Centre d'Analyses et de Recherche, Unité de Recherche Technologies et Valorisations Agro-alimentaire, Faculté des Sciences, Université Saint-Joseph de Beyrouth, B.P. 17-5208 Riad El Solh, Beirut 1104 2020, Lebanon; Sorbonne universités, Université de technologie de Compiègne, laboratoire Transformations Intégrées de la Matière renouvelable (UTC/ESCOM, EA 4297 TIMR), Centre de recherche Royallieu, CS 60 319, 60 203 Compiègne cedex, France.
Sorbonne universités, Université de technologie de Compiègne, laboratoire Transformations Intégrées de la Matière renouvelable (UTC/ESCOM, EA 4297 TIMR), Centre de recherche Royallieu, CS 60 319, 60 203 Compiègne cedex, France.
Food Res Int. 2018 May;107:755-762. doi: 10.1016/j.foodres.2018.01.070. Epub 2018 Feb 1.
Orange peels are a biomass rich in carbohydrates and polyphenols and characterized by their low lignin content. This work focuses on finding the best combination between physical and biological treatments to enhance the extraction of fermentable sugars and polyphenols. High voltage electrical discharges (HVED) (0 to 900 kJ/kg) or enzymatic hydrolysis with Viscozyme® L (12 FBGU/g) were applied on fresh or defatted orange peels for the extraction of polyphenols and fermentable sugars. An HVED energy input of 222 kJ/kg was optimal for the extraction of reducing sugars (19 g/100 g DM) and polyphenols (0.7 g/100 g DM). However, enzymatic hydrolysis allowed a higher extraction of reducing sugars (50 g/100 g DM). HVED were then applied prior or simultaneously to enzymatic hydrolysis to maximize the extraction of biomolecules from orange peels. Thus, the results clearly showed that the HVED pretreatment of orange peels is efficient to enhance the accessibility of cellulosic biomass to enzymes. HVED (222 kJ/kg) prior to enzymatic hydrolysis (12 FBGU/g), was the most effective combination of these two processes to get an intensive extraction of biomolecules from orange peels.
橙皮是一种富含碳水化合物和多酚的生物质,其木质素含量低。本工作旨在寻找物理和生物处理的最佳组合,以提高可发酵糖和多酚的提取率。高压放电(HVED)(0 至 900 kJ/kg)或 Viscozyme® L(12 FBGU/g)的酶解作用分别应用于新鲜或脱脂橙皮以提取多酚和可发酵糖。HVED 能量输入 222 kJ/kg 是提取还原糖(19 g/100 g DM)和多酚(0.7 g/100 g DM)的最佳条件。然而,酶解可实现更高的还原糖提取率(50 g/100 g DM)。然后,将 HVED 应用于酶解之前或同时进行,以从橙皮中最大限度地提取生物分子。因此,结果清楚地表明,HVED 预处理橙皮可有效提高纤维素生物质对酶的可及性。HVED(222 kJ/kg)在酶解(12 FBGU/g)之前,是这两种工艺的最佳组合,可从橙皮中提取大量生物分子。