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首页> 外文期刊>Atmospheric chemistry and physics >Hygroscopic growth of water soluble organic carbon isolated from atmospheric aerosol collected at US national parks and Storm Peak Laboratory
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Hygroscopic growth of water soluble organic carbon isolated from atmospheric aerosol collected at US national parks and Storm Peak Laboratory

机译:从美国国家公园和风暴峰实验室收集的从大气气溶胶中分离出来的水溶性有机碳的吸湿性增长

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Due to the atmospheric abundance and chemical complexity of water soluble organic carbon (WSOC), its contribution to the hydration behavior of atmospheric aerosol is both significant and difficult to assess. For the present study, the hygroscopicity and CCN activity of isolated atmospheric WSOC particulate matter was measured without the compounding effects of common, soluble inorganic aerosol constituents. WSOC was extracted with high purity water from daily high-volume PMsub2.5/sub filter samples and separated from water soluble inorganic constituents using solid-phase extraction. The WSOC filter extracts were concentrated and combined to provide sufficient mass for continuous generation of the WSOC-only aerosol over the combined measurement time of the tandem differential mobility analyzer and coupled scanning mobility particle sizer–CCN counter used for the analysis. Aerosol samples were taken at Great Smoky Mountains National Park during the summer of 2006 and fall–winter of 2007–2008; Mount Rainier National Park during the summer of 2009; Storm Peak Laboratory (SPL) near Steamboat Springs, Colorado, during the summer of 2010; and Acadia National Park during the summer of 2011. Across all sampling locations and seasons, the hygroscopic growth of WSOC samples at 90?% RH, expressed in terms of the hygroscopicity parameter, iκ/i, ranged from 0.05 to 0.15. Comparisons between the hygroscopicity of WSOC and that of samples containing all soluble materials extracted from the filters implied a significant modification of the hydration behavior of inorganic components, including decreased hysteresis separating efflorescence and deliquescence and enhanced water uptake between 30 and 70?% RH.
机译:由于大气中的丰富度和水溶性有机碳(WSOC)的化学复杂性,其对大气气溶胶水化行为的贡献既显着又难以评估。对于本研究,在没有常见的可溶性无机气溶胶成分的复合作用的情况下,测量了分离的大气WSOC颗粒物的吸湿性和CCN活性。用高纯度水从每日大量的PM 2.5 过滤器样品中提取WSOC,并通过固相萃取从水溶性无机成分中分离出WSOC。将WSOC过滤器提取物浓缩并合并,以提供足够的质量,以便在串联差动迁移率分析仪和耦合扫描迁移率粒度仪– CCN计数器的组合测量时间内连续生成仅WSOC的气溶胶。气溶胶样品是在2006年夏季和2007-2008年秋冬季期间在大烟山国家公园采集的; 2009年夏季,雷尼尔山国家公园; 2010年夏季,科罗拉多州斯廷博特斯普林斯附近的风暴峰实验室(SPL);以及2011年夏季的阿卡迪亚国家公园(Acadia National Park)。在所有采样地点和季节,以吸湿率参数κ表示的WSOC在90%RH下的吸湿性增长范围为0.05至0.15。 WSOC的吸湿性与包含所有从过滤器中提取的可溶性物质的样品的吸湿性的比较表明,无机组分的水合行为发生了显着变化,包括降低了风化和潮解的滞后性,并提高了30%至70%RH之间的吸水率。

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