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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >The influence of lignin on steam pretreatment and mechanical pulping of poplar to achieve high sugar recovery and ease of enzymatic hydrolysis
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The influence of lignin on steam pretreatment and mechanical pulping of poplar to achieve high sugar recovery and ease of enzymatic hydrolysis

机译:木质素对白杨的蒸汽预处理和机械制浆的影响,以实现高糖回收和易于酶解

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With the goal of enhancing overall carbohydrate recovery and reducing enzyme loading refiner mechanical pulping and steam pretreatment (210 degrees C, 5 min) were used to pretreat poplar wood chips. Neutral sulphonation post-treatment indicated that, although the lignin present in the steam pretreated substrate was less reactive, the cellulose-rich, water insoluble component was more accessible to cellulases and Simons stain. This was likely due to lignin relocation as the relative surface lignin measured by X-ray photoelectron spectroscopy increased from 0.4 to 0.8. The integration of sulphite directly into steam pretreatment resulted in the solubilisation of 60% of the lignin while more than 80% of the carbohydrate present in the original substrate was recovered in the water insoluble fraction after Na2CO3 addition. More than 80% of the sugars present in the original cellulose and xylan could be recovered after 48 h using an enzyme loading of 20 mg protein/g cellulose at a 10% substrate concentration. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了提高总体碳水化合物的回收率并减少酶的负荷,磨浆机采用机械制浆和蒸汽预处理(210摄氏度,5分钟)对杨木碎片进行预处理。中性磺化后处理表明,尽管在蒸汽预处理的底物中存在的木质素反应性较低,但是富含纤维素的水不溶性成分更易于被纤维素酶和西蒙斯染色。这可能是由于木质素重新定位,因为通过X射线光电子能谱测量的相对表面木质素从0.4增加到0.8。直接将亚硫酸盐整合到蒸汽预处理中可溶解60%的木质素,而加入Na2CO3后,水不溶性馏分中可回收存在于原始底物中的80%以上的碳水化合物。使用20 mg蛋白质/ g纤维素的酶负载量(底物浓度为10%)在48小时后,可以回收到原始纤维素和木聚糖中80%以上的糖。 (C)2015 Elsevier Ltd.保留所有权利。

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