southeast Asia, the emissions increased obviously due to population growth and a slow transition from solid fuels to clean modern energies in the residential sector. It is estimated that in primary OC, the global average was about 20% BrC, but this ratio varied from 13% to 47%, depending on sector and region. In areas with high residential solid fuel combustion emissions, the ratio was generally twice the value in other areas. Uncertainties in the work are associated with the concept of BrC and measurement technologies, pointing to the need for more studies on BrC analysis and quantification in both emissions and the air.

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