Determination of solid-phase reaction ...
Type de document :
Article dans une revue scientifique: Article original
URL permanente :
Titre :
Determination of solid-phase reaction mechanism and chlorine migration behavior of co-pyrolyzing PVC CaCO3 based polymer using temperature-dependent FTIR and XRD analysis
Auteur(s) :
Zou, Yanyan [Auteur]
Wuhan University [China]
Li, Yaoqiang [Auteur]
Bourbigot, Serge [Auteur]
Unité Matériaux et Transformations (UMET) - UMR 8207
Zhang, Jiaqing [Auteur]
Guo, Yi [Auteur]
Li, Kaiyuan [Auteur]
Wuhan University [China]
He, Xuanze [Auteur]
Baolati, Jiayidaer [Auteur]
Wuhan University [China]
Li, Yaoqiang [Auteur]
Bourbigot, Serge [Auteur]
Unité Matériaux et Transformations (UMET) - UMR 8207
Zhang, Jiaqing [Auteur]
Guo, Yi [Auteur]
Li, Kaiyuan [Auteur]
Wuhan University [China]
He, Xuanze [Auteur]
Baolati, Jiayidaer [Auteur]
Titre de la revue :
Polymer Degradation and Stability
Nom court de la revue :
Polymer Degradation and Stability
Numéro :
193
Pagination :
109741
Éditeur :
Elsevier BV
Date de publication :
2021-11
ISSN :
0141-3910
Mot(s)-clé(s) en anglais :
PVC-CaCO3 based polymer
Outer sheath
Co-pyrolysis
Solid phase reaction
Chlorine
Residue
Outer sheath
Co-pyrolysis
Solid phase reaction
Chlorine
Residue
Discipline(s) HAL :
Chimie/Matériaux
Chimie/Polymères
Chimie/Polymères
Résumé en anglais : [en]
This paper investigates the pyrolysis of outer sheath polymer of a PVC[sbnd]CaCO3 based cable. TG-DSC-MS, temperature-dependent FTIR, XRD and XPS experiments were conducted to study the pyrolysis characteristics and chlorine ...
Lire la suite >This paper investigates the pyrolysis of outer sheath polymer of a PVC[sbnd]CaCO3 based cable. TG-DSC-MS, temperature-dependent FTIR, XRD and XPS experiments were conducted to study the pyrolysis characteristics and chlorine migration law for solid products. The results show that the pyrolysis can be divided into three stages induced by co-pyrolysis of PVC and CaCO3. In the first stage, the PVC dehydrohalogenation takes place producing the majority of HCl. CaCO3 does not participate in the solid-phase reaction. In the second stage, the cyclization of olefin chains occurs with a low HCl production. The CaCO3 reacts under high temperature, absorbing HCl in crystal lattice producing CaCl2 and CO2. In the third stage, the CaCO3 continues consuming HCl, meanwhile it starts pyrolyzing above 800 °C, generating CaO and CO2. The final residue mainly consists of CaCl2 and CaO and the organic Cl is ignorable. As the Cl-capturing reactions occur under high temperature with a low HCl production, the efficiency of CaCO3 reducing HCl is low, which explains the findings in previous study. This paper reveals the solid-phase reaction scheme and the law of Cl migration of the PVC[sbnd]CaCO3 based polymer pyrolysis, providing fundamentals for modeling and contributing to the understanding of cable pyrolysis for incineration industry.Lire moins >
Lire la suite >This paper investigates the pyrolysis of outer sheath polymer of a PVC[sbnd]CaCO3 based cable. TG-DSC-MS, temperature-dependent FTIR, XRD and XPS experiments were conducted to study the pyrolysis characteristics and chlorine migration law for solid products. The results show that the pyrolysis can be divided into three stages induced by co-pyrolysis of PVC and CaCO3. In the first stage, the PVC dehydrohalogenation takes place producing the majority of HCl. CaCO3 does not participate in the solid-phase reaction. In the second stage, the cyclization of olefin chains occurs with a low HCl production. The CaCO3 reacts under high temperature, absorbing HCl in crystal lattice producing CaCl2 and CO2. In the third stage, the CaCO3 continues consuming HCl, meanwhile it starts pyrolyzing above 800 °C, generating CaO and CO2. The final residue mainly consists of CaCl2 and CaO and the organic Cl is ignorable. As the Cl-capturing reactions occur under high temperature with a low HCl production, the efficiency of CaCO3 reducing HCl is low, which explains the findings in previous study. This paper reveals the solid-phase reaction scheme and the law of Cl migration of the PVC[sbnd]CaCO3 based polymer pyrolysis, providing fundamentals for modeling and contributing to the understanding of cable pyrolysis for incineration industry.Lire moins >
Langue :
Anglais
Comité de lecture :
Oui
Audience :
Internationale
Vulgarisation :
Non
Établissement(s) :
Université de Lille
CNRS
INRA
ENSCL
CNRS
INRA
ENSCL
Collections :
Équipe(s) de recherche :
Ingénierie des Systèmes Polymères
Date de dépôt :
2022-02-28T09:22:13Z
2022-03-02T10:16:46Z
2022-03-02T10:16:46Z
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- PDS 2021 - Determination of solid-phase reaction mechanism and chlorine migration behavior of co-pyrolyzing PVC[sbnd]CaCO3 based polymer using temperature-dependent FTIR and XRD analysis.pdf
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