首页> 外文期刊>Cellulose Chemistry and Technology: International Journal for Physics, Chemistry and Technology of Cellulose and Lignin >SONO-CHEMICAL PREPARATION OF CELLULOSE NANOWHISKERS FROM &ITLUFFA CYLINDRICA&IT FIBERS OPTIMIZED BY RESPONSE SURFACE METHODOLOGY
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SONO-CHEMICAL PREPARATION OF CELLULOSE NANOWHISKERS FROM &ITLUFFA CYLINDRICA&IT FIBERS OPTIMIZED BY RESPONSE SURFACE METHODOLOGY

机译:Sono-化学制备纤维素纳米座的含有响应表面方法优化的纤维素纳米杆螺旋手纤维和IT纤维

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An attempt to optimize the sono-chemical processing for cellulose nanowhiskers (CNWs) from Luffa cylindrica has been reported. Response surface methodology was applied to describe the influence of sulfuric acid concentration, temperature and sonication time on the yield of CNWs using the Box-Behnken experimental design. The sulfuric acid concentration of 62 wt%, temperature of 51 degrees C, and sonication time of 46 min were the optimal conditions for preparing CNWs via low-intensity ultrasound-assisted acid hydrolysis. The CNW yield reached 93.6% at the optimal combination of parameter settings and the value was well within the range predicted by the model, while the yield was only 72.1% in the absence of ultrasonic treatment. TEM observation revealed that CNWs obtained from ultrasound-assisted hydrolysis and conventional hydrolysis was very similar in rod-like micro-morphology with widths and lengths of 10-20 and 100-300 nm, respectively. XRD analysis indicated that both CNW samples presented cellulose I crystal structure with a Segal crystallinity index of 68.7% for ultrasound-assisted hydrolysis and 73.4% for conventional hydrolysis. These results suggest that low-intensity ultrasound-assisted acid hydrolysis could be a recommendable option for the high-yield production of uniform nanosized CNWs from Luffa cylindrica with high crystallinity and good dispersion stability at industrial level.
机译:报道了尝试优化来自Luffa Comindrica的纤维素纳米须须(CNW)的声音化学加工。应用响应面方法应用于描述亚甲基甘实验设计硫酸浓度,温度和超声时间对CNWS产量的影响。硫酸浓度为62wt%,温度为51℃,超声处理时间为46分钟,是通过低强度超声辅助酸水解制备CNW的最佳条件。在参数设置的最佳组合中,CNW产量达到93.6%,并且该值在模型预测的范围内很好,而在没有超声处理的情况下产量仅为72.1%。 TEM观察显示,从超声辅助水解和常规水解中获得的CNW在棒状微观形态中非常相似,宽度和长度为10-20和100-300nm。 XRD分析表明,两种CNW样品呈现纤维素I晶体结构,Segal结晶度指数为68.7%,用于超声辅助水解,常规水解的73.4%。这些结果表明,低强度超声辅助酸水解可能是从Luffa Cylindrica具有高结晶度和良好的分散稳定性在工业水平的高产纳米型CNW的高产纳米CNW的高级纳米CNW的方案。

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