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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Continuous Measurement and Molecular Compositions of Atmospheric Water‐Soluble Brown Carbon in the Nearshore Marine Boundary Layer of Northern China: Secondary Formation and Influencing Factors
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Continuous Measurement and Molecular Compositions of Atmospheric Water‐Soluble Brown Carbon in the Nearshore Marine Boundary Layer of Northern China: Secondary Formation and Influencing Factors

机译:Continuous Measurement and Molecular Compositions of Atmospheric Water‐Soluble Brown Carbon in the Nearshore Marine Boundary Layer of Northern China: Secondary Formation and Influencing Factors

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Abstract Understanding the evolution of brown carbon (BrC) in the atmosphere is essential for investigating its climate effects. This study deployed a novel in‐situ BrC continuous observation system to firstly measure water‐soluble BrC absorption (AbsWS‐BrC) in an offshore island over the Bohai Sea in the winter of 2020. The AbsWS‐BrC abundance before the cold wave (BCW) was more than twice higher than that after the cold wave (ACW). This was mainly ascribed to the substantially suppressed formation of secondary WS‐BrC (WS‐BrCsec). Diurnal patterns of AbsWS‐BrC exhibited nighttime peaks, which derived from enhanced primary emissions and strong aqueous‐phase processes. Photochemical processes bleached daytime WS‐BrC during BCW, while daytime peaks of WS‐BrCsec emerged during ACW due to the weakened photobleaching effect. Statistical analysis indicated ambient temperature and relative humidity as well as total oxidized nitrogen (NO2 + NO3−) and reduced nitrogen (NH4+ + NH3) were the dominant factors promoting WS‐BrCsec. Moderate aerosol pH (>2.5) also facilitated the formation of WS‐BrCsec while no obvious dependences of WS‐BrCsec on gas‐particle partitioning of ammonia, O3, and sulfur precursors were found. At the molecular level, BrC chromophores with the identified compositions, carbon oxidation state, O/C, H/C, and absorption spectra were compared between the two periods. Characteristics of water‐soluble CHO‐ and CHON‐BrC were more of secondary origin during BCW, while primary emissions contributed significantly to BrC chromophores during ACW. This study highlights the advantage of high resolution BrC measurement in probing its dynamic evolution and influencing factors.
机译:抽象的理解布朗的进化大气中碳(BrC)是至关重要的调查其气候效应。部署一个小说在原地BrC连续的首先测量观测系统水溶BrC应承担的吸收(AbsWS BrC应承担的)在冬季渤海近海岛屿2020股。波(BCW)高出两倍多寒潮后(联队)。归因于大幅抑制形成二次WS BrC (WS BrCsec应承担的)。昼夜模式AbsWS BrC夜间展出山峰,来自强化一级排放和强水必经阶段流程。光化学过程漂白白天WS BrCBCW期间,虽然白天高峰WS BrCsec出现在联队由于削弱光漂白效果。表明环境温度和相对湿度以及总氧化氮(NO2 + NO3−)和减少氮(NH4 + + NH3)是促进WS BrCsec应承担的主导因素。温和的气溶胶pH值(> 2.5)也促进了形成WS BrCsec而没有明显的依赖性的WS BrCsec应承担的气体粒子分区的氨气、O3和硫磺前体被发现。BrC生色团的确认成分、碳氧化态、O / C、H / C,和吸收光谱之间的比较两个时期。秋》分BrC更次要的起源BCW期间,主要排放的贡献明显在联队BrC生色团。这项研究强调了高的优势决议BrC测量探测其动态进化和影响因素。

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