Department of Chemical Engineering, Faculty of Science, University of Vigo (Campus Ourense), As Lagoas, 32004 Ourense, Spain; CITI-Tecnopole, San Ciprián de Viñas, 32901 Ourense, Spain.
Department of Chemical Engineering, School of Engineering, University of Santiago de Compostela, 15782, Santiago de Compostela, Spain.
Carbohydr Polym. 2018 Mar 1;183:21-28. doi: 10.1016/j.carbpol.2017.11.009. Epub 2017 Nov 11.
Peanut shells were subjected to non-isothermal aqueous treatments to cause the partial breakdown of hemicelluloses into soluble oligosaccharides and lignin-derived compounds with high antioxidant activity. The effects of temperature on the chemical composition of the substrate and soluble reaction products were assessed. Under selected conditions (210°C, severity=4.09), the overall amount of poly- and oligo- saccharides present in the liquid phase reached 9.8g/L. This solution was refined by consecutive stages of discontinuous diafiltration, yielding a refined product containing about 72.4wt% of oligomers at a global yield of 8.5kg/100kg oven-dry PS. The purified products were characterized by HPLC, MALDI-TOF-MS and FTIR, confirming the major reaction products were saccharides made up of xylose with degrees of polymerization up to 17, substituted with acetyl and methylglucuronosyl groups, for which a number of pharmaceutical and food applications have been proposed. Solubilization of hemicelluloses in the treatments resulted in the production of solids enriched in cellulose and lignin suitable for further applications.
花生壳经非等温热水预处理,部分半纤维素分解为具有高抗氧化活性的可溶性低聚糖和木质素衍生化合物。考察了温度对底物和可溶性反应产物化学组成的影响。在选定条件(210°C,严重度=4.09)下,液相中存在的多聚糖和低聚糖总量达到 9.8g/L。该溶液通过连续的不连续渗滤阶段进行精制,得到一种精制产物,其中约 72.4wt%的低聚物在总收率为 8.5kg/100kg 干燥 PS 的情况下得到。通过 HPLC、MALDI-TOF-MS 和 FTIR 对纯化产物进行了表征,证实主要反应产物是由聚合度高达 17 的木糖组成的糖,取代基为乙酰基和甲基葡萄糖醛酸基,这些糖已被提议用于许多药物和食品应用。半纤维素在处理过程中的溶解导致产生了富含纤维素和木质素的固体,这些固体适合进一步应用。