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Low-energy preparation of cellulose nanofibers from sugarcane bagasse by modulating the surface charge density

机译:通过调节表面电荷密度,从甘蔗队纤维素纳米纤维的低能量制备

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In this work, cellulose nanofibers (CNF) were obtained from sugarcane bagasse (SC) without high-energy mechanical treatments, using TEMPO-mediated oxidation. Variable NaClO concentrations were used to impart electrostatic repulsion between surface charged groups thus facilitating fibril separation. CNFs with diameters in the 3-5 nm range were obtained by oxidation of SC pulp with NaClO at 25 and 50 mmol/g. After a 30 min-sonication step, these CNFs were broken down into cellulose nanocrystals (CNC) by mechanical action. Both CNF and CNC preparation by this method are possible in SC due to its particular cell wall morphology and were not achieved in eucalyptus biomass, which is more recalcitrant. This work provided thus a new pathway to modulate the final morphology of cellulose particles by combining a low recalcitrant raw material with different surface charge densities.
机译:在这项工作中,使用Tempo介导的氧化,从甘蔗蛋白Bagasse(SC)获得纤维素纳米纤维(CNF),而没有高能量的机械处理。 可变NaClO浓度用于赋予表面带电基团之间的静电排斥,从而促进原纤维分离。 通过在25和50mmol / g的NaClo氧化扫描液中,获得3-5nm范围直径的CNF。 30分超声处理步骤后,通过机械作用将这些CNF分解成纤维素纳米晶体(CNC)。 由于其特定的细胞壁形态,在SC中,CNF和CNC制备在SC中可以是可能的,并且在桉树生物质中未实现,这是更顽固的。 因此,该工作提供了一种新的途径来通过将低醋塑的原料与不同的表面电荷密度组合来调节纤维素颗粒的最终形态。

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