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Significant contribution of organics to aerosol liquid water content in winter in Beijing, China

机译:中国北京冬季有机体对气溶胶液含水量的重大贡献

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The aerosol liquid water (ALW) content?(ALWC), an important component of atmospheric particles, has a significant effect on atmospheric optical properties, visibility and multiphase chemical reactions. In this study, ALWC is determined from aerosol hygroscopic growth factor (GF) and particle number size distribution?(PNSD) measurements and is also simulated by ISORROPIA?II, a thermodynamic equilibrium model, with measured aerosol chemical composition data taken at an urban site in Beijing from 8?November to 15?December?2017. Rich measurements made during the experiment concerning virtually all aerosol properties allow us not only to derive the ALWC but also to study the contributions by various species for which little has been done in this region. The simulated ALWC including the contribution of organics and the calculated ALWC are highly correlated (coefficient of determination R2=0.92). The ALWC contributed by organics?(ALWCOrg) accounts for 30?%±22?% of the total ALWC during the sampling period. These results suggest a significant contribution of organics to ALWC, which is rather different from previous studies that showed negligible contributions by organics. Our results also show that ALWC correlates well with the mass concentrations of sulfate, nitrate, and secondary organic aerosols?(SOAs) (R2=0.66, 0.56 and?0.60, respectively). We further noted that accumulation mode particles play a key role in determining ALWC, dominating among all the aerosol modes. ALWC is an exponential function of ambient relative humidity?(RH), whose strong diurnal variation influence the diurnal variation of ALWC. However, there is a 3h lag between the extremes of ALWC and RH values, due to the diurnal variations in PNSD and aerosol chemical composition. Finally, a case study reveals that ALWCOrg?plays an important role in the formation of secondary aerosols through multiphase reactions at the initial stage of a heavy-haze episode.
机译:气溶胶液水(ALW)含量?(ALWC)是大气颗粒的重要组成部分对大气光学性质,可见性和多相化学反应具有显着影响。在该研究中,ALWC由气溶胶吸湿生长因子(GF)和粒子数尺寸分布?(PNSD)测量,并且还由IsorropiaαII模拟,热力学平衡模型,测量的气溶胶化学成分数据在市区拍摄在北京从8月到8月到15岁?12月?2017年。关于几乎所有气溶胶属性的实验期间进行的丰富测量允许我们不仅可以推导出奥尔WC,还允许研究该地区少量的各种物种的贡献。模拟ALWC包括有机物和计算的ALWC的贡献是高度相关的(r2 = 0.92的测定系数= 0.92)。 ALWC由有机物贡献?(ALWCORG)在抽样期间占总奥尔瓦尔的30?%±22?%。这些结果表明有机物对ALWC的重大贡献,与以往的研究相当不同,这些研究表明有机物贡献可忽略的贡献。我们的结果还表明,AlWC与硫酸盐,硝酸盐和次级有机气溶胶的质量浓度好?(SOA)(R2 = 0.66,0.56和β0.60)。我们进一步指出,累积模式粒子在确定ALWC中起着关键作用,在所有气溶胶模式中占据主导地位。 ALWC是环境相对湿度的指数函数?(RH),其强大的昼夜变异影响ALWC的昼夜变化。然而,由于PNSD和气溶胶化学组合物的昼夜变化,ALWC和RH值的极端之间存在3H滞后。最后,案例研究揭示了Alwcorg?在沉重阴霾发作的初始阶段的初始阶段形成二次气溶胶中的形成作用。

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