Journal ArticleDOI
On the Atmospheric Transmission of Sun Radiation and on Dust in the Air
TLDR
In this paper, the atmospheric transmission of Sun Radiation and on Dust in the Air are discussed. But they do not consider the effect of dust in the air on the transmission of sun radiation.Abstract:
(1929). On the Atmospheric Transmission of Sun Radiation and on Dust in the Air. Geografiska Annaler: Vol. 11, No. 2, pp. 156-166.read more
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Dissertation
Airborne observations of the physical and optical properties of atmospheric aerosol
TL;DR: In this article, the physical and optical properties and vertical structure of aged Rondonian regional haze from the SAMBBA campaign in Rondonia, Brazil in September 2012 are investigated.
Journal ArticleDOI
Seasonal variation of aerosol size distributions in Darwin, Australia
Zahra Bouya,Gail P. Box +1 more
TL;DR: In this article, the authors investigated the annual cycle in aerosol size distributions in Darwin, Australia, a coastal site in the Tropical Warm Pool where the major aerosol sources are biomass burning and sea salt.
Journal ArticleDOI
Key role of atmospheric water content in the formation of regional haze in southern China
Liuwei Kong,Min Hu,Qinwen Tan,Miao Feng,Yu Qu,Junling An,Yuanhang Zhang,Xingang Liu,Nianliang Cheng,Yijun Deng,Ruixiao Zhai,Zheng Wang +11 more
TL;DR: In this paper, comprehensive observations were carried out at regional sites in the Pearl River Delta region of southern China from October 22 to November 6, 2014 to elucidate the formation mechanism of haze and the important role of atmospheric humidity in haze formation.
Journal ArticleDOI
New methodology applied to deriving total ozone and other atmospheric variables from global irradiance spectra
James B. Kerr,John M. Davis +1 more
TL;DR: In this article, a new sampling and analysis method for acquiring low-noise spectra using the Brewer spectrophotometer is applied to ground-based spectral measurements of global ultraviolet radiation.
Journal ArticleDOI
Inverting High Spectral Resolution Aerosol Optical Depth to Determine the Size Distribution of Atmospheric Aerosol
TL;DR: In this paper, a grating spectrometer with a resolution ≈ 0.5 nm was used to measure the optical depth of a bimodal aerosol columnar size distribution in the spectral interval 0.40 − 1.10 μm.
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