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Further characterization of cellulose nanocrystal (CNC) preparation from sulfuric acid hydrolysis of cotton fibers

机译:硫酸水解棉纤维制备纤维素纳米晶体(CNC)的进一步表征

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Cellulose nanocrystal (CNC), as a natural/sustainable material, has attracted considerable attention, and its preparation from the sulfuric acid hydrolysis process has attained the precommercial demonstration stage. In this study, the process was further characterized by following the alkali solubility in an 18 % sodium hydroxide solution (S-18) and the degree of polymerization (DP) of the cellulosic substrate during the sulfuric acid hydrolysis of cotton fibers. The results showed that the S-18 increased as the hydrolysis progressed until reaching a nearly constant level at about 45 min, while the DP exhibited a decrease and approached a nearly constant level at 55 min. The emergence of the constant S-18 coincided with the formation/appearance of CNC; thus, a "critical stage" with irregular CNC particle size but high yield was identified during the hydrolysis. The optimization of the CNC preparation process was realized under a shortened reaction time with 41.7 % yield (with a CNC size of < 150 nm). Therefore, the amount of S-18 can be used as a new characterization method for the preparation of CNC or other cellulose-derived products during the acid hydrolysis process with the advantage of a favorable product yield.
机译:作为天然/可持续材料的纤维素纳米晶体(CNC)已经引起了广泛的关注,并且其由硫酸水解过程制备的产品已经达到了商业化示范阶段。在这项研究中,该方法的进一步特征是通过跟踪棉纤维在硫酸水解过程中在18%氢氧化钠溶液中的碱溶解度(S-18)和纤维素底物的聚合度(DP)。结果表明,S-18随着水解的进行而增加,直到在约45分钟时达到接近恒定的水平,而DP显示出降低并在55分钟时接近接近恒定的水平。常数S-18的出现与CNC的形成/出现相吻合。因此,在水解过程中发现了一个具有不规则的CNC粒度但产率高的“关键阶段”。 CNC制备工艺的优化是在缩短的反应时间下实现的,产率为41.7%(CNC尺寸小于150 nm)。因此,S-18的量可以用作新的表征方法,用于酸水解过程中制备CNC或其他纤维素衍生的产品,具有有利的产品收率的优点。

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