Irregularly emitting air pollution sources: acute health risk assessment using AERMOD and the Monte Carlo approach to emission rate

Author:

Balter B.M.,Faminskaya M.V.

Funder

Ministry of Education and Science of the Russian Federation

Publisher

Springer Science and Business Media LLC

Subject

Health, Toxicology and Mutagenesis,Management, Monitoring, Policy and Law,Atmospheric Science,Pollution

Reference20 articles.

1. Avaliani SL, Balter BM, Balter DB, Revich BA, Stal’naya MV, Faminskaya MV (2015) Analysis of health risk from air pollution by 15 petroleum refineries. Part I. Emissions and risks. Part II. Source types and spatial factors. Environmental Protection in Oil and Gas Complex (“Zashchita okruzhajushchej sredy v neftegazovom komplekse”, in Russian) 8: 17–22; 38–46.

2. Avaliani SL, Balter BM, Balter DB, Revich BA, Stal’naya MV, Faminskaya MV (2016) Air pollution source identification from odor complaint data. Air Quality, Atmosphere & Health 9:179–192

3. Balakrishnan N, Cohen AC (1991) Order statistics and inference. Academic Press, New York

4. Ballinger MY, Duchsherer CJ, Woodruff RK, Larson TV (2014) Comparison of stack measurement data from R&D facilities to regulatory criteria: a case study from PNNL. J Air Waste Manage Assoc 64(2):235–246

5. Balter B, Stal’naya M, Egorov V (2001) Comparing two alternative pollutant dispersion models and actual data within an environmental health information processing system (EHIPS). In: Modelling of Environmental Chemical Exposure and Risk, NATO ASI Series 2:151–164

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