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On-Demand Regulation of Lignocellulosic Nanofibrils Based on Rapid Fractionation Using Acid Hydrotrope: Kinetic Study and Characterization

机译:基于酸性水闸酸快速分馏的基于快速分馏的木质纤维素纳米纤维的按需调节:动力学研究与表征

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Lignocellulosic nanofibrils (LCNF) has caused great interest from researchers due to the benefits of high output, low operation cost, and weak environmental impact. The existence of lignin in LCNF can be applied to regulate the hydrophilicity and polarity, thereby endowing LCNF with unique properties. Consequently, it is crucial to tailor the production of LCNF with desirable characteristics for various applications. This work demonstrated the feasibility of on-demand regulation of lignocellulosic nanofibrils based on rapid fractionation using p-toluenesulfonic acid (p-TsOH) hydrolysis. Acid concentration of 20-80 wt %, hydrolysis temperature of 50-80 degrees C, and reaction duration of 20-120 min were employed to control the characteristic of reaction products. Different degrees of delignification and xylan dissolution over the entire reaction space were obtained and related to combined delignification factor (CDF) and combined hydrolysis factor (CHF), respectively. It was also found that the mean fibril height of LCNF were significantly affected by CDF and CHF, independent of each reaction process variables. Detailed characterization revealed that the resultant LCNF presented wide range of fibril height (10.6-86.4 nm) and excellent thermal stability (maximal weight loss temperature of approximately 360 degrees C). Overall, this work provides useful and fundamental knowledge for achieving LCNF with tailored characteristics, all of which are essential to many promising applications.
机译:由于高产量,低运营成本和环境影响疲软,木质纤维素纳米纤维(LCNF)引起了研究人员的极大兴趣。可以施加LCNI在LCNF中的存在以调节亲水性和极性,从而赋予具有独特性质的LCNF。因此,根据各种应用定制LCNF的生产是至关重要的。这项工作证明了基于使用对甲苯磺酸(P-TSOH)水解的快速分馏来对木质纤维素纳米纤维的按需调节的可行性。酸浓度为20-80wt%,水解温度为50-80℃,采用20-120分钟的反应持续时间来控制反应产物的特征。获得了在整个反应空间上的不同程度的脱野和木聚糖溶解,分别与组合的脱染因子(CDF)和组合的水解因子(CHF)相关。还发现LCNF的平均原纤维高度受CDF和CHF的显着影响,与每个反应过程变量无关。详细表征显示,所得LCNF呈宽范围的原纤维高度(10.6-86.4nm)和优异的热稳定性(最大重量损失温度约为360℃)。总体而言,这项工作为实现LCNF具有量身定制的特征提供了有用和基础知识,这对于许多有前途的应用来说都是必不可少的。

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