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Intensified and safe ozonolysis of fatty acid methyl esters in liquid CO2 in a continuous reactor

机译:在连续反应器中强化和安全地臭氧氧化液态二氧化碳中的脂肪酸甲酯

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摘要

We demonstrate a continuous reactor for performing the ozonolysis of fatty acid methyl esters (FAMEs) using liquid CO2 as solvent. The fast reaction kinetics allows the use of small-volume reactors to completely convert the FAMEs, forming secondary ozonides as the primary products. The short residence times also help maximize the yields of the secondary ozonides by minimizing over-oxidation and the formation of oligomeric products. The liquid CO2 medium promotes safe reactor operation by providing an essential fraction of overall reactor cooling and by diluting the vapor phase organics. We also demonstrate a continuous stirred reactor for the safe thermal decomposition of the secondary ozonides to their corresponding acids and aldehydes. Using a lumped kinetic model for the thermal decomposition of the ozonolysis products, we estimate activation energy values of 108.6 +/- 0.6 kJ mol(-1) for the decomposition of secondary ozonides and 122 +/- 3 kJ mol(-1) for the decomposition of the undesired oligomeric species. (c) 2017 American Institute of Chemical Engineers AIChE J, 63: 2819-2826, 2017
机译:我们展示了使用液体二氧化碳作为溶剂进行脂肪酸甲酯(FAME)臭氧分解的连续反应器。快速的反应动力学使得可以使用小体积反应器来完全转化FAME,从而形成次要的臭氧化物作为主要产物。短的停留时间还通过最小化过氧化和低聚产物的形成来帮助最大化次级臭氧化物的产率。液态CO2介质通过提供反应器整体冷却的主要部分并稀释气相有机物来促进反应器安全运行。我们还演示了连续搅拌的反应器,可将次生臭氧化物安全热分解为相应的酸和醛。使用集总动力学模型进行臭氧分解产物的热分解,我们估计活化能值为108.6 +/- 0.6 kJ mol(-1),用于分解次要氧化物和122 +/- 3 kJ mol(-1)。不需要的寡聚物种的分解。 (c)2017美国化学工程师学会AIChE J,63:2819-2826,2017

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