SO2在大气固体颗粒上的非均相氧化研究进展:对霾化学中硫酸盐形成的影响

IF 11.4 1区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Critical Reviews in Environmental Science and Technology Pub Date : 2023-03-31 DOI:10.1080/10643389.2023.2190315
Q. Ma, Chunyan Zhang, Chang Liu, G. He, P. Zhang, Hao Li, Biwu Chu, Hong S. He
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引用次数: 1

摘要

摘要大气中二氧化硫(SO2)氧化为硫酸盐是区域空气质量、全球气候变化和人类健康的一个重要问题。虽然SO2的气相和液相氧化被广泛认为是硫酸盐的重要来源,但颗粒表面的非均相氧化过程的贡献是有争议的。最近,这种非均相化学被认为是当前模型中缺失的一个重要机制,用于解释东亚雾霾事件中观察到的硫酸盐浓度。因此,在复杂的空气污染条件下,SO2在颗粒物上的非均相氧化需要重新评估。综述了SO2在矿尘、炭黑、海盐、有机气溶胶等固体颗粒上的非均相反应的基本认识。影响SO2非均相作用机理和动力学的因素,包括共存组分(O3、NO2、H2O2、NH3和VOCs)、反应位点、表面性质、相对湿度,以及照明。讨论了SO2在颗粒上非均相氧化过程中涉及的活性氧物种。据我们所知,虽然以前的综述都是关于SO2在水相中的氧化,但这是对SO2在固体颗粒表面的大气非均相反应的首次综述,这有助于理解大气中的硫循环及其对环境的影响。还提出了一些对未来研究的建议。
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A review on the heterogeneous oxidation of SO2 on solid atmospheric particles: Implications for sulfate formation in haze chemistry
Abstract The oxidation of sulfur dioxide (SO2) to sulfate in the atmosphere is an important concern in regional air quality, global climate change, and human health. While gas-phase and liquid-phase oxidation of SO2 are widely regarded as important sources of sulfate, the contribution of the heterogeneous oxidation process on particle surfaces is controversial. Recently, this heterogeneous chemistry has been considered to be an important mechanism that is missing in current models to explain sulfate concentrations observed in haze episodes in East Asia. Therefore, the heterogeneous oxidation of SO2 on particles under the conditions of complex air pollution needs to be reassessed. This review summarizes the fundamental understanding of the heterogeneous reactions of SO2 on solid particles such as mineral dust, black carbon, sea salts, organic aerosol, and so on. The factors affecting the mechanism and kinetics of the heterogeneous reactions of SO2, including coexisting components (O3, NO2, H2O2, NH3, and VOCs), reactive sites, surface properties, relative humidity, and illumination, are reviewed. Reactive oxygen species involved in the heterogeneous oxidation of SO2 on particles are discussed. To our knowledge, while previous reviews have appeared on the oxidation of SO2 in the aqueous-phase, this is the first review on the atmospheric heterogeneous reactions of SO2 on the surface of solid particles, which can be of help in understanding the sulfur cycle in the atmosphere and its environmental impacts. A number of recommendations for future research are also presented.
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来源期刊
CiteScore
27.30
自引率
1.60%
发文量
64
审稿时长
2 months
期刊介绍: Two of the most pressing global challenges of our era involve understanding and addressing the multitude of environmental problems we face. In order to tackle them effectively, it is essential to devise logical strategies and methods for their control. Critical Reviews in Environmental Science and Technology serves as a valuable international platform for the comprehensive assessment of current knowledge across a wide range of environmental science topics. Environmental science is a field that encompasses the intricate and fluid interactions between various scientific disciplines. These include earth and agricultural sciences, chemistry, biology, medicine, and engineering. Furthermore, new disciplines such as environmental toxicology and risk assessment have emerged in response to the increasing complexity of environmental challenges. The purpose of Critical Reviews in Environmental Science and Technology is to provide a space for critical analysis and evaluation of existing knowledge in environmental science. By doing so, it encourages the advancement of our understanding and the development of effective solutions. This journal plays a crucial role in fostering international cooperation and collaboration in addressing the pressing environmental issues of our time.
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