Chemical Mass Balance Model with Fractionation for Apportioning PM2.5: A Test Case for Los Angeles Traffic Sources

Author:

Sattler Melanie L.1,Liljestrand Howard M.2

Affiliation:

1. a Department of Civil and Environmental Engineering , University of Texas at Arlington , Arlington , TX , USA

2. b Department of Civil, Architectural, and Environmental Engineering , University of Texas at Austin , Austin , TX , USA

Publisher

Informa UK Limited

Subject

Management, Monitoring, Policy and Law,Waste Management and Disposal

Reference12 articles.

1. Chung, J.; Wadden, R.; Scheff, P. Receptor Model-Based Evaluation of NOx Reductions Effectiveness in Ozone Abatement Strategies for Two Nonattainment Regions. In the Proceedings of A&WMA’s 90th Annual Conference & Exhibition. Toronto, Ontario, Canada, 1997; Paper RA94A.03.

2. Yuan, C-S.; Lee, C-G.; Liu, S-H. Characterization and Source Apportionment of Ambient Fine Particulate Matter in Southern Taiwan. In the Proceedings of A&WMA’s 94th Annual Conference & Exhibition, A&WMA: Orlando, Florida, 2001; Paper 308.

3. Stafford, M.A. Chemical Mass Balance Model with Fractionation, Ph.D. Dissertation, University of Texas at Austin, Austin, TX, 1989.

4. Stafford, M.A.; Liljestrand, H.M. The Use of Fractionated Coarse and Fine Fingerprints for the Source Apportionment of PM-10. In Transactions: Receptor Models in Air Resources Management, TR-14; Air & Waste Management Association: Pittsburgh, PA, 1988; pp 159-170.

5. Rao, K.S. Analytical Solutions of a Gradient Transfer Model for Plume Deposition and Sedimentation, NOAA Tech. Memo ERL-ARL-109, National Oceanic and Atmospheric Administration: Washington, DC, 1981.

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