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Techniques and instruments used for real-time analysis of atmospheric nanoscale molecular clusters: A review

机译:用于大气纳米级分子簇实时分析的技术和仪器:综述

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Abstract The extremely high concentrations of PM2.5 (particulate matter with an aerodynamic meter?≤?2.5?μm) during severe and persistent haze events in China have been closely related to the formation of secondary aerosols (SA). New particle formation (NPF) is the critical initial step of {SA} formation. New particles are commonly formed from gas-phase precursors (e.g., SO2, volatile organic compounds) via nucleation and initial growth, in which molecular clusters with a mobility diameter smaller than 3?nm (hereafter referred to nanoscale molecular clusters) will be involved throughout the whole process. Recently, significant breakthroughs have been obtained on {NPF} studies, which are mostly attributed to the technical development in the real-time analysis of size-resolved number concentration and chemical composition of nanoscale molecular clusters. Regarding the detection of size-resolved number concentrations of nanoscale molecular clusters, both methods and instruments have been well built up; practical application in laboratory-scale experiments and field measurements have also been successfully demonstrated. In contrast, real-time analysis of chemical composition of nanoscale molecular clusters has still encountered the great challenges caused by the complex organic compositions of the clusters, and improvement of present analytical strategies is urgently required. The better understanding in {NPF} will not only benefit the atmospheric modeling and climate predictions but also the source control of SA.
机译:摘要中国在严重和持续的霾天气中,PM2.5(空气动力学仪的颗粒物≤≤2.5μm)的极高浓度与二次气溶胶(SA)的形成密切相关。新颗粒形成(NPF)是{SA}形成的关键初始步骤。通常由气相前体(例如SO2,挥发性有机化合物)通过成核和初始生长形成新颗粒,其中迁移直径小于3?nm的分子簇(以下称为纳米级分子簇)贯穿整个过程。整个过程。近年来,{NPF}研究取得了重大突破,这主要归功于实时分析纳米级分子簇的大小分辨数浓度和化学组成的技术发展。关于检测大小分辨的纳米分子簇的浓度浓度,方法和仪器都已经建立。在实验室规模的实验和现场测量中的实际应用也已被成功证明。相反,对纳米级分子簇的化学组成进行实时分析仍然面临着由簇的复杂有机组成引起的巨大挑战,迫切需要改进当前的分析策略。对{NPF}的更好理解不仅有益于大气建模和气候预测,而且有益于SA的源头控制。

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