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Enhanced uptake of glyoxal at the acidic nanoparticle interface: implications for secondary organic aerosol formation

机译:在酸性纳米粒子界面增强的乙二醛摄取:对二次有机气溶胶形成的影响

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Glyoxal (GL) represents an important precursor of a secondary organic aerosol (SOA) and has broad biogenic and anthropogenic sources, but the interfacial chemistry of GL contributing to SOA formation is uncertain. Here, we performed molecular dynamics (MD) simulations and quantum chemical (QC) calculations to examine the interfacial process of gaseous GL on aqueous nanoparticles, including probing the GL attraction to the nanoparticles, uptake at the air-nanoparticle interface, and the hydration reaction within the nanoparticles under neutral and acidic conditions. The MD simulations show that the carbonyl O-atom of GL exhibits a preferential orientation to the air-nanoparticle interface. The acidic nanoparticle interface displays a preference for the uptake of gaseous GL relative to the neutral nanoparticle interface, showing that the presence of sulfuric acid (SA) enhances the adsorption and accommodation for GL. In addition, SA accelerates the aqueous reaction of GL inside the interior region of the nanoparticle, which indirectly promotes the uptake at the nanoparticle interface. Our results reveal the significantly enhanced uptake of GL at the acidic nanoparticle interface, highlighting the necessity to account for the interfacial process when assessing SOA formation.
机译:乙二醛(GL)代表二次有机气溶胶(SOA)的重要前体,具有广泛的生物和人为来源,但GL的界面化学对SOA形成的影响是不确定的。在这里,我们进行了分子动力学(MD)模拟和量子化学(QC)计算,以检查气体GL对水性纳米颗粒的界面过程,包括探测纳米颗粒的GL吸引,在空气纳米颗粒接口处摄取,以及水化反应在中性和酸性条件下的纳米颗粒内。 MD模拟表明GL的羰基O-原子对空气纳米粒子界面表现出优先取向。酸性纳米颗粒界面显示出相对于中性纳米颗粒界面摄取气体G1的偏好,表明硫酸(SA)的存在增强了GL的吸附和容纳。此外,SA加速了纳米颗粒内部区域内的GL的水性反应,其间接促进纳米颗粒界面处的摄取。我们的研究结果揭示了酸性纳米粒子界面上的GL显着增强,突出了评估SOA形成时界面过程的必要性。

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