Title
Combustion and Pyrolysis Kinetics of Chloropicrin
Date Issued
05 July 2018
Access level
open access
Resource Type
journal article
Author(s)
Sirjean B.
Verdier L.
Fournet R.
Glaude P.A.
Université de Lorraine
Publisher(s)
American Chemical Society
Abstract
Chloropicrin (CCl3NO2) is widely used in agriculture as a pesticide, weed-killer, fungicide or nematicide. It has also been used as a chemical agent during World War I. The precise understanding of its combustion chemistry for destruction processes or in the event of accidental fire of stored reserves is a major safety issue. A detailed chemical kinetic model for the combustion and pyrolysis of chloropicrin is proposed for the first time. A large number of thermo-kinetic parameters were calculated using quantum chemistry and reaction rate theory. The model was validated against experimental pyrolysis data available in the literature. It was shown that the degradation of chloropicrin is ruled by the breaking of the C-N bond followed by the oxidation of the trichloromethyl radical by NO2 through the formation of the adduct CCl3ONO, which can decompose to NO, chlorine atom, and phosgene. Phosgene is much more stable than chloropicrin and its decomposition starts at much higher temperatures. Combustion and pyrolysis simulations were also compared and demonstrated that the addition of oxygen has very little effect on the reactivity or product distribution due to the absence of hydrogen atoms in chloropicrin.
Start page
5735
End page
5741
Volume
122
Issue
26
Language
English
OCDE Knowledge area
Agronomía Ingeniería química
Scopus EID
2-s2.0-85048694935
PubMed ID
Source
Journal of Physical Chemistry A
ISSN of the container
10895639
Sponsor(s)
This work was supported by DGA Maitrise NRBC. This work was granted access to the HPC resources of IDRIS under Allocation 2017-A0010807249 made by GENCI.
Sources of information: Directorio de Producción Científica Scopus