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首页> 外文期刊>Environmental Monitoring and Assessment >Photoacoustic measurements of black carbon light absorption coefficients in Irbid city, Jordan
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Photoacoustic measurements of black carbon light absorption coefficients in Irbid city, Jordan

机译:约旦尔比德市黑碳光吸收系数的光声测量

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摘要

There is a need to recognize air pollution levels by particles, especially in developing countries such as Jordan where data are scarce due to the absence of routine monitoring of ambient air quality. This study aims at studying the air quality in different locations at Irbid, Jordan through the measurement and analysis of the time series of black carbon light absorption coefficients (B_(abs)). Black carbon light absorption coefficients were measured with a photoacoustic instrument at a wavelength of 870 nm. The measurements were conducted during July 2007 at six sites in Irbid city, Jordan. Comparisons of black carbon concentrations at various locations were conducted to understand where values tend to be largest. The average value of B_(abs) of all sites was 40.4 Mm~(-1). The largest value of B_(abs) was 61.2 Mm~(-1) at Palestine Street which is located at a very crowded street in a highly populated region in the city center. The lowest value was 14.1 Mm~(-1) at Thirtieth Street which is located at a main street in an openrnplain region in the east of the city. The black carbon light absorption coefficients fluctuate above a background level (transported black carbon from the neighboring states), which are almost identical at all sampling sites. The light absorption coefficients will be used as a benchmark in later years as combustion efficiencies and population patterns change.
机译:有必要通过微粒来识别空气污染水平,尤其是在约旦这样的发展中国家,由于缺乏对常规空气质量的常规监测,因此数据很少。本研究旨在通过对黑碳吸收系数(B_(abs))的时间序列进行测量和分析,研究约旦尔比德不同地区的空气质量。用光声仪器在870nm的波长下测量黑碳的光吸收系数。这些测量是在2007年7月于约旦Irbid市的六个地点进行的。进行了不同位置黑碳浓度的比较,以了解值趋于最大的地方。所有部位的B_(abs)平均值为40.4 Mm〜(-1)。巴勒斯坦街的B_(abs)的最大值为61.2 Mm〜(-1),该街位于市​​中心人口稠密地区的一条非常拥挤的街道上。最低值是位于市区东部开放平原地区主要街道上的第三十街的14.1 Mm〜(-1)。黑碳的光吸收系数在背景水平(从相邻状态传输的黑碳)之上波动,在所有采样点几乎相同。随着燃烧效率和填充模式的改变,吸光系数将在以后用作基准。

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