Analysis of the mixing state of airborne particles using a tandem combination of laser-induced fluorescence and incandescence techniques

Author:

Taketani Fumikazu,Kanaya Yugo,Nakamura Takayuki,Takeda Naoki,Koizumi Kazuhiro,Hirayama Noritomo,Miyakawa Takuma,Pan Xiaole,Moteki Nobuhiro,Takegawa Nobuyuki

Funder

SENTAN program of the Japan Science and Technology Agency (JST)

Grant-in-Aid for Scientific Research Young Scientists (B)

Solar–Terrestrial Environment Laboratory, Nagoya University

Publisher

Elsevier BV

Subject

Pollution,Atmospheric Science,Fluid Flow and Transfer Processes,Mechanical Engineering,Environmental Engineering

Reference52 articles.

1. Evolution of biomass burning aerosol properties from an agricultural fire in southern Africa;Abel;Geophysical Research Letters,2003

2. Internally mixed soot, sulfates, and organic matter in aerosol particles from Mexico City;Adachi;Atmospheric Chemistry and Physics,2008

3. Bounding the role of black carbon aerosol in the climate system: A scientific assessment;Bond;Journal of Geophysical Research,2013

4. Differences in detected fluorescence among several bacterial species measured with a direct-reading particle sizer and fluorescence detector;Brosseau;Aerosol Science and Technology,2000

5. Radiative absorption enhancements due to the mixing state of atmospheric black carbon;Cappa;Science,2012

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