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Study on the green extraction of corncob xylan by deep eutectic solvent

木聚糖 萃取(化学) 木质素 原材料 化学 生物量(生态学) 玉米芯 木质纤维素生物量 纤维素 制浆造纸工业 色谱法 食品科学 有机化学 农学 生物 工程类
作者
Bingyu Jiao,Le Wang,Haitao Gui,Zifu Ni,Du Rong,Yuansen Hu
出处
期刊:Grain & oil science and technology [Elsevier BV]
卷期号:7 (1): 50-59 被引量:3
标识
DOI:10.1016/j.gaost.2024.01.003
摘要

Corn as one of the world's major food crops, its by-product corn cob is also rich in resources. However, the unreasonable utilization of corn cob often causes the environmental pollution, waste of resources and other problems. As one of the most abundant polymers in nature, xylan is widely used in food, medicine, materials and other fields. Corn cob is rich in xylan, which is an ideal raw material for extracting xylan. However, the intractable lignin is covalently linked to xylan, which increases the difficulty of xylan extraction. It has been reported that deep eutectic solvent (DES) could preferentially dissolve lignin in biomass, thereby dissolving the xylan. Then, the xylan in the extract was separated by ethanol precipitation method. The xylan precipitate was obtained after centrifugation, while the supernatant was retained. The components of the supernatant after ethanol precipitation were separated by the rotary evaporator. The ethanol, water and DES were collected for the subsequent extraction of corn cob xylan. In this study, a new way was provided for the green production of corn cob xylan. The DES was used to extract xylan from corn cob which was used as raw material. The effects of solid-liquid ratio, reaction time, reaction temperature and water content of DES on the extraction rate of corn cob xylan were investigated by single factor test. Furthermore, the orthogonal test was designed to optimize the xylan extraction process. Ulteriorly, the structure of corn cob xylan was analyzed and verified. The results showed that the optimum extraction conditions of corn cob xylan were as follows: the ratio of corn cob to DES was 1: 15 (g: mL), the extraction time was 3 h, the extraction temperature was 60 °C, and the water content of DES was 70%. Under these conditions, the extraction rate of xylan was 16.46%. The extracted corn cob xylan was distinctive triple helix of polysaccharide, which was similar to the xylan structure purchased on the market. Xylan was effectively and workably extracted from corn cob by DES method. This study provides a new approach for high value conversion of corn cob and the clean production of xylan.

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