火积雨云事件中平流层野火烟雾颗粒的粘度和相态:初步评估

IF 11.3 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Mei Fei Zeng, Andreas Zuend, Nealan G. A. Gerrebos, Pengfei Yu, Gregory P. Schill, Daniel M. Murphy and Allan K. Bertram*, 
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引用次数: 0

摘要

了解平流层野火和火积雨云(pyroCb)事件产生的生物质燃烧有机气溶胶(BBOA)的粘度和相态对于预测其在平流层多相化学和臭氧消耗中的作用至关重要。然而,BBOA在平流层条件下的粘度和相态,包括与硫酸(H2SO4)的相互作用,在很大程度上仍然无法量化。在这项研究中,我们将实验室数据与热力学模型相结合,预测了平流层条件下BBOA的粘度和相态。我们的研究结果表明,h2so4与BBOA的质量比为0.37(这是老化两个月后平流层下层pyroCb烟雾的估计上限)的BBOA具有高粘性,并且经常以玻璃态存在。即使h2so4与BBOA的质量比达到0.79(这是老化9个月后的估计上限),在某些平流层条件下,BBOA仍然可以转变为玻璃态。在玻璃态下,体反应被抑制,多相化学可能局限于颗粒表面。我们还强调了未来研究的关键领域,以更好地约束BBOA在平流层中的粘度和相态及其对臭氧的后续影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Viscosity and Phase State of Wildfire Smoke Particles in the Stratosphere from Pyrocumulonimbus Events: An Initial Assessment

Viscosity and Phase State of Wildfire Smoke Particles in the Stratosphere from Pyrocumulonimbus Events: An Initial Assessment

Understanding the viscosity and phase state of biomass-burning organic aerosol (BBOA) from wildfires and pyrocumulonimbus (pyroCb) events in the stratosphere is critical for predicting their role in stratospheric multiphase chemistry and ozone depletion. However, the viscosity and phase state of BBOA under stratospheric conditions, including interactions with sulfuric acid (H2SO4), remain largely unquantified. In this study, we combine laboratory data with a thermodynamic model to predict the viscosity and phase state of BBOA under stratospheric conditions. Our results suggest that BBOA with a H2SO4-to-BBOA mass ratio of 0.37─an estimated upper limit for pyroCb smoke in the lower stratosphere after two months of aging─is highly viscous and frequently exists in a glassy state. Even at a higher H2SO4-to-BBOA mass ratio of 0.79─an estimated upper limit after nine months of aging─BBOA can still transition to a glassy state under certain stratospheric conditions. In the glassy state, bulk reactions are suppressed, and multiphase chemistry may be limited to the particle surfaces. We also highlight key areas for future research needed to better constrain the viscosity and phase state of BBOA in the stratosphere and its subsequent impact on ozone.

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来源期刊
环境科学与技术
环境科学与技术 环境科学-工程:环境
CiteScore
17.50
自引率
9.60%
发文量
12359
审稿时长
2.8 months
期刊介绍: Environmental Science & Technology (ES&T) is a co-sponsored academic and technical magazine by the Hubei Provincial Environmental Protection Bureau and the Hubei Provincial Academy of Environmental Sciences. Environmental Science & Technology (ES&T) holds the status of Chinese core journals, scientific papers source journals of China, Chinese Science Citation Database source journals, and Chinese Academic Journal Comprehensive Evaluation Database source journals. This publication focuses on the academic field of environmental protection, featuring articles related to environmental protection and technical advancements.
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