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Facile extraction of cellulose nanocrystals from wood using ethanol and peroxide solvothermal pretreatment followed by ultrasonic nanofibrillation

机译:使用乙醇和过氧化物溶剂热预处理,然后超声纳米原纤化,从木材中轻松提取纤维素纳米晶体

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Cellulose nanocrystals (CNCs) were successfully extracted from wood flour by a two-step process that comprised ethanol and peroxide solvothermal pretreatment and an ultrasonic disintegration process. Characterization results showed that 97% of the total lignin and 70% of the hemicellulose could be fractionated in a single ethanosolv pretreatment step. Additional treatment with alkaline hydrogen peroxide removed the residual lignin and hemicellulose and resulted in high purity cellulose. The CNCs obtained after ultrasonication displayed a similar yield, size, morphology, and crystallinity but had better thermal stability and film forming properties than those produced by concentrated acid hydrolysis. Overall, the solvothermal treatment using ethanol and its combination with peroxide is an ideal substitute method for pretreatment of lignocellulose. Further integration of such pretreatments with ultrasonication provides a promising efficient process with low environmental impact for production of CNCs.
机译:纤维素纳米晶体(CNCs)通过两步过程成功地从木粉中提取出来,该过程包括乙醇和过氧化物的溶剂热预处理和超声分解过程。表征结果表明,可在单个乙醇溶剂预处理步骤中分离出总木质素的97%和半纤维素的70%。用碱性过氧化氢的进一步处理除去了残留的木质素和半纤维素,得到了高纯度的纤维素。超声处理后获得的CNC表现出相似的收率,尺寸,形貌和结晶度,但比浓酸水解产生的CNC具有更好的热稳定性和成膜性。总体而言,使用乙醇及其与过氧化物的组合进行溶剂热处理是木质纤维素预处理的理想替代方法。此类预处理与超声波的进一步集成为CNC的生产提供了一种有希望的高效方法,对环境的影响很小。

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