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Chemical compositions and radiative properties of dust and anthropogenic air masses study in Taipei Basin, Taiwan, during spring of 2004

机译:2004年春季在台湾台北盆地进行的粉尘和人为气团的化学组成和辐射特性研究

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Asia is one of the major sources of not only mineral dust but also anthropogenic aerosols. Continental air masses associated with the East Asian winter monsoon always contain high contents of mineral dust and anthropogenic species and transported southeastward to Taiwan, which have significant influences on global atmospheric radiation transfer directly by scattering and absorbing solar radiation in each spring. However, few measurements for the long-range transported aerosol and its optical properties were announced in this area, between the Western Pacific and the southeastern coast of Mainland China. The overall objective of this work is to quantify the optical characteristics of different aerosol types in the Eastern Asian. In order to achieve this objective, meteorological parameters, concentrations of PM_(10) and its soluble species, and optical property of atmospheric scattering coefficients were measured continuously with 1h time-resolved from 11 February to 7 April 2004 in Taipei Basin (25°00′N, 121°32′E). In this work, the dramatic changes of meteorological parameters such as temperature and winds were used to determine the influenced period of each air mass. Continental, strong continental, marine, and stagnant air masses defined by the back-trajectory analysis and local meteorology were further characterized as long-range transport pollution, dust, clean marine, and local pollution aerosols, respectively, according to the diagnostic ratios. The aerosol mass scattering efficiency of continental pollution, dust, clean marine, and local pollution aerosols were ranged from 1.3 to 1.6, 0.7 to 1.0, 1.4 and 1.4 to 2.3m~2g~(-1), respectively. Overall, there are two distinct populations of aerosol mass scattering efficiencies, one for an aerosol chemical composition dominated by dust ( < 1.0 m~2g~(-1)) and the other for an aerosol chemical composition dominated by anthropogenic pollutants (1.3-2.3 m~2g~(-1)), which were similar to the previous measurements with high degree of temporal resolution.
机译:亚洲不仅是矿物粉尘的主要来源,而且还是人为气溶胶的主要来源之一。与东亚冬季风有关的大陆气团总是含有高含量的矿物粉尘和人为物种,并向东南向台湾输送,这直接通过每年春季散射和吸收太阳辐射而直接影响了全球大气辐射的传输。然而,在该地区的西太平洋和中国大陆东南沿海之间,很少有关于远距离输送的气溶胶及其光学特性的测量数据。这项工作的总体目标是量化东亚地区不同气溶胶类型的光学特性。为了实现这一目标,于2004年2月11日至4月7日在台北盆地(25°00)进行了1h时间分辨,连续测量了气象参数,PM_(10)及其可溶物的浓度以及大气散射系数的光学特性。 'N,121°32'E)。在这项工作中,气象参数(例如温度和风)的剧烈变化被用来确定每种空气质量的影响周期。根据诊断比率,通过反航迹分析和局部气象学确定的大陆,强大陆,海洋和停滞气团分别进一步表征为远距离运输污染,粉尘,清洁的海洋和局部污染的气溶胶。大陆污染,粉尘污染,海洋清洁污染和局部污染气溶胶的气溶胶质量散射效率分别为1.3〜1.6、0.7〜1.0、1.4和1.4〜2.3m〜2g〜(-1)。总体而言,存在两种截然不同的气溶胶质量散射效率种群,一种针对以尘埃为主的气溶胶化学成分(<1.0 m〜2g〜(-1)),另一种针对以人为污染物为主的气溶胶化学成分(1.3-2.3) m〜2g〜(-1)),与先前的测量具有高度的时间分辨率。

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