Fumigants
145
Honaganahalli, P.S., and Seiber, J.N. (2000). Measured and predicted airshed concentrations of methyl bromide in an agricultural valley and applications to
exposure assessment. Atmos. Environ. 34, 3511–3523.
IRIS. (1987). Carbon disulfde (CASRN 75-15-0) | IRIS | US EPA. https://iris.epa.gov/
static/pdfs/0217_summary.pdf (Accessed 2/12/2021).
IRIS. (1992). Integrated risk information system. Bromomethane, CASRN 74-83-9.
https://iris.epa.gov/static/pdfs/0015_summary.pdf. (Accessed 2/12/2021).
Lee, S., McLaughlin, R., Harnly, M., Gunier, R., and Kreutzer, R. (2002). Community
exposures to airborne agricultural pesticides in California: Ranking of inhalation risks. Environ. Health Perspect. 110, 1175–1184.
Lim, L.O. (1992). Methyl bromide preliminary risk characterization. Memorandum to
Nelson, L., dated 11 February 1992. Sacramento, CA: Medical Toxicology, Branch,
California Department of Pesticide Regulation.
Littke, M.H., LePage, J., Sullivan, D.A., and Hebert, V.R. (2013). Comparison of feld
methyl isothiocyanate fux following Pacifc Northwest surface-applied and
ground-incorporated fumigation practices: Comparison of feld methyl isothiocyanate fux following different fumigation practices. Pest Manag. Sci. 69, 620–626.
Lu, Z., Hebert, V.R., and Miller, G.C. (2014). Gas-phase reaction of methyl isothiocyanate and methyl isocyanate with hydroxyl radicals under static relative rate
conditions. J. Agric. Food Chem. 62, 1792–1795.
Majewski, M.S., Glotfelty, D.E., and U, K.T.P (1990). A feld comparison of several
methods for measuring pesticide evaporation rates from soil. Environ. Sci.
Technol. 24, 1490–1497.
Majewski, M.S., McChesney, M.M., Woodrow, J.E., Prueger, J.H., and Seiber, J.N. (1995).
Aerodynamic measurements of methyl bromide volatilization from tarped and
nontarped felds. J. Environ. Qual. 24, 742–752.
NASA. (1997) Chemical Kinetics and Photochemical Data for Use in Stratospheric Modeling.
Evaluation No. 10: NASA panel for data evaluation. Pasadena, CA: California
Institute of Toxicology, Jet Propulsion Laboratory, National Aeronautics and
Space Administration.
Nelson, L. (1992). Methyl Bromide Preliminary Risk Characterization. Memorandum to
Jim Wells dated 11 February 1992. Sacramento, CA: Medical Toxicology, Branch,
California Department of Pesticide Regulation.
Phillips, T.W., Thoms, E.M., DeMark, J., and Walse, S. (2012). Stored Product Protection.
Poulet, G., Pirre, M., Maguin, F., Ramaroson, R. and LeBras, G. (1992). The role of
BrO+ HO2 reaction in the stratospheric chemistry of Bromine. Geophys. Res.
Lett. 19, 2305–2308..
Seiber, J.N., Woodrow, J.E., Honaganahalli, P.S., LeNoir, J.S., and Dowling, K.C. (1996).
Flux, dispersion characteristics, and sinks for airborne methyl bromide downwind of a treated agricultural feld. In Fumigants, (pp.  154–177). Washington,
D.C.: American Chemical Society.
Shorter, J.H., Kolb, C.E., Crill, P.M., Kerwin, R., Talbot, R., Hines, M., and Harriss, R.
(1995). Rapid degradation of atmospheric methyl bromide in soils. Nature 377,
717–719.
United States Environmental Protection Agency. (1992). Ethylene Dibromide
(Dibromoethane). https://www.epa.gov/sites/production/files/2016-09/
documents/ethylene-dibromide.pdf (Accessed 12/07/2020).
Varma, R., and Varma, D. (2005). The Bhopal Disaster of 1984. Bull. Sci. Technol. Soc.
25, 37–45.
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