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Synthetic methods to obtain conjugated linoleic acids (CLAs) by catalysis – A review

机译:催化合成共轭亚油酸(CLA)的合成方法-综述

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摘要

The addition of synthetic CLA is a possible way in order to compose foods enriched with conjugated linoleic acids (CLAs). The most environmental friendly methods for CLA synthesis are based on microbial biosynthesis. With homogeneous catalysis using organometallic catalysts (Ru and Rh complexes) high (approximately 80%) yields were obtained with high selectivity related to bioactive isomers. The heterogeneous catalysis has the advantage that at the end of the reaction there is no need for a supplementary separation operation or recycling of the catalyst. In heterogeneous process, the maximum yield may even be higher than 90% and the selectivity remains quite high as the reaction conditions are optimized. The substrates for obtaining CLAs are, in general, linoleic acid or alkyl linoleates and the catalysis is acidic. The yield and the selectivity depend on the strength and the type of acidic sites, as well as on the size distribution of the particles. Beside the existing catalytic methods, a photocatalytic process with UV and visible light irradiation with iodine promoter can be applied.
机译:为了合成富含共轭亚油酸(CLA)的食品,添加合成CLA是一种可能的方法。用于CLA合成的最环保的方法是基于微生物的生物合成。使用有机金属催化剂(Ru和Rh络合物)进行均相催化,可以获得高(约80%)的收率,并且具有与生物活性异构体有关的高选择性。非均相催化的优点在于,在反应结束时,不需要补充的分离操作或催化剂的再循环。在非均相工艺中,由于优化了反应条件,最大收率甚至可能高于90%,并且选择性仍然很高。通常,用于获得CLA的底物是亚油酸或亚油酸烷基酯,并且催化是酸性的。产率和选择性取决于酸性位点的强度和类型以及颗粒的尺寸分布。除现有的催化方法外,还可以采用紫外线和碘促进剂可见光照射的光催化工艺。

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