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Size distribution of dust aerosols observed over the Horqin Sandy Land in Inner Mongolia, China

机译:内蒙古科尔沁沙地上观测到的粉尘气溶胶的粒径分布

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Particle size distributions (psds) of airborne dust (PM20) during different dust emission events are investigated in this study, using data obtained from a dust-event monitoring station in the Horgin Sandy Land in Inner Mongolia, China. The results show that for a weak saltation-bombardment and aggregate-disintegration dust emission (SADE) event (0.44 < u(*) < 0.47 m s(-1)) on 7 April 2012, dust aerosols <= 1 mu m in diameter (d) accounted for 80% for all dusts measured. While for a strong SADE event (0.85 < u(*) < 0.89 m s(-1)) on the same day, large dust aerosols (d >= 2.5 mu m) increased significantly, with the largest proportion (40%) located in 4-7 mu m, which agreed with the airborne dust psds observed during another two strong SADE events (mean u(*) = 0.78 and 0.68 m s(-1)) on 13-14 April 2013. However, for a convective turbulent dust emission (CTDE) event (mean u(*) = 0.31 m s(-1)) on 17 April 2013, the mean proportion of dust aerosols <0.45 mu m reached 70%, which suggests that only fine dust particles loosely distributed at the surface could be easily uplifted into the atmosphere by convective turbulence. It found that the airborne dust psds at emission move to the larger sizes with the increasing u(*), but they remain unchanged when u(*) doesn't change too much. In addition, the dust psds for a non-local dust event on 19 April 2012 appeared smoother because of the mixing of dust aerosols through the processes of dust advection and deposition. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,使用从中国内蒙古霍金沙地的一个尘埃事件监测站获得的数据,研究了在不同尘埃排放事件中空气尘埃(PM20)的粒径分布(psds)。结果表明,对于2012年4月7日的弱盐化轰炸和团聚体崩解粉尘排放(SADE)事件(0.44 = 2.5μm)显着增加,其中最大比例(40%)位于4-7微米,这与在2013年4月13日至14日发生的另外两次强烈的SADE事件(平均u(*)= 0.78和0.68 ms(-1))中观察到的悬浮尘埃psds一致。但是,对于对流湍流尘埃于2013年4月17日发射(CTDE)事件(平均u(*)= 0.31 ms(-1)),粉尘气溶胶的平均比例<0.45μm达到70%,这表明只有细小的粉尘颗粒松散地分布在地表对流湍流很容易将其提升到大气中。研究发现,随着u(*)的增加,发射时的空气尘埃psds会移动到更大的尺寸,但是当u(*)的变化不太大时,它们会保持不变。此外,2012年4月19日举行的一次非局部尘埃事件的尘埃psds看起来更平滑,这是因为通过尘埃对流和沉积过程混合了尘埃气溶胶。 (C)2015 Elsevier B.V.保留所有权利。

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