InnoRenew CoE, Livade 6, 6310 Izola, Slovenia.
Andrej Marušič Institute, University of Primorska, Muzejski trg 2, 6000 Koper, Slovenia.
Molecules. 2021 Nov 17;26(22):6946. doi: 10.3390/molecules26226946.
Olive oil production using three-phase decanter systems creates olive oil and two by-products: olive mill wastewater (OMWW) and pomace. These by-products contain the highest share of polyphenolic compounds that are known to be associated with beneficial effects on human health. Therefore, they are an attractive source of phenolic compounds for further industrial use in the cosmetic, pharmaceutical and food industries. The use of these phenolics is limited due to difficulties in recovery, high reactivity, complexity of the OMWW matrix and different physiochemical properties of phenolic compounds. This research, focused on OMWW, was performed in two phases. First, different polyphenol extraction methods were compared to obtain the method that yields the highest polyphenol concentration. Twenty-five phenolic compounds and their isomers were determined. Acidifying OMWW, followed by five minutes of ultrasonication, resulted in the highest measured polyphenol content of 27 mg/L. Second, the collection of polyphenolic compounds from OMWW via adsorption on unmodified iron (II, III) oxide particles was investigated. Although low yields were obtained for removed polyphenolic compounds in one removal cycle, the process has a high capability to be repeated.
橄榄渣废水(OMWW)和橄榄渣。这些副产品中含有最高比例的多酚化合物,已知这些多酚化合物对人类健康有益。因此,它们是酚类化合物的一个有吸引力的来源,可进一步用于化妆品、制药和食品工业。由于回收困难、高反应性、OMWW 基质的复杂性和不同的物理化学性质,这些酚类化合物的应用受到限制。这项针对 OMWW 的研究分为两个阶段进行。首先,比较了不同的多酚提取方法,以获得产生最高多酚浓度的方法。共测定了 25 种酚类化合物及其异构体。酸化 OMWW 后,超声处理 5 分钟,可得到最高的 27mg/L 多酚含量。其次,研究了通过吸附在未改性的铁(II、III)氧化物颗粒上来从 OMWW 中收集多酚类化合物。尽管在一个去除循环中去除的多酚化合物的产率较低,但该过程具有很高的可重复性。