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Spectral dependence of aerosol light absorption at an urban and a remote site over the Tibetan Plateau

机译:青藏高原市区和偏远地区气溶胶光吸收的光谱依赖性

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摘要

We present a study of aerosol light absorption by using a 7-wavelength Aethalometer model AE33 at an urban site (Lhasa) and a remote site (Lulang) in the Tibetan Plateau. Approximately 5 times greater aerosol absorption values were observed at Lhasa (53 ± 46 Mm~(-1) at 370 nm and 20 ± 18 Mm~(-1) at 950 nm, respectively) in comparison to Lulang (15 ± 19 Mm~(-1) at 370 nm and 4 ± 5 Mm~(-1) at 950 nm, respectively). Black carbon (BC) was the dominant light absorbing aerosol component at all wavelengths. The brown carbon (BrC) absorption at 370 nm is 32 ± 15% of the total aerosol absorption at Lulang, whereas it is 8 ± 6% at Lhasa. Higher value of absorption Angstrom exponent (AAE, 370-950 nm) was obtained for Lulang (1.18) than that for Lhasa (1.04) due to the presence of BrC. The AAEs (370-950 nm) of BrC were directly extracted at Lulang (3.8) and Lhasa (3.3). The loading compensation parameters (k) increased with wavelengths for both sites, and lower values were obtained at Lulang than those observed at Lhasa for all wavelengths. This study underlines the relatively high percentage of BrC absorption contribution in remote area compared to urban site over the Tibetan Plateau.
机译:我们通过在青藏高原的一个城市站点(拉萨)和一个偏远站点(鹿浪)使用7波长的AE33型AE33进行了对气溶胶光吸收的研究。与卢朗(15±19 Mm〜)相比,在拉萨(370 nm处为53±46 Mm〜(-1)和950 nm处为20±18 Mm〜(-1))观察到的气溶胶吸收值大约高出5倍。 (-1)在370 nm和4±5 Mm〜(-1)在950 nm。在所有波长下,黑碳(BC)是主要的吸收光的气溶胶成分。卢朗在370 nm处的棕色碳(BrC)吸收为总气溶胶吸收的32±15%,而在拉萨市则为8±6%。由于存在BrC,Lulang(1.18)的吸收埃指数(AAE,370-950 nm)高于Lhasa(1.04)。 BrC的AAE(370-950 nm)在卢朗(3.8)和拉萨(3.3)处直接提取。对于两个位置,负载补偿参数(k)随波长增加而增加,在卢朗获得的值低于在所有波长处在拉萨观察到的值。这项研究强调,与青藏高原上的城市站点相比,偏远地区的BrC吸收贡献率相对较高。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第15期|14-21|共8页
  • 作者单位

    Key Laboratory of Aerosol Chemistry & Physics, SKLLQG, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an 710061, China;

    Key Laboratory of Aerosol Chemistry & Physics, SKLLQG, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an 710061, China;

    Key Laboratory of Aerosol Chemistry & Physics, SKLLQG, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an 710061, China;

    Department of Environmental Science and Engineering, Xi'an Jiaotong University, Xi'an 710049, China;

    Key Laboratory of Aerosol Chemistry & Physics, SKLLQG, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an 710061, China,Center for Excellence in Urban Atmospheric Environment, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen 361021, China;

    School of Resource, Environmental and Chemical Engineering, NanChang University, Nanchang330031, China;

    Key Laboratory of Aerosol Chemistry & Physics, SKLLQG, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an 710061, China;

    Key Laboratory of Aerosol Chemistry & Physics, SKLLQG, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an 710061, China;

    Key Laboratory of Aerosol Chemistry & Physics, SKLLQG, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an 710061, China;

    Research and Development Department, Aerosol d.o.o., 1000 Ljubljana, Slovenia, Condensed Matter Physics Department. Jozef Stefan Institute, 1000 Ljubljana, Slovenia;

    Magee Scientific Corp., Berkeley, CA 94702, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Light absorption; Black carbon; Brown carbon; Tibetan plateau;

    机译:光吸收黑炭;棕碳;青藏高原;

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