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颗粒物理状态对中分子量有机分子摄取的影响。

Influence of Particle Physical State on the Uptake of Medium-Sized Organic Molecules.

机构信息

John A. Paulson School of Engineering and Applied Sciences , Harvard University , Cambridge , Massachusetts 02138 , United States.

Department of Chemistry and Chemical Biology , Harvard University , Cambridge , Massachusetts 02138 , United States.

出版信息

Environ Sci Technol. 2018 Aug 7;52(15):8381-8389. doi: 10.1021/acs.est.8b02119. Epub 2018 Jul 26.

Abstract

The uptake of medium-sized levoglucosan and 2,4-dinitrophenol to organic particles produced by α-pinene ozonolysis and to ammonium sulfate particles was studied from 10% to >95% relative humidity (RH). For aqueous sulfate particles, the water-normalized gas-particle partitioning coefficient of levoglucosan decreased from (1.0 ± 0.1) × 10 to (0.2 ± 0.1) × 10 (ng μg)/(ng m) from 40% to >95% RH, suggestive of a salting-in mechanism between levoglucosan and ionic ammonium sulfate solutions. For the organic particles, the levoglucosan partitioning coefficient increased from 10% to 40% RH and became invariant at (2.0 ± 0.4) × 10 (ng μg)/(ng m) above 40% RH. A kinetic limitation on uptake below 40% RH was implied, compared to a thermodynamic regime above 40% RH. The estimated diffusivity was 10 m s at 40% RH. By comparison, the uptake of 2,4-dinitrophenol onto the organic particles was below detection limit, implying an upper limit on the partitioning coefficient of 6.8 × 10 (ng μg)/(ng m) at 80% RH. The results highlight that the molecular uptake of gases onto particles can be regulated by both kinetic and thermodynamic factors, either of which can limit the uptake of medium-sized organic molecules by atmospherically relevant particles.

摘要

研究了从 10%到>95%相对湿度 (RH) 下,左旋葡聚糖和 2,4-二硝基苯酚在 α-蒎烯臭氧氧化产生的有机颗粒和硫酸铵颗粒上的吸收情况。对于含水硫酸盐颗粒,左旋葡聚糖的水归一化气粒分配系数从 40%到>95% RH 时从 (1.0 ± 0.1) × 10 下降到 (0.2 ± 0.1) × 10 (ng μg)/(ng m),表明左旋葡聚糖与离子硫酸铵溶液之间存在盐析机制。对于有机颗粒,左旋葡聚糖分配系数从 10% RH 增加到 40% RH,在 40% RH 以上增加到 (2.0 ± 0.4) × 10 (ng μg)/(ng m),并保持不变。这表明在 40% RH 以下存在吸收的动力学限制,而在 40% RH 以上则存在热力学限制。在 40% RH 时,估计的扩散系数为 10 m s。相比之下,2,4-二硝基苯酚在有机颗粒上的吸收低于检测限,这意味着在 80% RH 时,分配系数的上限为 6.8 × 10 (ng μg)/(ng m)。研究结果表明,气体在颗粒上的分子吸收可以受到动力学和热力学因素的调节,其中任何一个因素都可以限制大气相关颗粒对中等大小有机分子的吸收。

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