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Bioactive Compounds in Waste By-Products from Olive Oil Production: Applications and Structural Characterization by Mass Spectrometry Techniques

机译:来自橄榄油生产的废弃物中的生物活性化合物:通过质谱技术的应用和结构特征

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摘要

In recent years, a remarkable increase in olive oil consumption has occurred worldwide, favoured by its organoleptic properties and the growing awareness of its health benefits. Currently, olive oil production represents an important economic income for Mediterranean countries, where roughly 98% of the world production is located. Both the cultivation of olive trees and the production of industrial and table olive oil generate huge amounts of solid wastes and dark liquid effluents, including olive leaves and pomace and olive oil mill wastewaters. Besides representing an economic problem for producers, these by-products also pose serious environmental concerns, thus their partial reuse, like that of all agronomical production residues, represents a goal to pursue. This aspect is particularly important since the cited by-products are rich in bioactive compounds, which, once extracted, may represent ingredients with remarkable added value for food, cosmetic and nutraceutical industries. Indeed, they contain considerable amounts of valuable organic acids, carbohydrates, proteins, fibers, and above all, phenolic compounds, that are variably distributed among the different wastes, depending on the employed production process of olive oils and table olives and agronomical practices. Yet, extraction and recovery of bioactive components from selected by-products constitute a critical issue for their rational valorization and detailed identification and quantification are mandatory. The most used analytical methods adopted to identify and quantify bioactive compounds in olive oil by-products are based on the coupling between gas- (GC) or liquid chromatography (LC) and mass spectrometry (MS), with MS being the most useful and successful detection tool for providing structural information. Without derivatization, LC-MS with electrospray (ESI) or atmospheric pressure chemical (APCI) ionization sources has become one of the most relevant and versatile instrumental platforms for identifying phenolic bioactive compounds. In this review, the major LC-MS accomplishments reported in the literature over the last two decades to investigate olive oil processing by-products, specifically olive leaves and pomace and olive oil mill wastewaters, are described, focusing on phenolics and related compounds.
机译:近年来,橄榄油消费量显着增加全球范围内已经发生,其感官特性和它的健康益处的认识不断提高的青睐。目前,橄榄油的生产代表了地中海国家,全世界生产的大约98%位于一个重要的经济收入。橄榄树无论是种植和生产工业和表橄榄油产生固体废物和黑暗的废液,包括橄榄叶和果渣油和橄榄油厂废水的巨额资金。除了表示对生产者是一个经济问题,这些副产品也带来了严重的环境问题,因此,它们的部分回用,像所有的农艺生产残留物,代表了追求的一个目标。这一方面是因为所引用的副产物中含有丰富的生物活性化合物,其中,萃取一次,可以表示与用于食品,化妆品和营养保健品工业显着的附加价值的成分是特别重要。实际上,它们含有大量的有价值的有机酸,碳水化合物,蛋白质,纤维和所有以上,酚类化合物,被可变地不同废物之间的分配,这取决于橄榄油和橄榄表和农艺实践所采用的生产工艺。然而,提取和副产品选定的生物活性成分的复苏构成了其合理的价格稳定和详细的识别和量化的一个关键问题是强制性的。最常用的分析方法通过识别和副产物根据之间气体(GC)或液相色谱(LC)和质谱(MS)耦合量化橄榄油的生物活性化合物,与MS是最有用的和成功的以提供结构信息检测工具。没有衍生化,LC-MS具有电(ESI)或大气压化学(APCI)离子源已成为最相关的一个和通用的用于识别酚生物活性化合物仪器平台。在这次审查中,主要的LC-MS成就文献报道,在过去二十年中的副产物,特别是橄榄叶和果渣油和橄榄油厂废水进行调查橄榄油加工,描述,重点酚和相关化合物。

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