菊粉酶
化学
发酵
生物炼制
去壳
黑曲霉
食品科学
深共晶溶剂
水解
生物反应器
生物量(生态学)
糖
制浆造纸工业
氯化胆碱
响应面法
固态发酵
水解物
玉米浆
还原糖
甘油
麦芽糖
酶水解
硫酸
生物燃料
作者
Hatice Gözde Hosta Yavuz,İbrahim Yavuz,İrfan Turhan
出处
期刊:Fermentation
[Multidisciplinary Digital Publishing Institute]
日期:2025-09-28
卷期号:11 (10): 561-561
标识
DOI:10.3390/fermentation11100561
摘要
This study presents an integrated valorization strategy for oat husks through microwave-assisted pretreatment using a deep eutectic solvent (DES) composed of choline chloride and glycerol (1:2). The process was designed to enhance the release of fermentable sugars, enable xylooligosaccharide (XOS) production, and support inulinase production by Aspergillus niger A42 via submerged fermentation of the hydrolysate and solid-state fermentation of the residual biomass. Response surface methodology (RSM) was applied to evaluate the effects of microwave power, treatment time, and liquid-to-solid ratio (LSR) on fermentable sugar content (FSC) and total phenolic compounds (TPCs). Following pretreatment, the biomass was hydrolyzed using 1.99% sulfuric acid for 1 min. Optimal pretreatment conditions (350 W, 30 s, LSR 4 w/w) yielded an FSC of 51.14 g/L. Additionally, 230.78 mg/L xylohexaose and 6.47 mg/L xylotetraose were detected. Submerged fermentation of the liquid fraction with A. niger A42 resulted in inulinase and invertase activities of 60.45 U/mL and 21.83 U/mL, respectively. Solid-state fermentation of the pretreated solids produced 37.03 U/mL inulinase and 17.64 U/mL invertase. The integration of microwave-assisted DES pretreatment, dilute acid hydrolysis, and fungal fermentation established a robust strategy for the sequential production of XOS, fermentable sugars, and inulinase from oat husks, supporting their comprehensive utilization within a sustainable biorefinery framework.
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