Huiles et corps gras des Pays du Sud et lipochimie

J. Lecomte, Michel Pina, Pierre Villeneuve
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引用次数: 2

Abstract

During the last decades the oleochemistry has gradually flooded our everyday life through a mass of products and applications. This is mainly due to the wide structural diversity and reactivity of fatty acids and the growing demand for bio-sourced goods. Today, almost one quarter of the global vegetable oil production is dedicated to nonfood applications, the contribution of animal fats being much more modest. Excepted biodiesels, the chemical applications of tropical edible oils depend on their fatty acids composition: lauric oils (coconut and palm kernel) and palm stearin will be mostly converted into surface actives ingredients while unsaturated oils rather will be subjected to double bond functionalization or cracking. Alongside of major vegetable oils only a few non-edible tropical oils are exclusively intended to oleochemistry such as Castor and Jatropha. Some other non-food oilseed crops (Cuphea, Lesquerella, Vernonia, black mustard. . .) are promising but further researches are still needed for their development in Southern Countries. In the future, the production increase of major vegetable oils and the development of new ones will face many challenges relating to environmental issues, competition between food and non-food uses and between non-food applications themselves.
来自南方国家的油和脂肪以及脂肪化学
在过去的几十年里,油脂化学通过大量的产品和应用逐渐淹没了我们的日常生活。这主要是由于脂肪酸广泛的结构多样性和反应性,以及对生物源产品的需求不断增长。今天,全球近四分之一的植物油生产用于非食品用途,动物脂肪的贡献要小得多。除生物柴油外,热带食用油的化学应用取决于其脂肪酸组成:月桂油(椰子和棕榈仁)和棕榈硬脂将主要转化为表面活性成分,而不饱和油则会受到双键功能化或裂解。除了主要的植物油外,只有少数不可食用的热带油专门用于油脂化学,如蓖麻和麻风树。其他一些非食用油籽作物(Cuphea、Lesquerella、Vernonia、black mustard等)也很有前景,但在南方国家的发展还需要进一步的研究。未来,主要植物油的产量增加和新植物油的开发将面临环境问题、食品和非食品用途之间的竞争以及非食品应用本身之间的竞争等诸多挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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