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Traffic and seasonal dependence of the light absorption coefficient in Santiago de Chile

机译:智利圣地亚哥的光吸收系数的流量和季节依赖性

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摘要

We have designed and built a compact, low-cost automated system to measure the optical absorption coefficient of air. Because most of the light absorption is due to black carbon, this method is a direct measure of the amount of black carbon in the atmosphere. The equipment was used to measure absorption over a period of one year in a central area of Santiago. Our results show a strong correlation with the daily traffic pattern. The highest value of the absorption coefficient during most of the year occurs during the morning rush hour (0700-0800), and the lowest value either early in the morning (0300-0500) or in the afternoon (1400-1700). The absorption coefficient also shows a strong dependence with the season of the year, with values 10-20 times higher in winter than in summer. The data show that, during most of the year, the amount of black carbon present in the atmosphere is due to traffic. At night, during winter, the high concentration of black carbon is due to the temperature inversion effect.
机译:我们设计并构建了一个紧凑的低成本自动化系统,用于测量空气的光学吸收系数。由于大多数光吸收是由于黑碳引起的,因此该方法直接测量了大气中黑碳的量。该设备用于测量圣地亚哥中部地区一年内的吸收率。我们的结果显示与每日流量模式有很强的相关性。在一年中的大部分时间中,吸收系数的最大值出现在高峰时间(0700-0800),而最小值出现在清晨(0300-0500)或下午(1400-1700)。吸收系数还显示出对一年四季的强烈依赖性,冬季的吸收系数比夏季高10到20倍。数据显示,在一年中的大部分时间里,大气中存在的黑碳量是由交通引起的。在晚上,冬季,黑碳的高浓度归因于温度反转效应。

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