Related Experiment Video
Updated: Feb 17, 2026

Preparation and Use of Carbonyl-decorated Carbenes in the Activation of White Phosphorus
Published on: October 3, 2014
Thermal Decomposition of Phosgene and Diphosgene
Juan-Carlos Lizardo-Huerta1, Baptiste Sirjean1, Laurent Verdier2
1Laboratoire Réactions et Génie des Procédés, CNRS, Université de Lorraine , 1 rue Grandville BP 20451 54001 Nancy Cedex, France.
Abstract:
Phosgene (COCl2) is a toxic compound used or formed in a wide range of applications. The understanding of its thermal decomposition for destruction processes or in the event of accidental fire of stored reserves is a major safety issue. In this study, a detailed chemical kinetic model for the thermal decomposition and combustion of phosgene and diphosgene 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 from the literature. It is predicted that the degradation of diphosgene is mainly ruled by a pericyclic reaction producing two molecules of phosgene and, to a lesser extent, by a roaming radical reaction yielding CO2 and CCl4. Phosgene is much more stable than diphosgene under high-temperature conditions, and its decomposition starts at higher temperatures. Decomposition products are CO and Cl2. An equimolar mixture of the latter molecules can be considered as a surrogate of phosgene from the kinetic point of view, but the important endothermic effect of the decomposition reaction can lead to different behaviors, for instance, in the case of autoignition under high pressure and high temperature.
Related Concept Videos
Hydrolysis of Chlorobenzene to Phenol: Dow Process
Aldehydes and Ketones to Alkenes: Wittig Reaction Mechanism
The reaction begins with the nucleophilic addition between a phosphorus ylide and the carbonyl compound. Due to its carbanionic character, phosphorus ylide acts as a strong nucleophile and attacks the electrophilic carbonyl group. This generates a charge-separated dipolar intermediate called betaine. The negatively charged oxygen atom and...
Autoxidation of Ethers to Peroxides and Hydroperoxides
Carboxylic Acids to Methylesters: Alkylation using Diazomethane
Phase Transitions: Sublimation and Deposition
Radical Formation: Homolysis

