Fugacity model incorporating computational fluid dynamics for analyzing the behavior of an insecticide sprayed indoors

Author:

Tanaka Sayuri1,Matoba Yoshihide2,Kondo Hiroaki3,Ihara Tomohiko1

Affiliation:

1. Graduate School of Frontier Sciences, The University of Tokyo

2. Environmental Health Science Laboratory, Sumitomo Chemical Co., Ltd.

3. Environmental Management Research Institute, National Institute of Advanced Industrial Science and Technology AIST-west

Publisher

Pesticide Science Society of Japan

Subject

Health, Toxicology and Mutagenesis,Insect Science

Reference49 articles.

1. 1) T. E. McKone, B. M. Huey, E. Downing and L. M. Duffy (eds.): “Strategies to Protect the Health of Deployed U.S. Forces: Detecting, Characterizing, and Documenting Exposures,” National Academies Press, Washington, D.C., 2000.

2. 2) US Environmental Protection Agency: “Risk Characterization Handbook,” EPA 100/B-00/002, US Environmental Protection Agency, Office of Science and Policy, Office of Research and Development, Washington, D.C., 2000.

3. 3) European Chemicals Agency: “Guidance on the Biocidal Products Regulation Volume III Human Health-Assessment & Evaluation (Parts B+C),” ECHA-17-G-27-EN, European Chemicals Agency, Helsinki, 2017.

4. 4) M. Fryer, C. D. Collins, H. Ferrier, R. N. Colvile and M. J. Nieuwenhuijsen: Human exposure modelling for chemical risk assessment: A review of current approaches and research and policy implications. Environ. Sci. Policy 9, 261–274 (2006).

5. 5) J. L. Schnoor: “Environmental Modeling: Fate and Transport of Pollutants in Water, Air, and Soil,” John Wiley and Sons, New York, 1996.

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