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Thermal stability and oxidation characteristics of α-pinene, β-pinene and α-pinene/β-pinene mixture

Turpentine is a renewable resource, has good combustion performance, and is considered to be a fuel or promising additive to diesel fuel. This is very important for the investigation of thermal stability and energy oxidation characteristics, because evaluation of energy or fuel quality assurance and...

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Autores principales: Liu, Pin, Liu, Xiongmin, Saburi, Tei, Kubota, Shiro, Huang, Pinxian, Wada, Yuji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9033991/
https://www.ncbi.nlm.nih.gov/pubmed/35479917
http://dx.doi.org/10.1039/d1ra02235k
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author Liu, Pin
Liu, Xiongmin
Saburi, Tei
Kubota, Shiro
Huang, Pinxian
Wada, Yuji
author_facet Liu, Pin
Liu, Xiongmin
Saburi, Tei
Kubota, Shiro
Huang, Pinxian
Wada, Yuji
author_sort Liu, Pin
collection PubMed
description Turpentine is a renewable resource, has good combustion performance, and is considered to be a fuel or promising additive to diesel fuel. This is very important for the investigation of thermal stability and energy oxidation characteristics, because evaluation of energy or fuel quality assurance and use safety are necessary. The main components of turpentine are α-pinene and β-pinene, which have unsaturated double bonds and high chemical activity. By investigating their thermal stability and oxidation reaction characteristics, we know the chemical thermal properties and thermal explosion hazard of turpentine. In this present study, the thermal stability and oxidation characteristics of α-pinene, β-pinene and α-pinene/β-pinene mixture were investigated using a high sensitivity accelerating rate calorimeter (ARC) and C80 calorimeter. The important parameters of oxidation reaction and thermal stability were obtained from the temperature, pressure and exothermic behavior in chemical reaction. The results show that α-pinene and β-pinene are thermally stable without chemical reaction under a nitrogen atmosphere even when the temperature reaches 473 K. The initial exothermic temperature of the two pinenes and their mixture is 333–338 K, and the heat release (−ΔH) of their oxidation is 2745–2973 J g(−1). The oxidation activation energy (E(a)) of α-pinene, β-pinene and α-pinene/β-pinene mixture is 116.25 kJ mol(−1), 121.85 kJ mol(−1), and 115.95 kJ mol(−1), respectively. There are three steps in the oxidation of pinenes: the first is the induction period of the oxidation reaction; the second is the main oxidation stage, and the pressure is reduced; the third is thermal decomposition to produce gas.
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spelling pubmed-90339912022-04-26 Thermal stability and oxidation characteristics of α-pinene, β-pinene and α-pinene/β-pinene mixture Liu, Pin Liu, Xiongmin Saburi, Tei Kubota, Shiro Huang, Pinxian Wada, Yuji RSC Adv Chemistry Turpentine is a renewable resource, has good combustion performance, and is considered to be a fuel or promising additive to diesel fuel. This is very important for the investigation of thermal stability and energy oxidation characteristics, because evaluation of energy or fuel quality assurance and use safety are necessary. The main components of turpentine are α-pinene and β-pinene, which have unsaturated double bonds and high chemical activity. By investigating their thermal stability and oxidation reaction characteristics, we know the chemical thermal properties and thermal explosion hazard of turpentine. In this present study, the thermal stability and oxidation characteristics of α-pinene, β-pinene and α-pinene/β-pinene mixture were investigated using a high sensitivity accelerating rate calorimeter (ARC) and C80 calorimeter. The important parameters of oxidation reaction and thermal stability were obtained from the temperature, pressure and exothermic behavior in chemical reaction. The results show that α-pinene and β-pinene are thermally stable without chemical reaction under a nitrogen atmosphere even when the temperature reaches 473 K. The initial exothermic temperature of the two pinenes and their mixture is 333–338 K, and the heat release (−ΔH) of their oxidation is 2745–2973 J g(−1). The oxidation activation energy (E(a)) of α-pinene, β-pinene and α-pinene/β-pinene mixture is 116.25 kJ mol(−1), 121.85 kJ mol(−1), and 115.95 kJ mol(−1), respectively. There are three steps in the oxidation of pinenes: the first is the induction period of the oxidation reaction; the second is the main oxidation stage, and the pressure is reduced; the third is thermal decomposition to produce gas. The Royal Society of Chemistry 2021-06-08 /pmc/articles/PMC9033991/ /pubmed/35479917 http://dx.doi.org/10.1039/d1ra02235k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Liu, Pin
Liu, Xiongmin
Saburi, Tei
Kubota, Shiro
Huang, Pinxian
Wada, Yuji
Thermal stability and oxidation characteristics of α-pinene, β-pinene and α-pinene/β-pinene mixture
title Thermal stability and oxidation characteristics of α-pinene, β-pinene and α-pinene/β-pinene mixture
title_full Thermal stability and oxidation characteristics of α-pinene, β-pinene and α-pinene/β-pinene mixture
title_fullStr Thermal stability and oxidation characteristics of α-pinene, β-pinene and α-pinene/β-pinene mixture
title_full_unstemmed Thermal stability and oxidation characteristics of α-pinene, β-pinene and α-pinene/β-pinene mixture
title_short Thermal stability and oxidation characteristics of α-pinene, β-pinene and α-pinene/β-pinene mixture
title_sort thermal stability and oxidation characteristics of α-pinene, β-pinene and α-pinene/β-pinene mixture
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9033991/
https://www.ncbi.nlm.nih.gov/pubmed/35479917
http://dx.doi.org/10.1039/d1ra02235k
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