The kinetic of mass loss of grades A and B of melted TNT by isothermal and non-isothermal gravimetric methods
The kinetic and activation energy of mass loss of two grades of melted TNT explosive, grade A and grade B, with freezing points of 80.57 and 78.15 °C, respectively, were studied by isothermal and non-isothermal gravimetric methods. In isothermal method, the mass loss of samples in containers of glas...
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2018-04-01
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doaj-8356fde9d6be41cb98632e595c8f77182021-05-02T12:36:16ZengKeAi Communications Co., Ltd.Defence Technology2214-91472018-04-01142126131The kinetic of mass loss of grades A and B of melted TNT by isothermal and non-isothermal gravimetric methodsHamid Reza Pouretedal0Sajjad Damiri1Parvaneh Nosrati2Ehsan Forati Ghaemi3Corresponding author.; Faculty of Applied Chemistry, Malek-ashtar University of Technology, Shahin-Shahr, IranFaculty of Applied Chemistry, Malek-ashtar University of Technology, Shahin-Shahr, IranFaculty of Applied Chemistry, Malek-ashtar University of Technology, Shahin-Shahr, IranFaculty of Applied Chemistry, Malek-ashtar University of Technology, Shahin-Shahr, IranThe kinetic and activation energy of mass loss of two grades of melted TNT explosive, grade A and grade B, with freezing points of 80.57 and 78.15 °C, respectively, were studied by isothermal and non-isothermal gravimetric methods. In isothermal method, the mass loss of samples in containers of glass and aluminum was followed in temperatures of 80, 90 and 100 °C. The kinetic of the mass loss of the samples in the aluminum container was higher than the kinetic of it in the glass container that can be related to the effects of heat transfer and catalytic of aluminum metal. Also, the presence of impurities in grade B was due to increasing of kinetic of mass loss of it versus grade A. The non-isothermal curves were obtained in range of 30–330 °C at heating rates of 10, 15 and 20 °C⋅min−1. The TG/DTG data were used for determination of activation energy (Ea) of mass loss of TNT samples upon degradation by using Ozawa, Kissinger, Ozawa-Flynn-Wall (OFW) and Kissinger-Akahira-Sunose (KAS) methods as model free methods. The activation energies of grades of A and B of TNT was obtained 99–120 and 66–70 kJ mol−1, respectively. The lower values of activation energy of the degradation reaction of grade B confirm the effect of impurities in the kinetics of mass loss of this grade. Keywords: TNT, Isothermal, Non-isothermal, Kinetic, Mass losshttp://www.sciencedirect.com/science/article/pii/S2214914717302106 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hamid Reza Pouretedal Sajjad Damiri Parvaneh Nosrati Ehsan Forati Ghaemi |
spellingShingle |
Hamid Reza Pouretedal Sajjad Damiri Parvaneh Nosrati Ehsan Forati Ghaemi The kinetic of mass loss of grades A and B of melted TNT by isothermal and non-isothermal gravimetric methods Defence Technology |
author_facet |
Hamid Reza Pouretedal Sajjad Damiri Parvaneh Nosrati Ehsan Forati Ghaemi |
author_sort |
Hamid Reza Pouretedal |
title |
The kinetic of mass loss of grades A and B of melted TNT by isothermal and non-isothermal gravimetric methods |
title_short |
The kinetic of mass loss of grades A and B of melted TNT by isothermal and non-isothermal gravimetric methods |
title_full |
The kinetic of mass loss of grades A and B of melted TNT by isothermal and non-isothermal gravimetric methods |
title_fullStr |
The kinetic of mass loss of grades A and B of melted TNT by isothermal and non-isothermal gravimetric methods |
title_full_unstemmed |
The kinetic of mass loss of grades A and B of melted TNT by isothermal and non-isothermal gravimetric methods |
title_sort |
kinetic of mass loss of grades a and b of melted tnt by isothermal and non-isothermal gravimetric methods |
publisher |
KeAi Communications Co., Ltd. |
series |
Defence Technology |
issn |
2214-9147 |
publishDate |
2018-04-01 |
description |
The kinetic and activation energy of mass loss of two grades of melted TNT explosive, grade A and grade B, with freezing points of 80.57 and 78.15 °C, respectively, were studied by isothermal and non-isothermal gravimetric methods. In isothermal method, the mass loss of samples in containers of glass and aluminum was followed in temperatures of 80, 90 and 100 °C. The kinetic of the mass loss of the samples in the aluminum container was higher than the kinetic of it in the glass container that can be related to the effects of heat transfer and catalytic of aluminum metal. Also, the presence of impurities in grade B was due to increasing of kinetic of mass loss of it versus grade A. The non-isothermal curves were obtained in range of 30–330 °C at heating rates of 10, 15 and 20 °C⋅min−1. The TG/DTG data were used for determination of activation energy (Ea) of mass loss of TNT samples upon degradation by using Ozawa, Kissinger, Ozawa-Flynn-Wall (OFW) and Kissinger-Akahira-Sunose (KAS) methods as model free methods. The activation energies of grades of A and B of TNT was obtained 99–120 and 66–70 kJ mol−1, respectively. The lower values of activation energy of the degradation reaction of grade B confirm the effect of impurities in the kinetics of mass loss of this grade. Keywords: TNT, Isothermal, Non-isothermal, Kinetic, Mass loss |
url |
http://www.sciencedirect.com/science/article/pii/S2214914717302106 |
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