反应挤出法改性甘蔗渣制备纤维素基材料

J. Mantovan, F. Yamashita, S. Mali
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引用次数: 2

摘要

橙甘蔗渣(OB)可以被认为是一种可持续的、可再生的、低成本的纤维素提取生物质。在这种情况下,反应挤压可以被认为是从木质纤维素材料中提取纤维素的一种极好的、环保的替代工艺。因此,本研究旨在通过反应挤压工艺获得纤维素基材料,并研究果胶对脱木质素过程的影响。用硫酸或氢氧化钠一步法对两组样品(OB和去脱钾OB)进行挤压。原料中果胶含量对挤出物料的纤维素含量影响较大;热分布(TGA曲线)和结晶度也发生了变化。改性材料的纤维素含量为18.8% ~ 58.4%,工艺收率为30.6% ~ 79.2%。在所有测试的挤压处理中,碱性试剂提供了最高的纤维素含量,主要是不含果胶的OB。挤压法是从柑橘渣中提取纤维素是一种有效且有发展前景的方法。本研究中生产的材料可作为纤维素纤维的来源,用于各种产品和工艺,如食品工业、发酵底物或后续处理后的精制应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modification of Orange Bagasse with Reactive Extrusion to Obtain Cellulose-Based Materials
Orange bagasse (OB) could be considered a sustainable, renewable, and low-cost biomass for the extraction of cellulose. In this context, reactive extrusion can be considered an excellent, eco-friendly, alternative process for the extraction of cellulose from lignocellulosic materials. Thus, the present study aimed to obtain cellulose-based materials with a reactive extrusion process and also to investigate the impact of pectin on the delignification process. Two groups of samples (OB and depectinizated OB) were submitted to extrusion with sulfuric acid or sodium hydroxide in one-step processes. The cellulose content of extruded materials was highly affected by pectin content in the raw material; the thermal profile (TGA curves) and crystallinity also changed. The cellulose content of modified materials ranged from 18.8% to 58.4%, with a process yield of 30.6% to 79.2%. The alkaline reagent provided the highest cellulose content among all extrusion treatments tested, mainly for OB without pectin. The extrusion process was considered an efficient and promising process for extracting cellulose from citrus residue. Materials produced in this study can be used as sources of cellulose fiber for various products and processes, such as in the food industry, fermentation substrates, or refined applications after subsequent treatments.
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