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首页> 外文期刊>Ultrasonics sonochemistry >Eco-friendly processing in enzymatic xylooligosaccharides production from corncob: Influence of pretreatment with sonocatalytic-synergistic Fenton reaction and its antioxidant potentials
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Eco-friendly processing in enzymatic xylooligosaccharides production from corncob: Influence of pretreatment with sonocatalytic-synergistic Fenton reaction and its antioxidant potentials

机译:玉米芯生产酶法低聚木糖的环保工艺:声催化协同芬顿反应的预处理及其抗氧化潜力

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Delignification can be considered as a feasible process to pretreat lignocellulosic biomass in xylooligosaccharides production after the performance and efficiency has been improved through a few modifications. This study compared various pretreatment strategies such as Fenton, sonocatalytic, and sonocatalytic-synergistic Fenton employed on corncob in order to expose lignin content and saccharides to enhance the Xylooligosaccharides yield by enzymatic hydrolysis. The dissolution of lignin and xylooligosaccharides production of corncob was enhanced by ultrasound assisted TiO2 and Fenton reaction. The corncob pre-treated with a sonocatalytic-synergistic Fenton reaction gave the highest release of the lignin concentration level (1.03 g/L), dissolution level (80.25%), and xylooligosaccharides content (46.45 mg/g substrate). A two-step pretreatment processes consisting of the alkali treatment (pretreatment) and sonocatalytic-synergistic Fenton process (posttreatment) illustrated that subsequent enzymatic hydrolysis could be enhanced considerably. The release of the lignin concentration and xylooligosaccharides content were 33.20 g/L and 174.81 mg/g substrate, respectively. The antioxidant potential of xylooligosaccharides showed significant differences regarding the amount of xylooligosaccharides and the phenolic compounds produced. (C) 2015 Elsevier B.V. All rights reserved.
机译:在通过一些改进提高了性能和效率之后,去木质素可以被认为是预处理木寡糖生产中木质纤维素生物质的可行方法。这项研究比较了玉米芯上使用的各种Fenton预处理策略,例如Fenton,声催化和声催化协同Fenton,以暴露木质素含量和糖类,从而通过酶促水解提高木糖寡糖的产量。超声辅助Ti​​O2和Fenton反应增强了玉米芯木质素和木糖寡糖的溶解。经声催化协同Fenton反应预处理的玉米芯给出了最高的木质素浓度水平(1.03 g / L),溶解水平(80.25%)和低聚木糖含量(46.45 mg / g底物)释放。由碱处理(预处理)和声催化协同Fenton工艺(后处理)组成的两步​​预处理过程表明,随后的酶水解作用可得到显着增强。木质素浓度和木寡糖含量的释放分别为33.20 g / L和174.81 mg / g底物。低聚木糖的抗氧化潜力显示出低聚木糖和酚类化合物的数量的显着差异。 (C)2015 Elsevier B.V.保留所有权利。

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