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Enhanced PM2.5 pollution in China due to aerosol-cloud interactions

机译:气溶胶-云相互作用增强了中国的PM2.5污染

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摘要

Aerosol-cloud interactions (aerosol indirect effects) play an important role in regional meteorological variations, which could further induce feedback on regional air quality. While the impact of aerosol-cloud interactions on meteorology and climate has been extensively studied, their feedback on air quality remains unclear. Using a fully coupled meteorology-chemistry model, we find that increased aerosol loading due to anthropogenic activities in China substantially increases column cloud droplet number concentration and liquid water path (LWP), which further leads to a reduction in the downward shortwave radiation at surface, surface air temperature and planetary boundary layer (PBL) height. The shallower PBL and accelerated cloud chemistry due to larger LWP in turn enhance the concentrations of particulate matter with diameter less than 2.5 μm (PM2.5) by up to 33.2 μg m−3 (25.1%) and 11.0 μg m−3 (12.5%) in January and July, respectively. Such a positive feedback amplifies the changes in PM2.5 concentrations, indicating an additional air quality benefit under effective pollution control policies but a penalty for a region with a deterioration in PM2.5 pollution. Additionally, we show that the cloud processing of aerosols, including wet scavenging and cloud chemistry, could also have substantial effects on PM2.5 concentrations.
机译:气溶胶-云相互作用(气溶胶间接效应)在区域气象变化中起重要作用,这可能进一步引起对区域空气质量的反馈。尽管已经广泛研究了气溶胶-云相互作用对气象和气候的影响,但它们对空气质量的反馈仍不清楚。使用完全耦合的气象化学模型,我们发现由于中国的人为活动而增加的气溶胶负荷大大增加了柱云滴数浓度和液态水路径(LWP),从而进一步降低了地面向下的短波辐射,地表气温和行星边界层(PBL)的高度。较大的LWP导致PBL变浅和云化学加速,反过来,直径小于2.5μm(PM2.5)的颗粒物浓度提高了33.2μgm -3 (25.1%), 1月和7月分别为11.0μgm -3 (12.5%)。这种积极的反馈放大了PM2.5浓度的变化,表明在有效的污染控制政策下还有额外的空气质量收益,但对PM2.5污染恶化的地区却是不利的。此外,我们表明气雾的云处理(包括湿清除和云化学)也可能对PM2.5浓度产生实质性影响。

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