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化学降解对大气左旋葡聚糖全球收支的影响及其作为生物质燃烧示踪剂的应用。

Impacts of Chemical Degradation on the Global Budget of Atmospheric Levoglucosan and Its Use As a Biomass Burning Tracer.

机构信息

School of Environmental Sciences and Engineering, Southern University of Science and Technology, Shenzhen, Guangdong Province 518055, China.

Division of Environment and Sustainability, Hong Kong University of Science and Technology, Hong Kong, 999077, China.

出版信息

Environ Sci Technol. 2021 Apr 20;55(8):5525-5536. doi: 10.1021/acs.est.0c07313. Epub 2021 Mar 23.

DOI:10.1021/acs.est.0c07313
PMID:33754698
Abstract

Levoglucosan has been widely used to quantitatively assess biomass burning's contribution to ambient aerosols, but previous such assessments have not accounted for levoglucosan's degradation in the atmosphere. We develop the first global simulation of atmospheric levoglucosan, explicitly accounting for its chemical degradation, to evaluate the impacts on levoglucosan's use in quantitative aerosol source apportionment. Levoglucosan is emitted into the atmosphere from the burning of plant matter in open fires (1.7 Tg yr) and as biofuels (2.1 Tg yr). Sinks of atmospheric levoglucosan include aqueous-phase oxidation (2.9 Tg yr), heterogeneous oxidation (0.16 Tg yr), gas-phase oxidation (1.4 × 10 Tg yr), and dry and wet deposition (0.27 and 0.43 Tg yr ). The global atmospheric burden of levoglucosan is 19 Gg with a lifetime of 1.8 days. Observations show a sharp decline in levoglucosan's concentrations and its relative abundance to organic carbon aerosol (OC) and particulate K from near-source to remote sites. We show that such features can only be reproduced when levoglucosan's chemical degradation is included in the model. Using model results, we develop statistical parametrizations to account for the atmospheric degradation in levoglucosan measurements, improving their use for quantitative aerosol source apportionment.

摘要

左旋葡聚糖已被广泛用于定量评估生物质燃烧对环境气溶胶的贡献,但以前的此类评估并未考虑左旋葡聚糖在大气中的降解。我们首次对大气左旋葡聚糖进行了全球模拟,明确考虑了其化学降解,以评估其对定量气溶胶源解析中左旋葡聚糖使用的影响。左旋葡聚糖从露天火(1.7 Tg yr)和生物燃料(2.1 Tg yr)燃烧植物物质排放到大气中。大气左旋葡聚糖的汇包括水相氧化(2.9 Tg yr)、非均相氧化(0.16 Tg yr)、气相氧化(1.4×10 Tg yr)以及干沉降和湿沉降(0.27 和 0.43 Tg yr)。全球大气左旋葡聚糖的含量为 19 Gg,半衰期为 1.8 天。观测结果表明,从源区到偏远地区,左旋葡聚糖的浓度及其对有机碳气溶胶(OC)和颗粒状 K 的相对丰度急剧下降。我们表明,只有在模型中包含左旋葡聚糖的化学降解时,才能再现这些特征。我们使用模型结果开发了统计参数化方法,以解释左旋葡聚糖测量中的大气降解,从而提高其在定量气溶胶源解析中的使用。

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引用本文的文献

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Photoenhanced Radical Formation in Aqueous Mixtures of Levoglucosan and Benzoquinone: Implications to Photochemical Aging of Biomass-Burning Organic Aerosols.左旋葡聚糖和苯醌在水混合物中的光增强自由基形成:对生物质燃烧有机气溶胶光化学老化的影响。
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