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油酸乙酯臭氧化的化学和热化学方面:油酸乙酯臭氧化物的分解焓。

Chemical and thermochemical aspects of the ozonolysis of ethyl oleate: decomposition enthalpy of ethyl oleate ozonide.

机构信息

Actinium Chemical Research srl, Via Casilina 1626A, 00133 Rome, Italy.

出版信息

Chem Phys Lipids. 2013 Oct-Nov;175-176:41-9. doi: 10.1016/j.chemphyslip.2013.07.005. Epub 2013 Aug 19.

Abstract

Neat ethyl oleate was ozonized in a bubble reactor and the progress of the ozonolysis was followed by infrared (FT-IR) spectroscopy and by the differential scanning calorimetry (DSC). The ozonolysis was conducted till a molar ratio O3/C=C≈1 when the exothermal reaction spontaneously went to completion. A specific thermochemical calculation on ethyl oleate ozonation has been made to determine the theoretical heat of the ozonization reaction using the group increment approach. A linear relationship was found both in the integrated absorptivity of the ozonide infrared band at 1110 cm(-1) and the ozonolysis time as well as the thermal decomposition enthalpy of the ozonides and peroxides formed as a result of the ozonation. The DSC decomposition temperature of ozonated ethyl oleate occurs with an exothermal peak at about 150-155 °C with a decomposition enthalpy of 243.0 kJ/mol at molar ratio O3/C=C≈1. It is shown that the decomposition enthalpy of ozonized ethyl oleate is a constant value (≈243 kJ/mol) at any stage of the O3/C=C once an adequate normalization of the decomposition enthalpy for the amount of the adsorbed ozone is taken into consideration. The decomposition enthalpy of ozonized ethyl oleate was also calculated using a simplified thermochemical model, obtaining a result in reasonable agreement with the experimental value.

摘要

在鼓泡式反应器中对纯净的油酸乙酯进行臭氧化,通过红外光谱(FT-IR)和差示扫描量热法(DSC)跟踪臭氧化反应的进程。臭氧化反应进行到 O3/C=C≈1 的摩尔比时,放热反应会自发地完成。采用基团增量法对油酸乙酯臭氧化进行了特定的热化学计算,以确定臭氧化反应的理论热量。在臭氧化时间以及臭氧化物和过氧化物的热分解焓与臭氧化物红外带在 1110cm(-1) 处的积分吸光度之间都发现了线性关系,这些臭氧化物和过氧化物是臭氧化的结果。臭氧化油酸乙酯的 DSC 分解温度在约 150-155°C 时出现放热峰,在 O3/C=C≈1 的摩尔比下,分解焓为 243.0 kJ/mol。结果表明,一旦考虑到吸附臭氧量的分解焓的适当归一化,臭氧化油酸乙酯的分解焓在 O3/C=C 的任何阶段都是一个恒定值(≈243 kJ/mol)。还使用简化的热化学模型计算了臭氧化油酸乙酯的分解焓,得到的结果与实验值吻合良好。

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