4.8 Article

Effective Density and Mixing State of Aerosol Particles in a Near-Traffic Urban Environment

期刊

ENVIRONMENTAL SCIENCE & TECHNOLOGY
卷 48, 期 11, 页码 6300-6308

出版社

AMER CHEMICAL SOC
DOI: 10.1021/es5000353

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资金

  1. Swedish Governmental Agency for Innovation Systems (VINNOVA) [2009-01117, 2010-01004]
  2. Swedish Research Council for Environmental, Agricultural Sciences and Spatial Planning (FORMAS) [216-2009-1294, 2009-615, 2010-167]
  3. EU FP7 ACTRIS Project (Aerosols, Clouds, and Trace gases Research Infra Structure Network) [EU INFRA-2010-1.1.16-262254]
  4. Swedish Strategic Research Program MERGE (Modeling the Regional and Global Earth System)
  5. Lund Centre for Studies of Carbon Cycle and Climate Interaction - LUCCI
  6. Vinnova [2010-01004, 2009-01117] Funding Source: Vinnova

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continuously emitted, followed by atmospheric aging. Also, particles emitted elsewhere, transported by winds, contribute to the urban aerosol. We studied the effective density (mass-mobility relationship) and mixing state with respect to the density of particles in central Copenhagen, in wintertime. The results are related to particle origin, morphology, and aging. Using a differential mobility analyzer-aerosol particle mass analyzer (DMA-APM), we determined that particles in the diameter range of 50-400 nm were of two groups: porous soot aggregates and more dense particles. Both groups were present at each size in varying proportions. Two types of temporal variability in the relative number fraction of the two groups were found: soot correlated with intense traffic in a diel pattern and dense particles increased during episodes with long-range transport from polluted continental areas. The effective density of each group was relatively stable over time, especially of the soot aggregates, which had effective densities similar to those observed in laboratory studies of fresh diesel exhaust emissions. When heated to 300 degrees C, the soot aggregate volatile mass fraction was similar to 10%. For the dense particles, the volatile mass fraction varied from similar to 80% to nearly 100%. In urban environments, airborne particles are

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