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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Tropospheric chemistry of internally mixed sea salt and organic particles: Surprising reactivity of NaCl with weak organic acids
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Tropospheric chemistry of internally mixed sea salt and organic particles: Surprising reactivity of NaCl with weak organic acids

机译:内部混合的海盐和有机颗粒的对流层化学性质:NaCl与弱有机酸的惊人反应性

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摘要

Chemical imaging analysis of internally mixed sea salt/organic particles collected onboard the Department of Energy (DOE) G-1 aircraft during the 2010 Carbonaceous Aerosols and Radiative Effects Study (CARES) was performed using electron microscopy and X-ray spectro-microscopy. Substantial chloride depletion in aged sea salt particles was observed, which could not be explained by the known atmospheric reactivity of sea salt with inorganic nitric and sulfuric acids. We present field evidence that chloride components in sea salt particles may effectively react with organic acids releasing HCl gas to the atmosphere, leaving behind particles depleted in chloride and enriched in the corresponding organic salts. While formation of the organic salts products is not thermodynamically favored for bulk aqueous chemistry, these reactions in aerosol are driven by high volatility and evaporation of the HCl product from drying particles. These field observations were corroborated in a set of laboratory experiments where NaCl particles mixed with organic acids were found to be depleted in chloride. Combined together, the results indicate substantial chemical reactivity of sea salt particles with secondary organics that has been largely overlooked in the atmospheric aerosol chemistry. Atmospheric aging, and in particular hydration-dehydration cycles of mixed sea salt/organic particles, may result in formation of organic salts that will modify the acidity, hygroscopic, and optical properties of aged particles.
机译:使用电子显微镜和X射线光谱显微镜对2010年碳素气溶胶和辐射效应研究(CARES)期间在能源部(DOE)G-1飞机上收集的内部混合的海盐/有机颗粒进行了化学成像分析。观察到老化的海盐颗粒中的氯化物大量消耗,这不能用已知的海盐与无机硝酸和硫酸的大气反应性来解释。我们提供的现场证据表明,海盐颗粒中的氯化物成分可与有机酸有效反应,从而将HCl气体释放到大气中,从而留下了富含氯化物并富含相应有机盐的颗粒。尽管有机盐产物的形成在热力学上不适用于本体水化学反应,但气溶胶中的这些反应是由高挥发性和从干燥颗粒中蒸发出的HCl产物驱动的。这些现场观察在一组实验室实验中得到了证实,在该实验中,发现与有机酸混合的NaCl颗粒中的氯化物贫化了。结合在一起,结果表明海盐颗粒与次要有机物的实质化学反应性在大气气溶胶化学中已被大大忽略。大气老化,特别是混合的海盐/有机颗粒的水合脱水循环,可能会导致形成有机盐,这会改变老化颗粒的酸度,吸湿性和光学性能。

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