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首页> 外文期刊>Journal of the American Oil Chemists' Society >Ozonolysis of Canola Oil: A Study of Product Yields and Ozonolysis Kinetics in Different Solvent Systems
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Ozonolysis of Canola Oil: A Study of Product Yields and Ozonolysis Kinetics in Different Solvent Systems

机译:低芥酸菜子油的臭氧分解:不同溶剂体系中产物收率和臭氧分解动力学的研究

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摘要

The use of ozonolysis has been proposed as a step in the production of vegetable-oil-based polyols as replacements for the equivalent petrochemicals. As part of an evaluation of the commercial viability of ozonolysis, the intermediates and products formed from the ozonolysis of canola oil using different protic and aprotic solvents and solvent mixtures were systematically studied by GC-FID and size-exclusion chromatography with refractive index detection (SEC-RI). It was found that the use of an aprotic solvent (ethyl acetate) leads to the formation of oligomeric ozonolysis products whereas alcohols and/or mixtures of ethyl acetate with alcohols for the ozonolysis of canola oil do not form high molecular weight compounds. In addition, when ethyl acetate is used as the solvent, the formation of carboxylic acids is observed in the early stages of ozonolysis whereas the use of alcohols significantly reduces acid formation. As expected, extending the ozonolysis time led to extensive carboxylic acid formation, especially using ethyl acetate as a solvent. It was found that the optimum time for the complete ozonolysis of canola oil was largely independent of the solvent used for ozonolysis. However, the yield of ozonolysis products differs considerably depending on the solvents employed. Overall, a clear correlation between the ozonolysis time, product yields and the reaction exothermicity was observed.
机译:已提出使用臭氧分解法作为生产基于植物油的多元醇的步骤,以替代等效的石油化学产品。作为对臭氧分解商业可行性评估的一部分,通过GC-FID和具有排阻指数检测功能(SEC)的尺寸排阻色谱法,系统研究了使用不同质子和非质子溶剂进行低芥酸菜籽油的臭氧分解形成的中间体和产物-RI)。已发现使用非质子溶剂(乙酸乙酯)导致低聚的臭氧分解产物的形成,而用于菜籽油的臭氧分解的醇和/或乙酸乙酯与醇的混合物则不形成高分子量化合物。另外,当使用乙酸乙酯作为溶剂时,在臭氧分解的早期阶段观察到羧酸的形成,而使用醇显着减少了酸的形成。如所预期的,延长臭氧分解时间导致大量的羧酸形成,尤其是使用乙酸乙酯作为溶剂。已经发现,菜籽油的完全臭氧分解的最佳时间在很大程度上与用于臭氧分解的溶剂无关。但是,臭氧分解产物的产率取决于所用溶剂的不同。总的来说,观察到臭氧分解时间,产物产率和反应放热之间的明显相关性。

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