Effect of the catalyst MCM-41 on the kinetic of the thermal decomposition of poly(ethylene terephthalate)

The aim of this work is to determine the activation energy for the thermal decomposition of poly(ethylene terephthalate)—PET, in the presence of a MCM-41 mesoporous catalyst. This material was synthesized by the hydrothermal method, using cetyltrimethylammonium as template. The PET sample has been s...

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Published in:Journal of thermal analysis and calorimetry Vol. 99; no. 2; pp. 465 - 469
Main Authors: Araújo, Sulene A., Araujo, Antonio S., Fernandes, Nedja S., Fernandes, Valter J., Ionashiro, Massao
Format: Journal Article
Language:English
Published: Dordrecht Springer Netherlands 01-02-2010
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Abstract The aim of this work is to determine the activation energy for the thermal decomposition of poly(ethylene terephthalate)—PET, in the presence of a MCM-41 mesoporous catalyst. This material was synthesized by the hydrothermal method, using cetyltrimethylammonium as template. The PET sample has been submitted to thermal degradation alone and in presence of MCM-41 catalyst at a concentration of 25% in mass (MCM-41/PET). The degradation process was evaluated by thermogravimetry, at temperature range from 350 to 500 °C, under nitrogen atmosphere, with heating rates of 5, 10 and 25 °C min −1 . From TG, the activation energy, determined using the Flynn–Wall kinetic method, decreased from 231 kJ mol −1 , for the pure polymer (PET), to 195 kJ mol −1 , in the presence of the material (MCM-41/PET), showing the catalyst efficiency for the polymer decomposition process.
AbstractList The aim of this work is to determine the activation energy for the thermal decomposition of poly(ethylene terephthalate)—PET, in the presence of a MCM-41 mesoporous catalyst. This material was synthesized by the hydrothermal method, using cetyltrimethylammonium as template. The PET sample has been submitted to thermal degradation alone and in presence of MCM-41 catalyst at a concentration of 25% in mass (MCM-41/PET). The degradation process was evaluated by thermogravimetry, at temperature range from 350 to 500 °C, under nitrogen atmosphere, with heating rates of 5, 10 and 25 °C min −1 . From TG, the activation energy, determined using the Flynn–Wall kinetic method, decreased from 231 kJ mol −1 , for the pure polymer (PET), to 195 kJ mol −1 , in the presence of the material (MCM-41/PET), showing the catalyst efficiency for the polymer decomposition process.
The aim of this work is to determine the activation energy for the thermal decomposition of poly(ethylene terephthalate)--PET, in the presence of a MCM-41 mesoporous catalyst. This material was synthesized by the hydrothermal method, using cetyltrimethylammonium as template. The PET sample has been submitted to thermal degradation alone and in presence of MCM-41 catalyst at a concentration of 25% in mass (MCM-41/PET). The degradation process was evaluated by thermogravimetry, at temperature range from 350 to 500 ?C, under nitrogen atmosphere, with heating rates of 5, 10 and 25 ?C min-1. From TG, the activation energy, determined using the Flynn--Wall kinetic method, decreased from 231 kJ mol-1, for the pure polymer (PET), to 195 kJ mol-1, in the presence of the material (MCM-41/PET), showing the catalyst efficiency for the polymer decomposition process.
The aim of this work is to determine the activation energy for the thermal decomposition of poly (ethylene terephthalate)--PET, in the presence of a MCM-41 mesoporous catalyst. This material was synthesized by the hydrothermal method, using cetyltrimethylammonium as template. The PET sample has been submitted to thermal degradation alone and in presence of MCM-41 catalyst at a concentration of 25% in mass (MCM-41/PET). The degradation process was evaluated by thermogravimetry, at temperature range from 350 to 500[degrees]C, under nitrogen atmosphere, with heating rates of 5, 10 and 25[degrees]C [min.sup.-1]. From TG, the activation energy, determined using the Flynn-Wall kinetic method, decreased from 231 kJ [mol.sup.-1], for the pure polymer (PET), to 195 kJ [mol.sup.-1], in the presence of the material (MCM-41/PET), showing the catalyst efficiency for the polymer decomposition process.
