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Opposite long-term trends in aerosols between low and high altitudes: a testimony to the aerosol–PBL feedback

机译:低高高度之间的气溶胶的长期趋势:气溶胶反馈的证词

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Interactions between absorbing aerosols and the planetary boundary layer (PBL) play an important role in affecting air pollution near the surface. In this study, a unique feature of the aerosol–PBL interaction is identified that has important implications in monitoring and combating air pollution. Opposite trends in aerosol loading between the lower and upper PBL are shown on a wide range of timescales and data acquired by various platforms: from a short-term field experiment to decadal satellite observations and multidecadal ground observations in China. A novel method is proposed to obtain the vertical profiles of aerosol loading from passive sensors by virtue of varying elevations. The analyses of visibility, aerosol optical depth, and extinction with different temporal scales exhibit the similar trend, i.e., increasing in the lower atmosphere but decreasing in the upper atmosphere. Integration of the reversal aerosol trend below and above the PBL resulted in a much less change in the column-integrated quantities. The surface cooling effect, together with the change in the heating rate induced by the absorbing aerosol, unevenly modifies the atmospheric temperature profile, causing a more stable atmosphere inside the PBL but a destabilized atmosphere above the PBL. Such a change in the atmospheric stability favors the accumulation of pollutants near the surface and the vertical diffusion of aerosol particles in the upper atmosphere, both of which are consistent with the observed reversal aerosol trends. These findings have multiple implications in understanding and combating air pollution, especially in many developing countries with high emissions of light-absorbing aerosols.
机译:吸收气雾剂与行星边界层(PBL)之间的相互作用在影响表面附近的空气污染方面发挥着重要作用。在这项研究中,确定了气溶胶相互作用的独特特征,这对监测和打击空气污染具有重要意义。下部和上部PBL之间的气溶胶加载趋势在各种平台获取的各种时间尺度和数据之间显示:从中国的短期场实验到中国的二等卫星观察和多数地面观测。提出了一种新的方法,以通过不同的凸起获得来自无源传感器的气溶胶载荷的垂直曲线。具有不同时间尺度的可视性,气雾光学深度和消光的分析表现出类似的趋势,即在较低的大气中增加,但在高层大气中减少。 PBL低于和上方的逆转气溶胶趋势的整合导致柱集成量的变化较少。表面冷却效果与吸收气溶胶引起的加热速率的变化,不均匀地改变大气温度曲线,导致PBL内部更稳定的气氛,但是PBL上方的不稳定气氛。大气稳定性的这种变化有利于污染物附近的污染物的积累和气溶胶颗粒在上层大气中的垂直扩散,这两者都与观察到的逆转气溶胶趋势一致。这些调查结果对理解和打击空气污染有多种影响,特别是在许多发展中国家,具有高排放的光吸收气溶胶。

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