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首页> 外文期刊>Journal of geophysical research >Sizing of Ambient Particles From a Single-Particle Soot Photometer Measurement to Retrieve Mixing State of Black Carbon at a Regional Site of the North China Plain
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Sizing of Ambient Particles From a Single-Particle Soot Photometer Measurement to Retrieve Mixing State of Black Carbon at a Regional Site of the North China Plain

机译:Sizing of Ambient Particles From a Single-Particle Soot Photometer Measurement to Retrieve Mixing State of Black Carbon at a Regional Site of the North China Plain

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abstract_textpWe measured the mixing state of refractory black carbon (rBC) particles using a single-particle soot photometer (SP2) on 11-27 July 2013 at a polluted regional site (similar to 60 km to the south of Beijing) of the North China Plain. To improve retrieval of rBC mixing state, we validate and optimize the optical size (D-opt,D-p) of ambient particles derived from SP2 and Mie calculation. By matching the retrieved Dopt, p with the measured mobility diameter, we retrieve the densities (similar to 0.3-0.6 g/cm(3)) and refractive indices (from 1.21-0.21i to 1.42-0.42i) of rBC core for thinly coated BC particles at mobility size of 200-350 nm; the refractive index of non-BC (or coating) materials is estimated as 1.42-0i. It is found that the leading-edge-only-fit method of SP2 calculation can be used to retrieve Dopt, p at least up to similar to 600 nm for ambient BC-containing particles, and it can successfully provide Dopt, p of ambient non-BC particles only up to similar to 500 nm. During the measurement campaign, the aging rate from thinly coated (or bare) BC to thickly coated BC can reach up to similar to 21/hr around noontime, indicating the fast coating of BC. The average coating thickness (CT) of BC-containing particles (200-350 nm) is similar to 41-71 nm, with similar to 13-16 nm CT for thinly coated (or bare) BC particles and similar to 75-114 nm CT for thickly coated BC particles. The mixing state of rBC obtained in this study indicates fast aging process and strong light-absorbing capacity of BC particles under the polluted conditions in the North China Plain./p/abstract_text

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