The aim of this work is to determine the activation energy for the thermal decomposition of poly (ethylene terephthalate)--PET, in the presence of a MCM-41 mesoporous catalyst. This material was synthesized by the hydrothermal method, using cetyltrimethylammonium as template. The PET sample has been submitted to thermal degradation alone and in presence of MCM-41 catalyst at a concentration of 25% in mass (MCM-41/PET). The degradation process was evaluated by thermogravimetry, at temperature range from 350 to 500[degrees]C, under nitrogen atmosphere, with heating rates of 5, 10 and 25[degrees]C [min.sup.-1]. From TG, the activation energy, determined using the Flynn-Wall kinetic method, decreased from 231 kJ [mol.sup.-1], for the pure polymer (PET), to 195 kJ [mol.sup.-1], in the presence of the material (MCM-41/PET), showing the catalyst efficiency for the polymer decomposition process. Keywords Poly(ethylene terephthalate) * MCM-41 * Flynn-Wall kinetic model * Thermogravimetry
Audience Academic
Author Fernandes, Nedja S.
Fernandes, Valter J.
Araujo, Antonio S.
Ionashiro, Massao
Araújo, Sulene A.
Author_xml – sequence: 1
  givenname: Sulene A.
  surname: Araújo
  fullname: Araújo, Sulene A.
  email: sulene@hotmail.com
  organization: Department of Chemistry, State University of Southwest of Bahia (UESB)
– sequence: 2
  givenname: Antonio S.
  surname: Araujo
  fullname: Araujo, Antonio S.
  email: asa-ufrn@usa.net
  organization: Department of Chemistry, Federal University of Rio Grande do Norte
– sequence: 3
  givenname: Nedja S.
  surname: Fernandes
  fullname: Fernandes, Nedja S.
  organization: Department of Chemistry, Federal University of Rio Grande do Norte
– sequence: 4
  givenname: Valter J.
  surname: Fernandes
  fullname: Fernandes, Valter J.
  organization: Department of Chemistry, Federal University of Rio Grande do Norte
– sequence: 5
  givenname: Massao
  surname: Ionashiro
  fullname: Ionashiro, Massao
  organization: Institute of Chemistry, UNESP
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2015 INIST-CNRS
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Issue 2
Keywords MCM-41
Flynn–Wall kinetic model
Thermogravimetry
Poly(ethylene terephthalate)
Ethylene terephthalate polymer
Scanning electron microscopy
Pyrolysis
X ray diffraction
Porous material
Mesoporosity
Molecular sieve
Surface structure
Heterogeneous catalysis
Kinetic model
Flynn―Wall kinetic model
Morphology
Surface properties
Thermal analysis
Kinetics
Surface area
Catalyst
Thermal degradation
Language English
License CC BY 4.0
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PublicationSubtitle An International Forum for Thermal Studies
PublicationTitle Journal of thermal analysis and calorimetry
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PublicationYear 2010
Publisher Springer Netherlands
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Snippet The aim of this work is to determine the activation energy for the thermal decomposition of poly(ethylene terephthalate)—PET, in the presence of a MCM-41...
The aim of this work is to determine the activation energy for the thermal decomposition of poly (ethylene terephthalate)--PET, in the presence of a MCM-41...
The aim of this work is to determine the activation energy for the thermal decomposition of poly(ethylene terephthalate)--PET, in the presence of a MCM-41...
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SubjectTerms Activation energy
Analysis
Analytical Chemistry
Applied sciences
Calorimetry
Catalysts
Chemical reactions and properties
Chemistry
Chemistry and Materials Science
Degradation
Ethylene
Exact sciences and technology
Inorganic Chemistry
Measurement Science and Instrumentation
Organic polymers
Physical Chemistry
Physicochemistry of polymers
Polyethylene terephthalates
Polymer Sciences
Polymers
Reaction kinetics
Thermal decomposition
Thermal degradation
Thermogravimetry
Toy industry
Title Effect of the catalyst MCM-41 on the kinetic of the thermal decomposition of poly(ethylene terephthalate)
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