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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Uptake selectivity of methanesulfonic acid (MSA) on fine particles over polynya regions of the Ross Sea, Antarctica
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Uptake selectivity of methanesulfonic acid (MSA) on fine particles over polynya regions of the Ross Sea, Antarctica

机译:甲磺酸(MSA)对罗西卡罗斯海域的细颗粒对细粒子的摄取选择性

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The uptake of methanesulfonic acid (MSA) on existing particles is a major route of the particulate MSA formation, however, MSA uptake on different particles is still lacking in knowledge. Characteristics of MSA uptake on different aerosol particles were investigated in polynya (an area of open sea water surrounded by ice) regions of the Ross Sea, Antarctica. Particulate MSA mass concentrations, as well as aerosol population and size distribution, were observed simultaneously for the first time to access the uptake of MSA on different particles. The results show that MSA mass concentration does not always reflect MSA particle population in the marine atmosphere. MSA uptake on aerosol particle increases the particle size and changes aerosol chemical composition, but it does not increase the particle population. The uptake rate of MSA on particles is significantly influenced by aerosol chemical properties. Sea salt particles are beneficial for MSA uptake, as MSA-Na and MSA-Mg particles are abundant in the Na and Mg particles, accounting for 0.43±0.21 and 0.41±0.20 of the total Na and Mg particles, respectively. However, acidic and hydrophobic particles suppress the uptake of MSA, as MSA-EC (elemental carbon) and MSA-SO42- particles account for only 0.24±0.68 and 0.26±0.47 of the total EC and SO42- particles, respectively. The results extend the knowledge of the formation and environmental behavior of MSA in the marine atmosphere.
机译:对现有颗粒上的甲磺酸(MSA)的吸收是颗粒状MSA形成的主要途径,但是,MSA对不同粒子的吸收仍然缺乏知识。在南极洲罗斯海(冰)地区的Polynya(冰冰面积)的Polynya(冰)区域的一个不同气溶胶颗粒上的MSA吸收特征。首次观察到颗粒状MSA质量浓度,以及气溶胶种群和尺寸分布,以进入不同颗粒上MSA的摄取。结果表明,MSA质量浓度并不总是在海洋气氛中反映MSA颗粒群。气溶胶颗粒上的MSA摄取会增加粒径并改变气溶胶化学成分,但不会增加颗粒群。 MSA对颗粒上的吸收率受气溶胶化学性质的显着影响。海盐颗粒有益于MSA吸收,因为MSA-NA和MSA-Mg颗粒在Na和Mg颗粒中丰富,分别占总Na和Mg颗粒的0.43±0.20.20.41±0.20。然而,酸性和疏水性颗粒抑制了MSA的摄取,作为MSA-EC(元素碳)和MSA-SO42-颗粒的总EC和SO42-颗粒的0.24±0.68和0.26±0.47。结果延长了海洋气氛中MSA的形成和环境行为的知识。

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