Morten Engsvang, Yosef Knattrup, Jakub Kubečka and Jonas Elm*,
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引用次数: 0
摘要
要了解北极放大效应,就必须了解气溶胶的直接和间接效应。由于北极地区云凝结核的背景水平较低,间接气溶胶效应尤其重要。以往的研究表明,碘氧酸可促进海洋和极地地区气溶胶的形成,我们推测氯氧酸(如果存在)也可促进颗粒物的形成。最近的测量观察到北极地区存在大量氯酸(CA)和高氯酸(PA)。我们利用量子化学方法研究了(酸)0-2(碱)0-2 簇,其中酸表示 CA、PA 或硫酸(SA),碱表示氨、甲胺、二甲胺或三甲胺。这样,我们就可以模拟化学物种的簇形成势。我们发现 PA 具有很高的成核潜能,但由于浓度较低,应该只作为成核簇的次要成分存在。然而,在高浓度事件发生期间的低温条件下,PA 会对 SA 驱动的成核过程产生实质性的额外贡献。因此,应进一步测量和研究较大的多组分簇,以确定 PA 对北极成核的潜在贡献。
Chlorine Oxyacids Potentially Contribute to Arctic Aerosol Formation
To understand Arctic amplification, it is necessary to understand both the direct and indirect aerosol effect. Especially the indirect aerosol effect is important, due to the low background level of cloud condensation nuclei in the Arctic. Previous studies have shown how iodine oxyacids can contribute to the formation of aerosols in marine and polar areas, and we speculate that chlorine oxyacids, if present, could also contribute to particle formation. Recent measurements have observed the presence of chloric (CA) and perchloric acid (PA) in significant concentrations in the Arctic. Using quantum chemical methods, we have studied the (acid)0–2(base)0–2 clusters, where the acid denotes CA, PA, or sulfuric acid (SA) and the base denotes ammonia, methylamine, dimethylamine, or trimethylamine. This allowed us to simulate the cluster formation potential of the chemical species. We found PA to have a high nucleation potential but, due to low concentrations, should only be present as a minor constituent of nucleating clusters. However, at low temperatures during high concentration events, it can become a substantial additional contribution to SA-driven nucleation. Therefore, further measurements and studies of larger multicomponent clusters should be pursued in order to constrain the potential contribution of PA to Arctic nucleation.
期刊介绍:
Environmental Science & Technology Letters serves as an international forum for brief communications on experimental or theoretical results of exceptional timeliness in all aspects of environmental science, both pure and applied. Published as soon as accepted, these communications are summarized in monthly issues. Additionally, the journal features short reviews on emerging topics in environmental science and technology.