Title of article :
Henry’s law constants and mass transfer coefficients for methyl bromide and 1,3-dichloropropene applied to Florida sandy field soil
Author/Authors :
John E. Thomas، نويسنده , , Li-Tse Ou، نويسنده , , Leon H. Allen Jr.، نويسنده , , Joseph C. Vu، نويسنده , , Donald W. Dickson، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Abstract :
Methyl bromide, a pre-emergent soil fumigant, is scheduled to be phased out in the US by 2005, with exceptions for critical use. Comparison of some of the physical constants related to distribution and retention for methyl bromide (MBr) to other fumigants yields a useful quantification of possible alternatives. In this study, the atmospheric and subsurface dissipation of methyl bromide as well as (Z)- and (E)-1,3-dichloropropene (1,3-D) isomers in Telone II were examined. The Henry’s law constants of the three chemicals at soil temperature and their mass transfer coefficients for movement through an agricultural mulch of UV-resistant, high-density polyethylene (PE) were evaluated using field data. At the soil temperature of 16.4 °C, calculated Henry’s law constant gave a fumigant ranking of MBr (0.21) much greater-than (Z)-1,3-D (0.041) > (E)-1,3-D (0.027). Since rapid subsurface distribution of a fumigant is highly dependent on the amount in the gas phase, the greater value for Henry’s law constant implies faster distribution throughout the soil. After distribution through the soil, retention of the fumigant becomes imperative. Calculation of the fumigant’s mass transfer coefficients through PE from field data gave a ranking of the three chemicals: MBr (1.08 cm/h) < (E)-1,3-D (3.25 cm/h) < (Z)-1,3-D (4.13 cm/h). With mass transfer coefficients of this magnitude, it was concluded that PE film was an inadequate barrier for retaining these fumigants in an agricultural setting.
Keywords :
Henry s law , Mass transfer coefficient , Polyethylene film , Emissions , 1 , Telone , 3-dichloropropene , Subsurface diffusion , Methyl bromide
Journal title :
Chemosphere
Journal title :
Chemosphere