首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Green and chemical-free process of enzymatic xylooligosaccharide production from corncob: Enhancement of the yields using a strategy of lignocellulosic destructuration by ultra-high pressure pretreatment
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Green and chemical-free process of enzymatic xylooligosaccharide production from corncob: Enhancement of the yields using a strategy of lignocellulosic destructuration by ultra-high pressure pretreatment

机译:从玉米浦生产的绿色和无化学过程中酶的酶促生产:通过超高压预处理使用木质纤维素破坏策略来提高产量

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In this study, the pressures at 50-500 MPa were evaluated at different time to pretreat and further enzyme hydrolysis. The ultra-high pressure (UHP) pretreatment at 100 MPa for 10 min led to improved accessibility of enzyme for conversion of xylan to xylooligosaccharide (XOS). The maximum XOS yield of 35.6 mg/g substrate was achieved and firstly reported at 10% (w/v) of substrate, 100 U of endo-xylanase/g corncobs and incubation time of 18 h. The enzymatic hydrolysis efficiency was increased by 180.3% and released a high amount of xylobiose. The UHP pretreatment relatively did not affect to the composition of corncob, but decreased 34.3% of lignin. Interestingly, antioxidant activities of XOS using UHP pretreatment were higher than untreated corncob. The UHP pretreatment improved lignocellulosic destructuration and XOS yields in a shorter time without the need of chemicals, implying that UHP could be an effective pretreatment of biomass with a chemical-free process. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,在不同时间评估50-500MPa的压力,以预处理和进一步的酶水解。在100MPa的超高压(UHP)预处理10分钟导致酶的可达性改善了Xylan转化为木质糖(XOS)。实现了35.6mg / g底物的最大XOS产率,并首先以10%(w / v)底物,100u U的肠 - 木聚糖酶/ g玉米芯片和18小时的孵育时间。酶水解效率提高180.3%并释放了大量的木偶二糖。 UHP预处理相对不影响玉米螟的组成,但降低了木质素的34.3%。有趣的是,使用UHP预处理的Xos的抗氧化活性高于未处理的玉米菌。 UHP预处理在较短的时间内改善了木质纤维素破坏性和XOS产量,而不需要化学物质,这意味着UHP可以是具有无化学过程的生物量的有效预处理。 (c)2017 Elsevier Ltd.保留所有权利。

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