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Cellulose Nanocrystals (CNCs) from Corn Stalk: Activation Energy Analysis

机译:玉米秸秆中的纤维素纳米晶体(CNC):活化能分析

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摘要

Cellulose nanocrystals (CNCs) were isolated from corn stalk using sulfuric acid hydrolysis, and their morphology, chemical structure, and thermal stability properties were characterized. The CNCs had an average length of 120.2 ± 61.3 nm and diameter of 6.4 ± 3.1 nm (L/D = 18.7). The degree of crystallinity of the CNCs increased to 69.20% from the 33.20% crystallinity of raw corn stalk fiber, while the chemical structure was well kept after sulfuric acid hydrolysis. Thermal stability analysis showed that the degradation temperature of the CNCs reached 239.5 °C, which was higher than that of the raw fiber but lower than that of the extracted cellulose. The average activation energy values for the CNCs, evaluated using the Friedman, Flynn-Wall-Ozawa (F-W-O) and Coats-Redfern methods, were 312.6, 302.8, and 309 kJ·mol−1 in the conversion range of 0.1 to 0.8. The isolated CNCs had higher values of activation energy than did the purified cellulose, which was attributed to the stronger hydrogen bonds present in the crystalline domains of CNCs than in those of cellulose. These findings can help better understand the thermal properties of polymer/CNC composites.
机译:利用硫酸水解法从玉米秸秆中分离出纤维素纳米晶体(CNCs),并对其形态,化学结构和热稳定性进行了表征。 CNC的平均长度为120.2±61.3 nm,直径为6.4±3.1 nm(L / D = 18.7)。 CNCs的结晶度从玉米秸秆原纤维的33.20%结晶度提高到69.20%,而硫酸水解后化学结构保持良好。热稳定性分析表明,CNCs的降解温度达到239.5°C,高于原始纤维的降解温度,但低于提取纤维素的降解温度。使用Friedman,Flynn-Wall-Ozawa(FWO)和Coats-Redfern方法评估的CNC的平均活化能值为312.6、302.8和309 kJ·mol -1 范围从0.1到0.8。分离的CNCs具有比纯化纤维素更高的活化能值,这是由于CNCs的晶域中存在的氢键比纤维素中的氢键更强。这些发现可以帮助更好地了解聚合物/ CNC复合材料的热性能。

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